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Updated: Apr 25, 2026

Monitoring Protein-Ligand Interactions in Human Cells by Real-Time Quantitative In-Cell NMR using a High Cell Density Bioreactor
Published on: March 9, 2021
Lab-on-a-chip reactor imaging with unprecedented chemical resolution by Hadamard-encoded remote detection NMR
Ville-Veikko Telkki1, Vladimir V Zhivonitko, Anne Selent
1NMR Research Group, Department of Physics, University of Oulu, P.O. Box 3000, 90014 Oulu (Finland) http://cc.oulu.fi/∼nmrwww/. ville-veikko.telkki@oulu.fi.
Abstract:
The development of microfluidic processes requires information-rich detection methods. Here we introduce the concept of remote detection exchange NMR spectroscopy (RD-EXSY), and show that, along with indirect spatial information extracted from time-of-flight data, it provides unique information about the active regions, reaction pathways, and intermediate products in a lab-on-a-chip reactor. Furthermore, we demonstrate that direct spatial resolution can be added to RD-EXSY efficiently by applying the principles of Hadamard spectroscopy.
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