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首页> 外文期刊>Biomacromolecules >Hydrogel for Simultaneous Tunable Growth Factor Delivery and Enhanced Viability of Encapsulated Cells in Vitro
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Hydrogel for Simultaneous Tunable Growth Factor Delivery and Enhanced Viability of Encapsulated Cells in Vitro

机译:用于同时可调生长因子传递和增强的封装的细胞的体外生存的水凝胶。

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摘要

Poor cell survival in vitro and in vivo is one of the key challenges in tissue engineering. Prosurvival therapeutic proteins, such as insulin-like growth factor-1 (IGF-1), can promote cell viability but require controlled delivery systems due to their short half-lives and rapid clearance. Biocompatible materials are commonly used for drug delivery platforms or to encapsulate cells for increased viability, but few materials have been used for both applications simultaneously. In this work, we present a dual-use platform. A blend of hyaluronan and methylcellulose, known to promote cell survival, was covalently modified with Src homology 3 (SH3)-binding peptides and demonstrated tunable, affinity-based release of the prosurvival fusion protein SH3 IGF-1. The material also significantly increased the viability of retinal pigment epithelium cells under anchorage-independent conditions. This novel platform is applicable to a broad range of cells and protein therapeutics and is a promising drug delivery/cell transplantation strategy to increase the viability of both exogenous and endogenous cells in tissue engineering applications.
机译:体内外细胞存活率低是组织工程中的关键挑战之一。诸如胰岛素样生长因子-1(IGF-1)之类的生存治疗性蛋白可以促进细胞生存能力,但由于其半衰期短和清除快而需要受控的递送系统。生物相容性材料通常用于药物输送平台或封装细胞以提高生存力,但很少有材料同时用于两种应用。在这项工作中,我们提出了一个两用平台。透明质酸和甲基纤维素的混合物,已知能促进细胞存活,已通过Src同源3(SH3)结合肽进行了共价修饰,并证明了基于亲和力的存活融合蛋白SH3 IGF-1的可释放释放。该材料还可以在不依赖锚固的条件下显着提高视网膜色素上皮细胞的活力。这个新颖的平台适用于广泛的细胞和蛋白质治疗剂,是一种有前途的药物递送/细胞移植策略,可提高组织工程应用中外源性和内源性细胞的生存能力。

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