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用A20对次优胰岛移植物进行基因工程改造可保留β细胞质量和功能。

Genetic engineering of a suboptimal islet graft with A20 preserves beta cell mass and function.

作者信息

Grey Shane T, Longo Christopher, Shukri Tala, Patel Virendra I, Csizmadia Eva, Daniel Soizic, Arvelo Maria B, Tchipashvili Vaja, Ferran Christiane

机构信息

Immunobiology Research Center, Department of Surgery and Medicine, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA 02215, USA.

出版信息

J Immunol. 2003 Jun 15;170(12):6250-6. doi: 10.4049/jimmunol.170.12.6250.

DOI:10.4049/jimmunol.170.12.6250
PMID:12794157
Abstract

Transplantation of an excessive number of islets of Langerhans (two to four pancreata per recipient) into patients with type I diabetes is required to restore euglycemia. Hypoxia, nutrient deprivation, local inflammation, and the beta cell inflammatory response (up-regulation of NF-kappaB-dependent genes such as inos) result in beta cell destruction in the early post-transplantation period. Genetic engineering of islets with anti-inflammatory and antiapoptotic genes may prevent beta cell loss and primary nonfunction. We have shown in vitro that A20 inhibits NF-kappaB activation in islets and protects from cytokine- and death receptor-mediated apoptosis. In vivo, protection of newly transplanted islets would reduce the number of islets required for successful transplantation. Transplantation of 500 B6/AF(1) mouse islets into syngeneic, diabetic recipients resulted in a cure rate of 100% within 5 days. Transplantation of 250 islets resulted in a cure rate of only 20%. Transplantation of 250 islets overexpressing A20 resulted in a cure rate of 75% with a mean time to cure of 5.2 days, comparable to that achieved with 500 islets. A20-expressing islets preserve functional beta cell mass and are protected from cell death. These data demonstrate that A20 is an ideal cytoprotective gene therapy candidate for islet transplantation.

摘要

为恢复正常血糖水平,需要将过量的胰岛(每位受体移植两到四个胰腺)移植到I型糖尿病患者体内。缺氧、营养缺乏、局部炎症以及β细胞炎症反应(如inos等NF-κB依赖性基因的上调)会导致移植后早期β细胞破坏。用抗炎和抗凋亡基因对胰岛进行基因工程改造可能会防止β细胞丢失和原发性无功能。我们已在体外证明,A20可抑制胰岛中的NF-κB激活,并保护其免受细胞因子和死亡受体介导的细胞凋亡。在体内,保护新移植的胰岛会减少成功移植所需的胰岛数量。将500个B6/AF(1)小鼠胰岛移植到同基因糖尿病受体中,5天内治愈率达100%。移植250个胰岛的治愈率仅为20%。移植250个过表达A20的胰岛,治愈率达75%,平均治愈时间为5.2天,与移植500个胰岛的效果相当。表达A20的胰岛保留了功能性β细胞群,并免受细胞死亡。这些数据表明,A20是胰岛移植理想的细胞保护基因治疗候选物。

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Genetic engineering of a suboptimal islet graft with A20 preserves beta cell mass and function.用A20对次优胰岛移植物进行基因工程改造可保留β细胞质量和功能。
J Immunol. 2003 Jun 15;170(12):6250-6. doi: 10.4049/jimmunol.170.12.6250.
2
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