College of Pharmaceutical Sciences, Zhejiang University, 866 Yuhangtang Road, Hangzhou, 310058, China.
Adv Healthc Mater. 2019 Apr;8(8):e1801486. doi: 10.1002/adhm.201801486. Epub 2019 Mar 11.
Tumor growth and metastasis are the major causes of high mortality in breast cancer. In this study, a water-responsive phospholipid-calcium-carbonate hybrid nanoparticle (PL/ACC-DOX&ICG) surface modified with a phospholipid shell is designed and covered with a shielding polymer polyethylene glycol; this development is loaded with the photosensitizer indocyanine green (ICG) and the chemotherapeutic drug doxorubicin (DOX) for near-infrared (NIR) imaging and chemophotothermal combination therapy against breast cancer. PL/ACC-DOX&ICG exhibits satisfactory stability against various aqueous environments with minimal drug leakage and can readily decompose to facilitate quick drug release into cancer cells. In vivo biodistribution studies, PL/ACC-DOX&ICG demonstrated strong tumor-homing properties. Interestingly, the in vitro cellular uptake and intratumoral penetration depth of PL/ACC-DOX&ICG are significantly enhanced under NIR laser irradiation, owing to ICG-induced hyperthermia, which not only enhances cell permeability and fluidity but also disrupts the dense tumor extracellular matrix. Compared to chemotherapy or photothermal therapy alone, chemophotothermal combination therapy synergistically induces apoptosis and death in 4T1 cells. Moreover, compared with the phosphate buffer saline group, the combined treatment suppress primary tumor growth at a rate of approximately 94.88% and decrease the number of metastatic nodules by about 93.6%. Therefore, PL/ACC-DOX&ICG may be a promising nanoplatform for breast cancer treatment.
肿瘤的生长和转移是导致乳腺癌高死亡率的主要原因。在这项研究中,设计了一种具有磷脂壳层表面修饰的水响应型磷脂-碳酸钙混合纳米粒子(PL/ACC-DOX&ICG),并覆盖有屏蔽聚合物聚乙二醇;该纳米粒子装载了光敏剂吲哚菁绿(ICG)和化疗药物阿霉素(DOX),用于近红外(NIR)成像和化学光热联合治疗乳腺癌。PL/ACC-DOX&ICG 在各种水相环境中表现出令人满意的稳定性,药物泄漏最小,并且可以迅速分解,以促进药物快速释放到癌细胞中。体内生物分布研究表明,PL/ACC-DOX&ICG 具有很强的肿瘤归巢特性。有趣的是,在近红外激光照射下,PL/ACC-DOX&ICG 的体外细胞摄取和肿瘤内穿透深度显著增强,这归因于 ICG 诱导的热疗,它不仅增强了细胞通透性和流动性,而且破坏了致密的肿瘤细胞外基质。与单独化疗或光热治疗相比,化学光热联合治疗协同诱导 4T1 细胞凋亡和死亡。此外,与磷酸盐缓冲盐水组相比,联合治疗使原发性肿瘤的生长抑制率约为 94.88%,转移结节数减少约 93.6%。因此,PL/ACC-DOX&ICG 可能是一种有前途的乳腺癌治疗纳米平台。