State Key Laboratory of Systems Medicine for Cancer, Shanghai Cancer Institute, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, 200240, China.
School of Chemistry and Chemical Engineering, Nantong University, Nantong 226019, P. R. China.
Biomater Sci. 2023 Aug 8;11(16):5674-5679. doi: 10.1039/d3bm00519d.
Moderate oxygen (O) supply and uneven distribution of oxygen at the tumor site usually hinder the therapeutic efficacy of hypoxia-activated prodrugs. In this report, we designed a ferrocene-containing supramolecular nanomedicine (PFC/GOD-TPZ) with the PEG corona and disulfide-bond cross-linked core to co-encapsulate 4-di--oxide tirapazamine (TPZ) and glucose oxidase (GOD). The PEG corona of PFC/GOD-TPZ could be weakly acidic tumor pH-responsively detached for an enhanced cellular internalization, while the disulfide-bond cross-linked core could be cleavaged by intracellular glutathione (GSH) to present a GSH-triggered drug-release behavior. Subsequently, the cascade reactions, including catalytic reactions among the released GOD, glucose, and O to generate HO and the subsequent Fenton reaction between ferrocene and HO, occurred. With the depletion of O, the non-toxic TPZ was activated and converted into the cytotoxic therapeutic agent benzotriazinyl (BTZ) radical under the exacerbated hypoxic microenvironment. Collectively, the PFC/GOD-TPZ provides a promising strategy for effective combination therapy of GOD-mediated starvation therapy, chemodynamic therapy (CDT), and hypoxia-activated chemotherapy (CT).
中等氧(O)供应和肿瘤部位氧分布不均通常会阻碍缺氧激活前药的治疗效果。在本报告中,我们设计了一种含有二茂铁的超分子纳米药物(PFC/GOD-TPZ),具有聚乙二醇(PEG)冠和二硫键交联核,用于共包封 4-二氢-氧化替拉扎明(TPZ)和葡萄糖氧化酶(GOD)。PFC/GOD-TPZ 的 PEG 冠可以在弱酸性肿瘤 pH 下响应性脱落,以增强细胞内化,而二硫键交联核可以被细胞内谷胱甘肽(GSH)切割,呈现出 GSH 触发的药物释放行为。随后,包括释放的 GOD、葡萄糖和 O 之间的催化反应在内的级联反应发生,生成 HO,随后 ferrocene 和 HO 之间发生 Fenton 反应。随着 O 的消耗,无毒的 TPZ 在加剧的缺氧微环境下被激活,并转化为细胞毒性治疗剂苯并三嗪基(BTZ)自由基。总的来说,PFC/GOD-TPZ 为 GOD 介导的饥饿治疗、化学动力学治疗(CDT)和缺氧激活化疗(CT)的有效联合治疗提供了一种有前途的策略。