School of Chemistry and Chemical Engineering, Nantong University, Nantong 226019, PR China.
School of Chemistry and Chemical Engineering, Nantong University, Nantong 226019, PR China.
Acta Biomater. 2022 Jul 1;146:396-405. doi: 10.1016/j.actbio.2022.04.027. Epub 2022 Apr 22.
Tumor microenvironment responsive nanomedicine has drawn considerable attention for combination therapy, but still remains a significant challenge for less side effects and enhanced anti-tumor efficiency. Herein, we develop a pH/ROS dual-responsive supramolecular polypeptide nanoprodrug (PFW-DOX/GOD) by using pillar[5]arene-based host-guest strategy for combined glucose degradation, chemodynamic therapy (CDT), and chemotherapy (CT). The PFW-DOX/GOD consists of a pH-responsive ferrocene/pillar[5]arene-containing polypeptide, a ROS-responsive polyprodrug, and encapsulated glucose oxidase (GOD). Upon into intracellular acidic environment, PFW-DOX/GOD exhibits rapid pH-triggered disassembly behavior. Simultaneously, the released GOD can catalyze intratumoral glucose into massive HO, which are further converted into highly toxic hydroxyl radicals (•OH) by the catalysis of ferrocene via the Fenton reaction. Thereafter, induced by the ROS-responsive cleavage of thioketal linkage, the conjugated DOX prodrug was released and activated. The combined glucose degradation, chemodynamic therapy (CDT), and chemotherapy (CT) of PFW-DOX/GOD present anti-tumor effect with 96% of tumor inhibitory rate (TIR). Therefore, such tumor microenvironment-responsive supramolecular polypeptide nanoprodrugs represent a potential candidate for combination therapy with minimal side effects. STATEMENT OF SIGNIFICANCE: In this work, a tumor microenvironment-responsive supramolecular polypeptide nanoprodrug (PFW-DOX/GOD) was prepared via pillar[5]arene-based host-guest interactions, and presented low side effects and high tumor accumulation owing to the diameters of about 200 nm and surface PEG segment. After pH-responsive release of GOD in the intracellular acidic environment, the cascade catalytic reactions including GOD-catalyzed degradation of intratumoral glucose and Fenton reaction, effectively happened to generate •OH for chemodynamic therapy (CDT), which subsequently induced the cleavage of thioketal linkage to activate free DOX for chemotherapy (CT). Collectively, this supramolecular polypeptide nanoprodrugs provide a promising strategy for combination therapy with synergetic anti-tumor effect.
肿瘤微环境响应型纳米医学因其联合治疗而备受关注,但如何减少副作用并提高抗肿瘤效率仍是一个重大挑战。在此,我们采用基于柱[5]芳烃的主客体作用策略,构建了一种 pH/ROS 双重响应的超分子多肽纳米药物(PFW-DOX/GOD)用于联合葡萄糖降解、化学动力学治疗(CDT)和化学疗法(CT)。PFW-DOX/GOD 由 pH 响应的二茂铁/柱[5]芳烃含多肽、ROS 响应的多前药和包封的葡萄糖氧化酶(GOD)组成。进入细胞内酸性环境后,PFW-DOX/GOD 表现出快速的 pH 触发的解组装行为。同时,释放的 GOD 可将肿瘤内的葡萄糖催化生成大量的 HO,这些 HO 进一步通过 Fenton 反应被二茂铁催化转化为高毒性的羟基自由基(•OH)。随后,在 ROS 响应的硫缩酮键裂解的诱导下,释放并激活了共轭 DOX 前药。PFW-DOX/GOD 的联合葡萄糖降解、化学动力学治疗(CDT)和化学疗法(CT)表现出 96%的肿瘤抑制率(TIR)的抗肿瘤效果。因此,这种肿瘤微环境响应型超分子多肽纳米药物代表了一种具有最小副作用的联合治疗的潜在候选药物。