内体
材料科学
纳米材料
小泡
生物物理学
日冕(行星地质学)
肽
纳米技术
细胞生物学
细胞
生物
生物化学
膜
天体生物学
维纳斯
作者
Barbora Smolková,T. MacCulloch,Tyler F. Rockwood,Minghui Liu,Skylar J.W. Henry,Adam Frtús,Mariia Uzhytchak,Mariia Lunová,Martin Hof,Piotr Jurkiewicz,A. Dejneka,Nicholas Stephanopoulos,Oleg Lunov
标识
DOI:10.1021/acsami.1c14401
摘要
DNA nanostructures (DNs) can be designed in a controlled and programmable manner, and these structures are increasingly used in a variety of biomedical applications, such as the delivery of therapeutic agents. When exposed to biological liquids, most nanomaterials become covered by a protein corona, which in turn modulates their cellular uptake and the biological response they elicit. However, the interplay between living cells and designed DNs are still not well established. Namely, there are very limited studies that assess protein corona impact on DN biological activity. Here, we analyzed the uptake of functionalized DNs in three distinct hepatic cell lines. Our analysis indicates that cellular uptake is linearly dependent on the cell size. Further, we show that the protein corona determines the endolysosomal vesicle escape efficiency of DNs coated with an endosome escape peptide. Our study offers an important basis for future optimization of DNs as delivery systems for various biomedical applications.
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