Key Laboratory of Marine Drugs, Ministry of Education, School of Medicine and Pharmacy, Ocean University of China, Qingdao, 266003, China.
Department of Pharmacy, Qingdao Hiserve Medical Center, Qingdao, 266003, China.
Eur J Med Chem. 2020 Aug 15;200:112365. doi: 10.1016/j.ejmech.2020.112365. Epub 2020 Apr 30.
Nanomedicines have shown success in cancer therapy in recent years because of their excellent solubility in aqueous solution and drug accumulation through controlled release in tumor tissues, but the preparation of most nanomedicines still requires ionic materials, surfactants or the amphiphilic structure to maintain nanoparticle stability and function. In this study, we developed a couple of novel dually hydrophobic prodrugs (DHPs) by combining two hydrophobic compounds through different linkers and elaborated their self-assembly mechanisms by virtue of computational simulation. Importantly, without using any excipients, FL-2 NPs exhibited significantly prolonged retention in blood circulation and displayed a remarkable anti-tumor effect at very low concentration in vivo. Both DHPs consisted of camptothecin structural analogue(FL118) and a marine natural product (ES-285). Comparative experiments proved that these compounds could quickly form nanoparticles by way of simple preparation and remained relatively stable for long periods in PBS. FL-2 NPs linked with a disulphide bond could rapidly release bioactive FL118 after being triggered by endogenous reductive stimulus to exert anti-cancer effects. Overall, this study provides a new strategy for design of therapeutic nanomedicines consisting of dually hydrophobic molecules for cancer therapy.
近年来,纳米药物因其在水溶液中的优异溶解性以及在肿瘤组织中通过控制释放实现药物积累的能力,在癌症治疗方面取得了成功,但大多数纳米药物的制备仍需要离子材料、表面活性剂或两亲性结构来维持纳米颗粒的稳定性和功能。在本研究中,我们通过不同的连接子将两种疏水性化合物结合起来,开发了两种新型的双重疏水性前药(DHPs),并通过计算模拟详细阐述了它们的自组装机制。重要的是,无需使用任何赋形剂,FL-2 NPs 在血液循环中表现出明显延长的保留时间,并在体内以非常低的浓度显示出显著的抗肿瘤效果。这两种 DHP 都由喜树碱结构类似物(FL118)和一种海洋天然产物(ES-285)组成。对比实验证明,这些化合物可以通过简单的制备方法快速形成纳米颗粒,并且在 PBS 中可以保持相对稳定很长时间。与二硫键相连的 FL-2 NPs 在受到内源性还原刺激后可以迅速释放具有生物活性的 FL118,从而发挥抗癌作用。总的来说,本研究为设计用于癌症治疗的双重疏水性分子的治疗性纳米药物提供了一种新策略。