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揭示金壳隔离纳米粒子(AuSHINs)对乳腺导管癌细胞(BT-474)光热效率的作用机制。

Unveiling the mechanisms underlying photothermal efficiency of gold shell-isolated nanoparticles (AuSHINs) on ductal mammary carcinoma cells (BT-474).

机构信息

São Paulo State University (UNESP), School of Sciences, Humanities and Languages, Assis, SP 19806-900, Brazil.

São Paulo State University (UNESP), School of Sciences, Humanities and Languages, Assis, SP 19806-900, Brazil; University of São Paulo (USP), São Carlos Institute of Physics (IFSC), São Carlos, SP 13566-590, Brazil.

出版信息

Biophys Chem. 2023 Sep;300:107077. doi: 10.1016/j.bpc.2023.107077. Epub 2023 Jul 19.

Abstract

Gold nanoparticles are valuable photothermal agents owing to their efficient photothermal conversion, photobleaching resistance, and potential surface functionalization. Herein, we combined bioinspired membranes with in vitro assays to elicit the molecular mechanisms of gold shell-isolated nanoparticles (AuSHINs) on ductal mammary carcinoma cells (BT-474). Langmuir and Langmuir-Schaefer (LS) films were handled to build biomembranes from BT-474 lipid extract. AuSHINs incorporation led to surface pressure-area (π-A) isotherms expansion, increasing membrane flexibility. Fourier-transform infrared spectroscopy (FTIR) of LS multilayers revealed electrostatic AuSHINs interaction with head portions of BT-474 lipid extract, causing lipid chain disorganization. Limited AuSHINs insertion into monolayer contributed to hydroperoxidation of the unsaturated lipids upon irradiation, consistently with the surface area increments of ca. 2.0%. In fact, membrane disruption of irradiated BT-474 cells containing AuSHINs was confirmed by confocal microscopy and LDH leakage, with greater damage at 2.2 × 10 AuSHINs/mL. Furthermore, the decrease in nuclei dimensions indicates cell death through photoinduced damage.

摘要

金纳米粒子是一种有价值的光热试剂,因为它们具有高效的光热转换、光漂白抗性和潜在的表面功能化。在这里,我们将仿生膜与体外检测相结合,以阐明金壳隔离纳米粒子(AuSHINs)对乳腺导管癌细胞(BT-474)的分子机制。通过 Langmuir 和 Langmuir-Schaefer(LS)膜处理,从 BT-474 脂质提取物中构建生物膜。AuSHINs 的掺入导致表面压力-面积(π-A)等温线扩张,增加了膜的柔韧性。LS 多层膜的傅里叶变换红外光谱(FTIR)显示 AuSHINs 与 BT-474 脂质提取物的头部部分之间存在静电相互作用,导致脂质链的紊乱。有限的 AuSHINs 插入单层会导致不饱和脂质在照射下发生氢过氧化物,与约 2.0%的表面积增量一致。事实上,通过共聚焦显微镜和 LDH 泄漏证实了含有 AuSHINs 的照射 BT-474 细胞的膜破裂,在 2.2×10 AuSHINs/mL 时损伤更大。此外,细胞核尺寸的减小表明细胞通过光诱导损伤而死亡。

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