Department of Infectious Disease, Wuhu No. 1 People's Hospital, Wuhu, China.
Department of Oncology, Yancheng No. 1 People's Hospital, Yancheng First Hospital Affiliated Hospital of Nanjing University Medical School, Yancheng, China.
Drug Deliv. 2021 Dec;28(1):680-691. doi: 10.1080/10717544.2021.1905750.
Multidrug resistance (MDR) is one of the main reasons for tumor chemotherapy failure. Podophyllotoxin (PPT) has been reported that can suppress MDR cancer cell growth; however, effective delivery of PPT to MDR cancer cells is challenged by cascaded bio-barriers. To effectively deliver PPT to MDR cancer cells, a PPT polymeric prodrug micelle (PCDMA) with the charge-conversion capability and self-acceleration drug release function are fabricated, which is composed of a pH and reactive oxygen species (ROS) sequentially responsive PPT-polymeric prodrug and an ROS generation agent, cucurbitacin B (CuB). After reach to tumor tissue, the surface charge of PCDMA could rapidly reverse to positive in the tumor extracellular environment to promote cellular uptake. Subsequently, the PCDMA could be degraded to release PPT and CuB in response to an intracellular high ROS condition. The released CuB is competent for generating ROS, which in turn accelerates the release of PPT and CuB. Eventually, the released PPT could kill MDR cancer cells. The and studies demonstrated that PCDMA was effectively internalized by cancer cells and produces massive ROS intracellular, rapid release drug, and effectively overcame MDR compared with the control cells, due to the tumor-specific weakly acidic and ROS-rich environment. Our results suggest that the pH/ROS dual-responsive PCDMA micelles with surface charge-reversal and self-amplifying ROS-response drug release provide an excellent platform for potential MDR cancer treatment.
多药耐药性(MDR)是肿瘤化疗失败的主要原因之一。鬼臼毒素(PPT)已被报道可抑制 MDR 癌细胞生长;然而,PPT 有效递送到 MDR 癌细胞受到级联生物屏障的挑战。为了有效递送到 MDR 癌细胞,制备了具有电荷转换能力和自加速药物释放功能的 PPT 聚合物前药胶束(PCDMA),它由 pH 和活性氧(ROS)顺序响应的 PPT-聚合物前药和 ROS 生成剂葫芦素 B(CuB)组成。到达肿瘤组织后,PCDMA 的表面电荷在肿瘤细胞外环境中迅速反转为正,以促进细胞摄取。随后,PCDMA 可响应细胞内高 ROS 条件降解以释放 PPT 和 CuB。释放的 CuB 有能力生成 ROS,从而反过来加速 PPT 和 CuB 的释放。最终,释放的 PPT 可以杀死 MDR 癌细胞。体外和体内研究表明,PCDMA 被癌细胞有效内化,并在细胞内产生大量 ROS,快速释放药物,并由于肿瘤特异性的弱酸性和富含 ROS 的环境,有效克服了 MDR。我们的结果表明,具有表面电荷反转和自放大 ROS 响应药物释放的 pH/ROS 双重响应 PCDMA 胶束为潜在的 MDR 癌症治疗提供了一个极好的平台。