a School of Chemistry and Chemical Engineering , Southeast University , Nanjing , China.
b Department of Respiratory Medicine , The Affiiated Zhongda Hospital of Southeast University , Nanjing , China.
J Biomater Sci Polym Ed. 2018 Aug;29(11):1360-1374. doi: 10.1080/09205063.2018.1460141. Epub 2018 Apr 25.
The functionalized nanoparticles have been widely studied and reported as carriers of drug transport recently. Furthermore, many groups have focused more on developing novel and efficient treatment methods, such as photodynamic therapy and photothermal therapy, since both therapies have shown inspiring potential in the application of antitumor. The mentioned treatments exhibited the superiority of cooperative manner and showed the ability to compensate for the adverse effects caused by conventional monotherapy in proposed strategies. In view of the above descriptions, we formulated a thermosensitive drug delivery system, which achieved the enhanced delivery of cisplatin and two photosensitizers (ICG and Ce6) by dual-targeting traction. Drawing on the thin film hydration method, cisplatin and photosensitizers were encapsulated inside nanoparticles. Meanwhile, the targeting peptide cRGD and targeting molecule folate can be modified on the surface of nanoparticles to realize the active identification of tumor cells. The measurements of dynamic light scattering showed that the prepared nanoparticles had an ideal dispersibility and uniform particle size of 102.6 nm. On the basis of the results observed from confocal laser scanning microscope, the modified nanoparticles were more efficient endocytosed by MCF-7 cells as a contrast to SGC-7901 cells. Photothermal conversion-triggered drug release and photo-therapies produced a significant apoptosis rate of 85.9% on MCF-7 cells. The distinguished results made it believed that the formulated delivery system had conducted great efforts and innovations for the realization of concise collaboration and provided a promising strategy for the treatment of breast cancer.
功能化纳米粒子作为药物输送载体最近得到了广泛的研究和报道。此外,许多研究小组更加关注开发新的、有效的治疗方法,如光动力疗法和光热疗法,因为这两种疗法在抗肿瘤应用中都显示出了令人鼓舞的潜力。上述治疗方法表现出了协同作用的优越性,并表现出了在提出的策略中补偿常规单一疗法不良影响的能力。有鉴于此,我们设计了一种热敏药物传递系统,该系统通过双重靶向牵引实现了顺铂和两种光敏剂(ICG 和 Ce6)的增强传递。采用薄膜水化法将顺铂和光敏剂包封在纳米粒子内。同时,可以在纳米粒子表面修饰靶向肽 cRGD 和靶向分子叶酸,以实现对肿瘤细胞的主动识别。动态光散射测量表明,所制备的纳米粒子具有理想的分散性和均匀的粒径为 102.6nm。基于共聚焦激光扫描显微镜的观察结果,与 SGC-7901 细胞相比,修饰后的纳米粒子更有效地被 MCF-7 细胞内吞。光热转换触发的药物释放和光疗使 MCF-7 细胞的凋亡率达到 85.9%。显著的结果表明,所构建的递药系统为实现简洁的协同作用做出了巨大的努力和创新,为乳腺癌的治疗提供了一种有前途的策略。