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组合药物偶联使纳米颗粒双重药物递送成为可能。

Combinatorial drug conjugation enables nanoparticle dual-drug delivery.

机构信息

Department of Nanoengineering University of California San Diego, La Jolla, CA 92093, USA.

出版信息

Small. 2010 Jul 5;6(13):1442-8. doi: 10.1002/smll.201000631.

Abstract

A new approach to loading multiple drugs onto the same drug-delivery nanocarrier in a precisely controllable manner, by covalently preconjugating multiple therapeutic agents through hydrolyzable linkers to form drug conjugates, is reported. In contrast to loading individual types of drugs separately, this drug-conjugates strategy enables the loading of multiple drugs onto the same carrier with a predefined stoichiometric ratio. The cleavable linkers allow the therapeutic activity of the individual drugs to be resumed after the drug conjugates are delivered into the target cells and unloaded from the delivery vehicle. As a proof of concept, the synthesis and characterization of paclitaxel-gemcitabine conjugates are demonstrated. The time-dependent hydrolysis kinetics and cytotoxicity of the combinatorial drug conjugates against human pancreatic cancer cells are examined. It is shown that the synthesized drug conjugates can be readily encapsulated into a lipid-coated polymeric drug-delivery nanoparticle, which significantly improves the cytotoxicity of the drug conjugates as compared to the free drug conjugates.

摘要

本文报道了一种新的方法,通过将多个治疗剂通过可水解连接子共价预共轭来形成药物缀合物,以精确可控的方式将多种药物加载到同一药物传递纳米载体上。与分别加载单独类型的药物相比,这种药物缀合物策略能够以预定的化学计量比将多种药物加载到同一载体上。可裂解的连接子允许在药物缀合物递送到靶细胞并从递药载体中释放后恢复各个药物的治疗活性。作为概念验证,本文展示了紫杉醇-吉西他滨缀合物的合成和表征。研究了组合药物缀合物对人胰腺癌细胞的时间依赖性水解动力学和细胞毒性。结果表明,合成的药物缀合物可以容易地封装到脂质包覆的聚合物药物递送纳米颗粒中,与游离药物缀合物相比,这显著提高了药物缀合物的细胞毒性。

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