光动力疗法
材料科学
适体
光敏剂
纳米技术
体内
癌细胞
癌症研究
药物输送
血管生成
癌症
垂直波分
生物物理学
癌症治疗
纳米医学
黑色素瘤
医学
内科学
分子生物学
生物
化学
有机化学
作者
Jincong Yan,Tian Gao,Zhongzhong Lu,Jingbo Yin,Ye Zhang,Renjun Pei
标识
DOI:10.1021/acsami.1c06818
摘要
Achieving controlled and accurate delivery of photosensitizers (PSs) into tumor sites is a major challenge in conventional photodynamic therapy (PDT). Aptamer is a short oligonucleotide sequence (DNA or RNA) with a folded three-dimensional structure, which can selectively bind to specific small molecules, proteins, or the whole cells. Aptamers could act as ligands and be modified onto PSs or nanocarriers, enabling specific recognition and binding to tumor cells or their membrane proteins. The resultant aptamer-modified PSs or PSs-containing nanocarriers generate amounts of reactive oxygen species with light irradiation and obtain superior photodynamic therapeutic efficiency in tumors. Herein, we overview the recent progress in the designs and applications of aptamer-targeted photodynamic platforms for tumor therapy. First, we focus on the progress on the rational selection of aptamers and summarize the applications of aptamers which have been applied for targeted tumor diagnosis and therapy. Then, aptamer-targeted photodynamic therapies including various aptamer–PSs, aptamer–nanocarriers containing PSs, and aptamer–nano-photosensitizers are highlighted. The aptamer-targeted synergistically therapeutic platforms including PDT, photothermal therapy, and chemotherapy, as well as the imaging-guided theranostics, are also discussed. Finally, we offer an insight into the development trends and future perspectives of aptamer-targeted photodynamic platforms for tumor therapy.
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