用于光学传感和细胞内成像的混合微/纳米凝胶。

Weitai Wu, Shuiqin Zhou
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引用次数: 63

摘要

混合微/纳米凝胶由于其尺寸可调、表面积大、内部网络结构稳定、响应时间短等优点,在各种应用中发挥着越来越重要的作用。我们回顾了混合微/纳米凝胶在pH、温度、葡萄糖、离子和其他物质的光学传感以及细胞内成像方面的最新进展和挑战。由于其独特的优势,混合微/纳米凝胶作为光学探针在血液和生物反应器流体等复杂样品中化学参数的连续监测,化学研究和工业以及食品质量控制中引起了极大的兴趣。特别是,它们的细胞内探测能力能够监测活细胞随时间和空间的生物化学和生物物理学,从而有助于解释复杂的生物过程和发展新的诊断。与大多数其他探针不同,混合微/纳米凝胶还可以将其他多种功能结合到单个探针中。合理设计混合微/纳米凝胶不仅可以改善探测应用,而且可以实现其在新领域的应用。随着生物纳米技术的快速发展,精心设计的混合微/纳米凝胶探针将能够同时提供传感、成像诊断和临床应用治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Hybrid micro-/nanogels for optical sensing and intracellular imaging.

Hybrid micro-/nanogels for optical sensing and intracellular imaging.

Hybrid micro-/nanogels for optical sensing and intracellular imaging.

Hybrid micro-/nanogels for optical sensing and intracellular imaging.

Hybrid micro-/nanogels are playing an increasing important part in a diverse range of applications, due to their tunable dimensions, large surface area, stable interior network structure, and a very short response time. We review recent advances and challenges in the developments of hybrid micro-/nanogels toward applications for optical sensing of pH, temperature, glucose, ions, and other species as well as for intracellular imaging. Due to their unique advantages, hybrid micro-/nanogels as optical probes are attracting substantial interests for continuous monitoring of chemical parameters in complex samples such as blood and bioreactor fluids, in chemical research and industry, and in food quality control. In particular, their intracellular probing ability enables the monitoring of the biochemistry and biophysics of live cells over time and space, thus contributing to the explanation of intricate biological processes and the development of novel diagnoses. Unlike most other probes, hybrid micro-/nanogels could also combine other multiple functions into a single probe. The rational design of hybrid micro-/nanogels will not only improve the probing applications as desirable, but also implement their applications in new arenas. With ongoing rapid advances in bionanotechnology, the well-designed hybrid micro-/nanogel probes will be able to provide simultaneous sensing, imaging diagnosis, and therapy toward clinical applications.

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