异种移植
单宁酸
促炎细胞因子
先天免疫系统
免疫学
免疫系统
小岛
生物
炎症
移植
医学
糖尿病
内科学
内分泌学
植物
作者
Jessie M. Barra,Veronika Kozlovskaya,Jessica D. Kepple,Karen Seeberger,Purushothaman Kuppan,Chad S. Hunter,Gregory S. Korbutt,Eugenia Kharlampieva,Hubert M. Tse
摘要
BACKGROUND: Islet transplantation with neonatal porcine islets (NPIs) is a promising treatment for type 1 diabetes (T1D), but immune rejection poses a major hurdle for clinical use. Innate immune-derived reactive oxygen species (ROS) synthesis can facilitate islet xenograft destruction and enhance adaptive immune responses. METHODS: To suppress ROS-mediated xenograft destruction, we utilized nanothin encapsulation materials composed of multilayers of tannic acid (TA), an antioxidant, and a neutral polymer, poly(N-vinylpyrrolidone) (PVPON). We hypothesized that (PVPON/TA)-encapsulated NPIs will maintain euglycemia and dampen proinflammatory innate immune responses following xenotransplantation. RESULTS: macrophages and dendritic cells. Similar alterations in immune responses were observed following xenotransplantation into immunocompetent NOD mice. CONCLUSION: Our data suggest that (PVPON/TA) encapsulation of NPIs is an effective strategy to decrease inflammatory innate immune signals involved in NPI xenograft responses through STAT1/6 modulation without compromising islet function.
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