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金纳米颗粒在乳腺细胞模型上的增强光热加热及联合治疗

Enhanced photothermal heating and combination therapy of gold nanoparticles on a breast cell model.

作者信息

Faid Amna H, Shouman Samia A, Badr Yehia A, Sharaky Marwa

机构信息

National Institute of Laser Enhanced Science (NILES), Cairo University, Giza, Egypt.

Pharmacology Unit, Cancer Biology Department, National Cancer Institute (NCI), Cairo University, Giza, Egypt.

出版信息

BMC Chem. 2022 Sep 7;16(1):66. doi: 10.1186/s13065-022-00859-1.

Abstract

Multi-drug resistance (MDR) in addition to the damage to non-malignant normal cells are the most difficult in cancer treatment. Drug delivery and Plasmonic photothermal therapy based on the use of resonant metallic nanoparticles have developed as promising techniques to destroy cancer cells selectively. In the present work, gold nanoparticles (AuNPs) were synthesized using trisodium citrate. The prepared AuNPs have a small size of 14 ± 4 nm and exhibit high stability with Zeta potential - 18 mV, AuNPs showed higher photothermal heating efficiency compared to irradiation with a 532 nm laser alone on the breast cancer cell line (MCF-7). Treatment of MCF-7 cells with 0.125 mM AuNPs coupled with laser irradiation for 6 min was found to significantly reduce (34%) the cell viability compared to 5% obtained with AuNPs in the same concentration and 26% with laser irradiation for 6 min without AuNPs. Moreover, the prepared AuNPs were used as an anticancer drug carrier for Doxorubicin (Dox), upon loading Dox to AuNPs there was a slight increase in the particle size to 16 ± 2 nm, FT-IR spectroscopic results showing the binding of Dox to AuNPs was through the -NH group. The potential cytotoxicity of the DOX@AuNPs nanocomposite was significantly increased compared to free DOX on the MCF7 cell line with a decrease in IC. All these results suggested the potential use of AuNPs as therapeutic photothermal agents and drug carriers in cancer therapy.

摘要

除了对非恶性正常细胞造成损伤外,多药耐药性是癌症治疗中最棘手的问题。基于共振金属纳米颗粒的药物递送和等离子体光热疗法已发展成为有前景的选择性破坏癌细胞的技术。在本研究中,使用柠檬酸钠合成了金纳米颗粒(AuNPs)。制备的AuNPs尺寸小,为14±4nm,具有-18mV的zeta电位,表现出高稳定性。与仅用532nm激光照射乳腺癌细胞系(MCF-7)相比,AuNPs显示出更高的光热加热效率。发现用0.125mM AuNPs处理MCF-7细胞并结合激光照射6分钟,与相同浓度的AuNPs处理获得的5%细胞活力以及无AuNPs的情况下激光照射6分钟获得的26%细胞活力相比,细胞活力显著降低(34%)。此外,制备的AuNPs用作阿霉素(Dox)的抗癌药物载体,将Dox负载到AuNPs上后,粒径略有增加至16±2nm,傅里叶变换红外光谱结果表明Dox与AuNPs的结合是通过-NH基团。与游离Dox相比,DOX@AuNPs纳米复合材料在MCF7细胞系上的潜在细胞毒性显著增加,IC降低。所有这些结果表明AuNPs在癌症治疗中作为治疗性光热剂和药物载体具有潜在用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26ca/9454161/b5115863c167/13065_2022_859_Fig1_HTML.jpg

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