Dominguez-Martinez Irivette, Joaquin-Ovalle Freisa, Ferrer-Acosta Yancy, Griebenow Kai H
Department of Chemistry, University of Puerto Rico, San Juan 00925, Puerto Rico.
Molecular Sciences Research Center, San Juan 00926, Puerto Rico.
Pharmaceutics. 2022 Feb 24;14(3):490. doi: 10.3390/pharmaceutics14030490.
The folate receptor alpha (FR), which is overexpressed in solid tumors including NSCLC, can be utilized for active tumor targeting to afford more effective cancer therapies. In this context, cytochrome c (Cyt c) has drawn attention to cancer research because it is non-toxic, yet, when delivered to the cytoplasm of cancer cells, can kill them by inducing apoptosis. Cyt c nanoparticles (NPs, 169 ± 9 nm) were obtained by solvent precipitation with acetonitrile, and stabilized by reversible homo-bifunctional crosslinking to accomplish a Cyt-c-based drug delivery system that combines stimulus-responsive release and active targeting. Cyt c was released under intracellular redox conditions, due to an S-S bond in the NPs linker, while NPs remained intact without any release under extracellular conditions. The NP surface was decorated with a hydrophilic folic acid-polyethylene glycol (FA-PEG) polymer for active targeting. The FA-decorated NPs specifically recognized and killed cancer cells (IC = 47.46 µg/mL) that overexpressed FR, but showed no toxicity against FR-negative cells. Confocal microscopy confirmed the preferential uptake and apoptosis induction of our NPs by FR-positive cancer cells. In vivo experiments using a Lewis lung carcinoma (LLC) mouse model showed visible NP accumulation within the tumor and inhibited the growth of LLC tumors.
叶酸受体α(FR)在包括非小细胞肺癌(NSCLC)在内的实体瘤中过度表达,可用于主动肿瘤靶向,以提供更有效的癌症治疗。在此背景下,细胞色素c(Cyt c)已引起癌症研究的关注,因为它无毒,但当递送至癌细胞的细胞质时,可通过诱导凋亡杀死癌细胞。通过用乙腈进行溶剂沉淀获得细胞色素c纳米颗粒(NPs,169±9nm),并通过可逆的同双功能交联使其稳定,以实现一种基于细胞色素c的药物递送系统,该系统结合了刺激响应释放和主动靶向。由于NPs连接体中的S-S键,细胞色素c在细胞内氧化还原条件下释放,而NPs在细胞外条件下保持完整且无任何释放。NP表面用亲水性叶酸-聚乙二醇(FA-PEG)聚合物修饰以实现主动靶向。FA修饰的NPs特异性识别并杀死过度表达FR的癌细胞(IC = 47.46µg/mL),但对FR阴性细胞无毒性。共聚焦显微镜证实了我们的NPs被FR阳性癌细胞优先摄取并诱导凋亡。使用Lewis肺癌(LLC)小鼠模型的体内实验显示肿瘤内有明显的NP积累,并抑制了LLC肿瘤的生长。