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胰岛素基因工程化的支持细胞可降低糖尿病小鼠的血糖

Sertoli Cells Engineered to Express Insulin to Lower Blood Glucose in Diabetic Mice.

机构信息

Department of Cell Biology and Biochemistry, Texas Tech University Health Sciences Center , Lubbock, Texas.

出版信息

DNA Cell Biol. 2018 Aug;37(8):680-690. doi: 10.1089/dna.2017.3937. Epub 2018 Jun 21.

Abstract

Long-term survival of allo- and xenotransplanted immune-privileged Sertoli cells (SCs) is well documented suggesting that SCs can be used to deliver foreign proteins for cell-based gene therapy. The aim of this study was to use a lentivirus carrying proinsulin cDNA to achieve stable expression and lowering of blood glucose levels (BGLs). A SC line transduced with the lentivirus (MSC-LV-mI) maintained stable insulin expression in vitro. These MSC-LV-mI cells were transplanted and grafts were analyzed for cell survival, continued proinsulin mRNA, and insulin protein expression. All grafts contained MSC-LV-mI cells that expressed proinsulin mRNA and insulin protein. Transplantation of MSC-LV-mI cells into diabetic mice significantly lowered BGLs for 4 days after transplantation. Interestingly, in three transplanted SCID mice and one transplanted BALB/c mouse, the BGLs again significantly lowered by day 50 and 70, respectively. This is the first time SC transduced with a lentiviral vector was able to stably express insulin and lower BGLs. In conclusion, a SC line can be modified to stably express therapeutic proteins (e.g., insulin), thus taking us one step further in the use of SCs as an immune-privileged vehicle for cell-based gene therapy.

摘要

长期存活的同种和异种移植免疫豁免的支持细胞(SCs)有很好的记录,这表明SCs 可以用来传递外源蛋白进行基于细胞的基因治疗。本研究的目的是使用携带胰岛素原 cDNA 的慢病毒来实现稳定的表达和降低血糖水平(BGL)。转导慢病毒的 SC 系(MSC-LV-mI)在体外维持稳定的胰岛素表达。这些 MSC-LV-mI 细胞被移植,并分析移植物的细胞存活、持续的胰岛素原 mRNA 和胰岛素蛋白表达。所有移植物都含有表达胰岛素原 mRNA 和胰岛素蛋白的 MSC-LV-mI 细胞。MSC-LV-mI 细胞移植到糖尿病小鼠后,BGL 在移植后 4 天显著降低。有趣的是,在 3 只移植的 SCID 小鼠和 1 只移植的 BALB/c 小鼠中,BGL 在第 50 天和第 70 天分别再次显著降低。这是首次将慢病毒转导的 SC 能够稳定表达胰岛素并降低 BGL。总之,SC 系可以被修饰以稳定表达治疗蛋白(例如胰岛素),从而使我们在将 SC 用作基于细胞的基因治疗的免疫豁免载体方面又向前迈进了一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b05b/6080125/6f1fab3bdcde/fig-1.jpg

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