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具有纳米机械作用的偶氮苯脂质体用于胞质化疗药物递送

Azobenzene-based liposomes with nanomechanical action for cytosolic chemotherapeutic drug delivery.

作者信息

Zhao Cui-Cui, Peng Shiyu, Wang Jialiang Rachel, Hou Xiaoxue, Zhao Yu, Huang Fan

机构信息

Department of VIP Ward, Tianjin's Clinical Research Center for Cancer, Key Laboratory of Cancer Prevention and Therapy (Tianjin), Key Laboratory of Breast Cancer Prevention and Therapy, Tianjin Medical University, Ministry of Education, National Clinical Research Center for Cancer, Tianjin Medical University Cancer Institute & Hospital, Tianjin 300060, China.

State Key Laboratory of Advanced Medicals and Devices, Tianjin Key Laboratory of Radiation Medicine and Molecular Nuclear Medicine, Tianjin Institutes of Health Science, Institute of Radiation Medicine, Chinese Academy of Medical Sciences & Peking Union Medical College, Tianjin 300192, China.

出版信息

Colloids Surf B Biointerfaces. 2025 Jan;245:114198. doi: 10.1016/j.colsurfb.2024.114198. Epub 2024 Aug 31.

Abstract

The stimuli-responsive nano-carriers are at the forefront of research in nanotechnology and materials science. These advanced systems are designed to alter their physicochemical properties upon exposure to specific stimuli, enabling controllable and targeted delivery of therapeutic agents. Nevertheless, limited endosomal escape reduces the drug bioavailability in clinical use. We herein report azobenzene (Azo)-based liposomes, prepared by co-assembling the photoisomerizable cationic Azo lipids and helper lipids, which achieve controllable doxorubicin (Dox) release and enhanced cytosolic transport upon light irradiation. Azo lipids undergo reversible isomerization between cis-isomers and trans-isomer when received UV and visible (Vis) light irradiation, causing liposomal membrane permeability changes for controlled drug release. Moreover, the nanomechanical action created by the isomerization of Azo lipids promotes the endosomal escape of the liposomes. DSPC-Azo liposomes, with minimal Dox leakage, showed significant tumor cell killing upon irradiation. For in vivo study, we co-encapsulated the upconverting nanoparticles (UCNPs), which can convert the near-infrared (NIR) light into UV/Vis emissions, facilitating Azo units activation. UCNP/Dox-loaded DSPC-Azo liposomes inhibited tumor growth under NIR irradiation in a 4T1 tumor-bearing mouse model.

摘要

刺激响应性纳米载体处于纳米技术和材料科学研究的前沿。这些先进的系统旨在在暴露于特定刺激时改变其物理化学性质,从而实现治疗剂的可控靶向递送。然而,有限的内体逃逸降低了其在临床应用中的药物生物利用度。我们在此报告了基于偶氮苯(Azo)的脂质体,它是通过将可光异构化的阳离子偶氮脂质与辅助脂质共组装制备而成,在光照下可实现阿霉素(Dox)的可控释放并增强胞质转运。偶氮脂质在受到紫外线和可见光(Vis)照射时会在顺式异构体和反式异构体之间发生可逆异构化,导致脂质体膜通透性改变以实现药物的可控释放。此外,偶氮脂质异构化产生的纳米机械作用促进了脂质体的内体逃逸。DSPC - Azo脂质体的阿霉素泄漏极少,在照射后显示出显著的肿瘤细胞杀伤作用。对于体内研究,我们共包封了上转换纳米颗粒(UCNPs),其可将近红外(NIR)光转换为紫外线/可见光发射,从而促进偶氮单元的激活。负载UCNP/Dox的DSPC - Azo脂质体在4T1荷瘤小鼠模型的近红外照射下抑制了肿瘤生长。

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pH-responsive cationic liposome for endosomal escape mediated drug delivery.pH 响应性阳离子脂质体用于介导内体逃逸的药物递送。
Colloids Surf B Biointerfaces. 2020 Apr;188:110804. doi: 10.1016/j.colsurfb.2020.110804. Epub 2020 Jan 16.

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