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Article

Longitudinal Measurements of Intra- and Extracellular pH Gradient in a Rat Model of Glioma

by
Heeseung Lim
1,
Mohammed Albatany
1,
Francisco Martínez-Santiesteban
1,
Robert Bartha
1,2 and
Timothy J. Scholl
1,2,3,*
1
Department of Medical Biophysics, University of Western Ontario, London, ON, Canada
2
Robarts Research Institute, University of Western Ontario, London, ON, Canada
3
Ontario Institute for Cancer Research, Toronto, ON, Canada
*
Author to whom correspondence should be addressed.
Tomography 2018, 4(2), 46-54; https://doi.org/10.18383/j.tom.2018.00001
Submission received: 7 March 2018 / Revised: 10 April 2018 / Accepted: 10 May 2018 / Published: 1 June 2018

Abstract

This study presents the first longitudinal measurement of the intracellular/extracellular pH gradient in a rat glioma model using noninvasive magnetic resonance imaging. The acid–base balance in the brain is tightly controlled by endogenous buffers. Tumors often express a positive pH gradient (pHi – pHe) compared with normal tissue that expresses a negative gradient. Alkaline pHi in tumor cells increases activity of several enzymes that drive cellular proliferation. In contrast, acidic pHe is established because of increased lactic acid production and subsequent active transport of protons out of the cell. pHi was mapped using chemical exchange saturation transfer, whereas regional pHe was determined using hyperpolarized 13C bicarbonate magnetic resonance spectroscopic imaging. pHi and pHe were measured at days 8, 12, and 15 postimplantation of C6 glioma cells into rat brains. Measurements were made in tumors and compared to brain tissue without tumor. Overall, average pH gradient in the tumor changed from −0.02 ± 0.12 to 0.10 ± 0.21 and then 0.19 ± 0.16. Conversely, the pH gradient of contralateral brain tissue changed from −0.45 ± 0.16 to −0.25 ± 0.21 and then −0.34 ± 0.25 (average pH ± 1 SD) Spatial heterogeneity of tumor pH gradient was apparent at later time points and may be useful to predict local areas of treatment resistance. Overall, the intracellular/extracellular pH gradients in this rat glioma model were noninvasively measured to a precision of ∼0.1 pH units at 3 time points. Because most therapeutic agents are weak acids or bases, a priori knowledge of the pH gradient may help guide choice of therapeutic agent for precision medicine.
Keywords: pH mapping; pH gradient; CEST; hyperpolarized 13C bicarbonate; glioma pH mapping; pH gradient; CEST; hyperpolarized 13C bicarbonate; glioma

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MDPI and ACS Style

Lim, H.; Albatany, M.; Martínez-Santiesteban, F.; Bartha, R.; Scholl, T.J. Longitudinal Measurements of Intra- and Extracellular pH Gradient in a Rat Model of Glioma. Tomography 2018, 4, 46-54. https://doi.org/10.18383/j.tom.2018.00001

AMA Style

Lim H, Albatany M, Martínez-Santiesteban F, Bartha R, Scholl TJ. Longitudinal Measurements of Intra- and Extracellular pH Gradient in a Rat Model of Glioma. Tomography. 2018; 4(2):46-54. https://doi.org/10.18383/j.tom.2018.00001

Chicago/Turabian Style

Lim, Heeseung, Mohammed Albatany, Francisco Martínez-Santiesteban, Robert Bartha, and Timothy J. Scholl. 2018. "Longitudinal Measurements of Intra- and Extracellular pH Gradient in a Rat Model of Glioma" Tomography 4, no. 2: 46-54. https://doi.org/10.18383/j.tom.2018.00001

APA Style

Lim, H., Albatany, M., Martínez-Santiesteban, F., Bartha, R., & Scholl, T. J. (2018). Longitudinal Measurements of Intra- and Extracellular pH Gradient in a Rat Model of Glioma. Tomography, 4(2), 46-54. https://doi.org/10.18383/j.tom.2018.00001

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