MOE Key Laboratory of High Performance Polymer Materials and Technology, and Department of Polymer Science and Engineering, College of Chemistry and Chemical Engineering, Nanjing University, Nanjing, China.
Department of Radiology and Imaging Sciences, Emory University, Atlanta, GA, USA.
Nat Commun. 2021 Apr 22;12(1):2390. doi: 10.1038/s41467-021-22594-2.
The mitochondrion is an important sub-cellular organelle responsible for the cellular energetic source and processes. Owing to its unique sensitivity to heat and reactive oxygen species, the mitochondrion is an appropriate target for photothermal and photodynamic treatment for cancer. However, targeted delivery of therapeutics to mitochondria remains a great challenge due to their location in the sub-cellular compartment and complexity of the intracellular environment. Herein, we report a class of the mitochondrion-targeted liposomal delivery platform consisting of a guanidinium-based dendritic peptide moiety mimicking mitochondrion protein transmembrane signaling to exert mitochondrion-targeted delivery with pH sensitive and charge-reversible functions to enhance tumor accumulation and cell penetration. Compared to the current triphenylphosphonium (TPP)-based mitochondrion targeting system, this dendritic lipopeptide (DLP) liposomal delivery platform exhibits about 3.7-fold higher mitochondrion-targeted delivery efficacy. Complete tumor eradication is demonstrated in mice bearing 4T1 mammary tumors after combined photothermal and photodynamic therapies delivered by the reported DLP platform.
线粒体是一种重要的亚细胞细胞器,负责细胞的能量来源和过程。由于其对热和活性氧的独特敏感性,线粒体是光热和光动力治疗癌症的合适靶点。然而,由于其位于亚细胞区室中以及细胞内环境的复杂性,将治疗剂靶向递送至线粒体仍然是一个巨大的挑战。在此,我们报告了一类线粒体靶向脂质体递药平台,由胍基衍生的树枝状肽部分模拟线粒体蛋白跨膜信号转导,发挥线粒体靶向递药作用,具有 pH 敏感和电荷可逆功能,以增强肿瘤积累和细胞穿透。与目前基于三苯基膦(TPP)的线粒体靶向系统相比,这种树枝状脂质体(DLP)脂质体递药平台表现出约 3.7 倍更高的线粒体靶向递药功效。在用所报道的 DLP 平台进行光热和光动力联合治疗后,荷有 4T1 乳腺癌的小鼠完全消除了肿瘤。