Cytotoxicity and Cellular Internalization Studies of Biogenic Gold Nanotriangles in Animal Cell Lines

A. Singh, R. Shukla, Shabir Hassan, R. Bhonde, M. Sastry
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引用次数: 15

Abstract

ABSTRACT Biogenic gold nanotriangles have been used in this study to understand their cytotoxicity and biocompatibility in animal cells. These gold nanotriangles were synthesized using the leaf extract of the lemon grass (Cymbopogan flexuosus) plant. Cancerous as well as non-cancerous cells were used to study their dose dependent viability on exposure to the gold nanotriangles. Additionally, it has been shown that gold nanotriangles are internalized inside the cells and are compartmentalized into the cytoplasm. Thus, it has been inferred that the biologically synthesized gold nanotriangles are indeed biocompatible and, thus, are promising candidates as scaffolds for delivery of drug, genes, or growth factors inside the cells. Additionally, their unique optical properties make them a promising candidate for hyperthermic treatment of cancer. The AFM analysis of the cells treated with gold nanotriangles showed pits on their surface, which could be the probably point of entry of these nanotriangles into the c...
生物源金纳米三角形在动物细胞系中的细胞毒性和细胞内化研究
摘要本研究利用生物源金纳米三角形来了解其在动物细胞中的细胞毒性和生物相容性。这些金纳米三角形是用柠檬草(Cymbopogan flexuosus)植物的叶提取物合成的。癌细胞和非癌细胞都被用来研究暴露在金纳米三角形中的剂量依赖性生存能力。此外,研究表明,金纳米三角形被内化在细胞内,并被划分到细胞质中。因此,可以推断,生物合成的金纳米三角形确实具有生物相容性,因此,作为细胞内药物、基因或生长因子输送的支架,它是有希望的候选者。此外,它们独特的光学特性使它们成为热疗癌症的有希望的候选者。原子力显微镜分析显示,用金纳米三角形处理的细胞表面有凹坑,这可能是这些纳米三角形进入细胞的入口点。
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