Zhang Meishuang, Du Hongwei, Guan Yueqi, Liu Jingyue, Wang Sushan, Li Haoran, Zhang Wenyou, Han Hao, Zhang Ming, Chen Li
Department of Pharmacology, College of Basic Medical Sciences, School of Nursing, Jilin University, Changchun, China.
Research Institution of Paediatrics, Department of Pediatric Endocrinology, The First Clinical Hospital Affiliated to Jilin University, Changchun, China.
Front Bioeng Biotechnol. 2022 Jun 30;10:927348. doi: 10.3389/fbioe.2022.927348. eCollection 2022.
At present, islet cells transplantation was limited by the way in which islet cells are implanted into the body, their ability to adapt to the microenvironment and the maintenance time for relieving diabetic symptoms. In order to solve this problem, we made PDA-PLGA scaffold loaded with islet cells and used it for skeletal muscle transplantation to investigate its therapeutic effect in the treatment of diabetes. The PLGA scaffold was prepared by the electrospinning method, and modified by polydopamine coating. A rat diabetic model was established to evaluate the efficacy of PDA-PLGA scaffold loaded with RINm5f islet cells through skeletal muscle transplantation. The results showed that the PDA-PLGA scaffold has good biosafety performance. At the same time, transplantation of the stent to the skeletal muscle site had little effect on the serum biochemical indicators of rats, which was conducive to angiogenesis. The PDA-PLGA scaffold had no effect on the secretory function of pancreatic islet cells. The PDA-PLGA scaffold carrying RINm5f cells was transplanted into the skeletal muscle of type I diabetic rats. 1 week after the transplantation of the PDA-PLGA cell scaffold complex, the blood glucose of the treatment group was significantly lower than that of the model group ( < 0.001) and lasted for approximately 3 weeks, which further indicated the skeletal muscle transplantation site was a new choice for islet cell transplantation in the future.
目前,胰岛细胞移植受到胰岛细胞植入体内的方式、其适应微环境的能力以及缓解糖尿病症状的维持时间的限制。为了解决这个问题,我们制备了负载胰岛细胞的PDA-PLGA支架,并将其用于骨骼肌移植,以研究其在糖尿病治疗中的疗效。PLGA支架采用静电纺丝法制备,并通过聚多巴胺涂层进行改性。建立大鼠糖尿病模型,通过骨骼肌移植评估负载RINm5f胰岛细胞的PDA-PLGA支架的疗效。结果表明,PDA-PLGA支架具有良好的生物安全性能。同时,将支架移植到骨骼肌部位对大鼠血清生化指标影响较小,有利于血管生成。PDA-PLGA支架对胰岛细胞的分泌功能没有影响。将携带RINm5f细胞的PDA-PLGA支架移植到I型糖尿病大鼠的骨骼肌中。PDA-PLGA细胞支架复合体移植1周后,治疗组血糖明显低于模型组(<0.001),并持续约3周,这进一步表明骨骼肌移植部位是未来胰岛细胞移植的新选择。