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赛博格细胞:用聚合物和纳米材料对活细胞进行功能化。

Cyborg cells: functionalisation of living cells with polymers and nanomaterials.

机构信息

Biomaterials and Nanomaterials Group, Department of Microbiology, Faculty of Biology and Soil, Kazan (Idel buye\Volga region) Federal University, Kreml uramı 18, Kazan, 420008, Republic of Tatarstan, RF.

出版信息

Chem Soc Rev. 2012 Jun 7;41(11):4189-206. doi: 10.1039/c2cs15264a. Epub 2012 Apr 16.

Abstract

Living cells interfaced with a range of polyelectrolyte coatings, magnetic and noble metal nanoparticles, hard mineral shells and other complex nanomaterials can perform functions often completely different from their original specialisation. Such "cyborg cells" are already finding a range of novel applications in areas like whole cell biosensors, bioelectronics, toxicity microscreening, tissue engineering, cell implant protection and bioanalytical chemistry. In this tutorial review, we describe the development of novel methods for functionalisation of cells with polymers and nanoparticles and comment on future advances in this technology in the light of other literature approaches. We review recent studies on the cell viability and function upon direct deposition of nanoparticles, coating with polyelectrolytes, polymer assisted assembly of nanomaterials and hard shells on the cell surface. The cell toxicity issues are considered for many practical applications in terms of possible adverse effects of the deposited polymers, polyelectrolytes and nanoparticles on the cell surface.

摘要

活细胞与一系列聚电解质涂层、磁性和贵金属纳米粒子、硬矿物壳和其他复杂纳米材料相互作用,可以执行通常与原始功能完全不同的功能。这种“半机械细胞”已经在全细胞生物传感器、生物电子学、毒性微量筛选、组织工程、细胞植入保护和生物分析化学等领域找到了一系列新的应用。在本教程综述中,我们描述了用聚合物和纳米粒子对细胞进行功能化的新方法的发展,并根据其他文献方法对该技术的未来进展进行了评论。我们综述了最近关于直接沉积纳米粒子、聚电解质涂层、聚合物辅助纳米材料组装和硬壳在细胞表面的形成对细胞活力和功能的研究。考虑到沉积的聚合物、聚电解质和纳米粒子对细胞表面可能产生的不良影响,我们还探讨了许多实际应用中的细胞毒性问题。

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