用于线粒体靶向光热/光动力协同癌症治疗的功能性黑磷纳米片
Functional black phosphorus nanosheets for mitochondria-targeting photothermal/photodynamic synergistic cancer therapy.
作者信息
Yang Xiaoyan, Wang Dongya, Zhu Jiawei, Xue Lei, Ou Changjin, Wang Wenjun, Lu Min, Song Xuejiao, Dong Xiaochen
机构信息
Key Laboratory of Flexible Electronics (KLOFE) , Institute of Advanced Materials (IAM) , School of Physical and Mathematical Science , Nanjing Tech University (NanjingTech) , 30 South Puzhu Road , Nanjing 211800 , China . Email:
School of Physical Science and Information Technology , Liaocheng University , Liaocheng 252059 , China.
出版信息
Chem Sci. 2019 Feb 21;10(13):3779-3785. doi: 10.1039/c8sc04844d. eCollection 2019 Apr 7.
Organelle-targeting nanosystems are envisioned as promising tools for phototherapy, which can generate heat or reactive oxygen species (ROS) induced cytotoxicity in the targeted location but leave the surrounding biological tissues undamaged. In this work, an imaging-guided mitochondria-targeting photothermal/photodynamic nanosystem has been developed on the basis of functionalized black phosphorus (BP) nanosheets (NSs). In the nanosystem, BP NSs are coated with polydopamine (PDA) and then covalently linked with both chlorin e6 (Ce6) and triphenyl phosphonium (TPP) through carbodiimide reaction between the amino group and the carboxyl group, forming BP@PDA-Ce6&TPP NSs. Due to the strong absorbance of BP@PDA in the near-infrared region and the highly efficient ROS generation of Ce6, the as-prepared nanosystem with mitochondria-targeting capacity (TPP moiety) shows remarkably enhanced efficiency in cancer cell killing. Combined photothermal and photodynamic therapy is implemented and monitored by fluorescence imaging, achieving excellent performance in inhibiting tumor growth. This study presents a novel nanotheranostic agent for mitochondria-targeting phototherapy, which may open new horizons for biomedicine.
细胞器靶向纳米系统被视为光疗的有前景的工具,其可以在靶向位置产生热量或活性氧(ROS)诱导的细胞毒性,同时使周围生物组织不受损伤。在这项工作中,基于功能化的黑磷(BP)纳米片(NSs)开发了一种成像引导的线粒体靶向光热/光动力纳米系统。在该纳米系统中,BP纳米片用聚多巴胺(PDA)包覆,然后通过氨基和羧基之间的碳二亚胺反应与二氢卟吩e6(Ce6)和三苯基膦(TPP)共价连接,形成BP@PDA-Ce6&TPP纳米片。由于BP@PDA在近红外区域的强吸收以及Ce6的高效ROS生成,所制备的具有线粒体靶向能力(TPP部分)的纳米系统在癌细胞杀伤方面表现出显著提高的效率。通过荧光成像实施并监测联合光热和光动力疗法,在抑制肿瘤生长方面取得了优异的性能。本研究提出了一种用于线粒体靶向光疗的新型纳米诊疗剂,这可能为生物医学开辟新的视野。