Ma Rui, Zhang Peng, Chen Xiuying, Zhang Mengdi, Han Qinghe, Yuan Qinghai
Department of Radiology, The Second Hospital of Jilin University, Changchun, China.
Front Chem. 2024 Sep 26;12:1475131. doi: 10.3389/fchem.2024.1475131. eCollection 2024.
Chemodynamic therapy (CDT), designed to trigger a tumor-specific hydrogen peroxide (HO) reaction generating highly toxic hydroxyl radicals (·OH), has been investigated for cancer treatment. Unfortunately, the limited Fenton or Fenton-like reaction rate and the significant impact of excessive reducing glutathione (GSH) in the tumor microenvironment (TME) have severely compromised the effectiveness of CDT. To address this issue, we designed a dual-responsive nanoplatform utilizing a metal-polyphenol network (MPN) -coated multi-caged IrO for efficient anti-tumor therapy in response to the acidic TME and intracellular excess of GSH, in which MPN composed of Fe and tannic acid (TA). Initially, the acidic TME and intracellular excess of GSH lead to the degradation of the MPN shell, resulting in the release of Fe and exposure of the IrO core, facilitating the efficient dual-pathway CDT. Subsequently, the nanoplatform can mitigate the attenuation of CDT by consuming the excessive GSH within the tumor. Finally, the multi-caged structure of IrO is advantageous for effectively implementing photothermal therapy (PTT) in coordination with CDT, further enhancing the therapeutic efficacy of tumors. Moreover, the outstanding Computed Tomography (CT) and Magnetic Resonance Imaging (MRI) (T/T) multimodal imaging capabilities of IrO@MPN enable early diagnosis and timely treatment. This work provides a typical example of the construction of a novel multifunctional platform for dual-responsive treatment of tumors.
化学动力疗法(CDT)旨在引发肿瘤特异性过氧化氢(HO)反应以产生剧毒的羟基自由基(·OH),目前已被用于癌症治疗研究。遗憾的是,有限的芬顿或类芬顿反应速率以及肿瘤微环境(TME)中过量还原型谷胱甘肽(GSH)的显著影响严重损害了CDT的有效性。为解决这一问题,我们设计了一种双响应纳米平台,利用金属多酚网络(MPN)包覆的多笼状IrO,以响应酸性TME和细胞内过量的GSH进行高效抗肿瘤治疗,其中MPN由铁和单宁酸(TA)组成。最初,酸性TME和细胞内过量的GSH导致MPN外壳降解,从而释放出铁并使IrO核心暴露,促进高效的双途径CDT。随后,该纳米平台可通过消耗肿瘤内过量的GSH来减轻CDT的衰减。最后,IrO的多笼状结构有利于与CDT协同有效地实施光热疗法(PTT),进一步提高肿瘤的治疗效果。此外,IrO@MPN出色的计算机断层扫描(CT)和磁共振成像(MRI)(T/T)多模态成像能力能够实现早期诊断和及时治疗。这项工作为构建用于肿瘤双响应治疗的新型多功能平台提供了一个典型示例。