Risbud M V, Bhonde R R
Tissue Engineering and Banking Laboratory, National Centre for Cell Sciences, Ganeshkhind, Pune, India.
J Biomater Sci Polym Ed. 2001;12(11):1243-52. doi: 10.1163/156856201753395770.
Incidence of Type I diabetes is increasing globally and has become a major health concern. There is enough evidence suggesting involvement of autoimmunity in destruction of insulin-producing islets of langerhans which leads to impaired glucose homeostasis. Islet transplantation is one of the approaches that received wide attention. Due to the autoimmune nature of the disease. strategies to protect transplanted islet graft from rejection are sought. Immunoisolation of islets inside semipermeable biocompatible materials is amongst them. Natural biopolymers have been used extensively as immunoisolation materials due to their satisfactory biocompatiblity and tissue tolerance. Here we attempt to address the need for islet immunoisolation and our experience in using natural biopolymers such as chitosan, cellulose and alginate for this application.
全球范围内,I型糖尿病的发病率正在上升,已成为一个主要的健康问题。有充分证据表明,自身免疫参与了破坏产生胰岛素的胰岛细胞,从而导致葡萄糖稳态受损。胰岛移植是备受广泛关注的方法之一。由于该疾病的自身免疫性质,人们一直在寻求保护移植胰岛移植物免受排斥的策略。将胰岛免疫隔离于半透性生物相容性材料内部就是其中一种策略。天然生物聚合物因其令人满意的生物相容性和组织耐受性,已被广泛用作免疫隔离材料。在此,我们试图满足胰岛免疫隔离的需求,并分享我们在将壳聚糖、纤维素和藻酸盐等天然生物聚合物用于此应用方面的经验。