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Advances in nanotechnology and nanomaterials based strategies for neural tissue engineering

机译:基于神经组织工程的纳米技术和纳米材料的研究进展

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Recent development in science and technology and invention of wonderful nanomaterials by nanotechnology helps advances in healthcare and treatment. Nerve degeneration, scar tissue formation and loss of communication between neurons and cells are the major issues of nerve injury. Till date it is remain a major challenge the regeneration of nerve tissue at injury site. There are various kinds of nanomaterials-based engineering approaches have been developed and under investigation to prevent or treat nerve injuries. Different nanomaterials are classified into two categories such as inorganic and organic nanomaterials. Inorganic nanomaterials such as metal, alloys, silica, magnetic, upconversion nanoparticles and quantum dots; and organic nanomaterials such as polymeric nanoparticles, nanofibers, carbon-based nanomaterials namely carbon nanotubes and graphene, liposomes, micelles and dendrimers. These are promising nanomaterials with suitable physicochemical properties and hence employed for neural tissue engineering applications. The nanomaterials showed promising results and able to support cells adhesion, proliferation and promote neuronal cell differentiation and enhance regeneration of neuron. Here, in this review we have discussed brief overview of different nanomaterials, their properties, merits and demerit, promising results and progress towards neural tissue engineering applications.
机译:纳米技术精彩纳米材料的最新发展和发明的发明有助于医疗保健和治疗的进步。神经变性,瘢痕组织形成和神经元和细胞之间的通信丧失是神经损伤的主要问题。截至日期,仍然是神经组织在损伤部位的重生挑战。已经开发出各种基于纳米材料的工程方法,并正在调查以预防或治疗神经损伤。不同的纳米材料分为两类,例如无机和有机纳米材料。无机纳米材料,如金属,合金,二氧化硅,磁性,升高纳米粒子和量子点;和有机纳米材料如聚合物纳米颗粒,纳米纤维,碳基纳米材料即碳纳米管和石墨烯,脂质体,胶束和树枝状大分子。这些是具有合适的物理化学性质的纳米材料,因此用于神经组织工程应用。纳米材料表现出有前途的结果,能够支持细胞粘附,增殖和促进神经元细胞分化和神经元的再生再生。在此评论中,我们讨论了对不同纳米材料,其性质,优点和脱博,有前途的结果和对神经组织工程应用的进展的简要概述。

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