2025/03/26 更新

写真a

スズキ ユウジ
鈴木 佑治
SUZUKI Yuji
所属
大学院医学系研究科 附属医学教育研究支援センター 先端領域支援部門 助教
大学院担当
大学院医学系研究科
学部担当
医学部 医学科
職名
助教
外部リンク

学位 2

  1. 博士(医学) ( 2024年12月   名古屋大学 ) 

  2. 学士(医学) ( 2018年3月   順天堂大学 ) 

受賞 1

  1. 若手優秀発表賞

    2023年10月   日本生化学会  

 

論文 8

  1. Systemic administrations of protamine heal subacute spinal cord injury in mice 査読有り Open Access

    Ozaki, T; Sugie, T; Suzuki, Y; Uchimura, K; Suzui, M; Sakamoto, K; Shirane, M; Kadomatsu, K

    NEUROSCIENCE RESEARCH   212 巻   頁: 11 - 19   2025年3月

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    記述言語:英語   出版者・発行元:Neuroscience Research  

    Spinal cord injury (SCI) results in damage to neural circuits that cause long-term locomotor and sensory disability. The objective of the present study is to evaluate whether a clinical drug, protamine, can be employed as a therapeutic agent for SCI. First, we examined the rescue effect of protamine on dystrophic endballs (DEs) cultured on a chondroitin sulfate (CS) gradient coating. Consequently, axons with DE, which are unable to grow through the CS barrier, resumed growth after protamine treatment and were able to pass through the barrier. In addition, we tested whether protamine resolves the DE phenotype, accumulation of autophagosomes. The results demonstrated that protamine has significantly reduced the density of LC3 in DEs. Subsequently, mice were administered 1 mg/kg protamine via the tail vein one week following a contusion injury to the thoracic spinal cord. The hindlimb movements of the mice were evaluated in order to assess the therapeutic effect of protamine. Eleven venous administrations of protamine improved the symptoms. The current study has demonstrated that protamine cancels the CS inhibitory effect on axonal regrowth. Administrations of protamine were observed to alleviate hindlimb motor dysfunction in SCI mice. Our results suggest an effective therapeutic agent for SCI and a possibility for drug repositioning. It would be of interest to see if protamine also exerts a therapeutic effect in brain injury.

    DOI: 10.1016/j.neures.2024.12.001

    Open Access

    Web of Science

    Scopus

    PubMed

  2. Identification of APBB1 as a substrate for anaplastic lymphoma kinase 査読有り

    Suzuki, Y; Tsubota, S; Kadomatsu, K; Sakamoto, K

    JOURNAL OF BIOCHEMISTRY     2024年8月

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    記述言語:英語  

    DOI: 10.1093/jb/mvae055

    Web of Science

    PubMed

  3. Glypican-2 as the Regeneration-Associated Gene (RAG) 招待有り 査読有り

    Journal of Experimental Neurology     2023年8月

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    記述言語:英語  

  4. Glypican-2 defines age-dependent axonal response to chondroitin sulfate 査読有り

    Experimental Neurology     2023年5月

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    記述言語:英語  

  5. Towards the in vivo identification of protein–protein interactions 招待有り 査読有り

    Journal of biochemistry     2023年2月

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    担当区分:筆頭著者   記述言語:英語  

  6. Close association of polarization and LC3, a marker of autophagy, in axon determination in mouse hippocampal neurons 査読有り

    Experimental Neurology     2022年5月

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    記述言語:英語  

  7. Dermatan sulphate is an activating ligand of anaplastic lymphoma kinase 査読有り

    Journal of biochemistry     2021年7月

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    記述言語:英語  

  8. Type IIa RPTPs and Glycans: Roles in Axon Regeneration and Synaptogenesis 招待有り 査読有り

    International Journal of Molecular Sciences     2021年5月

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    記述言語:英語  

▼全件表示

書籍等出版物 1

  1. 最先端ナノライフシステム研究

    ( 担当: 分担執筆)

    2022年3月 

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    記述言語:日本語