A gelatin hydrogel nonwoven fabric improves outcomes of subcutaneous islet transplantation

被引:0
|
作者
Norifumi Kanai
Akiko Inagaki
Yasuhiro Nakamura
Takehiro Imura
Hiroaki Mitsugashira
Ryusuke Saito
Shigehito Miyagi
Kimiko Watanabe
Takashi Kamei
Michiaki Unno
Yasuhiko Tabata
Masafumi Goto
机构
[1] Tohoku University Graduate School of Medicine,Department of Surgery
[2] Tohoku University Graduate School of Medicine,Division of Transplantation and Regenerative Medicine
[3] Tohoku Medical and Pharmaceutical University,Division of Pathology, Graduate School of Medicine
[4] Kyoto University,Laboratory of Biomaterials, Department of Regeneration Science and Engineering, Institute for Life and Medical Sciences (LiMe)
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Subcutaneous islet transplantation is a promising treatment for severe diabetes; however, poor engraftment hinders its prevalence. We previously reported that a recombinant peptide (RCP) enhances subcutaneous islet engraftment. However, it is impractical for clinical use because RCP must be removed when transplanting islets. We herein investigated whether a novel bioabsorbable gelatin hydrogel nonwoven fabric (GHNF) could improve subcutaneous islet engraftment. A silicon spacer with or without GHNF was implanted into the subcutaneous space of diabetic mice. Syngeneic islets were transplanted into the pretreated space or intraportally (Ipo group). Blood glucose, intraperitoneal glucose tolerance, immunohistochemistry, CT angiography and gene expression were evaluated. The cure rate and glucose tolerance of the GHNF group were significantly better than in the control and Ipo groups (p < 0.01, p < 0.05, respectively). In the GHNF group, a limited increase of vWF-positive vessels was detected in the islet capsule, whereas laminin (p < 0.05), collagen III and IV were considerably enhanced. TaqMan arrays revealed a significant upregulation of 19 target genes (including insulin-like growth factor-2) in the pretreated space. GHNF markedly improved the subcutaneous islet transplantation outcomes, likely due to ECM compensation and protection of islet function by various growth factors, rather than enhanced neovascularization.
引用
收藏
相关论文
共 50 条
  • [21] Subcutaneous device-free islet transplantation
    Zhou, Xudong
    Xu, Zhiran
    You, Yanqiu
    Yang, Wangrong
    Feng, Bingzheng
    Yang, Yuwei
    Li, Fujun
    Chen, Jibing
    Gao, Hongjun
    FRONTIERS IN IMMUNOLOGY, 2023, 14
  • [22] Islet transplantation at subcutaneous versus muscular site
    Juang, JH
    Hsu, BRS
    Kuo, CH
    CELL TRANSPLANTATION, 2003, 12 (02) : 186 - 186
  • [24] From aesthetic medicine to islet transplantation: nanofat improves the success of islet transplantation
    Wrublewsky, S.
    Weinzierl, A.
    Menger, M.
    Laschke, M.
    Ampofo, E.
    DIABETOLOGIA, 2024, 67 : S224 - S224
  • [25] A gelatin hydrogel for corneal stromal transplantation in rabbit
    Kawakita, Tetsuya
    Higa, Kazunari
    Shimmura, Shigeto
    Shimazaki, Jun
    Tsubota, Kazuo
    INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2014, 55 (13)
  • [26] Novel Fusion Protein Targeting Mitochondrial DNA Improves Pancreatic Islet Functional Potency and Islet Transplantation Outcomes
    Danobeitia, Juan S.
    Chlebeck, Peter J.
    Shokolenko, Inna
    Ma, Xiaobo
    Wilson, Glenn
    Fernandez, Luis A.
    CELL TRANSPLANTATION, 2017, 26 (11) : 1742 - 1754
  • [27] In situ application of hydrogel-type fibrin-islet composite optimized for rapid glycemic control by subcutaneous xenogeneic porcine islet transplantation
    Kim, Jung-Sik
    Lim, Jong-Hyung
    Nam, Hye-Young
    Lim, Hyun-Ju
    Shin, Jun-Seop
    Shin, Jin-Young
    Ryu, Ju-Hee
    Kim, Kwangmeyung
    Kwon, Ick-Chan
    Jin, Sang-Man
    Kim, Hang-Rae
    Kim, Sang-Joon
    Park, Chung-Gyu
    JOURNAL OF CONTROLLED RELEASE, 2012, 162 (02) : 382 - 390
  • [28] Insulin independence following islet transplantation improves long-term metabolic outcomes
    Stanley, Adam K.
    Duncan, Kirsty
    Anderson, Debbie
    Irvine, Lora
    Sutherland, Andrew
    Forbes, Shareen
    Casey, John
    DIABETIC MEDICINE, 2024, 41 (02)
  • [29] Therapeutic neo-islet engineering in subcutaneous site by islet sheet transplantation
    Ohashi, K.
    Yamashita, S.
    Shimizu, H.
    Ise, K.
    Utoh, R.
    Masuda, T.
    Gotoh, M.
    Okano, T.
    JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 2012, 6 : 120 - 120
  • [30] Bile Duct Regeneration with an Artificial Bile Duct Made of Gelatin Hydrogel Nonwoven Fabrics
    Uemoto, Yusuke
    Taura, Kojiro
    Nakamura, Daichi
    Xuefeng, Li
    Nam, Nguyen Hai
    Kimura, Yusuke
    Yoshino, Kenji
    Fuji, Hiroaki
    Yoh, Tomoaki
    Nishio, Takahiro
    Yamamoto, Gen
    Koyama, Yukinori
    Seo, Satoru
    Tsuruyama, Tatsuaki
    Iwaisako, Keiko
    Uemoto, Shinji
    Tabata, Yasuhiko
    Hatano, Etsuro
    TISSUE ENGINEERING PART A, 2022, 28 (17-18) : 737 - 748