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负载一氧化氮的仿生脂蛋白使肿瘤血管正常化,以改善白蛋白结合型紫杉醇纳米粒的瘤内递送及化疗效果。

Nitric Oxide-Loaded Bioinspired Lipoprotein Normalizes Tumor Vessels To Improve Intratumor Delivery and Chemotherapy of Albumin-Bound Paclitaxel Nanoparticles.

作者信息

Wu Yao, Xie Honglei, Li Yongping, Bao Xinyue, Lu Guo-Liang, Wen Jingyuan, Gao Yuan, Li Yaping, Zhang Zhiwen

机构信息

School of Pharmacy, Fudan University, Shanghai 201203, China.

State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, China.

出版信息

Nano Lett. 2023 Feb 8;23(3):939-947. doi: 10.1021/acs.nanolett.2c04312. Epub 2023 Jan 26.

Abstract

The disorganized vasculatures in tumors represent a substantial challenge of intratumor nanomedicine delivery to exert the anticancer effects. Herein, we rationally designed a glutathione (GSH)-activated nitric oxide (NO) donor loaded bioinspired lipoprotein system (NO-BLP) to normalize tumor vessels and then promote the delivery efficiency of sequential albumin-bound paclitaxel nanoparticles (PAN) in tumors. NO-BLP exhibited higher tumor accumulation and deeper penetration versus the counterpart liposomal formulation (NO-Lipo) in 4T1 breast cancer tumors, thus producing notable vascular normalization efficacy and causing a 2.33-fold increase of PAN accumulation. The sequential strategy of NO-BLP plus PAN resulted in an 81.03% inhibition of tumor growth in 4T1 tumors, which was better than the NO-BLP monotherapy, PAN monotherapy, and the counterpart NO-Lipo plus PAN treatment. Therefore, the bioinspired lipoprotein of NO-BLP provides an encouraging platform to normalize tumor vessels and promote intratumor delivery of nanomedicines for effective cancer treatment.

摘要

肿瘤中紊乱的脉管系统对肿瘤内纳米药物递送以发挥抗癌作用构成了重大挑战。在此,我们合理设计了一种负载谷胱甘肽(GSH)激活的一氧化氮(NO)供体的仿生脂蛋白系统(NO-BLP),以实现肿瘤血管正常化,进而提高序贯给药的白蛋白结合型紫杉醇纳米粒(PAN)在肿瘤中的递送效率。在4T1乳腺癌肿瘤中,与对应的脂质体制剂(NO-Lipo)相比,NO-BLP表现出更高的肿瘤蓄积和更深的渗透,从而产生显著的血管正常化效果,并使PAN的蓄积增加2.33倍。NO-BLP联合PAN的序贯策略导致4T1肿瘤的生长抑制率达到81.03%,优于NO-BLP单药治疗、PAN单药治疗以及对应的NO-Lipo联合PAN治疗。因此,NO-BLP的仿生脂蛋白为使肿瘤血管正常化并促进纳米药物在肿瘤内的递送以实现有效的癌症治疗提供了一个令人鼓舞的平台。

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