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Nanotechnology applications and approaches for neuroregeneration and drug delivery to the central nervous system

机译:纳米技术应用和近期药物递送给中枢神经系统的方法

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Nanotechnology is the science and engineering concerned with the design, synthesis, and characterization of materials and devices that have a functional organization in at least one dimension on the nanometer (i.e., one billionth of a meter) scale. The potential impact of bottom up self-assembling nanotechnology, custom made molecules that self-assemble or self-organize into higher ordered structures in response to a defined chemical or physical cue, and top down lithographic type technologies where detail is engineered at smaller scales starting from bulk materials, stems from the fact that these nanoengineered materials and devices exhibit emergent mesocale and macroscale chemical and physical properties that are often different than their constituent nanoscale building block molecules or materials. As such, applications of nanotechnology to medicine and biology allow the interaction and integration of cells and tissues with nanoengineered substrates at a molecular (i.e., subcellular) level with a very high degree of functional specificity and control. This review considers applications of nanotechnology aimed at the neuroprotection and functional regeneration of the central nervous system (CNS) following traumatic or degenerative insults, and nanotechnology approaches for delivering drugs and other small molecules across the blood-brain barrier. It also discusses developing platform technologies that may prove to have broad applications to medicine and physiology, including some being developed for rescuing or replacing anatomical and/or functional CNS structures.
机译:纳米技术是关注的设计,合成,并具有至少一个维度的功能组织在纳米(即十亿分之一米)尺度材料和器件特性的科学和工程。自下而上的自组装纳米技术的潜在影响,定制的分子自组装或自组织成较高的有序结构,响应于确定的化学或物理线索,并自上而下其中细节在较小尺度改造起始光刻类型的技术从散装材料,从以下事实:这些纳米工程材料和器件表现出射mesocale和宏观化学和往往比它们的构成的纳米级构建块的分子或材料的不同的物理特性造成的。这样,为了医学和生物学纳米技术应用程序允许在分子的相互作用和细胞,并用纳米工程衬底组织整合(即,亚细胞)具有非常高度的功能的特异性和控制的水平。这个评论认为针对神经保护和外伤性或退行性侮辱中枢神经系统(CNS)功能再生纳米技术的应用,并为整个血脑屏障递送药物和其他小分子纳米技术方法。它还讨论了开发平台的技术,可能被证明有广泛的应用到医学和生理学,包括有些是现场抢救或更换的解剖和/或功能的中枢神经系统结构开发。

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