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LEA29Y expression in transgenic neonatal porcine islet-like cluster promotes long-lasting xenograft survival in humanized mice without immunosuppressive therapy

机译:转基因新生猪胰岛样簇中的LEA29Y表达可促进人源化小鼠的长期异种移植存活而无需进行免疫抑制治疗

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摘要

Genetically engineered pigs are a promising source for islet cell transplantation in type 1 diabetes, but the strong human anti-pig immune response prevents its successful clinical application. Here we studied the efficacy of neonatal porcine islet-like cell clusters (NPICCs) overexpressing LEA29Y, a high-affinity variant of the T cell co-stimulation inhibitor CTLA-4Ig, to engraft and restore normoglycemia after transplantation into streptozotocin-diabetic NOD-SCID IL2rγ−/− (NSG) mice stably reconstituted with a human immune system. Transplantation of INSLEA29Y expressing NPICCs resulted in development of normal glucose tolerance (70.4%) and long-term maintenance of normoglycemia without administration of immunosuppressive drugs. All animals transplanted with wild-type NPICCs remained diabetic. Immunohistological examinations revealed a strong peri- and intragraft infiltration of wild-type NPICCs with human CD45+ immune cells consisting of predominantly CD4+ and CD8+ lymphocytes and some CD68+ macrophages and FoxP3+ regulatory T cells. Significantly less infiltrating lymphocytes and only few macrophages were observed in animals transplanted with INSLEA29Y transgenic NPICCs. This is the first study providing evidence that beta cell-specific LEA29Y expression is effective for NPICC engraftment in the presence of a humanized immune system and it has a long-lasting protective effect on inhibition of human anti-pig xenoimmunity. Our findings may have important implications for the development of a low-toxic protocol for porcine islet transplantation in patients with type 1 diabetes.
机译:基因工程猪是1型糖尿病胰岛细胞移植的有前途的来源,但是强大的人类抗猪免疫反应阻碍了其成功的临床应用。在这里,我们研究了过表达LEA29Y(T细胞共刺激抑制剂CTLA-4Ig的高亲和力变体)的新生猪胰岛样细胞簇(NPICCs)移植并恢复链脲佐菌素-糖尿病NOD-SCID后正常血糖的功效IL2rγ-/-(NSG)小鼠稳定地重建了人类免疫系统。表达INSLEA29Y的NPICCs的移植导致正常的葡萄糖耐量(70.4%)的发展和正常血糖的长期维持,而无需使用免疫抑制药物。移植有野生型NPICC的所有动物均保持糖尿病状态。免疫组织学检查显示,野生型NPICC的人周围CD45 + 免疫细胞主要由CD4 + 和CD8 + 组成淋巴细胞和一些CD68 + 巨噬细胞以及FoxP3 + 调节性T细胞。在移植了INSLEA29Y转基因NPICC的动物中,观察到的浸润淋巴细胞少得多,巨噬细胞也很少。这是第一项提供证据的证据,表明在存在人源化免疫系统的情况下,β细胞特异性LEA29Y表达对于NPICC植入有效,并且对抑制人的抗猪异种免疫具有持久的保护作用。我们的发现可能对开发1型糖尿病患者的猪胰岛低毒方案具有重要意义。

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