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Tailoring synthetic polymeric biomaterials towards nerve tissue engineering: a review

机译:为神经组织工程定制合成高分子生物材料:综述

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The nervous system is known as a crucial part of the body and derangement in this system can cause potentially lethal consequences or serious side effects. Unfortunately, the nervous system is unable to rehabilitate damaged regions following seriously debilitating disorders such as stroke, spinal cord injury and brain trauma which, in turn, lead to the reduction of quality of life for the patient. Major challenges in restoring the damaged nervous system are low regenerative capacity and the complexity of physiology system. Synthetic polymeric biomaterials with outstanding properties such as excellent biocompatibility and non-immunogenicity find a wide range of applications in biomedical fields especially neural implants and nerve tissue engineering scaffolds. Despite these advancements, tailoring polymeric biomaterials for design of a desired scaffold is fundamental issue that needs tremendous attention to promote the therapeutic benefits and minimize adverse effects. This review aims to (i) describe the nervous system and related injuries. Then, (ii) nerve tissue engineering strategies are discussed and (iii) physiochemical properties of synthetic polymeric biomaterials systematically highlighted. Moreover, tailoring synthetic polymeric biomaterials for nerve tissue engineering is reviewed.
机译:神经系统被认为是人体的关键部分,该系统的混乱可能导致潜在的致命后果或严重的副作用。不幸的是,在中风,脊髓损伤和脑外伤等严重使人衰弱的疾病之后,神经系统无法恢复受损区域,这反过来又导致患者的生活质量下降。恢复受损神经系统的主要挑战是再生能力低和生理系统的复杂性。具有出色性能(例如出色的生物相容性和非免疫原性)的合成聚合物生物材料在生物医学领域尤其是神经植入物和神经组织工程支架中有着广泛的应用。尽管取得了这些进步,但为设计所需的支架而定制聚合物生物材料仍然是一个基本问题,需要极大地关注以提高治疗效果并使副作用最小化。这篇综述旨在(i)描述神经系统和相关伤害。然后,(ii)讨论了神经组织工程策略,(iii)系统地突出了合成聚合物生物材料的理化特性。此外,综述了为神经组织工程定制合成聚合物生物材料。

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