光热治疗
寡核苷酸
共轭体系
内化
基因传递
纳米技术
聚合物
两亲性
生物物理学
DNA
纳米材料
转染
材料科学
光热效应
化学
基因
共聚物
细胞
生物化学
生物
有机化学
作者
Guiling Fan,Shengxin Hou,Ying Gu,Hengfeng Jiang,Wenkang Zhang,Weitao Wu,Mengying Wang,Leilei Tian
标识
DOI:10.1002/anie.202425654
摘要
In order to address the strong hydrophobicity and function limitation of NIR‐II emissive phototheranostic π‐conjugated polymers (CPs), appropriate modifications are necessary to impart water dispersibility and functionality to CPs. This study uses DNA as the hydrophilic and functional unit to modify CPs, synthesizing CP‐g‐DNA amphiphilic copolymers and producing water‐dispersible oligonucleotide‐modified π‐conjugated polymer nanoparticles (OCPNs) by self‐assembly. In addition to DNA's gene regulation abilities that can combine with the low‐temperature photothermal therapy of CPs for enhanced tumor therapy, OCPNs display unique characteristics as novel nanomaterials. On one side, DNA changes the π‐π interactions and results in a two‐fold enhancement in NIR‐II fluorescence emission, which greatly benefits tumor imaging. On the other side, DNA varies the surface properties of OCPNs and the nano‐bio interactions. OCPNs exhibit multiple cellular internalization pathways, including caveolae/lipid raft‐mediated uptake for cytoplasm delivery, which may enhance gene transfection combined with the photothermal‐promoted lysosome escape. Moreover, OCPNs can quickly accumulate in tumors due to their higher tissue penetration capability. Taken together, a strategy of using DNA to enable and advance the phototheranostic applications of CPs has been demonstrated, and the distinct properties of OCPNs will open up new biological application opportunities in the future.
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