This study aims to exploiting acoustic cavitation (US) to develop an oxytetracycline based antibacterial nanocomposites coupled with Au or Ag metal nanoparticle (NP) using pectin as carrier. UV-Vis spectroscopy and FESEM revealed that US strongly...
Artikel
Concept and Development of Algebraic Topological Framework Nucleic Acids
Von Wiley-VCH zur Verfügung gestellt
Nucleic acids are considered as promising materials for developing exquisite nanostructures from one to three dimensions. The advances of DNA nanotechnology facilitate ingenious design of DNA nanostructures with diverse shapes and sizes. Especially, the algebraic topological framework nucleic acids (ATFNAs) are functional DNA nanostructures that engineer guest molecules (e.g., nucleic acids, proteins, small molecules, and nanoparticles) stoichiometrically and spatially. The intrinsic precise properties and tailorable functionalities of ATFNAs hold great promise for biological applications, such as cell recognition and immunotherapy. This Perspective highlights the concept and development of precisely assembled ATFNAs, and outlines the new frontiers and opportunities for exploiting the structural advantages of ATFNAs for biological applications.
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