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用于促进原位移植肾空间耐受性的可注射基因工程水凝胶

Injectable Genetic Engineering Hydrogel for Promoting Spatial Tolerance of Transplanted Kidney in Situ.

作者信息

Lin Jinwen, Liu Shuaihui, Xue Xing, Lv Junhao, Zhao Lingfei, Yu Liqin, Wang Huiping, Chen Jianghua

机构信息

Kidney Disease Center, The First Affiliated Hospital, Zhejiang University School of Medicine, Key Laboratory of Kidney Disease Prevention and Control Technology, National Key Clinical Department of Kidney Diseases, Institute of Nephrology, Zhejiang University, Zhejiang Clinical Research Center of Kidney and Urinary System Disease, Hangzhou, Zhejiang, 310003, P. R. China.

Department of Radiology, The First Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, Zhejiang, 310003, P. R. China.

出版信息

Adv Sci (Weinh). 2024 Dec;11(48):e2408631. doi: 10.1002/advs.202408631. Epub 2024 Nov 5.

Abstract

The establishment of a tolerant space to realize the co-stimulation of cytokines and contact-dependent molecules remain challenging in allotransplant. Here, an injectable genetically engineered hydrogel (iGE-Gel) is reported, which developed with a multivalent network of FOXP3 engineered extracellular vesicles (Foe-EVs) through the hydrophobic interaction between stearic acid modified hyaluronic acid (HASA) and the membrane phospholipids of extracellular vesicles (EVs). The iGE-Gel exhibited self-healing properties, injectability and biocompatibility. It is revealed that iGE-Gel displayed with abundant regulatory cytokines and coinhibitory contact molecules, promoting the formation of immune tolerance in situ. The multiplex immunohistofluorescence confirmed tolerant niches is dominated by FOXP3 Tregs and PDL1 cells in the allograft, which reduced the drainage of alloantigens to subcapsular sinus of lymph nodes, and suppressed the formation of germinal centers. Remarkably, the proportion of alloreactive T cells (IFN-γ/IL-2) and B cells (IgG1/IgG2a/IgG3) as well as the serum titers of donor specific antibody (DSA) is decreased by iGE-Gel. In murine allogeneic transplantation, the injection of iGE-Gel significantly alleviated immune cell infiltration and complement damage in the graft, preserved the structure and function of renal cells and prolonged recipient survival period from 30.8 to 79.3 days, highlighting the potential of iGE-Gel as a transformative treatment in allotransplant.

摘要

在同种异体移植中,建立一个能实现细胞因子和接触依赖性分子共刺激的耐受空间仍然具有挑战性。在此,报道了一种可注射的基因工程水凝胶(iGE-Gel),它是通过硬脂酸修饰的透明质酸(HASA)与细胞外囊泡(EVs)的膜磷脂之间的疏水相互作用,由FOXP3工程化细胞外囊泡(Foe-EVs)的多价网络构建而成。iGE-Gel具有自愈特性、可注射性和生物相容性。研究表明,iGE-Gel呈现出丰富的调节性细胞因子和共抑制性接触分子,促进原位免疫耐受的形成。多重免疫组织荧光证实,同种异体移植物中的耐受微环境以FOXP3调节性T细胞(Tregs)和程序性死亡受体1(PDL1)细胞为主,这减少了同种异体抗原向淋巴结被膜下窦的引流,并抑制了生发中心的形成。值得注意的是,iGE-Gel降低了同种反应性T细胞(IFN-γ/IL-2)和B细胞(IgG1/IgG2a/IgG3)的比例以及供体特异性抗体(DSA)的血清滴度。在小鼠同种异体移植中,注射iGE-Gel显著减轻了移植物中的免疫细胞浸润和补体损伤,保留了肾细胞的结构和功能,并将受体存活期从30.8天延长至79.3天,突出了iGE-Gel作为同种异体移植中一种变革性治疗方法的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6c7/11672315/a93f7f9ed213/ADVS-11-2408631-g003.jpg

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