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Strategies for Hyaluronic Acid-Based Hydrogel Design in Drug Delivery

机译:药物递送中透明质酸水凝胶设计的策略

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Hyaluronic acid (HA) is a natural, linear, endogenous polysaccharide that plays important physiological and biological roles in the human body. Nowadays, among biopolymers, HA is emerging as an appealing starting material for hydrogels design due to its biocompatibility, native biofunctionality, biodegradability, non-immunogenicity, and versatility. Since HA is not able to form gels alone, chemical modifications, covalent crosslinking, and gelling agents are always needed in order to obtain HA-based hydrogels. Therefore, in the last decade, different strategies for the design of physical and chemical HA hydrogels have been developed, such as click chemistry reactions, enzymatic and disulfide crosslinking, supramolecular assembly via inclusion complexation, and so on. HA-based hydrogels turn out to be versatile platforms, ranging from static to smart and stimuli-responsive systems, and for these reasons, they are widely investigated for biomedical applications like drug delivery, tissue engineering, regenerative medicine, cell therapy, and diagnostics. Furthermore, the overexpression of HA receptors on various tumor cells makes these platforms promising drug delivery systems for targeted cancer therapy. The aim of the present review is to highlight and discuss recent advances made in the last years on the design of chemical and physical HA-based hydrogels and their application for biomedical purposes, in particular, drug delivery. Notable attention is given to HA hydrogel-based drug delivery systems for targeted therapy of cancer and osteoarthritis.
机译:透明质酸(HA)是一种自然,线性的内源性多糖,其在人体中起重要的生理和生物学作用。如今,由于其生物相容性,天然生物转力,生物降解性,非免疫原性和多功能性,因此,HA在生物聚合物中作为水凝胶设计的吸引力原料。由于HA不能单独形成凝胶,因此总是需要化学修饰,共价交联和胶凝剂以获得基于HA的水凝胶。因此,在过去的十年中,已经开发出了物理和化学HA水凝胶设计的不同策略,例如点击化学反应,酶联和二硫化物交联,通过包膜络合,等等。 HA基水凝块变成了多功能平台,从静态到智能和刺激响应系统,并且由于这些原因,他们被广泛研究了药物递送,组织工程,再生医学,细胞疗法等生物医学应用。此外,各种肿瘤细胞对HA受体的过度表达使得这些平台对有针对性癌症治疗的药物递送系统有望。本综述的目的是突出,突出,并讨论最近几年对化学和物理HA的水凝胶设计的进展及其对生物医学目的的应用,特别是药物递送。向HA水凝胶的药物递送系统提供显着的注意力,用于癌症和骨关节炎的靶向治疗。

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