日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Hypoxic Conditions Promote Cartilage Repair in a Rat Knee Osteochondral Defect Model via Hypoxia-Inducible Factor-1α.

缺氧条件通过缺氧诱导因子-1α促进大鼠膝骨软骨缺损模型中的软骨修复

Nakamura Kei, Inoue Atsuo, Arai Yuji, Nakagawa Shuji, Fujii Yuta, Cha Ryota, Sugie Keisuke, Hayashi Kentaro, Kishida Tsunao, Mazda Osam, Takahashi Kenji

Investigation of the stemness and wound-healing potential of long-term cryopreserved stromal vascular fraction cells

研究长期冷冻保存的基质血管成分细胞的干性和伤口愈合潜能

Inafuku, Naoki; Sowa, Yoshihiro; Kishida, Tsunao; Sawai, Seiji; Ntege, Edward Hosea; Numajiri, Toshiaki; Yamamoto, Kenta; Shimizu, Yusuke; Mazda, Osam

Intermittent hypoxic stimulation promotes efficient expression of Hypoxia-inducible factor-1α and exerts a chondroprotective effect in an animal osteoarthritis model.

间歇性缺氧刺激可促进缺氧诱导因子-1α的有效表达,并在动物骨关节炎模型中发挥软骨保护作用

Cha Ryota, Nakagawa Shuji, Arai Yuji, Inoue Atsuo, Okubo Naoki, Fujii Yuta, Kaihara Kenta, Nakamura Kei, Kishida Tsunao, Mazda Osam, Takahashi Kenji

TGF-β inhibitor treatment of H₂O₂-induced cystitis models provides biochemical mechanism for elucidating interstitial cystitis/painful bladder syndrome patients

TGF-β抑制剂治疗H₂O₂诱导的膀胱炎模型,为阐明间质性膀胱炎/膀胱疼痛综合征患者的生化机制提供了依据。

Taga, Hideto; Kishida, Tsunao; Inoue, Yuta; Yamamoto, Kenta; Kotani, Shin-Ichiro; Masashi, Tsujimoto; Ukimura, Osamu; Mazda, Osam

Direct Conversion of Human Fibroblasts into Adipocytes Using a Novel Small Molecular Compound: Implications for Regenerative Therapy for Adipose Tissue Defects

利用新型小分子化合物将人成纤维细胞直接转化为脂肪细胞:对脂肪组织缺损再生疗法的启示

Sowa, Yoshihiro; Kishida, Tsunao; Louis, Fiona; Sawai, Seiji; Seki, Makoto; Numajiri, Toshiaki; Takahashi, Kenji; Mazda, Osam

The tetraspanin CD81 mediates the growth and metastases of human osteosarcoma

四跨膜蛋白CD81介导人类骨肉瘤的生长和转移

Mizoshiri, Naoki; Shirai, Toshiharu; Terauchi, Ryu; Tsuchida, Shinji; Mori, Yuki; Hayashi, Daichi; Kishida, Tsunao; Arai, Yuji; Mazda, Osam; Nakanishi, Tohru; Kubo, Toshikazu

Nanogel tectonic porous 3D scaffold for direct reprogramming fibroblasts into osteoblasts and bone regeneration

用于将成纤维细胞直接重编程为成骨细胞和促进骨再生的纳米凝胶结构多孔三维支架

Sato, Yoshiki; Yamamoto, Kenta; Horiguchi, Satoshi; Tahara, Yoshiro; Nakai, Kei; Kotani, Shin-Ichiro; Oseko, Fumishige; Pezzotti, Giuseppe; Yamamoto, Toshiro; Kishida, Tsunao; Kanamura, Narisato; Akiyoshi, Kazunari; Mazda, Osam

Direct Conversion of Human Fibroblasts into Schwann Cells that Facilitate Regeneration of Injured Peripheral Nerve In Vivo.

将人类成纤维细胞直接转化为雪旺细胞,从而促进体内受损周围神经的再生

Sowa Yoshihiro, Kishida Tsunao, Tomita Koichi, Yamamoto Kenta, Numajiri Toshiaki, Mazda Osam