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Interaction of multi-functional silver nanoparticles with living cells

机译:多功能银纳米粒子与活细胞的相互作用

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摘要

Silver nanoparticles (AgNPs) are widely used in household products and in medicine due to their antibacterial and to wound healing properties. In recent years, there is also an effort for their use in biomedical imaging and photothermal therapy. The primary reason behind the effort for their utility in biomedicine and therapy is their unique plasmonic properties and easy surface chemistry for a variety of functionalizations. In this study, AgNPs modified with glucose, lactose, oligonucleotides and combinations of these ligands are investigated for their cytotoxicity and cellular uptake in living non-cancer (L929) and cancer (A549) cells. It is found that the chemical nature of the ligand strongly influences the toxicity and cellular uptake into the model cells. While the lactose-and glucose-modified AgNPs enter the L929 cells at about the same rate, a significant increase in the rate of lactose-modified AgNPs into the A549 cells is observed. The binding of oligonucleotides along with the carbohydrate on the AgNP surfaces influences the differential uptake rate pattern into the cells. The cytotoxicity study with the modified AgNPs reveals that only naked AgNPs influence the viability of the A549 cells. The findings of this study may provide the key to developing effective applications in medicine such as cancer therapy.
机译:银纳米颗粒(AgNPs)由于其抗菌和伤口愈合特性而广泛用于家庭产品和医学中。近年来,还努力将其用于生物医学成像和光热疗法中。其在生物医学和治疗中用途的努力背后的主要原因是其独特的等离子体性能和易于进行多种功能化的表面化学。在这项研究中,研究了用葡萄糖,乳糖,寡核苷酸和这些配体组合修饰的AgNP在非癌(L929)和癌细胞(A549)细胞中的细胞毒性和细胞摄取。发现配体的化学性质强烈影响模型细胞的毒性和细胞摄取。虽然乳糖和葡萄糖修饰的AgNP以大约相同的速率进入L929细胞,但观察到乳糖修饰的AgNP进入A549细胞的速率显着增加。寡核苷酸与碳水化合物在AgNP表面的结合会影响进入细胞的差异摄取率模式。用修饰的AgNPs进行的细胞毒性研究表明,只有裸露的AgNPs会影响A549细胞的活力。这项研究的发现可能为开发有效的医学应用(例如癌症治疗)提供关键。

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