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HIF prolyl hydroxylase inhibition prior to transient focal cerebral ischaemia is neuroprotective in mice.

作者信息

Chen Ruoli L, Ogunshola O O, Yeoh Karkheng K, Jani Anant, Papadakis Michalis, Nagel Simon, Schofield Christopher J, Buchan Alastair M

机构信息

Acute Stroke Programme, Radcliffe Department of Medicine, University of Oxford, Oxford, UK.

Institute for Science and Technology in Medicine, School of Pharmacy, Keele University, Staffordshire, UK.

出版信息

J Neurochem. 2014 Oct;131(2):177-89. doi: 10.1111/jnc.12804. Epub 2014 Jul 18.


DOI:10.1111/jnc.12804
PMID:24974727
Abstract

This study investigated the effects of 2-(1-chloro-4-hydroxyisoquinoline-3-carboxamido) acetic acid (IOX3), a selective small molecule inhibitor of hypoxia-inducible factor (HIF) prolyl hydroxylases, on mouse brains subject to transient focal cerebral ischaemia. Male, 8- to 12-week-old C57/B6 mice were subjected to 45 min of middle cerebral artery occlusion (MCAO) either immediately or 24 h after receiving IOX3. Mice receiving IOX3 at 20 mg/kg 24 h prior to the MCAO had better neuroscores and smaller blood-brain barrier (BBB) disruption and infarct volumes than mice receiving the vehicle, whereas those having IOX3 at 60 mg/kg showed no significant changes. IOX3 treatment immediately before MCAO was not neuroprotective. IOX3 up-regulated HIF-1α, and increased EPO expression in mouse brains. In an in vitro BBB model (RBE4 cell line), IOX3 up-regulated HIF-1α and delocalized ZO-1. Pre-treating IOX3 on RBE4 cells 24 h before oxygen-glucose deprivation had a protective effect on endothelial barrier preservation with ZO-1 being better localized, while immediate IOX3 treatment did not. Our study suggests that HIF stabilization with IOX3 before cerebral ischaemia is neuroprotective partially because of BBB protection, while immediate application could be detrimental. These results provide information for studies aimed at the therapeutic activation of HIF pathway for neurovascular protection from cerebral ischaemia. We show that IOX3, a selective small molecule (280.66 Da) HIF prolyl hydroxylase inhibitor, could up-regulate HIF-1α and increase erythropoietin expression in mice. We further demonstrate that HIF stabilization with IOX3 before cerebral ischaemia is neuroprotective partially because of blood-brain barrier (BBB) protection, while immediate application is detrimental both in vivo and in vitro. These findings provide new insights into the role of HIF stabilization in ischaemic stroke.

摘要

相似文献

[1]
HIF prolyl hydroxylase inhibition prior to transient focal cerebral ischaemia is neuroprotective in mice.

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[2]
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[6]
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[7]
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[9]
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引用本文的文献

[1]
Lactate accumulation from HIF-1α-mediated PMN-MDSC glycolysis restricts brain injury after acute hypoxia in neonates.

J Neuroinflammation. 2025-3-1

[2]
Activation of the hypoxia-inducible factor pathway protects against acute ischemic stroke by reprogramming central carbon metabolism.

Theranostics. 2024

[3]
Recent Advances and Therapeutic Implications of 2-Oxoglutarate-Dependent Dioxygenases in Ischemic Stroke.

Mol Neurobiol. 2024-7

[4]
A comprehensive review of stroke-related signaling pathways and treatment in western medicine and traditional Chinese medicine.

Front Neurosci. 2023-6-7

[5]
Clinical Potential of Hypoxia Inducible Factors Prolyl Hydroxylase Inhibitors in Treating Nonanemic Diseases.

Front Pharmacol. 2022-2-24

[6]
The Effect of Erythropoietin and Its Derivatives on Ischemic Stroke Therapy: A Comprehensive Review.

Front Pharmacol. 2022-2-17

[7]
Erythropoietin regulates signaling pathways associated with neuroprotective events.

Exp Brain Res. 2022-5

[8]
Structure-Activity Relationships and Transcriptomic Analysis of Hypoxia-Inducible Factor Prolyl Hydroxylase Inhibitors.

Antioxidants (Basel). 2022-1-24

[9]
Pericyte, but not astrocyte, hypoxia inducible factor-1 (HIF-1) drives hypoxia-induced vascular permeability in vivo.

Fluids Barriers CNS. 2022-1-15

[10]
Nitric Oxide-Dependent Pathways as Critical Factors in the Consequences and Recovery after Brain Ischemic Hypoxia.

Biomolecules. 2021-7-26

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