@article{Wang2017, 
author = {Jie Wang and Haijing Shen and Chi Huang and Qinqin Ma and Yaning Tan and Fenglei Jiang and Chao Ma and Quan Yuan},
title = {Highly efficient and multidimensional extraction of targets from complex matrices using aptamer-driven recognition},
year = {2017},
journal = {Nano Research},
volume = {10},
number = {1},
pages = {145-156},
keywords = {aptamer, adsorbent, selectivity, separation, extraction},
url = {https://www.sciopen.com/article/10.1007/s12274-016-1273-9},
doi = {10.1007/s12274-016-1273-9},
abstract = {Adsorbents are widely employed in both fundamental and applied research areas such as separation technology, biotechnology, and environmental science. Selectivity and reusability are two most important requirements for adsorbents. Aptamers exhibit perfect selectivity and easy regeneration, which make them uniquely effective adsorption materials. Herein, we have rationally designed novel aptamer-based adsorbents and investigated their performance in extraction/separation of targets from an aqueous solution. These adsorbents can selectively extract targets from complicated sample matrices containing background com­pounds. Moreover, they can also be easily recycled without a significant loss of adsorption capacity. Notably, the adsorbents did not affect the activity of isolated biological samples, revealing their potential for the purification/separation of biomolecules. Composite adsorbents were constructed using aptamer-based adsorbents and a porous polymer, displaying highly efficient target separation from aqueous solution. Finally, separation columns were constructed, and targets in the aqueous solution were efficiently separated by these columns. The aptamer- based adsorbents described here exhibit great promise for potential applications in separation technology, biotechnology, and environment-related areas.}
}