Ding Lina, Chang Yi, Yang Pengfei, Gao Weihua, Sun Mengmeng, Bie Yameng, Yang Lin, Ma Xiaoming, Guo Yuming
School of Chemistry and Chemical Engineering, Henan Normal University, Xinxiang, Henan 453007, China.
Collaborative Innovation Center of Henan Province for Green Manufacturing of Fine Chemicals, Key Laboratory of Green Chemical Media and Reactions, Ministry of Education, Henan Normal University, Xinxiang, Henan 453007, China.
Mater Sci Eng C Mater Biol Appl. 2020 Dec;117:111371. doi: 10.1016/j.msec.2020.111371. Epub 2020 Aug 7.
Photothermal therapy (PTT) can take advantage of the photothermal effects of photothermal agents to acquire the energy from laser irradiation and convert it into heat. This can intensively elevate the temperature of the surrounding environment to directly destroy the cancer cells. It is expected that PAs with strong absorption in near infrared (NIR) range might possess the ideal tissue-transparent feature and minimal damage to surrounding healthy tissues, beneficial to the practical application. Herein, well-dispersed L-cysteine modified MoS (MoS-Cys) nanospheres with the average diameter of about 422 nm and strong NIR adsorption were successfully synthesized through a facile method. The as-prepared MoS-Cys nanospheres are composed of nanosheets with the average thickness of about 13.7 nm. The photothermal conversion efficiency of the as-prepared MoS-Cys nanospheres with the very low concentration of 50 μg/mL was determined to be 35% when exposed to 808 NIR laser at the power density of 0.8 W/cm, much higher than those of the previous reports with same dose and power density. MoS-Cys nanospheres possessed the good photothermal ablation effect to significantly inhibit the growth of tumor in vivo. Furthermore, MoS-Cys nanospheres did not exhibit detectable side effects, suggesting their good in vitro and in vivo biocompatibility.
光热疗法(PTT)可利用光热剂的光热效应从激光照射中获取能量并将其转化为热量。这能够显著提高周围环境的温度以直接破坏癌细胞。预计在近红外(NIR)范围内具有强吸收的光热剂可能具有理想的组织穿透特性且对周围健康组织的损伤最小,这有利于实际应用。在此,通过一种简便方法成功合成了平均直径约为422 nm且具有强近红外吸附能力的分散良好的L-半胱氨酸修饰的二硫化钼(MoS-Cys)纳米球。所制备的MoS-Cys纳米球由平均厚度约为13.7 nm的纳米片组成。当在功率密度为0.8 W/cm²的808近红外激光照射下,浓度低至50 μg/mL的所制备的MoS-Cys纳米球的光热转换效率被测定为35%,远高于之前相同剂量和功率密度下的报道。MoS-Cys纳米球具有良好的光热消融效果,能在体内显著抑制肿瘤生长。此外,MoS-Cys纳米球未表现出可检测到的副作用,表明其具有良好的体外和体内生物相容性。