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具有棒状结构的功能化纳米杂化物,通过依次产生单线态氧和二氧化碳气泡来提高对癌症的化学光热治疗效果。

Functionalized nanohybrids with rod shape for improved chemo-phototherapeutic effect against cancer by sequentially generating singlet oxygen and carbon dioxide bubbles.

作者信息

Zhang Wei, Chen Lu, Zhang Xianbin, Gong Peng, Wang Xiyu, Xu Zhiying, Nie Ganyu, Xu Lu

机构信息

School of Pharmacy, Shenyang Pharmaceutical University, Shenyang 110016, China.

Department of General Surgery and Institute of Precision Diagnosis and Treatment of Digestive System Tumors, Carson International Cancer Center, Shenzhen University General Hospital, Shenzhen University, Shenzhen 518060, China.

出版信息

Biomater Sci. 2023 Oct 10;11(20):6894-6905. doi: 10.1039/d3bm00541k.

Abstract

The application of hybrid nanocarriers is expected to play an active role in improving treatment of chemotherapy and phototherapy. Herein, a nanohybrid with a core of mesoporous silica nanorods and shell of folate-functionalized zeolite imidazole framework (ZIF-8/FA) was synthesized polydopamine (PDA)-mediated integration. A chemotherapeutic drug (DOX), bubble generator (NHHCO, ABC), and photosensitive agent (ICG) were simultaneously loaded into the delivery system to construct smart ZIF-8/FA-coated mesoporous silica nanorods (IDa-PRMSs@ZF). We found that ICG endowed the designed delivery system with a moderate photothermal conversion efficiency of 26.06% and the capacity to release O. The produced hyperthermia caused ABC to decompose and further generate carbon dioxide bubbles, thereby facilitating DOX release, sequentially. Importantly, the underlying mechanism was also investigated using mathematical kinetic modeling. The tumor inhibition rate of IDa-PRMSs@ZF under NIR irradiation reached 83.8%. This study provides a promising strategy based on rod-shaped nanohybrids for effective combination antitumor therapy.

摘要

混合纳米载体的应用有望在改善化疗和光疗治疗方面发挥积极作用。在此,通过聚多巴胺(PDA)介导的整合作用,合成了一种以介孔二氧化硅纳米棒为核、叶酸功能化沸石咪唑框架(ZIF-8/FA)为壳的纳米杂化物。将一种化疗药物(阿霉素,DOX)、气泡生成剂(NHHCO,ABC)和光敏剂(吲哚菁绿,ICG)同时负载到该递送系统中,构建了智能ZIF-8/FA包覆的介孔二氧化硅纳米棒(IDa-PRMSs@ZF)。我们发现ICG赋予所设计的递送系统26.06%的适度光热转换效率以及释放氧气的能力。所产生的热疗导致ABC分解并进一步产生二氧化碳气泡,从而依次促进DOX的释放。重要的是,还使用数学动力学模型研究了其潜在机制。IDa-PRMSs@ZF在近红外(NIR)照射下的肿瘤抑制率达到83.8%。本研究基于棒状纳米杂化物提供了一种用于有效联合抗肿瘤治疗的有前景的策略。

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