Department of Chemical Engineering , Kwangwoon University , 20 Kwangwoon-ro , Nowon-gu, Seoul 01897 , Korea.
Graduate School of East-West Medical Science , Kyung Hee University , Yongin 17104 , Korea.
ACS Appl Mater Interfaces. 2019 Mar 6;11(9):8831-8837. doi: 10.1021/acsami.8b21199. Epub 2019 Feb 25.
As an alternative to traditional cancer treatment, photothermal therapy is a promising method with advantages such as noninvasiveness and high efficiency. Herein, we synthesized armored golden Escherichia coli (AGE) microrods as photothermal agents to evaluate the viability of cancer cell. The hollow gold nanoshell (HAuNS) was synthesized for photothermal effects under the near-infrared (NIR) region using unicellular E. coli as a framework. Coupling HAuNS onto the surface of E. coli@SiO enhanced temperature elevation and resulted in high conversion efficiency. The synthesized AGE microrods had excellent photothermal stability under NIR laser irradiation in the five-times recycling experiment. The temperature elevation of AGE microrod solution reached 43.7 °C, which induced hyperthermia-mediated killing of tumor cells. The results of the cytotoxicity test revealed the AGE microrod-induced T98G cell death mediated via apoptosis.
作为传统癌症治疗的替代方法,光热疗法是一种很有前途的方法,具有非侵入性和高效率等优点。在此,我们合成了装甲金色大肠杆菌(AGE)微米棒作为光热剂来评估癌细胞的活力。中空金纳米壳(HAuNS)是使用单细胞大肠杆菌作为框架,在近红外(NIR)区域下合成的用于光热效应。将 HAuNS 耦合到 E. coli@SiO 的表面上增强了升温效果,并导致高的转换效率。在五次回收实验中,合成的 AGE 微米棒在近红外激光照射下具有优异的光热稳定性。AGE 微米棒溶液的温度升高达到 43.7°C,这导致了肿瘤细胞的热疗介导杀伤。细胞毒性试验的结果表明,AGE 微米棒通过细胞凋亡诱导 T98G 细胞死亡。