Pedram Alireza, Pishkenari Hossein Nejat
Department of Mechanical Engineering, Nano-robotics Laboratory, Sharif University of Technology, Tehran. Iran.
Curr Gene Ther. 2017;17(2):73-79. doi: 10.2174/1566523217666170511111000.
BACKGROUND: Small scale robotics have attracted growing attention for the prospect of targeting and accessing cell-sized sites, necessary for high precision biomedical applications and drug/gene delivery. The loss of controlled gene therapy, inducing systemic side effects and reduced therapeutic efficiency, can be settled utilizing these intelligent carriers. METHODS: Newly proposed solutions for the main challenges of control, power supplying, gene release and final carrier extraction/degradation have shifted these smart miniature robots to the point of being employed for practical applications of transferring oligonucleotides (pDNA, siRNA, mRNA, etc.) in near future. CONCLUSION: In this paper, different scenarios and their endeavors to address the vital working demands and steps, in particular, carrier attachment and release, cell internalization, manipulation concerns as well as actuation systems are discussed.This review highlights some promising experimental results showing controlled gene release of robotic systems in comparison with current non-specific gene delivery methods.
背景:小型机器人因有望靶向并进入细胞大小的位点而受到越来越多的关注,这对于高精度生物医学应用以及药物/基因递送而言是必不可少的。利用这些智能载体可以解决传统基因治疗失控所导致的全身副作用以及治疗效率降低的问题。 方法:针对控制、供电、基因释放以及最终载体提取/降解等主要挑战新提出的解决方案,已使这些智能微型机器人发展到在不久的将来可用于转移寡核苷酸(质粒DNA、小干扰RNA、信使核糖核酸等)的实际应用阶段。 结论:本文讨论了不同的方案及其为满足关键工作要求和步骤所做的努力,特别是载体附着与释放、细胞内化、操作问题以及驱动系统。本综述着重介绍了一些有前景的实验结果,这些结果表明与当前的非特异性基因递送方法相比,机器人系统能够实现可控的基因释放。
Curr Gene Ther. 2017
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