Revealing a Third Dissolved-Phase Xenon-129 Resonance in Blood Caused by Hemoglobin Glycation

Author:

Mikowska Lutosława1ORCID,Grynko Vira23ORCID,Shepelytskyi Yurii34ORCID,Ruset Iullian C.5,Deschamps Joseph6,Aalto Hannah6,Targosz-Korecka Marta1,Balamore Dilip7,Harańczyk Hubert1,Albert Mitchell S.348

Affiliation:

1. Faculty of Physics, Astronomy, and Applied Computer Science, Jagiellonian University, 30-348 Krakow, Poland

2. Chemistry and Material Science Program, Lakehead University, Thunder Bay, ON P7B 5E1, Canada

3. Thunder Bay Regional Health Research Institute, Thunder Bay, ON P7B 7A5, Canada

4. Chemistry Department, Lakehead University, Thunder Bay, ON P7B 5E1, Canada

5. Xemed LLC, Durham, NH 03824, USA

6. Applied Life Sciences Program, Lakehead University, Thunder Bay, ON P7B 5E1, Canada

7. Department of Engineering, Physics and Technology, Nassau Community College, New York, NY 11530, USA

8. Faculty of Medical Sciences, Northern Ontario School of Medicine University, Thunder Bay, ON P3E 2C6, Canada

Abstract

Hyperpolarized (HP) xenon-129 (129Xe), when dissolved in blood, has two NMR resonances: one in red blood cells (RBC) and one in plasma. The impact of numerous blood components on these resonances, however, has not yet been investigated. This study evaluates the effects of elevated glucose levels on the chemical shift (CS) and T2* relaxation times of HP 129Xe dissolved in sterile citrated sheep blood for the first time. HP 129Xe was mixed with sheep blood samples premixed with a stock glucose solution using a liquid–gas exchange module. Magnetic resonance spectroscopy was performed on a 3T clinical MRI scanner using a custom-built quadrature dual-tuned 129Xe/1H coil. We observed an additional resonance for the RBCs (129Xe-RBC1) for the increased glucose levels. The CS of 129Xe-RBC1 and 129Xe-plasma peaks did not change with glucose levels, while the CS of 129Xe-RBC2 (original RBC resonance) increased linearly at a rate of 0.015 ± 0.002 ppm/mM with glucose level. 129Xe-RBC1 T2* values increased nonlinearly from 1.58 ± 0.24 ms to 2.67 ± 0.40 ms. As a result of the increased glucose levels in blood samples, the novel additional HP 129Xe dissolved phase resonance was observed in blood and attributed to the 129Xe bound to glycated hemoglobin (HbA1c).

Funder

Natural Science and Engineering Research Council (NSERC) Discovery

Priority Research Area SciMat

Mitacs Elevate Postdoctoral Fellowship

Mitacs Accelerate Grant

Jagiellonian Interdisciplinary Ph.D. Program

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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