PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
June 14, 2011Circulation318 citationsOpen Access

Increased Adipose Tissue Oxygen Tension in Obese Compared With Lean Men Is Accompanied by Insulin Resistance, Impaired Adipose Tissue Capillarization, and Inflammation

View Full Paper
GGGijs H. GoossensABA. BizzarriNVNicolas Venteclef

Key Result

Obese men exhibited adipose tissue hyperoxia despite lower adipose tissue blood flow compared to lean men, accompanied by insulin resistance and impaired capillarization.

Structured PICO

Does manipulation of adipose tissue blood flow affect adipose tissue oxygen tension and inflammation differently in obese compared with lean men?

P
Population
Lean and obese men undergoing continuous monitoring of adipose tissue oxygen partial pressure during pharmacological and physiological manipulation of blood flow.
I
Intervention
Pharmacological (local administration of angiotensin II, infusion of isoprenaline) and physiological (ingestion of a glucose drink) manipulation of adipose tissue blood flow
C
Comparator
Lean versus obese subjects
O
Outcome
Adipose tissue oxygen partial pressure (AT P(O2)) and adipose tissue blood flow (ATBF)surrogate

Contrary to the hypothesis that obesity induces adipose tissue hypoxia, obese men exhibit adipose tissue hyperoxia due to lower oxygen consumption, which is associated with insulin resistance and inflammation.

Abstract

BACKGROUND: Adipose tissue (AT) dysfunction in obesity contributes to chronic, low-grade inflammation that predisposes to type 2 diabetes mellitus and cardiovascular disease. Recent in vitro studies suggest that AT hypoxia may induce inflammation. We hypothesized that adipose tissue blood flow (ATBF) regulates AT oxygen partial pressure (AT P(O2)), thereby affecting AT inflammation and insulin sensitivity. METHODS AND RESULTS: We developed an optochemical measurement system for continuous monitoring of AT P(O2) using microdialysis. The effect of alterations in ATBF on AT P(O2) was investigated in lean and obese subjects with both pharmacological and physiological approaches to manipulate ATBF. Local administration of angiotensin II (vasoconstrictor) in abdominal subcutaneous AT decreased ATBF and AT P(O2), whereas infusion of isoprenaline (vasodilator) evoked opposite effects. Ingestion of a glucose drink increased ATBF and AT P(O2) in lean subjects, but these responses were blunted in obese individuals. However, AT P(O2) was higher (hyperoxia) in obese subjects despite lower ATBF, which appears to be explained by lower AT oxygen consumption. This was accompanied by insulin resistance, lower AT capillarization, lower AT expression of genes encoding proteins involved in mitochondrial biogenesis and function, and higher AT gene expression of macrophage infiltration and inflammatory markers. CONCLUSIONS: Our findings establish ATBF as an important regulator of AT P(O2). Nevertheless, obese individuals exhibit AT hyperoxia despite lower ATBF, which seems to be explained by lower AT oxygen consumption. This is accompanied by insulin resistance, impaired AT capillarization, and higher AT gene expression of inflammatory cell markers. CLINICAL TRIAL REGISTRATION- URL: http://www.trialregister.nl. Unique identifier: NTR2451.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Goossens et al. (2011) studied Obesity. Pharmacological (angiotensin II, isoprenaline) and physiological (glucose drink) manipulation vs. Lean subjects was evaluated on Adipose tissue oxygen partial pressure (AT PO2) and blood flow (ATBF). Obese men exhibited adipose tissue hyperoxia despite lower adipose tissue blood flow compared to lean men, accompanied by insulin resistance and impaired capillarization.

synapsesocial.com/papers/6a7b9ac3d51985d5a1c2833chttps://doi.org/10.1161/circulationaha.111.027813
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Reduced Adipose Tissue Oxygenation in Human Obesity2008 · 769 citations
  2. 2Reduced Oxygenation in Human Obese Adipose Tissue Is Associated with Impaired Insulin Suppression of Lipolysis2010 · 95 citations
  3. 3Metabolic Signatures of Human Adipose Tissue Hypoxia in Obesity2012 · 135 citations
  4. 4Differences in Upper and Lower Body Adipose Tissue Oxygen Tension Contribute to the Adipose Tissue Phenotype in Humans2018 · 27 citations
  5. 5Adipose tissue oxygen tension2012 · 62 citations