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Thermoresponsive Copolypeptide Hydrogel Vehicles for Central Nervous System Cell Delivery

机译:用于中枢神经系统细胞递送的热敏共多肽水凝胶载体

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摘要

Biomaterial vehicles have the potential to facilitate cell transplantation in the central nervous system (CNS). We have previously shown that highly tunable ionic diblock copolypeptide hydrogels (DCH) can provide sustained release of hydrophilic and hydrophobic molecules in the CNS. Here, we show that recently developed non-ionic and thermoresponsive DCH called DCHT exhibit excellent cytocompatibility. Neural stem cell (NSC) suspensions in DCHT were easily injected as liquids at room temperature. DCHT with a viscosity tuned to prevent cell sedimentation and clumping significantly increased the survival of NSC passed through injection cannulae. At body temperature, DCHT self-assembled into hydrogels with a stiffness tuned to that of CNS tissue. After injection in vivo, DCHT significantly increased by three-fold the survival of NSC grafted into healthy CNS. In injured CNS, NSC injected as suspensions in DCHT distributed well in non-neural lesion cores, integrated with healthy neural cells at lesion perimeters and supported regrowing host nerve fibers. Our findings show that non-ionic DCHT have numerous advantageous properties that make them useful tools for in vivo delivery of cells and molecules in the CNS for experimental investigations and potential therapeutic strategies.
机译:生物材料载体具有促进中枢神经系统(CNS)细胞移植的潜力。先前我们已经表明,高度可调节的离子二嵌段共多肽水凝胶(DCH)可以在CNS中提供亲水和疏水分子的持续释放。在这里,我们表明,最近开发的称为DCHT的非离子型和热响应性DCH表现出优异的细胞相容性。 DCHT中的神经干细胞(NSC)悬浮液很容易在室温下以液体形式注入。调节粘度以防止细胞沉降和结块的DCHT显着提高了通过注射套管传递的NSC的存活率。在体温下,DCHT自组装成水凝胶,其刚度可调整至CNS组织的刚度。体内注射后,DCHT显着提高了移植到健康CNS中的NSC存活率的三倍。在受伤的中枢神经系统中,以悬浮液形式注射的DCC NSC可以很好地分布在非神经病变核中,并在病变周围与健康的神经细胞整合在一起,并支持宿主神经纤维的生长。我们的发现表明,非离子型DCHT具有许多有利的性能,使其成为在CNS中体内递送细胞和分子进行实验研究和潜在治疗策略的有用工具。

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