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两亲性喜树碱前药的变革性纳米医学用于癌症治疗的长循环和高肿瘤摄取

Transformative Nanomedicine of an Amphiphilic Camptothecin Prodrug for Long Circulation and High Tumor Uptake in Cancer Therapy.

机构信息

Laboratory of Molecular Imaging and Nanomedicine (LOMIN), National Institute of Biomedical Imaging and Bioengineering (NIBIB), National Institutes of Health (NIH) , Bethesda, Maryland 20892, United States.

School of Engineering, China Pharmaceutical University , Nanjing 210009, P. R. China.

出版信息

ACS Nano. 2017 Sep 26;11(9):8838-8848. doi: 10.1021/acsnano.7b03003. Epub 2017 Sep 6.

Abstract

We report a camptothecin (CPT) prodrug that was well formulated in solution and rapidly transformed into long-circulating nanocomplexes in vivo for highly efficient drug delivery and effective cancer therapy. Specifically, using a redox-responsive disulfide linker, CPT was conjugated with an albumin-binding Evans blue (EB) derivative; the resulting amphiphilic CPT-ss-EB prodrug self-assembled into nanostructures in aqueous solution, thus conferring high solubility and stability. By binding CPT-ss-EB to endogenous albumin, the 80 nm CPT-ss-EB nanoparticles rapidly transformed into 7 nm albumin/prodrug nanocomplexes. CPT-ss-EB was efficient at intracellular delivery into cancer cells, released intact CPT in a redox-responsive manner, and exhibited cytotoxicity as potent as CPT. In mice, the albumin/CPT-ss-EB nanocomplex exhibited remarkably long blood circulation (130-fold greater than CPT) and efficient tumor accumulation (30-fold of CPT), which consequently contributed to excellent therapeutic efficacy. Overall, this strategy of transformative nanomedicine is promising for efficient drug delivery.

摘要

我们报告了一种喜树碱(CPT)前药,它在溶液中得到了很好的配方,并在体内迅速转化为长循环的纳米复合物,用于高效的药物递送和有效的癌症治疗。具体来说,使用氧化还原响应的二硫键连接物,将 CPT 与白蛋白结合的 Evans 蓝(EB)衍生物连接;所得的两亲性 CPT-ss-EB 前药在水溶液中自组装成纳米结构,从而赋予高溶解度和稳定性。通过将 CPT-ss-EB 与内源性白蛋白结合,80nm 的 CPT-ss-EB 纳米颗粒迅速转化为 7nm 的白蛋白/前药纳米复合物。CPT-ss-EB 能够有效地将 CPT 递送到癌细胞内,以氧化还原响应的方式释放完整的 CPT,并表现出与 CPT 相当的细胞毒性。在小鼠中,白蛋白/CPT-ss-EB 纳米复合物表现出显著的长循环(比 CPT 长 130 倍)和高效的肿瘤积累(CPT 的 30 倍),这有助于实现优异的治疗效果。总的来说,这种变革性的纳米医学策略有望实现高效的药物递送。

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