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胰岛细胞移植到棕色脂肪组织中可以延迟免疫排斥。

Islet transplantation into brown adipose tissue can delay immune rejection.

机构信息

Comprehensive Diabetes Center.

Department of Medicine, Division of Endocrinology, Diabetes and Metabolism.

出版信息

JCI Insight. 2022 Feb 22;7(4):e152800. doi: 10.1172/jci.insight.152800.

Abstract

Type 1 diabetes is an autoimmune disease characterized by insulin-producing β cell destruction. Although islet transplantation restores euglycemia and improves patient outcomes, an ideal transplant site remains elusive. Brown adipose tissue (BAT) has a highly vascularized and antiinflammatory microenvironment. Because these tissue features can promote islet graft survival, we hypothesized that islets transplanted into BAT will maintain islet graft and BAT function while delaying immune-mediated rejection. We transplanted syngeneic and allogeneic islets into BAT or under the kidney capsule of streptozotocin-induced diabetic NOD.Rag and NOD mice to investigate islet graft function, BAT function, metabolism, and immune-mediated rejection. Islet grafts within BAT restored euglycemia similarly to kidney capsule controls. Islets transplanted in BAT maintained expression of islet hormones and transcription factors and were vascularized. Compared with those in kidney capsule and euglycemic mock-surgery controls, no differences in glucose or insulin tolerance, thermogenic regulation, or energy expenditure were observed with islet grafts in BAT. Immune profiling of BAT revealed enriched antiinflammatory macrophages and T cells. Compared with the kidney capsule control, there were significant delays in autoimmune and allograft rejection of islets transplanted in BAT, possibly due to increased antiinflammatory immune populations. Our data support BAT as an alternative islet transplant site that may improve graft survival.

摘要

1 型糖尿病是一种自身免疫性疾病,其特征是胰岛素产生的β细胞破坏。虽然胰岛移植可以恢复血糖正常并改善患者的预后,但理想的移植部位仍然难以捉摸。棕色脂肪组织(BAT)具有高度血管化和抗炎的微环境。由于这些组织特征可以促进胰岛移植物的存活,我们假设将胰岛移植到 BAT 中可以维持胰岛移植物和 BAT 的功能,同时延缓免疫介导的排斥反应。我们将同基因和同种异体胰岛移植到链脲佐菌素诱导的糖尿病 NOD.Rag 和 NOD 小鼠的 BAT 或肾包膜下,以研究胰岛移植物功能、BAT 功能、代谢和免疫介导的排斥反应。BAT 内的胰岛移植物恢复血糖正常的情况与肾包膜对照相似。BAT 中移植的胰岛保持胰岛激素和转录因子的表达,并具有血管化。与肾包膜和血糖模拟手术对照相比,BAT 中的胰岛移植物在葡萄糖或胰岛素耐量、生热调节或能量消耗方面没有差异。BAT 的免疫分析显示富含抗炎巨噬细胞和 T 细胞。与肾包膜对照相比,BAT 中移植的胰岛的自身免疫和同种异体排斥反应明显延迟,这可能是由于抗炎免疫细胞增多所致。我们的数据支持 BAT 作为替代胰岛移植部位的可能性,可能会改善移植物的存活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ddf/8876467/e7abb9bdc5be/jciinsight-7-152800-g246.jpg

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