适体
精密医学
癌症治疗
癌症
转化式学习
范式转换
纳米技术
靶向给药
工程伦理学
药物输送
医学
计算机科学
内化
风险分析(工程)
抗癌药物
癌症治疗
靶向治疗
从长凳到床边
纳米医学
精确肿瘤学
药物发现
透视图(图形)
钥匙(锁)
抗癌药
药物开发
可扩展性
癌症生物标志物
计算生物学
新兴技术
工程类
数据科学
药品
作者
Zhao Gao,Sang Du,Jiarui Song,Yating Gao,Xin Peng,Xin Lin,Shuang E,Yinan Zhao,Shubiao Zhang
标识
DOI:10.1016/j.mtbio.2026.102766
摘要
As one of the leading causes of death worldwide, cancer has driven the advancement of targeted therapy toward greater precision and reduced off-target effects. Liposomes, with their biocompatibility, tunable properties, and clinical success, are among the most promising nanocarriers, yet their tumor-targeting specificity remains limited. Aptamer-functionalized liposomes provide a synergistic solution by combining selective aptamer-receptor recognition with efficient drug encapsulation, achieving enhanced tumor targeting and controlled release. Recent advances have expanded this platform toward multi-targeting, stimuli-responsive systems, and theranostic applications, thereby extending the potential of conventional liposomes. This review offers an integrated perspective on the structural design, internalization pathways, and therapeutic applications of aptamer-liposome systems across various cancers. Key barriers, including aptamer instability, scalable conjugation, and limited clinical translation, are critically discussed, alongside emerging strategies to address them. The convergence of aptamer targeting and liposomal delivery represents a transformative step toward next-generation nanotherapeutics, offering a paradigm shift in precision oncology by enabling personalized, selective, and multifunctional cancer therapy.
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