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首页> 外文期刊>Chemical research in toxicology >Reprogramming cellular signaling machinery using surface-modified carbon nanotubes.
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Reprogramming cellular signaling machinery using surface-modified carbon nanotubes.

机译:使用表面改性的碳纳米管对细胞信号传导机制进行重新编程。

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摘要

Nanoparticles, such as carbon nanotubes (CNTs), interact with cells and are easily internalized, causing various perturbations to cell functions. The mechanisms involved in such perturbations are investigated by a systematic approach that utilizes modified CNTs and various chemical-biological assays. Three modes of actions are (1) CNTs bind to different cell surface receptors and perturb different cell signaling pathways; (2) CNTs bind to a receptor with different affinity and, therefore, strengthen or weaken signals; (3) CNTs enter cells and bind to soluble signaling proteins involved in a signaling pathway. Understanding of such mechanisms not only clarifies how CNTs cause cytotoxicity but also demonstrates a useful method to modulate biological/toxicological activities of CNTs for their various industrial, biomedical, and consumer applications.
机译:纳米粒子,例如碳纳米管(CNT),与细胞相互作用并易于内在化,从而引起细胞功能的各种紊乱。通过利用修饰的CNT和各种化学生物学测定的系统方法研究了这种扰动所涉及的机制。三种作用方式是:(1)CNT与不同的细胞表面受体结合并干扰不同的细胞信号传导途径; (2)碳纳米管以不同的亲和力与受体结合,因此增强或减弱了信号; (3)CNT进入细胞并与信号传导途径中涉及的可溶性信号传导蛋白结合。对此类机制的理解不仅阐明了CNT如何引起细胞毒性,而且还展示了一种针对其各种工业,生物医学和消费者应用调节CNT的生物学/毒理学活性的有用方法。

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