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用于多功能生物医学应用的多晶硅-铬-金细胞内芯片

Polysilicon-chromium-gold intracellular chips for multi-functional biomedical applications.

作者信息

Patiño Tania, Soriano Jorge, Amirthalingam Ezhil, Durán Sara, González-Campo Arántzazu, Duch Marta, Ibáñez Elena, Barrios Leonardo, Plaza Jose Antonio, Pérez-García Lluïsa, Nogués Carme

机构信息

Unitat de Biologia Cellular, Departament de Biologia Cellular, Fisiologia i Immunologia, Facultat de Biociències, Universitat Autònoma de Barcelona, Bellaterra, 08193, Spain.

出版信息

Nanoscale. 2016 Apr 28;8(16):8773-83. doi: 10.1039/c5nr09022a. Epub 2016 Apr 11.

DOI:10.1039/c5nr09022a
PMID:27064355
Abstract

The development of micro- and nanosystems for their use in biomedicine is a continuously growing field. One of the major goals of such platforms is to combine multiple functions in a single entity. However, achieving the design of an efficient and safe micro- or nanoplatform has shown to be strongly influenced by its interaction with the biological systems, where particle features or cell types play a critical role. In this work, the feasibility of using multi-material pSi-Cr-Au intracellular chips (MMICCs) for multifunctional applications by characterizing their interactions with two different cell lines, one tumorigenic and one non-tumorigenic, in terms of biocompatibility, internalization and intracellular fate, has been explored. Moreover, the impact of MMICCs on the induction of an inflammatory response has been assessed by evaluating TNFα, IL1b, IL6, and IL10 human inflammatory cytokines secretion by macrophages. Results show that MMICCs are biocompatible and their internalization efficiency is strongly dependent on the cell type. Finally as a proof-of-concept, MMICCs have been dually functionalized with transferrin and pHrodo™ Red, SE to target cancer cells and detect intracellular pH, respectively. In conclusion, MMICCs can be used as multi-functional devices due to their high biocompatibility, non-inflammatory properties and the ability of developing multiple functions.

摘要

用于生物医学的微纳系统的开发是一个不断发展的领域。此类平台的主要目标之一是在单个实体中整合多种功能。然而,事实证明,高效且安全的微纳平台的设计会受到其与生物系统相互作用的强烈影响,其中颗粒特征或细胞类型起着关键作用。在这项工作中,通过表征多材料pSi-Cr-Au细胞内芯片(MMICC)与两种不同细胞系(一种致瘤性细胞系和一种非致瘤性细胞系)在生物相容性、内化和细胞内命运方面的相互作用,探索了其用于多功能应用的可行性。此外,通过评估巨噬细胞分泌的TNFα、IL1b、IL6和IL10等人类炎性细胞因子,评估了MMICC对炎症反应诱导的影响。结果表明,MMICC具有生物相容性,其内化效率强烈依赖于细胞类型。最后,作为概念验证,MMICC分别用转铁蛋白和pHrodo™ Red SE进行了双重功能化,以靶向癌细胞和检测细胞内pH值。总之,MMICC因其高生物相容性、无炎症特性以及开发多种功能的能力,可作为多功能器件使用。

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Membrane reorganization after photochemical internalization to release transferrin-biofunctionalized polystyrene microparticles.光化学内吞作用后释放转铁蛋白生物功能化聚苯乙烯微球的膜重排。
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