Chongqing Insitute of Green and Intelligent Technology , Chinese Academy of Sciences
Research Progress

Advances of Chongqing Institute of Green and Intelligent Technology of Chinese academy of Science in the construction and applications of novel solid-state nanochannel devices

15, 2024
Recently, the Precision Medicine Center of the Chongqing Institute of Green and Intelligent Technology, CAS collaborated with Huazhong University of Science and Technology, demonstrates the advances in the design of organic/inorganic composite nanochannels and the identification of single amino acids, the results were published in Chem. Eng. J.


Nanopore platform has been explored for wide applications in various domain. However, the intrinsic properties of the pore-carrier materials limit the scaled practical usage. Some hybrid systems combined the advantages of each material have been promoted, most of which are based on the fragile lipid bilayer-supported transmembrane proteins or DNA origami on the solid-state channel. We herein provide a lipid-free construction of hybrid nanochannel equipped with helical molecule embedding in SiNx nanopore. The mechanical robustness and the physiochemical stability of SiNx and designable biocompatible helix supply a superior integrated device for stable durable sensing with good reliability. The hybrid nanochannels display a good conduction in distinct ionic solutions with both hydrophilic and hydrophobic multiplex helix. The identification of different amino acids as well as the enantiomers reveal the potential capability of the hybrid nanochannel in the peptide and protein sensing at single amino acid level. Our work paves a way on the solid-state nanopore sequencing with sub-nanometer-sized organic/inorganic hybrid ionic channel.


Article link: https://doi.org/10.1016/j.cej.2024.151006