Yum Kyungsuk, Yu Min-Feng, Wang Ning, Xiang Yang K
Department of Mechanical Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Biochim Biophys Acta. 2011 Mar;1810(3):330-8. doi: 10.1016/j.bbagen.2010.05.005. Epub 2010 May 24.
Accessing the interior of live cells with minimal intrusiveness for visualizing, probing, and interrogating biological processes has been the ultimate goal of much of the biological experimental development.
The recent development and use of the biofunctionalized nanoneedles for local and spatially controlled intracellular delivery brings in exciting new opportunities in accessing the interior of living cells. Here we review the technical aspect of this relatively new intracellular delivery method and the related demonstrations and studies and provide our perspectives on the potential wide applications of this new nanotechnology-based tool in the biological field, especially on its use for high-resolution studies of biological processes in living cells.
Different from the traditional micropipette-based needles for intracellular injection, a nanoneedle deploys a sub-100-nm-diameter solid nanowire as a needle to penetrate a cell membrane and to transfer and deliver the biological cargo conjugated onto its surface to the target regions inside a cell. Although the traditional micropipette-based needles can be more efficient in delivery biological cargoes, a nanoneedle-based delivery system offers an efficient introduction of biomolecules into living cells with high spatiotemporal resolution but minimal intrusion and damage. It offers a potential solution to quantitatively address biological processes at the nanoscale.
The nanoneedle-based cell delivery system provides new possibilities for efficient, specific, and precise introduction of biomolecules into living cells for high-resolution studies of biological processes, and it has potential application in addressing broad biological questions. This article is part of a Special Issue entitled Nanotechnologies - Emerging Applications in Biomedicine.
以最小的侵入性进入活细胞内部,以可视化、探测和研究生物过程,一直是许多生物学实验发展的最终目标。
生物功能化纳米针用于局部和空间控制的细胞内递送的最新进展和应用,为进入活细胞内部带来了令人兴奋的新机遇。在此,我们综述了这种相对较新的细胞内递送方法的技术方面以及相关的演示和研究,并对这种基于纳米技术的新工具在生物领域的潜在广泛应用,尤其是其用于活细胞中生物过程的高分辨率研究的应用,发表我们的看法。
与传统的基于微吸管的细胞内注射针不同,纳米针采用直径小于100纳米的固体纳米线作为针来穿透细胞膜,并将与其表面结合的生物物质转移并递送至细胞内的目标区域。虽然传统的基于微吸管的针在递送生物物质方面可能更有效,但基于纳米针的递送系统能够以高时空分辨率、最小的侵入和损伤将生物分子高效引入活细胞。它为在纳米尺度上定量研究生物过程提供了一种潜在的解决方案。
基于纳米针的细胞递送系统为将生物分子高效、特异且精确地引入活细胞以进行生物过程的高分辨率研究提供了新的可能性,并且在解决广泛的生物学问题方面具有潜在应用。本文是名为“纳米技术——在生物医学中的新兴应用”的特刊的一部分。