Gao Fei, Yin Jianhui, Chen Yan, Guo Changyong, Hu Honggang, Su Jiacan
Institude of Translation Medicine, Shanghai University, Shanghai, China.
Department of Pharmacy, Medical Supplies Center of PLA General Hospital, Beijing, China.
Front Bioeng Biotechnol. 2022 Aug 16;10:972933. doi: 10.3389/fbioe.2022.972933. eCollection 2022.
The past decade has become an important strategy in precision medicine for the targeted therapy of many diseases, expecially various types of cancer. As a promising targeted element, nucleic acid aptamers are single-stranded functional oligonucleotides which have specific abilities to bind with various target molecules ranging from small molecules to entire organisms. They are often named 'chemical antibody' and have aroused extensive interest in diverse clinical studies on account of their advantages, such as considerable biostability, versatile chemical modification, low immunogenicity and quick tissue penetration. Thus, aptamer-embedded drug delivery systems offer an unprecedented opportunity in bioanalysis and biomedicine. In this short review, we endeavor to discuss the recent advances in aptamer-based targeted drug delivery platforms for cancer therapy. Some perspectives on the advantages, challenges and opportunities are also presented.
在过去十年中,靶向治疗已成为精准医学中针对多种疾病(尤其是各类癌症)的重要策略。核酸适配体作为一种有前景的靶向元件,是单链功能性寡核苷酸,具有与从小分子到整个生物体等各种靶分子特异性结合的能力。它们常被称为“化学抗体”,因其具有诸如良好的生物稳定性、多样的化学修饰、低免疫原性和快速的组织穿透性等优点,在各种临床研究中引起了广泛关注。因此,基于适配体的药物递送系统在生物分析和生物医学领域提供了前所未有的机遇。在这篇简短的综述中,我们将探讨基于适配体的癌症治疗靶向药物递送平台的最新进展。同时也会阐述一些关于其优势、挑战和机遇的观点。