Single Molecular Nanomedicines Based on Macrocyclic Carrier-Drug Conjugates for Concentration-Independent Encapsulation and Precise Activation of Drugs

化学 药品 组合化学 纳米医学 药物输送 结合 纳米技术 控制释放 封装(网络) 药理学 有机化学 纳米颗粒 计算机科学 材料科学 医学 数学分析 计算机网络 数学
作者
Shunyu Yao,An‐Kang Ying,Ze-Tao Jiang,Yuan‐Qiu Cheng,Wen‐Chao Geng,Xin‐Yue Hu,Kang Cai,Dong‐Sheng Guo
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:146 (20): 14203-14212 被引量:10
标识
DOI:10.1021/jacs.4c03238
摘要

Nanomedicines often rely on noncovalent self-assembly and encapsulation for drug loading and delivery. However, challenges such as reproducibility issues due to the multicomponent nature, off-target activation caused by premature drug release, and complex pharmacokinetics arising from assembly dissociation have hindered their clinical translation. In this study, we introduce an innovative design concept termed single molecular nanomedicine (SMNM) based on macrocyclic carrier-drug conjugates. Through the covalent linkage of two chemotherapy drugs to a hypoxia-cleavable macrocyclic carrier, azocalix[4]arene, we obtained two self-included complexes to serve as SMNMs. The intramolecular inclusion feature of the SMNMs has not only demonstrated comprehensive shielding and protection for the drugs but also effectively prevented off-target drug leakage, thereby significantly reducing their side effects and enhancing their antitumor therapeutic efficacy. Additionally, the attributes of being a single component and molecularly dispersed confer advantages such as ease of preparation and good reproducibility for SMNMs, which is desirable for clinical applications.
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