Hypoxia-inducible factors : : regulation and therapeutic potential / / Kiichi Hirota.

Oxygen is an essential molecule in the production of adenosine triphosphate (ATP) in cells, and a lack of energy due to O2 deficiency makes the maintenance of biological functions and human life improbable. Since oxygen functions as the final electron acceptor in the series of ATP synthesis reaction...

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Place / Publishing House:Basel : : MDPI - Multidisciplinary Digital Publishing Institute,, [2022]
©2022
Year of Publication:2022
Language:English
Physical Description:1 online resource (200 pages)
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spelling Hirota, Kiichi, author.
Hypoxia-inducible factors : regulation and therapeutic potential / Kiichi Hirota.
Hypoxia-Inducible Factors
Basel : MDPI - Multidisciplinary Digital Publishing Institute, [2022]
©2022
1 online resource (200 pages)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
Description based on: online resource; title from PDF information screen (Worldcat, viewed March 25, 2023).
Oxygen is an essential molecule in the production of adenosine triphosphate (ATP) in cells, and a lack of energy due to O2 deficiency makes the maintenance of biological functions and human life improbable. Since oxygen functions as the final electron acceptor in the series of ATP synthesis reactions in conjunction with oxidative phosphorylation in mitochondria, its deficiency causes the oxidation of a series of coenzymes, such as nicotinamide and flavin adenine dinucleotide, and the reduction in oxygen molecules to water molecules (H2O). Persistent deficiency has been believed to cause a loss of biological functions, even resulting in death. This classical view of oxygen has been completely revised over the last 20 years. Mammals do not have a mechanism for biosynthesizing oxygen in their bodies. In higher organisms such as vertebrates, which possess many organs, oxygen in the body is always "scarce,"; therefore, the dominant view is that organisms have evolved mechanisms to respond to the lack of this essential molecule (hypoxia), and actively use it to maintain bodily integrity. Anatomically complex, higher multicellular organisms are equipped with specialized mechanisms to enable all cells to obtain sufficient oxygen. The respiratory system consists of lungs, which provide oxygen to be transferred to hemoglobin in red blood cells, the diaphragm, other respiratory support muscles, and neuroepithelial cells that sense the partial pressure of oxygen. The cardiovascular system consists of red blood cells, an oxygen-carrying medium, the heart, the transport engine, blood vessels, and transport channels. The proper development and preservation of these systems requires the harmonious expression of thousands of genes. The transcription factor responsible for this gene expression is hypoxia-inducible factor 1 (HIF-1). In this Special Issue, we invited research and review papers on various areas of oxygen biology research that focused on the fundamental understanding of HIF signaling pathways and related gene expression profiling, as well as pharmacogenomic biomarkers, molecular targets driving the regulation of human physiology and pathophysiology, and validation in animal models. We have published six original papers and three review articles in this Special Issue. We hope that this Special Issue will reflect the current exciting research concerning HIFs and their applications in medicine and health science.
About the Editor -- Preface to "Hypoxia-Inducible Factors: Regulation and Therapeutic Potential" -- Special Issue: Hypoxia-Inducible Factors: Regulation and Therapeutic Potential -- Meta-Analysis of Hypoxic Transcriptomes from Public Databases -- Comparative Evaluation of the Angiogenic Potential of Hypoxia Preconditioned Blood-Derived Secretomes and Platelet-Rich Plasma: An In Vitro Analysis -- Basic Biology of Hypoxic Responses Mediated by the Transcription Factor HIFs and Its Implication for Medicine -- Use of Oral Anticoagulation and Diabetes Do Not Inhibit the Angiogenic Potential of Hypoxia Preconditioned Blood- Derived Secretomes -- Effect of Hypoxia Preconditioned Secretomes on Lymphangiogenic and Angiogenic Sprouting: An in Vitro Analysis -- Febuxostat, a Xanthine Oxidase Inhibitor, Decreased Macrophage Matrix Metalloproteinase Expression in Hypoxia -- Hypoxia/HIF Modulates Immune Responses -- HIFα Prolyl Hydroxylase Inhibitors and Their Implications for Biomedicine: A Comprehensive Review -- Multi-Omic Meta-Analysis of Transcriptomes and the Bibliome Uncovers Novel Hypoxia-Inducible Genes.
Oxygen.
Oxygen compounds.
3-0365-2913-6
language English
format eBook
author Hirota, Kiichi,
spellingShingle Hirota, Kiichi,
Hypoxia-inducible factors : regulation and therapeutic potential /
About the Editor -- Preface to "Hypoxia-Inducible Factors: Regulation and Therapeutic Potential" -- Special Issue: Hypoxia-Inducible Factors: Regulation and Therapeutic Potential -- Meta-Analysis of Hypoxic Transcriptomes from Public Databases -- Comparative Evaluation of the Angiogenic Potential of Hypoxia Preconditioned Blood-Derived Secretomes and Platelet-Rich Plasma: An In Vitro Analysis -- Basic Biology of Hypoxic Responses Mediated by the Transcription Factor HIFs and Its Implication for Medicine -- Use of Oral Anticoagulation and Diabetes Do Not Inhibit the Angiogenic Potential of Hypoxia Preconditioned Blood- Derived Secretomes -- Effect of Hypoxia Preconditioned Secretomes on Lymphangiogenic and Angiogenic Sprouting: An in Vitro Analysis -- Febuxostat, a Xanthine Oxidase Inhibitor, Decreased Macrophage Matrix Metalloproteinase Expression in Hypoxia -- Hypoxia/HIF Modulates Immune Responses -- HIFα Prolyl Hydroxylase Inhibitors and Their Implications for Biomedicine: A Comprehensive Review -- Multi-Omic Meta-Analysis of Transcriptomes and the Bibliome Uncovers Novel Hypoxia-Inducible Genes.
author_facet Hirota, Kiichi,
author_variant k h kh
author_role VerfasserIn
author_sort Hirota, Kiichi,
title Hypoxia-inducible factors : regulation and therapeutic potential /
title_sub regulation and therapeutic potential /
title_full Hypoxia-inducible factors : regulation and therapeutic potential / Kiichi Hirota.
title_fullStr Hypoxia-inducible factors : regulation and therapeutic potential / Kiichi Hirota.
title_full_unstemmed Hypoxia-inducible factors : regulation and therapeutic potential / Kiichi Hirota.
title_auth Hypoxia-inducible factors : regulation and therapeutic potential /
title_alt Hypoxia-Inducible Factors
title_new Hypoxia-inducible factors :
title_sort hypoxia-inducible factors : regulation and therapeutic potential /
publisher MDPI - Multidisciplinary Digital Publishing Institute,
publishDate 2022
physical 1 online resource (200 pages)
contents About the Editor -- Preface to "Hypoxia-Inducible Factors: Regulation and Therapeutic Potential" -- Special Issue: Hypoxia-Inducible Factors: Regulation and Therapeutic Potential -- Meta-Analysis of Hypoxic Transcriptomes from Public Databases -- Comparative Evaluation of the Angiogenic Potential of Hypoxia Preconditioned Blood-Derived Secretomes and Platelet-Rich Plasma: An In Vitro Analysis -- Basic Biology of Hypoxic Responses Mediated by the Transcription Factor HIFs and Its Implication for Medicine -- Use of Oral Anticoagulation and Diabetes Do Not Inhibit the Angiogenic Potential of Hypoxia Preconditioned Blood- Derived Secretomes -- Effect of Hypoxia Preconditioned Secretomes on Lymphangiogenic and Angiogenic Sprouting: An in Vitro Analysis -- Febuxostat, a Xanthine Oxidase Inhibitor, Decreased Macrophage Matrix Metalloproteinase Expression in Hypoxia -- Hypoxia/HIF Modulates Immune Responses -- HIFα Prolyl Hydroxylase Inhibitors and Their Implications for Biomedicine: A Comprehensive Review -- Multi-Omic Meta-Analysis of Transcriptomes and the Bibliome Uncovers Novel Hypoxia-Inducible Genes.
isbn 3-0365-2913-6
callnumber-first Q - Science
callnumber-subject QD - Chemistry
callnumber-label QD181
callnumber-sort QD 3181 O1 H576 42022
illustrated Not Illustrated
dewey-hundreds 500 - Science
dewey-tens 540 - Chemistry
dewey-ones 546 - Inorganic chemistry
dewey-full 546
dewey-sort 3546
dewey-raw 546
dewey-search 546
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