Recent advances in micro/nanoscale intracellular delivery

IF 2.7
Mengjie Sun, Xuexin Duan
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引用次数: 27

Abstract

Intracellular delivery enables the efficient drug delivery into various types of cells and has been a long-term studied topics in modern biotechnology. Targeted delivery with improved delivery efficacy requires considerable requirements. This process is a critical step in many cellular-level studies, such as cellular drug therapy, gene editing delivery, and a series of biomedical research applications. The emergence of micro- and nanotechnology has enabled the more accurate and dedicated intracellular delivery, and it is expected to be the next generation of controlled delivery with unprecedented flexibility. This review focuses on several represented micro- and nanoscale physical approaches for cell membrane disruption-based intracellular delivery and discusses the mechanisms, advantages, and challenges of each approach. We believe that the deeper understanding of intracellular delivery at such low dimension would help the research community to develop more powerful delivery technologies for biomedical applications.

微/纳米尺度细胞内递送的最新进展
细胞内递送使药物能够有效地进入各种类型的细胞,是现代生物技术长期研究的课题。有针对性的交付,提高交付效率,需要相当大的要求。这一过程是许多细胞水平研究的关键步骤,如细胞药物治疗、基因编辑传递和一系列生物医学研究应用。微纳米技术的出现使细胞内递送更加精确和专用,并有望成为具有前所未有灵活性的下一代控制递送。本文综述了几种具有代表性的基于细胞膜破坏的细胞内递送的微纳米级物理方法,并讨论了每种方法的机制、优势和挑战。我们相信,更深入地了解如此低维度的细胞内递送将有助于研究界为生物医学应用开发更强大的递送技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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