Shanghai Key Laboratory of Functional Materials Chemistry , East China University of Science and Technology , Shanghai 200237 , China.
Biomacromolecules. 2019 Jun 10;20(6):2338-2349. doi: 10.1021/acs.biomac.9b00321. Epub 2019 May 6.
Premature and incomplete drug release is the typical bottleneck of drug release in traditional chemotherapy. Synergistic therapies are highly desirable in medicine and biology because they can compensate for the drawbacks of single therapy and significantly enhance the therapeutic efficacy. Herein, a novel near infrared (NIR)-activated polymeric nanoplatform with upper critical solution temperature (UCST) was constructed for image-guided synergistic photothermal therapy (PTT) and chemotherapy. UCST-responsive amphiphilic block copolymers were synthesized by reversible addition-fragmentation chain-transfer (RAFT) polymerization and then co-assembled with IR780 and cabazitaxel (Cab) to form spherical nanoparticles (NPs). IR780/Cab dual-loaded UCST polymeric NPs can produce local heating upon NIR laser irradiation and further lead to the dissociation of cargo-loaded NPs and controlled release of Cab. IR780 plays the role of both a heating generator and an activator for "on-demand" drug release. The investigation of in vivo fluorescence and photothermal imaging clearly demonstrated tumor targeting. Notably, both in vitro and in vivo studies illustrated that the synergistic PTT and chemotherapy presented better anticancer efficacy than that of PTT and chemotherapy simplely combined. Thus, the well-defined polymeric nanoplatform opens a versatile and effective path to develop image-guided synergistic therapies for tumor treatment.
药物过早释放和不完全释放是传统化学疗法药物释放的典型瓶颈。协同疗法在医学和生物学中是非常需要的,因为它们可以弥补单一疗法的缺点,并显著提高治疗效果。本文构建了一种具有上临界溶液温度(UCST)的新型近红外(NIR)激活聚合物纳米平台,用于图像引导协同光热治疗(PTT)和化学疗法。通过可逆加成-断裂链转移(RAFT)聚合合成了 UCST 响应性两亲嵌段共聚物,然后将其与 IR780 和卡巴他赛(Cab)共组装形成球形纳米颗粒(NPs)。IR780/Cab 双重负载 UCST 聚合物 NPs 在近红外激光照射下会产生局部加热,进一步导致载药 NPs 的解离和 Cab 的控制释放。IR780 既可以作为加热发生器,也可以作为“按需”药物释放的激活剂。体内荧光和光热成像的研究清楚地证明了肿瘤靶向性。值得注意的是,体外和体内研究都表明,协同 PTT 和化疗比单纯的 PTT 和化疗联合具有更好的抗癌效果。因此,这种定义明确的聚合物纳米平台为肿瘤治疗开辟了一条通用且有效的协同治疗图像引导途径。