Vsevolod Y. Polotsky

Vsevolod Y. Polotsky

Department of Medicine, Johns Hopkins University

Affiliated withJohns Hopkins University

Research Area

Biography

Dr. Vsevolod (Seva) Polotsky is an internationally recognized expert on the pathogenesis of obstructive sleep apnea and its metabolic complications. Dr. Polotsky received training in molecular biology and biochemistry at the NIH and Yale University. He has also been trained in pulmonary and sleep medicine at Johns Hopkins. During his pulmonary fellowship at the Johns Hopkins University he extensively studied ventilatory control and sleep in mice. His laboratory developed a mouse model of intermittent hypoxia (IH) mimicking the oxyhemoglobin profile in human OSA. Dr. Polotsky pioneered studies of glucose and lipid metabolism in IH. Dr. Polotsky has a track record of studying metabolic pathways in vivo and in vitro, breeding transgenic mice and using pharmacological inhibitors. He had continuous NIH funding since his graduation from pulmonary fellowship in 2002. He had published numerous papers in the field. Thus, Dr. Polotsky is a renowned expert in control of ventilation and the pathogenesis of sleep disordered breathing and its complications.

Dr. Polotsky’s research has been focused on several major areas. First, he studied the role of adipose tissue produced hormone leptin and its role in control of breathing and upper airway function. Second, he pioneered the chemogenetic approach to the pathogenesis of OSA demonstrating in the mouse model that pharyngeal patency can be manipulated remotely with designer receptors exclusively activated by designer drugs. Third, he has developed a mouse model of intermittent hypoxia (IH), which mimics the oxygen desaturation profile in human obstructive sleep apnea and provided the first evidence in the literature that IH causes insulin resistance. His later studies showed that IH increases hepatic glucose output acting via the carotid body-mediated activation of the sympathetic nervous system. Fourth, Dr. Polotsky provided the first evidence in the literature that IH induces dyslipidemia and atherosclerosis in mice. In follow up papers, Dr. Polotsky’s group identified mechanisms of dyslipidemia in IH, i.e. up-regulation of hepatic lipid biosynthesis and inhibition of lipoprotein clearance linked to inactivation of adipose lipoprotein lipase via hypoxia inducible factor 1 mediated up-regulation of angiopoietin-like 4. Fifth another Dr. Polotsky’s seminal finding that IH plays a role in the pathogenesis of liver injury and non-alcoholic fatty liver disease. Dr. Polotsky’s h-index in Google Scholar is 49.

JoVE Journal Publications

ArticleTotal : 1
Year
Experimental Approach to Examine Leptin Signaling in the Carotid Bodies and its Effects on Control of Breathing
Publication title

Cited by 8

2019

Other Publications

Article
Year
Intermittent hypoxia increases insulin resistance in genetically obese mice.

The Journal of physiology| PubMed ID: 12878760

2003
Differences in sleep-induced hypoxia between A/J and DBA/2J mouse strains.

American journal of respiratory and critical care medicine| PubMed ID: 14512266

2003
Impact of interrupted leptin pathways on ventilatory control.

Journal of applied physiology (Bethesda, Md. : 1985)| PubMed ID: 14578371

2004
Chronic intermittent hypoxia upregulates genes of lipid biosynthesis in obese mice.

Journal of applied physiology (Bethesda, Md. : 1985)| PubMed ID: 16037401

2005
Intermittent hypoxia induces hyperlipidemia in lean mice.

Circulation research| PubMed ID: 16123334

2005
Disorders of glucose metabolism in sleep apnea.

Journal of applied physiology (Bethesda, Md. : 1985)| PubMed ID: 16227461

2005
2006
2006
Hyperlipidemia and lipid peroxidation are dependent on the severity of chronic intermittent hypoxia.

Journal of applied physiology (Bethesda, Md. : 1985)| PubMed ID: 17082365

2007
Intermittent hypoxia causes insulin resistance in lean mice independent of autonomic activity.

American journal of respiratory and critical care medicine| PubMed ID: 17272786

2007
Chronic intermittent hypoxia induces atherosclerosis.

American journal of respiratory and critical care medicine| PubMed ID: 17332479

2007
Chronic intermittent hypoxia predisposes to liver injury.

Hepatology (Baltimore, Md.)| PubMed ID: 17393512

2007
2007
2007
Intermittent hypoxia has organ-specific effects on oxidative stress.

American journal of physiology. Regulatory, integrative and comparative physiology| PubMed ID: 18703411

2008
2008
Obstructive sleep apnea, insulin resistance, and steatohepatitis in severe obesity.

American journal of respiratory and critical care medicine| PubMed ID: 18990675

2009
2008
2009
2009
Indices of hypoxic stress in sleep apnea.

American journal of respiratory and critical care medicine| PubMed ID: 19843828

2009
2010
Moderate oxygen augments lipopolysaccharide-induced lung injury in mice.

American journal of physiology. Lung cellular and molecular physiology| PubMed ID: 20034961

2010
Obstructive sleep apnea and dyslipidemia: implications for atherosclerosis.

Current opinion in endocrinology, diabetes, and obesity| PubMed ID: 20125003

2010
2010
2010
Metabolic consequences of intermittent hypoxia: relevance to obstructive sleep apnea.

Best practice & research. Clinical endocrinology & metabolism| PubMed ID: 21112030

2010
Chronic intermittent hypoxia induces lung growth in adult mice.

American journal of physiology. Lung cellular and molecular physiology| PubMed ID: 21131398

2011
Restoring leptin signaling reduces hyperlipidemia and improves vascular stiffness induced by chronic intermittent hypoxia.

American journal of physiology. Heart and circulatory physiology| PubMed ID: 21278136

2011
2011
2012
Effects of different acute hypoxic regimens on tissue oxygen profiles and metabolic outcomes.

Journal of applied physiology (Bethesda, Md. : 1985)| PubMed ID: 21737828

2011
2011
2011
2011
Acute hypoxia induces hypertriglyceridemia by decreasing plasma triglyceride clearance in mice.

American journal of physiology. Endocrinology and metabolism| PubMed ID: 22621867

2012
2012
2012
2012
Thermoneutrality modifies the impact of hypoxia on lipid metabolism.

American journal of physiology. Endocrinology and metabolism| PubMed ID: 23249698

2013
Chronic intermittent hypoxia induces atherosclerosis via activation of adipose angiopoietin-like 4.

American journal of respiratory and critical care medicine| PubMed ID: 23328524

2013
Macrophage A2A adenosinergic receptor modulates oxygen-induced augmentation of murine lung injury.

American journal of respiratory cell and molecular biology| PubMed ID: 23349051

2013
2013
Obstructive sleep apnea: a cardiometabolic risk in obesity and the metabolic syndrome.

Journal of the American College of Cardiology| PubMed ID: 23770180

2013
Sleep disorders and the development of insulin resistance and obesity.

Endocrinology and metabolism clinics of North America| PubMed ID: 24011890

2013
2013
Regulation of hepatocyte growth factor expression by NF-κB and PPARγ in adipose tissue.

American journal of physiology. Endocrinology and metabolism| PubMed ID: 24569592

2014
New frontiers in obstructive sleep apnoea.

Clinical science (London, England : 1979)| PubMed ID: 24780001

2014
Carotid body denervation prevents fasting hyperglycemia during chronic intermittent hypoxia.

Journal of applied physiology (Bethesda, Md. : 1985)| PubMed ID: 25103977

2014
2014
Intermittent hypoxia-induced glucose intolerance is abolished by α-adrenergic blockade or adrenal medullectomy.

American journal of physiology. Endocrinology and metabolism| PubMed ID: 25315697

2014
A patient with unusual electroencephalographic findings during rapid eye movement sleep.

Annals of the American Thoracic Society| PubMed ID: 25549034

2014
Are we waking up to the effects of NEFA?

Diabetologia| PubMed ID: 25617999

2015
2015
Translational approaches to understanding metabolic dysfunction and cardiovascular consequences of obstructive sleep apnea.

American journal of physiology. Heart and circulatory physiology| PubMed ID: 26232233

2015
2015
Sleep Apnea Research in Animals. Past, Present, and Future.

American journal of respiratory cell and molecular biology| PubMed ID: 26448201

2016
2015
2016
Stressful sleep.

The European respiratory journal| PubMed ID: 26828044

2016
2016
2016
Increased Cardiometabolic Risk and Worsening Hypoxemia at High Altitude.

High altitude medicine & biology| PubMed ID: 27281472

2016
Hypoxia and hypercapnia inhibit hypothalamic orexin neurons in rats.

Journal of neurophysiology| PubMed ID: 27559138

2016
Genome-Wide Association Studies in Obstructive Sleep Apnea. Will We Catch a Black Cat in a Dark Room?

American journal of respiratory and critical care medicine| PubMed ID: 27689706

2016
2016
2016
Adipose HIF-1α causes obesity by suppressing brown adipose tissue thermogenesis.

Journal of molecular medicine (Berlin, Germany)| PubMed ID: 27738746

2017
2016
2017
Optogenetic identification of hypothalamic orexin neuron projections to paraventricular spinally projecting neurons.

American journal of physiology. Heart and circulatory physiology| PubMed ID: 28159808

2017
Sleep Apnea: Types, Mechanisms, and Clinical Cardiovascular Consequences.

Journal of the American College of Cardiology| PubMed ID: 28209226

2017
2017
Update in Sleep-disordered Breathing 2016.

American journal of respiratory and critical care medicine| PubMed ID: 28530119

2017
2017
Cardiometabolic correlates of sleep disordered breathing in Andean highlanders.

The European respiratory journal| PubMed ID: 28619952

2017
Hypoxia-Inducible Factors and Cancer.

Current sleep medicine reports| PubMed ID: 28944164

2017
Sleep apnea: An overlooked cause of lipotoxicity?

Medical hypotheses| PubMed ID: 29055392

2017
Disturbed sleep and diabetes: A potential nexus of dementia risk.

Metabolism: clinical and experimental| PubMed ID: 29409842

2018
2018
2018
High fat diet induces airway hyperresponsiveness in mice.

Scientific reports| PubMed ID: 29686414

2018
2018
2018
Neurostimulation Treatment of OSA.

Chest| PubMed ID: 30222959

2018
2019
Intranasal Leptin Relieves Sleep-disordered Breathing in Mice with Diet-induced Obesity.

American journal of respiratory and critical care medicine| PubMed ID: 30309268

2019
2018
Pharmacotherapy of Obstructive Sleep Apnea: Is Salvation Just Around a Corner?

American journal of respiratory and critical care medicine| PubMed ID: 30521761

2019
2018
2019
2019
Upright posture increases oxyhemoglobin saturation in Peruvian highlanders.

Respiratory physiology & neurobiology| PubMed ID: 31048020

2019
2019