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Pyridoxine Deficiency Exacerbates Neuronal Damage after Ischemia by Increasing Oxidative Stress and Reduces Proliferating Cells and Neuroblasts in the Gerbil Hippocampus

We investigated the effects of pyridoxine deficiency on ischemic neuronal death in the hippocampus of gerbil (n = 5 per group). Serum pyridoxal 5′-phosphate levels were significantly decreased in Pyridoxine-deficient diet (PDD)-fed gerbils, while homocysteine levels were significantly increased in s...

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Autores principales: Jung, Hyo Young, Kim, Woosuk, Hahn, Kyu Ri, Kang, Min Soo, Kim, Tae Hyeong, Kwon, Hyun Jung, Nam, Sung Min, Chung, Jin Young, Choi, Jung Hoon, Yoon, Yeo Sung, Kim, Dae Won, Yoo, Dae Young, Hwang, In Koo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7432354/
https://www.ncbi.nlm.nih.gov/pubmed/32759679
http://dx.doi.org/10.3390/ijms21155551
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author Jung, Hyo Young
Kim, Woosuk
Hahn, Kyu Ri
Kang, Min Soo
Kim, Tae Hyeong
Kwon, Hyun Jung
Nam, Sung Min
Chung, Jin Young
Choi, Jung Hoon
Yoon, Yeo Sung
Kim, Dae Won
Yoo, Dae Young
Hwang, In Koo
author_facet Jung, Hyo Young
Kim, Woosuk
Hahn, Kyu Ri
Kang, Min Soo
Kim, Tae Hyeong
Kwon, Hyun Jung
Nam, Sung Min
Chung, Jin Young
Choi, Jung Hoon
Yoon, Yeo Sung
Kim, Dae Won
Yoo, Dae Young
Hwang, In Koo
author_sort Jung, Hyo Young
collection PubMed
description We investigated the effects of pyridoxine deficiency on ischemic neuronal death in the hippocampus of gerbil (n = 5 per group). Serum pyridoxal 5′-phosphate levels were significantly decreased in Pyridoxine-deficient diet (PDD)-fed gerbils, while homocysteine levels were significantly increased in sham- and ischemia-operated gerbils. PDD-fed gerbil showed a reduction in neuronal nuclei (NeuN)-immunoreactive neurons in the medial part of the hippocampal CA1 region three days after. Reactive astrocytosis and microgliosis were found in PDD-fed gerbils, and transient ischemia caused the aggregation of activated microglia in the stratum pyramidale three days after ischemia. Lipid peroxidation was prominently increased in the hippocampus and was significantly higher in PDD-fed gerbils than in Control diet (CD)-fed gerbils after ischemia. In contrast, pyridoxine deficiency decreased the proliferating cells and neuroblasts in the dentate gyrus in sham- and ischemia-operated gerbils. Nuclear factor erythroid-2-related factor 2 (Nrf2) and brain-derived neurotrophic factor (BDNF) levels also significantly decreased in PDD-fed gerbils sham 24 h after ischemia. These results suggest that pyridoxine deficiency accelerates neuronal death by increasing serum homocysteine levels and lipid peroxidation, and by decreasing Nrf2 levels in the hippocampus. Additionally, it reduces the regenerated potentials in hippocampus by decreasing BDNF levels. Collectively, pyridoxine is an essential element in modulating cell death and hippocampal neurogenesis after ischemia.
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spelling pubmed-74323542020-08-24 Pyridoxine Deficiency Exacerbates Neuronal Damage after Ischemia by Increasing Oxidative Stress and Reduces Proliferating Cells and Neuroblasts in the Gerbil Hippocampus Jung, Hyo Young Kim, Woosuk Hahn, Kyu Ri Kang, Min Soo Kim, Tae Hyeong Kwon, Hyun Jung Nam, Sung Min Chung, Jin Young Choi, Jung Hoon Yoon, Yeo Sung Kim, Dae Won Yoo, Dae Young Hwang, In Koo Int J Mol Sci Article We investigated the effects of pyridoxine deficiency on ischemic neuronal death in the hippocampus of gerbil (n = 5 per group). Serum pyridoxal 5′-phosphate levels were significantly decreased in Pyridoxine-deficient diet (PDD)-fed gerbils, while homocysteine levels were significantly increased in sham- and ischemia-operated gerbils. PDD-fed gerbil showed a reduction in neuronal nuclei (NeuN)-immunoreactive neurons in the medial part of the hippocampal CA1 region three days after. Reactive astrocytosis and microgliosis were found in PDD-fed gerbils, and transient ischemia caused the aggregation of activated microglia in the stratum pyramidale three days after ischemia. Lipid peroxidation was prominently increased in the hippocampus and was significantly higher in PDD-fed gerbils than in Control diet (CD)-fed gerbils after ischemia. In contrast, pyridoxine deficiency decreased the proliferating cells and neuroblasts in the dentate gyrus in sham- and ischemia-operated gerbils. Nuclear factor erythroid-2-related factor 2 (Nrf2) and brain-derived neurotrophic factor (BDNF) levels also significantly decreased in PDD-fed gerbils sham 24 h after ischemia. These results suggest that pyridoxine deficiency accelerates neuronal death by increasing serum homocysteine levels and lipid peroxidation, and by decreasing Nrf2 levels in the hippocampus. Additionally, it reduces the regenerated potentials in hippocampus by decreasing BDNF levels. Collectively, pyridoxine is an essential element in modulating cell death and hippocampal neurogenesis after ischemia. MDPI 2020-08-04 /pmc/articles/PMC7432354/ /pubmed/32759679 http://dx.doi.org/10.3390/ijms21155551 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jung, Hyo Young
Kim, Woosuk
Hahn, Kyu Ri
Kang, Min Soo
Kim, Tae Hyeong
Kwon, Hyun Jung
Nam, Sung Min
Chung, Jin Young
Choi, Jung Hoon
Yoon, Yeo Sung
Kim, Dae Won
Yoo, Dae Young
Hwang, In Koo
Pyridoxine Deficiency Exacerbates Neuronal Damage after Ischemia by Increasing Oxidative Stress and Reduces Proliferating Cells and Neuroblasts in the Gerbil Hippocampus
title Pyridoxine Deficiency Exacerbates Neuronal Damage after Ischemia by Increasing Oxidative Stress and Reduces Proliferating Cells and Neuroblasts in the Gerbil Hippocampus
title_full Pyridoxine Deficiency Exacerbates Neuronal Damage after Ischemia by Increasing Oxidative Stress and Reduces Proliferating Cells and Neuroblasts in the Gerbil Hippocampus
title_fullStr Pyridoxine Deficiency Exacerbates Neuronal Damage after Ischemia by Increasing Oxidative Stress and Reduces Proliferating Cells and Neuroblasts in the Gerbil Hippocampus
title_full_unstemmed Pyridoxine Deficiency Exacerbates Neuronal Damage after Ischemia by Increasing Oxidative Stress and Reduces Proliferating Cells and Neuroblasts in the Gerbil Hippocampus
title_short Pyridoxine Deficiency Exacerbates Neuronal Damage after Ischemia by Increasing Oxidative Stress and Reduces Proliferating Cells and Neuroblasts in the Gerbil Hippocampus
title_sort pyridoxine deficiency exacerbates neuronal damage after ischemia by increasing oxidative stress and reduces proliferating cells and neuroblasts in the gerbil hippocampus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7432354/
https://www.ncbi.nlm.nih.gov/pubmed/32759679
http://dx.doi.org/10.3390/ijms21155551
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