Pancreatic islet cells in microfluidic-spun hydrogel microfibers for the treatment of diabetes

被引:2
作者
Huan, Zhikun [1 ]
Li, Jingbo [1 ]
Guo, Jiahui [2 ]
Yu, Yunru [3 ]
Li, Ling [1 ,4 ]
机构
[1] Southeast Univ, Zhongda Hosp, Sch Med, Dept Endocrinol, Nanjing 210009, Peoples R China
[2] Southeast Univ, Sch Biol Sci & Med Engn, State Key Lab Bioelect, Nanjing 210096, Peoples R China
[3] Abo Akad Univ, Pharmaceut Sci Lab, Turku 20520, Finland
[4] Southeast Univ, Key Lab Environm Med Engn, Minist Educ, Nanjing 210009, Peoples R China
基金
中国国家自然科学基金;
关键词
Microfluidics; Microfiber; Type; 1; diabetes; Cell encapsulation; Tissue engineering; BROWN ADIPOSE-TISSUE; ENCAPSULATION; STRATEGIES;
D O I
10.1016/j.actbio.2024.08.047
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Islet transplantation has been developed as an effective cell therapy strategy to treat the progressive life-threatening disease Type 1 diabetes (TIDM), Te mimic the natural islets and achieve in iso Lation, hydrogel encapsulation of multiple alet cell types is the current endeavor. Here, we present a microfiber loading wah pancreatic a and 18 cells by by microfluidic mich spinning for diabetes treatme nent, Bene fiting from microfluidic technology, the the cells cells could be controllably and continuously loaded in the alginate and methacrylated hyaluronic acid (Alg HAMA) microfiber and maintained their high bioactivity. The re sultant microfiber could then bold the capacity of duad-mode glucose responsareness attributed to the glucagon and immlin secreted by the encapsulated pancreatie a and cells. After transplantation into the brown adipose tissue (BAT), these coll-laden microfibers showed successful blood glarose control in rodents and avoided the occurrence of hypoglycemia. These results conceived that the multicellular microfibers are experteil to to provide new insight into into artificial isle s & aring;et preparation. treanment, and diabetes regenerative medicine as well as tissue engineering Statement of significance The microfibers were generated with a double network of alginate and methacrylated hyaluronic acid. The microfibers could simultaneously encapsulate pancratic a and cells and showed dual-mode glucose responsiveness The cell-laden microfibers maintained a long-term hormone-releasing function in vivo Cell-laden microfibers transplanted diabetic mice could achieve glycemic control for 6 weeks. 2024 The Author(s), Published by Ehevier Lid on behalf of Acta Materialia Inc This is an open access article under the CC IIY license (http://carvecommons.org/levuses/by/4.0/)
引用
收藏
页码:149 / 160
页数:12
相关论文
共 50 条
  • [41] In vitro generation of pancreatic β-cells for diabetes treatment. I. β-like cells derived from human pluripotent stem cells
    Cierpka-Kmiec, Katarzyna
    Wronska, Agata
    Kmiec, Zbigniew
    FOLIA HISTOCHEMICA ET CYTOBIOLOGICA, 2019, 57 (01) : 1 - 14
  • [42] Stem Cells as a Source of Pancreatic Cells for Production of 3D Bioprinted Bionic Pancreas in the Treatment of Type 1 Diabetes
    Wszola, Michal
    Nitarska, Daria
    Cywoniuk, Piotr
    Gomolka, Magdalena
    Klak, Marta
    CELLS, 2021, 10 (06)
  • [43] Transgenic expression of haem oxygenase-1 in pancreatic beta cells protects non-obese mice used as a model of diabetes from autoimmune destruction and prolongs graft survival following islet transplantation
    Huang, S. H.
    Chu, C. H.
    Yu, J. C.
    Chuang, W. C.
    Lin, G. J.
    Chen, P. L.
    Chou, F. C.
    Chau, L. Y.
    Sytwu, H. K.
    DIABETOLOGIA, 2010, 53 (11) : 2389 - 2400
  • [44] 4Pi microscopy reveals an impaired three-dimensional mitochondrial network of pancreatic islet β-cells, an experimental model of type-2 diabetes
    Dlaskova, Andrea
    Spacek, Tomas
    Santorova, Jitka
    Plecita-Hlavata, Lydie
    Berkova, Zuzana
    Saudek, Frantisek
    Lessard, Mark
    Bewersdorf, Joerg
    Jezek, Petr
    BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 2010, 1797 (6-7): : 1327 - 1341
  • [45] Hypoglycemic effect of silychristin A from Silybum marianum fruit via protecting pancreatic islet cells from oxidative damage and inhibiting α-glucosidase activity in vitro and in rats with type 1 diabetes
    Qin, Ningbo
    Hu, Xu
    Li, Shengge
    Wang, Jian
    Li, Zhanlin
    Li, Dahong
    Xu, Fanxing
    Gao, Ming
    Hua, Huiming
    JOURNAL OF FUNCTIONAL FOODS, 2017, 38 : 168 - 179
  • [46] Modulation of P2 Receptors on Pancreatic beta-cells by Agonists and Antagonists: A Molecular Target for Type 2 Diabetes Treatment
    Furtado Pacheco, Paulo Anastacio
    Braga Ferreira, Leonardo Gomes
    Alves, Luiz Anastacio
    Faria, Robson Xavier
    CURRENT DIABETES REVIEWS, 2013, 9 (03) : 228 - 236
  • [47] Three-dimensional printed polymeric system to encapsulate human mesenchymal stem cells differentiated into islet-like insulin-producing aggregates for diabetes treatment
    Sabek, Omaima M.
    Farina, Marco
    Fraga, Daniel W.
    Afshar, Solmaz
    Ballerini, Andrea
    Filgueira, Carly S.
    Thekkedath, Usha R.
    Grattoni, Alessandro
    Gaber, A. Osama
    JOURNAL OF TISSUE ENGINEERING, 2016, 7
  • [48] The effect of molecular weights of microencapsulating polymers on viability of mouse-cloned pancreatic -cells: biomaterials, osmotic forces and potential applications in diabetes treatment
    Mooranian, Armin
    Takechi, Ryu
    Jamieson, Emma
    Morahan, Grant
    Al-Salami, Hani
    PHARMACEUTICAL DEVELOPMENT AND TECHNOLOGY, 2018, 23 (02) : 145 - 150
  • [49] Treatment With Naringenin Elevates the Activity of Transcription Factor Nrf2 to Protect Pancreatic β-Cells From Streptozotocin-Induced Diabetes in vitro and in vivo
    Rajappa, Rashmi
    Sireesh, Dornadula
    Salai, Magesh B.
    Ramkumar, Kunka M.
    Sarvajayakesavulu, Suryanarayanan
    Madhunapantula, SubbaRao V.
    FRONTIERS IN PHARMACOLOGY, 2019, 9
  • [50] Combined treatment with a dipeptidyl peptidase-IV inhibitor (sitagliptin) and an angiotensin II type 1 receptor blocker (losartan) promotes islet regeneration via enhanced differentiation of pancreatic progenitor cells
    Liang, J.
    Leung, K. K.
    Lam, S. Y.
    Leung, P. S.
    DIABETES OBESITY & METABOLISM, 2012, 14 (09) : 842 - 851