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'Extremely minimally invasive': recent advances in nanotechnology research and future applications in neurosurgery

机译:“极微创”:纳米技术研究的最新进展以及神经外科的未来应用

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摘要

The term "nanotechnology" refers to the development of materials and devices that have been designed with specific properties at the nanometer scale (10(-9) m), usually being less than 100 nm in size. Recent advances in nanotechnology have promised to enable visualization and intervention at the subcellular level, and its incorporation to future medical therapeutics is expected to bring new avenues for molecular imaging, targeted drug delivery, and personalized interventions. Although the central nervous system presents unique challenges to the implementation of new therapeutic strategies involving nanotechnology (such as the heterogeneous molecular environment of different CNS regions, the existence of multiple processing centers with different cytoarchitecture, and the presence of the blood-brain barrier), numerous studies have demonstrated that the incorporation of nanotechnology resources into the armamentarium of neurosurgery may lead to breakthrough advances in the near future. In this article, the authors present a critical review on the current 'state-of-the-art' of basic research in nanotechnology with special attention to those issues which present the greatest potential to generate major therapeutic progresses in the neurosurgical field, including nanoelectromechanical systems, nano-scaffolds for neural regeneration, sutureless anastomosis, molecular imaging, targeted drug delivery, and theranostic strategies.
机译:术语“纳米技术”是指材料和器件的开发,这些材料和器件被设计为具有纳米级(10(-9)m)的特定特性,尺寸通常小于100 nm。纳米技术的最新进展有望实现亚细胞水平的可视化和干预,并且有望将其纳入未来的医学疗法中,从而为分子成像,靶向药物输送和个性化干预带来新途径。尽管中枢神经系统对涉及纳米技术的新治疗策略的实施提出了独特的挑战(例如不同中枢神经系统区域的异构分子环境,具有不同细胞结构的多个加工中心的存在以及血脑屏障的存在),大量研究表明,将纳米技术资源整合到神经外科武器库中可能会在不久的将来取得突破性进展。在本文中,作者对当前的纳米技术基础研究的“最新技术”进行了批判性评论,特别关注那些具有最大潜力在神经外科领域(包括纳米机电领域)产生重大治疗进展的问题。系统,用于神经再生,无缝合吻合,分子成像,靶向药物递送和治疗诊断策略的纳米支架。

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