School of Materials Science and Engineering, Zhengzhou University, Zhengzhou 450001, China.
Henan Key Laboratory of Advanced Nylon Materials and Application, Zhengzhou University, Zhengzhou 450001, People's Republic of China.
Dalton Trans. 2024 Aug 27;53(34):14315-14324. doi: 10.1039/d4dt02039a.
The design of multifunctional nanocarriers with enhanced photothermal efficiency is of great significance for the photothermal therapy of cancer. In this study, hollow CuS@gold nanorods/polydopamine (HCuS@AuNRs/PDA) nanohybrids with synergistically enhanced photothermal efficiency were prepared by electrostatic self-assembly method. The high photothermal conversion efficiency of HCuS@AuNRs (55.88%) is attributed to the interfacial electron transfer between CuS and AuNRs, as well as the increase in free charge carrier concentration. The excellent adhesion performance and strong negative charge of PDA ensure a high doxorubicin hydrochloride (DOX) loading efficiency of 96.08% for HCuS@AuNRs/PDA. In addition, HCuS@AuNRs/PDA reveals outstanding NIR/pH dual-responsive drug release properties owing to the weakened interaction between PDA and DOX in acidic media and the distinct NIR responsiveness of HCuS@AuNRs. cell viability results confirm that HCuS@AuNRs/PDA could efficiently kill tumor cells under the dual effect of acidic media and NIR laser. This study presents a novel nanocarrier with synergistically enhanced NIR photothermal responsiveness and high drug loading capacity, which provides a versatile platform in intelligent drug release and photothermal therapy.
多功能纳米载体的设计具有增强的光热效率,对于癌症的光热治疗具有重要意义。在这项研究中,通过静电自组装方法制备了协同增强光热效率的中空 CuS@金纳米棒/聚多巴胺(HCuS@AuNRs/PDA)纳米杂化物。HCuS@AuNRs(55.88%)具有高的光热转换效率,这归因于 CuS 和 AuNRs 之间的界面电子转移以及自由载流子浓度的增加。PDA 的优异粘附性能和强负电荷确保了 HCuS@AuNRs/PDA 对盐酸阿霉素(DOX)的高载药效率(96.08%)。此外,由于在酸性介质中 PDA 和 DOX 之间的相互作用减弱以及 HCuS@AuNRs 的明显近红外响应性,HCuS@AuNRs/PDA 表现出优异的 NIR/pH 双重响应药物释放特性。细胞活力结果证实,在酸性介质和近红外激光的双重作用下,HCuS@AuNRs/PDA 能够有效地杀死肿瘤细胞。这项研究提出了一种具有协同增强的近红外光热响应性和高载药能力的新型纳米载体,为智能药物释放和光热治疗提供了一个多功能平台。