Wuya College of Innovation, Shenyang Pharmaceutical University, Shenyang, China.
School of Life Science and Biopharmaceutics, Shenyang Pharmaceutical University, Shenyang, China.
Nanomedicine. 2019 Oct;21:102066. doi: 10.1016/j.nano.2019.102066. Epub 2019 Jul 24.
A single nanodrug delivery system for combined delivery of paclitaxel and doxorubicin that integrates high co-loading efficiency, synchronous co-delivery of combined drugs, controllable drug release, and maintains the drug combination at fixed synergistic ratios has been proven to be challenging. Here, we report a redox dual-responsive prodrug nanosystem consisting of a paclitaxel-doxorubicin heterodimeric prodrug with a thioether bond linkage to effectively co-deliver two therapeutic drugs. The heterodimeric prodrug could self-assemble into uniform nanoaggregates containing DSPE-PEG with a precise drug co-loading ratio in water, and possessed a high co-loading content. We demonstrated that this nanosystem provided strong synergistic effects in MCF-7 and 4 T1 cells. In vivo, this nanosystem results in a long blood circulation, high accumulation in the tumor, and significant inhibition of tumor growth in BALB/c mice bearing 4 T1 tumors. Such a simple, safe, and efficient heterodimeric prodrug nanosystem exhibits great potential for clinical translation in future combination chemotherapy treatments.
用于紫杉醇和阿霉素联合递药的单一纳米药物递送系统,其具有高共载效率、联合药物的同步共递药、可控药物释放,并保持药物组合以固定协同比例,这一直是具有挑战性的。在这里,我们报告了一种由含硫醚键连接的紫杉醇-阿霉素杂二聚体前药组成的氧化还原双重响应前药纳米系统,可有效共递两种治疗药物。杂二聚体前药可在水中自组装成均匀的纳米聚集体,其中含有 DSPE-PEG,并具有精确的药物共载比率和高共载含量。我们证明,该纳米系统在 MCF-7 和 4 T1 细胞中具有很强的协同作用。在体内,该纳米系统导致血液长循环、在肿瘤中高蓄积,并显著抑制荷 4 T1 肿瘤的 BALB/c 小鼠的肿瘤生长。这种简单、安全、高效的杂二聚体前药纳米系统在未来的联合化疗治疗中具有很大的临床转化潜力。