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Review

Metabolome Changes in Cerebral Ischemia

1
Department of Physiology, Ajou University School of Medicine, Suwon 16499, Korea
2
College of Pharmacy, Sunchon National University, Suncheon 57922, Korea
3
Department of Neurology, Rutgers - Robert Wood Johnson Medical School, New Brunswick, NJ 08854, USA
4
Department of Emergency Medicine, Ajou University School of Medicine, Suwon 16499, Korea
5
Department of Molecular Science and Technology, Ajou University, Suwon 16499, Korea
*
Authors to whom correspondence should be addressed.
Cells 2020, 9(7), 1630; https://doi.org/10.3390/cells9071630
Submission received: 27 May 2020 / Revised: 5 July 2020 / Accepted: 6 July 2020 / Published: 7 July 2020
(This article belongs to the Special Issue Molecular and Cellular Mechanisms of Cerebral Ischemia)

Abstract

Cerebral ischemia is caused by perturbations in blood flow to the brain that trigger sequential and complex metabolic and cellular pathologies. This leads to brain tissue damage, including neuronal cell death and cerebral infarction, manifesting clinically as ischemic stroke, which is the cause of considerable morbidity and mortality worldwide. To analyze the underlying biological mechanisms and identify potential biomarkers of ischemic stroke, various in vitro and in vivo experimental models have been established investigating different molecular aspects, such as genes, microRNAs, and proteins. Yet, the metabolic and cellular pathologies of ischemic brain injury remain not fully elucidated, and the relationships among various pathological mechanisms are difficult to establish due to the heterogeneity and complexity of the disease. Metabolome-based techniques can provide clues about the cellular pathologic status of a condition as metabolic disturbances can represent an endpoint in biological phenomena. A number of investigations have analyzed metabolic changes in samples from cerebral ischemia patients and from various in vivo and in vitro models. We previously analyzed levels of amino acids and organic acids, as well as polyamine distribution in an in vivo rat model, and identified relationships between metabolic changes and cellular functions through bioinformatics tools. This review focuses on the metabolic and cellular changes in cerebral ischemia that offer a deeper understanding of the pathology underlying ischemic strokes and contribute to the development of new diagnostic and therapeutic approaches.
Keywords: cerebral ischemia; metabolomics; metabolic network; middle cerebral artery occlusion; oxygen-glucose deprivation cerebral ischemia; metabolomics; metabolic network; middle cerebral artery occlusion; oxygen-glucose deprivation
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MDPI and ACS Style

Shin, T.H.; Lee, D.Y.; Basith, S.; Manavalan, B.; Paik, M.J.; Rybinnik, I.; Mouradian, M.M.; Ahn, J.H.; Lee, G. Metabolome Changes in Cerebral Ischemia. Cells 2020, 9, 1630. https://doi.org/10.3390/cells9071630

AMA Style

Shin TH, Lee DY, Basith S, Manavalan B, Paik MJ, Rybinnik I, Mouradian MM, Ahn JH, Lee G. Metabolome Changes in Cerebral Ischemia. Cells. 2020; 9(7):1630. https://doi.org/10.3390/cells9071630

Chicago/Turabian Style

Shin, Tae Hwan, Da Yeon Lee, Shaherin Basith, Balachandran Manavalan, Man Jeong Paik, Igor Rybinnik, M. Maral Mouradian, Jung Hwan Ahn, and Gwang Lee. 2020. "Metabolome Changes in Cerebral Ischemia" Cells 9, no. 7: 1630. https://doi.org/10.3390/cells9071630

APA Style

Shin, T. H., Lee, D. Y., Basith, S., Manavalan, B., Paik, M. J., Rybinnik, I., Mouradian, M. M., Ahn, J. H., & Lee, G. (2020). Metabolome Changes in Cerebral Ischemia. Cells, 9(7), 1630. https://doi.org/10.3390/cells9071630

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