Department of Regenerative Medicine and Transplantation, Faculty of Medicine, Fukuoka University, Fukuoka, Japan.
Center for Regenerative Medicine, Fukuoka University Hospital, Fukuoka, Japan.
Tissue Eng Part C Methods. 2023 Apr;29(4):144-153. doi: 10.1089/ten.TEC.2023.0020.
Islet transplantation is a useful therapeutic choice for severe diabetes mellitus; however, limited donor supplies have interfered with the use of this treatment. Therefore, the establishment of alternative donor sources and engineered tissue, which enables to produce appropriate insulin for controlling blood glucose, is an important challenge. The adult pig is a promising and feasible donor source and materials for the engineered tissue for the clinical setting among various candidates. The recent progress of gene-editing technology contributes to possible clinical porcine xenotransplantation, including porcine islet xenotransplantation. For the success of future clinical porcine islet xenotransplantation, establishing an islet isolation technique for acquiring adequate, good-quality porcine islets is equally important to use a gene-edited pig. However, the characteristics of porcine islets are different from other species; therefore, establishing a suitable technique for porcine islets is challenging. Impact statement Recent technological progress promotes the feasibility of xenotransplantation, including islet xenotransplantation, for clinical setting. Adult pig is a promising and feasible donor source for islet xenotransplantation and engineered tissue, which enables to control blood glucose in recipients. It is important to acquire porcine islets in good qualities for the promotion, however, establishing a technique for adult porcine islet isolation is important but challenging because of the vulnerability of adult porcine islets. Deciding the proper timing of stopping pancreatic digestion is one of the important factors for obtaining adult porcine islets in good quality.
胰岛移植是治疗严重糖尿病的一种有效治疗选择;然而,供体有限的供应限制了这种治疗的应用。因此,建立替代供体来源和工程组织,使其能够产生适当的胰岛素来控制血糖,是一个重要的挑战。成年猪是一种很有前途和可行的供体来源和工程组织材料,适用于各种候选者的临床环境。基因编辑技术的最新进展有助于临床猪异种移植的实现,包括猪胰岛异种移植。为了未来临床猪胰岛异种移植的成功,建立一种胰岛分离技术来获取足够的、高质量的猪胰岛与使用基因编辑猪同样重要。然而,猪胰岛的特性与其他物种不同;因此,建立一种适合猪胰岛的技术具有挑战性。影响声明 最近的技术进步促进了异种移植的可行性,包括胰岛异种移植,适用于临床环境。成年猪是胰岛异种移植和工程组织的一种很有前途和可行的供体来源,能够使接受者的血糖得到控制。为了促进异种移植的发展,获取高质量的猪胰岛非常重要,然而,建立一种成年猪胰岛分离技术非常重要但具有挑战性,因为成年猪胰岛很脆弱。决定停止胰腺消化的适当时间是获得高质量成年猪胰岛的重要因素之一。