Updated on 2024/08/09

Information

 

写真a

 
ETO HINAKO
 
Organization
Center for Advanced Medical Open Innovation Academic Researcher
Title
Academic Researcher
External link

Degree

  • Bachelor of Veterinary Science

Research Interests・Research Keywords

  • Research theme: Elucidation of in vivo and intracellular redox metabolic changes and development of methods using DNP-MRI and EPR.

    Keyword: DNP, MRI, EPR, metabolic imaging, radical probe, free radicals, redox, redox disease model

    Research period: 2010.9

Papers

  • Noninvasive Diagnosis of the Mitochondrial Function of Doxorubicin-Induced Cardiomyopathy Using In Vivo Dynamic Nuclear Polarization-Magnetic Resonance Imaging. Reviewed International journal

    Yukie Mizuta, Tomohiko Akahoshi, Hinako Eto, Fuminori Hyodo, Masaharu Murata, Kentaro Tokuda, Masatoshi Eto, Ken Yamaura

    Antioxidants (Basel, Switzerland)   11 ( 8 )   2022.7

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    Doxorubicin (DOX) induces dose-dependent cardiotoxicity via oxidative stress and abnormal mitochondrial function in the myocardium. Therefore, a noninvasive in vivo imaging procedure for monitoring the redox status of the heart may aid in monitoring diseases and developing treatments. However, an appropriate technique has yet to be developed. In this study, we demonstrate a technique for detecting and visualizing the redox status of the heart using in vivo dynamic nuclear polarization-magnetic resonance imaging (DNP-MRI) with 3-carbamoyl-PROXYL (CmP) as a molecular imaging probe. Male C57BL/6N mice were administered DOX (20 mg/kg) or saline. DNP-MRI clearly showed a slower DNP signal reduction in the DOX group than in the control group. Importantly, the difference in the DNP signal reduction rate between the two groups occurred earlier than that detected by physiological examination or clinical symptoms. In an in vitro experiment, KCN (an inhibitor of complex IV in the mitochondrial electron transport chain) and DOX inhibited the electron paramagnetic resonance change in H9c2 cardiomyocytes, suggesting that the redox metabolism of CmP in the myocardium is mitochondrion-dependent. Therefore, this molecular imaging technique has the potential to monitor the dynamics of redox metabolic changes in DOX-induced cardiomyopathy and facilitate an early diagnosis of this condition.

    DOI: 10.3390/antiox11081454

  • 超偏極MRIによる疾患応用研究—Application of Dissolution Dynamic Nuclear Polarization and in vivo Dynamic Nuclear Polarization for Animal Disease Models

    兵藤 文紀, 子安 憲一, 江藤 比奈子, Abdelazim Elsayed Elhelaly, 岩崎 遼太, 森 崇, 村田 正治, 松尾 政之

    放射線生物研究 = Radiation biology research communications : 放射線生物研究会機関誌   56 ( 4 )   347 - 362   2021.12

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    Application of Dissolution Dynamic Nuclear Polarization and in vivo Dynamic Nuclear Polarization for Animal Disease Models

  • Spatiotemporal imaging of redox status using in vivo dynamic nuclear polarization magnetic resonance imaging system for early monitoring of response to radiation treatment of tumor. Reviewed International journal

    Norikazu Koyasu, Fuminori Hyodo, Ryota Iwasaki, Hinako Eto, Abdelazim Elsayed Elhelaly, Hiroyuki Tomita, Shinichi Shoda, Masaki Takasu, Takashi Mori, Masaharu Murata, Akira Hara, Yoshifumi Noda, Hiroki Kato, Masayuki Matsuo

    Free radical biology & medicine   179   170 - 180   2021.12

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    In general, the effectiveness of radiation treatment is evaluated through the observation of morphological changes with computed tomography (CT) or magnetic resonance imaging (MRI) images after treatment. However, the evaluation of the treatment effects can be very time consuming, and thus can delay the verification of patient cases where treatment has not been fully effective. It is known that the treatment efficacy depends on redox modulation in tumor tissues, which is an indirect effect of oxidizing redox molecules such as hydroxyl radicals and of reactive oxygen species generated by radiation treatment. In vivo dynamic nuclear polarization-MRI (DNP-MRI) using carbamoyl-PROXYL (CmP) as a redox sensitive DNP probe enables the accurate monitoring of the anatomical distribution of free radicals based on interactions of electrons and nuclear spin, known as Overhauser effect. However, spatiotemporal response of the redox status in tumor tissues post-irradiation remains unknown. In this study, we demonstrate the usefulness of spatiotemporal redox status as an early imaging biomarker of tumor response after irradiation using in vivo DNP-MRI. Our results highlight that in vivo DNP-MRI/CmP allowed us to visualize the tumor redox status responses significantly faster and earlier compared to the verification of morphological changes observed with 1.5 T MRI and cancer metabolism (Warburg effect) obtained by hyperpolarized 13C pyruvate MRS. Our findings suggest that the early assessment of redox status alterations with in vivo DNP-MRI/CmP probe may provide very efficient information regarding the effectiveness of the subsequent radiation treatment.

    DOI: 10.1016/j.freeradbiomed.2021.12.311

  • In Vivo Dynamic Nuclear Polarization Magnetic Resonance Imaging for the Evaluation of Redox-Related Diseases and Theranostics. Reviewed International journal

    Fuminori Hyodo, Hinako Eto, Tatsuya Naganuma, Norikazu Koyasu, Abdelazim Elsayed Elhelaly, Yoshifumi Noda, Hiroki Kato, Masaharu Murata, Tomohiko Akahoshi, Makoto Hashizume, Hideo Utsumi, Masayuki Matsuo

    Antioxidants & redox signaling   36 ( 1-3 )   172 - 184   2021.7

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    Significance: In vivo molecular and metabolic imaging is an emerging field in biomedical research that aims to perform noninvasive detection of tissue metabolism in disease states and responses to therapeutic agents. The imbalance in tissue oxidation/reduction (Redox) states is related to the onset and progression of several diseases. Tissue redox metabolism provides biomarkers for early diagnosis and drug treatments. Thus, noninvasive imaging of redox metabolism could be a useful, novel diagnostic tool for diagnosis of redox-related disease and drug discovery. Recent Advances: In vivo dynamic nuclear polarization magnetic resonance imaging (DNP-MRI) is a technique that enables the imaging of free radicals in living animals. DNP enhances the MRI signal by irradiating the target tissue or solution with the free radical molecule's electron paramagnetic resonance frequency before executing pulse sequence of the MRI. In vivo DNP-MRI with redox-sensitive nitroxyl radicals as the DNP redox contrast agent enables the imaging of the redox metabolism on various diseases. Moreover, nitroxyl radicals show antioxidant effects that suppress oxidative stress. Critical Issues: To date, considerable progress has been documented preclinically in the development of animal imaging systems. Here, we review redox imaging of in vivo DNP-MRI with a focus on the recent progress of this system and its uses in patients with redox-related diseases. Future Directions: This technique could have broad applications in the study of other redox-related diseases, such as cancer, inflammation, and neurological disorders, and facilitate the evaluation of treatment response as a theranostic tool.

    DOI: 10.1089/ars.2021.0087

  • Development of 20 cm sample bore size dynamic nuclear polarization (DNP)-MRI at 16 mT and redox metabolic imaging of acute hepatitis rat model. Reviewed International journal

    Hinako Eto, Tatuya Naganuma, Motonao Nakao, Masaharu Murata, Abdelazim Elsayed Elhelaly, Yoshifumi Noda, Hiroki Kato, Masayuki Matsuo, Tomohiko Akahoshi, Makoto Hashizume, Fuminori Hyodo

    Free radical biology & medicine   169   149 - 157   2021.6

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    Tissue redox metabolism is involved in various diseases, and an understanding of the spatio-temporal dynamics of tissue redox metabolism could be useful for diagnosis of progression and treatment. In in vivo dynamic nuclear polarization (DNP)-MRI, electron paramagnetic resonance (EPR) irradiation at the resonance frequency of nitroxyl radicals administered as a redox probe for induction of DNP, increases the intensity of MRI signals. For electron spin, it is necessary to apply a resonant frequency 658 times higher than that required for nuclear spin because of the higher magnetic moment of unpaired electrons. Previous studies using a disease model of small animals and in vivo DNP-MRI have revealed that an abnormal redox status is involved in many diseases, and that it could be used to visualize the dynamics of alterations in redox metabolism. To use the current methods in clinical practice, the development of a prototype DNP-MRI system for preclinical examinations of large animals is indispensable for clarifying the problems peculiar to the increase in size of the DNP-MRI device. Therefore, we developed a in vivo DNP-MRI system with a sample bore size of 20 cm and a 16-mT magnetic field using a U-shaped permanent magnet. Because the NMR frequency is very low, we adopted a digital radiofrequency transmission/reception system with excellent filter and dynamic range characteristics and equipped with a digital eddy current compensation system to suppress large eddy currents. The pulse sequence was based on the fast spin-echo sequence, which was improved for low frequency and large-eddy current equipment. The in vivo DNP-MRI system developed was used to non-invasively image the redox reaction of a carbamoyl-PROXYL probe in the livers of large rats weighing 800 g. Furthermore, DNP-MRI analysis was able to capture significant changes in redox metabolism in hepatitis-model rats.

    DOI: 10.1016/j.freeradbiomed.2021.04.017

  • 生体動的核偏極(DNP)MRIを用いた非アルコール脂肪肝炎(NASH)のレドックス代謝イメージングおよびブタNASHモデルでの基礎検証

    兵藤 文紀, 庄田 真一, 森 崇, 高須 正規, 江藤 比奈子, 長沼 辰弥, 富田 弘之, 村田 正治, 野田 佳史, 加藤 博基, 松尾 政之

    JSMI Report   14 ( 2 )   108 - 108   2021.5

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  • 生体動的核偏極(DNP)MRIを用いた非アルコール脂肪肝炎(NASH)のレドックス代謝イメージングおよびブタNASHモデルでの基礎検証

    兵藤 文紀, 庄田 真一, 森 崇, 高須 正規, 江藤 比奈子, 長沼 辰弥, 富田 弘之, 村田 正治, 野田 佳史, 加藤 博基, 松尾 政之

    JSMI Report   14 ( 2 )   108 - 108   2021.5

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    Redox metabolic imaging of NASH model mice and pig using in vivo DNP-MRI

  • Free radical imaging of endogenous redox molecules using dynamic nuclear polarisation magnetic resonance imaging. Reviewed International journal

    Fuminori Hyodo, Shinji Ito, Hinako Eto, Abdelazim Elsayed Elhelaly, Masaharu Murata, Tomohiko Akahoshi, Hideo Utsumi, Masayuki Matuso

    Free radical research   55 ( 4 )   1 - 9   2020.12

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    Redox reactions accompanied by the oxidation-reduction of endogenous molecules play important roles in maintaining homeostasis in living organisms. In humans, numerous endogenous molecules that contribute towards maintaining physiological conditions form free radicals via electron transfer. A typical example of this is the mitochondrial electron transport chain, which is involved in energy production. If free radicals derived from endogenous molecules could be visualised and exploited as biological and functional probes, redox reactions mediated by endogenous molecules could be detected non-invasively. We succeeded in visualising the free radicals derived from endogenous molecules using an in vivo dynamic nuclear polarisation (DNP) magnetic resonance imaging (MRI) system. In this review, we describe the visualisation of endogenous redox molecules, such as flavins and ubiquinones, which are mitochondrial electron carriers, as well as vitamin E and vitamin C (ascorbate). In addition, we describe the application of melanin free radicals for the in vivo visualisation of metabola without using probes via in vivo DNP-MRI.

    DOI: 10.1080/10715762.2020.1859109

  • Imaging of Hydroxyl-Radical Generation Using Dynamic Nuclear Polarization-Magnetic Resonance Imaging and a Spin-Trapping Agent. Reviewed International journal

    Shinichi Shoda, Fuminori Hyodo, Yoko Tachibana, Mamoru Kiniwa, Tatsuya Naganuma, Hinako Eto, Norikazu Koyasu, Masaharu Murata, Masayuki Matsuo

    Analytical chemistry   92 ( 21 )   14408 - 14414   2020.11

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    Reactive oxygen species (ROS) play an important role in cell metabolism, but they can cause oxidative damage to biomolecules. Among ROS, the hydroxyl radical (·OH) is one of the most reactive molecules in biological systems because of its high reaction rate constant. Therefore, imaging of ·OH could be useful for evaluation of the redox mechanism and diagnosis of oxidative diseases. In vivo dynamic nuclear polarization-magnetic resonance imaging (DNP-MRI) is a noninvasive imaging method to obtain spatiotemporal information about free radicals with MRI anatomical resolution. In this study, we investigated the visualization of hydroxyl radicals generated from the Fenton reaction by combining DNP-MRI with a spin-trapping agent (DMPO: 5,5-dimethyl-1-pyrroline N-oxide) for ·OH. Additionally, we demonstrated the radical-scavenging effect using four thiol-related reagents by DNP-MRI. We demonstrated that DNP enhancement could be induced by the DMPO-OH radical using the DNP-MRI/spin-trapping method and visualized ·OH generation for the first time. Maximum DNP enhancement was observed at an electron paramagnetic resonance irradiation frequency of 474.5 MHz. Furthermore, the radical-scavenging effect was simultaneously evaluated by the decrease in the DNP image value of DMPO-OH. An advantage of our methods is that they simultaneously investigate compound activity and the radical-scavenging effect.

    DOI: 10.1021/acs.analchem.0c02331

  • Development of a novel molecular probe for the detection of liver mitochondrial redox metabolism. Reviewed International journal

    Md Zahangir Hosain, Fuminori Hyodo, Takeshi Mori, Koyo Takahashi, Yusuke Nagao, Hinako Eto, Masaharu Murata, Tomohiko Akahoshi, Masayuki Matsuo, Yoshiki Katayama

    Scientific reports   10 ( 1 )   16489 - 16489   2020.10

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    Redox status influences the course of the inflammatory, metabolic, and proliferative liver diseases. Oxidative stress is thought to play a crucial and sustained role in the pathological progression of early steatosis to severe hepatitis, fibrosis, cirrhosis, and hepatocellular carcinoma. Oxidative stress induced by reactive oxygen species which are generated in the mitochondria can lead to chronic organelle damage in hepatocytes. Currently, the diagnosis of liver disease requires liver biopsy, which is invasive and associated with complications. The present report describes the development of a novel molecular probe, EDA-PROXYL, with higher reactivity and mitochondrial selectivity than standard carboxyl-PROXYL and carbamoyl-PROXYL probes. The membrane permeability of our probe improved in aqueous environments which led to increased accumulation in the liver and interaction of EDA-PROXYL with the carnitine transporter via the amine (NH3+) group further increased accumulation. This increased mitochondrial sensitivity and enhanced accumulation highlight the potential of EDA-PROXYL as a molecular probe for determining metabolic reactions of the mitochondria. Thus, this novel probe could be a tool for the evaluation of redox status of the mitochondria to assess the degree of liver injury and, ultimately, the response to pharmacological therapy.

    DOI: 10.1038/s41598-020-73336-1

  • A Lipid-Based Nanocarrier Containing Active Vitamin D3 Ameliorates NASH in Mice via Direct and Intestine-Mediated Effects on Liver Inflammation. Reviewed

    Yunmei Mu, Jinting Li, Jeong-Hun Kang, Hinako Eto, Khadijah Zai, Akihiro Kishimura, Fuminori Hyodo, Takeshi Mori, Yoshiki Katayama

    Biological & pharmaceutical bulletin   43 ( 9 )   1413 - 1420   2020.5

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    The gut-liver axis may be involved in non-alcoholic steatohepatitis (NASH) progression. Pathogen-associated molecular patterns leak through the intestinal barrier to the liver via the portal vein to contribute to NASH development. Active vitamin D3 (1,25(OH)2D3) is a potential therapeutic agent to enhance the intestinal barrier. Active vitamin D3 also suppresses inflammation and fibrosis in the liver. However, the adverse effects of active vitamin D3 such as hypercalcemia limit its clinical use. We created a nano-structured lipid carrier (NLC) containing active vitamin D3 to deliver active vitamin D3 to the intestine and liver to elicit NASH treatment. We found a suppressive effect of the NLC on the lipopolysaccharide-induced increase in permeability of an epithelial layer in vitro. Using mice in which NASH was induced by a methionine and choline-deficient diet, we discovered that oral application of the NLC ameliorated the permeability increase in the intestinal barrier and attenuated steatosis, inflammation and fibrosis in liver at a safe dose of active vitamin D3 at which the free form of active vitamin D3 did not show a therapeutic effect. These data suggest that the NLC is a novel therapeutic agent for NASH.

    DOI: 10.1248/bpb.b20-00432

  • DNP-MRIを用いた非アルコール性脂肪肝炎の早期診断へ向けたレドックスメカニズムの解明

    兵藤 文紀, 江藤 比奈子, 中路 睦子, 長沼 辰弥, 中田 亮輔, 庄田 真一, 村田 正治, 松尾 政之

    日本薬学会年会要旨集   140年会   27P - am124   2020.3

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    Development of redox metabolic imaging for NASH using in vivo Dynamic Nuclear Polarization MRI

  • 電子スピン共鳴を利用した超偏極MRIによるヒドロキシラジカルイメージングの基礎検討

    庄田 真一, 兵藤 文紀, 子安 憲一, 立花 葉子, 江藤 比奈子, 松尾 政之

    日本癌治療学会学術集会抄録集   57回   P113 - 2   2019.10

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  • In vivo melanoma imaging based on dynamic nuclear polarization enhancement in melanin pigment of living mice using in vivo dynamic nuclear polarization magnetic resonance imaging. Reviewed International journal

    Fuminori Hyodo, Tatsuya Naganuma, Hinako Eto, Masaharu Murata, Hideo Utsumi, Masayuki Matsuo

    Free radical biology & medicine   134   99 - 105   2019.4

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    Melanin is a pigment that includes free radicals and is widely distributed in living animals. Malignant melanoma is one of the most progressive tumors in humans with increasing incidence worldwide, and has shown resistance to chemotherapy, resulting in high mortality at the metastatic stage. In general, melanoma involves the abnormal accumulation of melanin pigment produced by malignant melanocytes. Electron paramagnetic resonance (EPR) spectroscopy and imaging is a powerful technique to directly visualize melanomas using endogenous free radicals in the melanin pigment. Because melanin radicals have a large linewidth, the low spatial resolution of EPR imaging results in blurred images and a lack of anatomical information. Dynamic nuclear polarization (DNP)-MRI is a noninvasive imaging method to obtain the spatio-temporal information of free radicals with MRI anatomical resolution. Proton signals in tissues, including free radicals, can be dramatically enhanced by EPR irradiation at the resonance frequency of the free radical prior to applying the MRI pulse sequence. However, the DNP effects of free radicals in the pigment of living organisms is unclear. Therefore, if endogenous free radicals in melanin pigment could be utilized as a bio-probe for DNP-MRI, this will be an advantage for the specific enhancement of melanoma tissues and might allow the separate noninvasive visualization of melanoma tissues without the need for probe administration. Here, we report that biological melanin pigment induced a in vivo DNP effect by interacting with water molecules. In addition, we demonstrated in vivo melanoma imaging based on the DNP effects of endogenous free radicals in the melanin pigment of living mice.

    DOI: 10.1016/j.freeradbiomed.2019.01.002

  • A novel model for treatment of hypertrophic pachymeningitis. Reviewed International journal

    Yiwen Cui, Katsuhisa Masaki, Xu Zhang, Ryo Yamasaki, Takayuki Fujii, Hidenori Ogata, Shotaro Hayashida, Hiroo Yamaguchi, Fuminori Hyodo, Hinako Eto, Sachiko Koyama, Kyoko Iinuma, Tomomi Yonekawa, Takuya Matsushita, Mari Yoshida, Kazunori Yamada, Mitsuhiro Kawano, Marie Malissen, Bernard Malissen, Junichi Kira

    Annals of clinical and translational neurology   6 ( 3 )   431 - 444   2019.3

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    Objective: Immunoglobulin (Ig)G4-related disease is a major cause of hypertrophic pachymeningitis (HP), presenting as a progressive thickening of the dura mater. HP lacks an animal model to determine its underlying mechanisms. We developed a suitable animal model for the treatment of HP. Methods: We longitudinally evaluated dura in mice with a mutation (Y136F) in the linker for activation of T cells (LAT), which induced type 2 T helper (Th2) cell proliferation and IgG1 (IgG4 human equivalent) overexpression. Mice were therapeutically administered daily oral irbesartan from 3 to 6 weeks of age. Human IgG4-related, anti-neutrophil cytoplasmic antibody-related, and idiopathic HP dura were also immunohistochemically examined. Results: LATY136F mice showing dural gadolinium enhancement on magnetic resonance imaging had massive infiltration of B220+ B cells, IgG1+ cells, CD138+ plasma cells, CD3+ T cells, F4/80+ macrophages, and polymorphonuclear leukocytes in the dura at 3 weeks of age, followed by marked fibrotic thickening. In dural lesions, transforming growth factor (TGF)-β1 was produced preferentially in B cells and macrophages while TGF-β receptor I (TGF-β RI) was markedly upregulated on fibroblasts. Quantitative western blotting revealed significant upregulation of TGF-β1, TGF-β RI, and phosphorylated SMAD2/SMAD3 in dura of LATY136F mice aged 13 weeks. A similar upregulation of TGF-β RI, SMAD2/SMAD3, and phosphorylated SMAD2/SMAD3 was present in autopsied dura of all three types of human HP. Irbesartan abolished dural inflammatory cell infiltration and fibrotic thickening in all treated LATY136F mice with reduced TGF-β1 and nonphosphorylated and phosphorylated SMAD2/SMAD3. Interpretation: TGF-β1/SMAD2/SMAD3 pathway is critical in HP and is a potential novel therapeutic target.

    DOI: 10.1002/acn3.715

  • 非アルコール性脂肪肝炎のDNP-MRIを用いた早期画像診断法の開発

    兵藤 文紀, 中田 亮輔, 江藤 比奈子, 中路 睦子, 長沼 辰弥, 村田 正治, 橋爪 誠, 松尾 政之

    日本薬学会年会要旨集   139年会 ( 2 )   265 - 265   2019.3

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  • In vivo redox metabolic imaging of mitochondria assesses disease progression in non-alcoholic steatohepatitis. Reviewed International journal

    Ryosuke Nakata, Fuminori Hyodo, Masaharu Murata, Hinako Eto, Tomoko Nakaji, Takahito Kawano, Sayoko Narahara, Keiji Yasukawa, Tomohiko Akahoshi, Morimasa Tomikawa, Makoto Hashizume

    Scientific reports   7 ( 1 )   17170 - 17170   2017.12

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    Given the rising incidence of non-alcoholic fatty liver disease (NAFLD) in both adults and children, the development of a non-invasive diagnostic method for assessing disease progression to non-alcoholic steatohepatitis (NASH) has become an important research goal. Currently available non-invasive imaging technologies are only able to assess fat accumulation in the liver. Therefore, these methods are not suitable for a precise diagnosis of NASH. The standard diagnostic technique for NASH, liver biopsy, has several drawbacks, including the higher risk of complications that accompanies invasive procedures. Here, we demonstrated that in vivo mitochondrial redox metabolism was dramatically altered at an early stage, before histopathological changes, and NASH could be accurately diagnosed by in vivo dynamic nuclear polarization-magnetic resonance imaging, with carbamoyl-PROXYL as a molecular imaging probe. In addition, this technique was feasible for the diagnosis of NASH compared with histopathological findings from biopsies. Our data reveal a novel method for monitoring the dynamics of redox metabolic changes in NAFLD/NASH.

    DOI: 10.1038/s41598-017-17447-2

  • 世界初の肥厚性硬膜炎動物モデル作成とTGF-βシグナルを標的とした新規治療法開発

    崔 訳文, 真崎 勝久, 山崎 亮, 山口 浩雄, 林田 翔太郎, 兵藤 文紀, 江藤 比奈子, 米川 智, 松下 拓也, 吉良 潤一

    神経免疫学   22 ( 1 )   86 - 86   2017.10

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  • Non-invasive evaluation of atopic dermatitis based on redox status using in vivo dynamic nuclear polarization magnetic resonance imaging. Reviewed International journal

    Hinako Eto, Gaku Tsuji, Takahito Chiba, Masutaka Furue, Fuminori Hyodo

    Free radical biology & medicine   103   209 - 215   2017.2

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    Atopic dermatitis (AD) is a chronic inflammatory condition with complex etiology, including genetic, environmental and immunologic factors. Redox imbalance caused by excessive oxidative stress has been shown to mediate disease activity of AD. Currently, an imaging technique that can monitor the redox status of the skin in vivo has not yet been developed. Consequently, we have established such a technique that can detect and visualize the redox status of the skin using in vivo dynamic nuclear polarization magnetic resonance imaging (DNP-MRI). To evaluate this technique, we utilized an AD mouse model that was generated by repeated topical application of mite antigen in NC/Nga mice. We imaged alterations in redox balance of the resulting AD skin lesions of the mice. Using in vivo DNP-MRI and non-toxic nitroxyl radicals to visualize free radicals in vivo, we revealed that AD skin lesions demonstrated more rapid decay rates of image intensity enhancement than normal skin, indicating that our technique can monitor excessive oxidative stress occurring in AD skin lesions. Therefore, this technique has the potential to provide a novel approach for evaluating disease activity of inflammatory skin diseases, including AD, from the view point of altered redox status.

    DOI: 10.1016/j.freeradbiomed.2016.12.043

  • Noninvasive mapping of the redox status of dimethylnitrosamine-induced hepatic fibrosis using in vivo dynamic nuclear polarization-magnetic resonance imaging. Reviewed International journal

    Takahito Kawano, Masaharu Murata, Fuminori Hyodo, Hinako Eto, Nuttavut Kosem, Ryosuke Nakata, Nobuhito Hamano, Jing Shu Piao, Sayoko Narahara, Tomohiko Akahoshi, Makoto Hashizume

    Scientific reports   6   32604 - 32604   2016.9

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    Hepatic fibrosis is a chronic disorder caused by viral infection and/or metabolic, genetic and cholestatic disorders. A noninvasive procedure that enables the detection of liver fibrosis based on redox status would be useful for disease identification and monitoring, and the development of treatments. However, an appropriate technique has not been reported. This study describes a novel method for assessing the redox status of the liver using in vivo dynamic nuclear polarization-magnetic resonance imaging (DNP-MRI) with the nitroxyl radical carbamoyl-PROXYL as a molecular imaging probe, which was tested in dimethylnitrosamine-treated mice as a model of liver fibrosis. Based on the pharmacokinetics of carbamoyl-PROXYL in control livers, reduction rate mapping was performed in fibrotic livers. Reduction rate maps demonstrated a clear difference between the redox status of control and fibrotic livers according to the expression of antioxidants. These findings indicate that in vivo DNP-MRI with a nitroxyl radical probe enables noninvasive detection of changes in liver redox status.

    DOI: 10.1038/srep32604

  • Development of Redox Metabolic Imaging Using Endogenous Molecules. Reviewed

    Fuminori Hyodo, Shinji Ito, Hinako Eto, Tomoko Nakaji, Keiji Yasukawa, Ryoma Kobayashi, Hideo Utsumi

    Yakugaku zasshi : Journal of the Pharmaceutical Society of Japan   136 ( 8 )   1107 - 14   2016.3

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    Redox metabolism plays a central role in maintaining homeostasis in living organisms. The electron transfer system in mitochondria produces ATP via endogenous redox molecules such as flavin mononucleotide (FMN), flavin adenine dinucleotide (FAD), and coenzyme Q10 (CoQ10), which have flavin or quinone moieties. One-electron transfer reactions convert FMN, FAD, and CoQ10 to the free radical intermediates FMNH and FADH, and CoQ10H, respectively. Dynamic nuclear polarization-magnetic resonance imaging (DNP-MRI) allows us to visualize free radicals in vitro and in vivo. We present a spectroscopic imaging technology with DNP-MRI, which enables the imaging of multiple free radical intermediates such as FADH and CoQH. DNP-MRI can also identify various endogenous free radical intermediates derived from redox transformations.

    DOI: 10.1248/yakushi.15-00234-6

  • Selective Imaging of Malignant Ascites in a Mouse Model of Peritoneal Metastasis Using in Vivo Dynamic Nuclear Polarization-Magnetic Resonance Imaging. Reviewed International journal

    Hinako Eto, Fuminori Hyodo, Kenji Nakano, Hideo Utsumi

    Analytical chemistry   88 ( 4 )   2021 - 7   2016.2

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    The presence of malignant ascites in advanced cancer patients is associated with both a poor prognosis and quality of life with a risk of abdominal infection and sepsis. Contemporary noninvasive visualization methods such as ultrasound, computed tomography, and magnetic resonance imaging (MRI) often struggle to differentiate malignant ascites from surrounding tissues. This study aimed to determine the utility of selective H2O imaging in the abdominal cavity with a free radical probe and deuterium oxide (D2O) contrast agent using in vivo dynamic nuclear polarization-MRI (DNP-MRI). Phantom imaging experiments established a linear relationship between H2O volume and image intensity using in vivo DNP-MRI. Similar results were obtained when the radical-D2O probe was used to determine selective and spatial information on H2O in vivo, modeled by the injection of saline into the abdominal cavity of mice. To demonstrate the utility of this method for disease, malignant ascites in peritoneal metastasis animal model was selected as one of the typical examples. In vivo DNP-MRI of peritoneal metastasis animal model was performed 7-21 days after intraperitoneal injection of luciferase, stably expressing the human pancreatic carcinoma (SUIT-2). The image intensity with increasing malignant ascites was significantly increased at days 7, 16, and 21. This increase corresponded to in vivo tumor progression, as measured by bioluminescent imaging. These results suggest that H2O signal enhancement in DNP-MRI using radical-D2O contrast is positively associated with the progression of dissemination and could be a useful biomarker for malignant ascites with cancer metastasis.

    DOI: 10.1021/acs.analchem.5b04821

  • Redox imaging of skeletal muscle using in vivo DNP-MRI and its application to an animal model of local inflammation. Reviewed International journal

    Hinako Eto, Fuminori Hyodo, Nutavutt Kosem, Ryoma Kobayashi, Keiji Yasukawa, Motonao Nakao, Mamoru Kiniwa, Hideo Utsumi

    Free radical biology & medicine   89   1097 - 104   2015.12

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    Disorders of skeletal muscle are often associated with inflammation and alterations in redox status. A non-invasive technique that could localize and evaluate the severity of skeletal muscle inflammation based on its redox environment would be useful for disease identification and monitoring, and for the development of treatments; however, no such technique currently exists. We describe a method for redox imaging of skeletal muscle using dynamic nuclear polarization magnetic resonance imaging (DNP-MRI), and apply this method to an animal model of local inflammation. Female C57/BL6 mice received injections of 0.5% bupivacaine into their gastrocnemius muscles. Plasma biomarkers, myeloperoxidase activity, and histological sections were assessed at 4 and 24h after bupivacaine injection to measure the inflammatory response. In vivo DNP-MRI was performed with the nitroxyl radicals carbamoyl-PROXYL (cell permeable) and carboxy-PROXYL (cell impermeable) as molecular imaging probes at 4 and 24h after bupivacaine administration. The images obtained after carbamoyl-PROXYL administration were confirmed with the results of L-band EPR spectroscopy. The plasma biomarkers, myeloperoxidase activity, and histological findings indicated that bupivacaine injection caused acute muscle damage and inflammation. DNP-MRI images of mice treated with carbamoyl-PROXYL or carboxy-PROXYL at 4 and 24h after bupivacaine injection showed similar increases in image intensity and decay rate was significantly increased at 24h. In addition, reduction rates in individual mice at 4h and 24h showed faster trends with bupivacaine injection than in their contralateral sides by image-based analysis. These findings indicate that in vivo DNP-MRI with nitroxyl radicals can non-invasively detect changes in the focal redox status of muscle resulting from locally-induced inflammation.

    DOI: 10.1016/j.freeradbiomed.2015.10.418

  • 磁気共鳴機能イメージングからセラノスティクスへの展開 次世代診断薬の創製 生体内分子・医薬品を用いた新たな代謝イメージング法の開発

    兵藤 文紀, 伊藤 慎治, 江藤 比奈子, 中路 睦子, 安川 圭司, 小林 竜馬, 内海 英雄

    日本薬学会年会要旨集   135年会 ( 1 )   147 - 147   2015.3

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  • Simultaneous and Spectroscopic Redox Molecular Imaging of Free Radical Intermediates Using in Vivo DNP-MRI Reviewed

    Fuminori Hyodo, Shinji Ito, Hinako Eto, Tomoko Nakaji, Keiji Yasukawa, Ryoma Kobayashi, Hideo Utsumi

    FREE RADICAL BIOLOGY AND MEDICINE   76   S82 - S82   2014.11

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    DOI: 10.1016/j.freeradbiomed.2014.10.289

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Presentations

  • インキュベ-ト環境を設備したDNP-MRIを用いたin vitro反応解析法

    江藤比奈子, 長沼辰弥, 田村千尋, 河野喬仁, 水田幸恵, 兵藤文紀, 村田正治

    第61回電子スピンサイエンス学会年会  2022.12 

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    Event date: 2022.12

    Language:Japanese  

    Country:Other  

    In vitro reaction analysis method using DNP-MRI equipped with an incubating environment

  • Development and basic performance evaluation of a large DNP-MRI system for preclinical in vivo redox metabolism measurement

    Hinako Eto, Tatuya Naganuma, Motonao Nakao, Masaharu Murata, Kunihiko Akahoshi, Fuminori Hyodo

    Society for Redox Biology and Medicine  2019.11 

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    Event date: 2019.11

    Language:English  

    Country:Other  

  • 超偏極MRIによる疾患応用研究—Application of Dissolution Dynamic Nuclear Polarization and in vivo Dynamic Nuclear Polarization for Animal Disease Models

    兵藤 文紀, 子安 憲一, 江藤 比奈子, Abdelazim Elsayed Elhelaly, 岩崎 遼太, 森 崇, 村田 正治, 松尾 政之

    放射線生物研究 = Radiation biology research communications : 放射線生物研究会機関誌  2021.12 

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    Country:Japan  

    Application of Dissolution Dynamic Nuclear Polarization and in vivo Dynamic Nuclear Polarization for Animal Disease Models

MISC

  • インキュベート環境を設備したDNP-MRIを用いたin vitro反応解析法

    江藤比奈子, 長沼辰弥, 田村千尋, 河野喬仁, 水田幸恵, 兵藤文紀, 兵藤文紀, 村田正治

    電子スピンサイエンス学会年会講演要旨集   2022.11

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    In vitro reaction analysis method using DNP-MRI equipped with an incubating environment

  • Comparison of redox alteration and cancer metabolism after radiation treatment of tumor using in vivo DNP-MRI and dissolution DNP-MRS

    Fuminori Hyodo, Norikazu Koyasu, Ryota Iwasaki, Hinako Eto, Abdelazim Elsayed Elhelaly, Manal Habaka, Masaharu Murata, Hiroyuki Tomita, Takashi Mori, Masayuki Matsuo

    FREE RADICAL BIOLOGY AND MEDICINE   2022.11

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    DOI: 10.1016/j.freeradbiomed.2022.10.184

  • Development of low field in vivo dynamic nuclear polarization (DNP)-MRI for large animal study and its application to acute hepatitis rat model

    Fuminori Hyodo, Hinako Eto, Tatsuya Naganuma, Norikazu Koyasu, Abdelazim Elsayed Elhelaly, Masaharu Murata, Masayuki Matsuo

    FREE RADICAL BIOLOGY AND MEDICINE   2022.2

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    DOI: 10.1016/j.freeradbiomed.2021.12.191

  • 放射線診断・治療のための生体動的偏極MRI装置によるヒドロキシラジカルのイメージング

    庄田真一, 兵藤文紀, 子安憲一, 立花葉子, 江藤比奈子, 松尾政之

    日本放射線外科学会   2021.5

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    Imaging of hydroxyl radicals by biologically dynamic nuclear polarization MRI for radiodiagnosis and treatment

  • DNP-MRIを用いた非アルコール性脂肪肝炎の早期診断へ向けたレドックスメカニズムの解明

    兵藤 文紀, 江藤 比奈子, 中路 睦子, 長沼 辰弥, 中田 亮輔, 庄田 真一, 村田 正治, 松尾 政之

    日本薬学会年会要旨集   2020.3

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    Development of redox metabolic imaging for NASH using in vivo Dynamic Nuclear Polarization MRI

  • MEMS光スキャナを適用した直径3mmサイズ共焦点内視鏡の開発

    石河範明, 河村幸則, 鈴木健, 窪田正雄, 兵藤文紀, 村田正治, 江藤比奈子, 澤田廉士, 橋爪誠

    バイオメカニクス研究センター&エレクトロニクス実装学会九州支部合同研究会   2019.12

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  • 非アルコール性脂肪肝炎のDNP-MRIを用いたレドックス代謝イメージングと代謝反応のレドックス解析

    兵藤文紀, 庄田真一, 森崇, 高須正規, 江藤比奈子, 中路睦子, 長沼辰弥, 富田弘之, 村田正治, 松尾政之

    電子スピンサイエンス学会年会講演要旨集   2019.11

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    In vivo Redox metabolic imaging of NASH model mice using DNP-MRI and its redox analysis by ESR

  • 電子スピン共鳴を利用した超偏極MRIによるヒドロキシラジカルイメージングの基礎検討

    庄田 真一, 兵藤 文紀, 子安 憲一, 立花 葉子, 江藤 比奈子, 松尾 政之

    日本癌治療学会学術集会抄録集   2019.10

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  • 生体レドックス評価による非アルコール性脂肪肝炎の早期病態評価

    中田 亮輔, 兵藤 文紀, 村田 正治, 江藤 比奈子, 赤星 朋比古, 谷合 信彦, 橋爪 誠

    日本消化器外科学会総会   2019.7

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  • DNP-MRIを用いた生体レドックス代謝イメージング:非アルコール性脂肪肝炎の早期画像診断法の開発と応用

    兵藤文紀, 兵藤文紀, 中田亮輔, 江藤比奈子, 中路睦子, 長沼辰弥, 森崇, 高須正規, 村田正治, 村田正治, 橋爪誠, 赤星朋比彦, 赤星朋比彦, 松尾政之

    日本酸化ストレス学会学術集会プログラム・抄録集   2019.5

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  • 非アルコール性脂肪肝炎のDNP-MRIを用いた早期画像診断法の開発

    兵藤 文紀, 中田 亮輔, 江藤 比奈子, 中路 睦子, 長沼 辰弥, 村田 正治, 橋爪 誠, 松尾 政之

    日本薬学会年会要旨集   2019.3

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  • ニトロキシルラジカル(tempol)を用いたアトピー性皮膚炎の評価法と治療効果の研究

    江藤比奈子, 辻学, 古江増隆, 兵藤文紀, 兵藤文紀

    電子スピンサイエンス学会年会講演要旨集   2018.11

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    Using nitroxyl radical, study of evaluation method and therapeutic effects of atopic dermatitis

  • 非アルコール性脂肪肝炎モデルマウスのin vivo DNP‐MRIによるレドックス代謝イメージング

    兵藤文紀, 中田亮輔, 江藤比奈子, 中路睦子, 長沼辰弥, 村田正治, 村田正治, 橋爪誠, 橋爪誠, 松尾政之

    電子スピンサイエンス学会年会講演要旨集   2018.11

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    Redox metabolic imaging of NASH model mice using in vivo DNP-MRI

  • プローブ型共焦点内視鏡用2次元レーザー走査ユニットによる生きたマウスの細胞画像取得 (マイクロマシン・センサシステム研究会 マイクロマシン・センサシステムとそのプロセス技術および一般)

    石河 範明, 窪田 正雄, 鈴木 健, 河村 幸則, 兵藤 文紀, 村田 正治, 江藤 比奈子, 澤田 廉士, 橋爪 誠

    電気学会研究会資料. MSS   2018.7

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    Images in living mouse cell taken by two-dimensional laser scanning unit for probe type confocal endoscope

  • DNP-MRIを用いたレドックス状態評価による非アルコール性脂肪肝炎の診断法の開発

    中田 亮輔, 兵藤 文紀, 村田 正治, 江藤 比奈子, 赤星 朋比古, 橋爪 誠

    肝臓   2018.4

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    DNP‐MRIを用いたレドックス状態評価による非アルコール性脂肪肝炎の診断法の開発

  • DNP‐MRI撮像解析によるアトピー性皮膚炎モデルマウスの皮膚深部の酸化ストレス評価

    江藤比奈子, 辻学, 千葉貴人, 古江増隆, 兵藤文紀

    日本薬学会年会要旨集(CD-ROM)   2018.3

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    DNP‐MRI撮像解析によるアトピー性皮膚炎モデルマウスの皮膚深部の酸化ストレス評価

  • in vivo DNP‐MRIによるアトピー性皮膚炎モデルマウス皮膚深部の酸化ストレス評価イメージング

    江藤比奈子, 辻学, 千葉貴人, 古江増隆, 兵藤文紀

    電子スピンサイエンス学会年会講演要旨集   2017.11

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    Imaging of oxidative stress in deep skin of atopic dermatitis model mouse by in vivo DNP-MRI

  • 世界初の肥厚性硬膜炎動物モデル作成とTGF-βシグナルを標的とした新規治療法開発

    崔 訳文, 真崎 勝久, 山崎 亮, 山口 浩雄, 林田 翔太郎, 兵藤 文紀, 江藤 比奈子, 米川 智, 松下 拓也, 吉良 潤一

    神経免疫学   2017.10

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  • プローブ型共焦点内視鏡用2次元レーザー走査ユニットによる細胞画像の取得

    石河 範明, 河村 幸則, 窪田 正雄, 兵藤 文紀, 江藤 比奈子, 村田 正治, 澤田 廉士, 橋爪 誠

    「センサ・マイクロマシンと応用システム」シンポジウム論文集 電気学会センサ・マイクロマシン部門 [編]   2017.10

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    Cell images taken by two-dimensional laser scanning unit for probe type confocal endoscope

  • 動的核偏極(DNP)‐MRIを用いた,腹膜播種転移モデルマウスにおける悪性腹水の選択的イメージング

    江藤比奈子, 兵藤文紀, 中野賢二, 内海英雄

    電子スピンサイエンス学会年会講演要旨集   2016.11

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    動的核偏極(DNP)‐MRIを用いた,腹膜播種転移モデルマウスにおける悪性腹水の選択的イメージング

  • 磁気共鳴機能イメージングからセラノスティクスへの展開 次世代診断薬の創製 生体内分子・医薬品を用いた新たな代謝イメージング法の開発

    兵藤 文紀, 伊藤 慎治, 江藤 比奈子, 中路 睦子, 安川 圭司, 小林 竜馬, 内海 英雄

    薬学雑誌   2016.8

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  • 動的核偏極(DNP)‐MRIを用いた筋肉のレドックスイメージング法の開発と局所筋炎モデル動物への応用

    江藤比奈子, 兵藤文紀, ヌタブット コセム, 小林竜馬, 安川圭司, 中尾素直, 木庭守, 内海英雄

    日本実験動物学会総会講演要旨集   2016.4

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    動的核偏極(DNP)‐MRIを用いた筋肉のレドックスイメージング法の開発と局所筋炎モデル動物への応用

  • 動的核偏極(DNP)‐MRIを用いた筋肉のレドックスイメージング法の開発と局所筋炎モデル動物への応用

    江藤比奈子, 兵藤文紀, NUTAVUTT Kosem, 小林竜馬, 安川圭司, 安川圭司, 中尾素直, 木庭守, 内海英雄

    日本薬学会年会要旨集(CD-ROM)   2016.3

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    動的核偏極(DNP)‐MRIを用いた筋肉のレドックスイメージング法の開発と局所筋炎モデル動物への応用

  • 水溶性ビタミン類の可視化と機能イメージングへの応用

    兵藤文紀, 中路睦子, 江藤比奈子, 伊藤慎治, 内海英雄

    日本生化学会大会(Web)   2015.12

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    水溶性ビタミン類の可視化と機能イメージングへの応用

  • 動的核偏極(DNP)‐MRIを用いた筋肉のレドックスイメージング法の開発と局所筋炎モデル動物への応用

    江藤比奈子, 兵藤文紀, KOSEM Nutavutt, 小林竜馬, 安川圭司, 中尾素直, 木庭守, 内海英雄

    電子スピンサイエンス学会年会講演要旨集   2015.11

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    動的核偏極(DNP)‐MRIを用いた筋肉のレドックスイメージング法の開発と局所筋炎モデル動物への応用

  • 磁気共鳴イメージングによる新たなレドックス代謝イメージング法の開発

    兵藤文紀, 伊藤慎治, 江藤比奈子, 中路睦子, 内海英雄

    日本分析化学会年会講演要旨集   2015.8

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    磁気共鳴イメージングによる新たなレドックス代謝イメージング法の開発

  • 生体動的核偏極(in vivo DNP)‐MRIを用いたフリーラジカル中間体の可視化

    兵藤文紀, 伊藤慎治, 江藤比奈子, 中路睦子, 内海英雄

    日本酸化ストレス学会学術集会プログラム・抄録集   2015.5

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    生体動的核偏極(in vivo DNP)‐MRIを用いたフリーラジカル中間体の可視化

  • DNP‐MRIによるユビキノン類の分子イメージングへ向けた検討

    江藤比奈子, 兵藤文紀, 中路睦子, 内海英雄

    日本薬学会年会要旨集(CD-ROM)   2015.3

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    DNP‐MRIによるユビキノン類の分子イメージングへ向けた検討

  • 磁気共鳴機能イメージングからセラノスティクスへの展開 次世代診断薬の創製 生体内分子・医薬品を用いた新たな代謝イメージング法の開発

    兵藤 文紀, 伊藤 慎治, 江藤 比奈子, 中路 睦子, 安川 圭司, 小林 竜馬, 内海 英雄

    日本薬学会年会要旨集   2015.3

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  • OMRIを用いた肺のレドックスイメージング:転移癌モデルマウスへの応用

    兵藤文紀, 有村直紀, 江藤比奈子, 中路睦子, 市川和洋, 山田健一, 内海英雄

    電子スピンサイエンス学会年会講演要旨集   2012.11

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    OMRIを用いた肺のレドックスイメージング:転移癌モデルマウスへの応用

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Professional Memberships

  • The Pharmaceutical Society of Japan

  • Japan Veterinary Medical Association

Research Projects

  • 炎症性筋疾患の非侵襲および高感度診断技術の開発

    Grant number:22K07744  2022 - 2024

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

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  • インキュベートしながらレドックス動態解析を短時間で行うDNP-MRIシステムの開発

    2020 - 2021

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

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    Authorship:Principal investigator  Grant type:Scientific research funding

  • 生体組織や細胞のレドックス動態解析を1/100の時間で安定かつ精確に行う為の、 ミックスラジカルプローブを用いてインキュベートしながら撮像できる DNP-MRI撮像解析システムの開発

    Grant number:JPMJTM20GU  2020 - 2021

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

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    Authorship:Principal investigator  Grant type:Scientific research funding

  • 生体計測した活性酸素種(ROS)を指標としたアトピー性皮膚炎評価法の開発

    Grant number:19K12758  2019 - 2021

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

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  • 生体計測した活性酸素種(ROS)を指標としたアトピー性皮膚炎評価法の開発

    Grant number:19K12758  2019 - 2021

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

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  • 生体内因性分子をプローブとする磁気共鳴代謝イメージング法の開発

    Grant number:16H05079  2016 - 2018

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

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