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November 12, 2002Circulation559 citations

Sympathetic Neural Activation in Visceral Obesity

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GAGuy E. AlvarezSBStacy D. BeskeTBTasha P. Ballard

Key Points

  • This study investigates the relationship between muscle sympathetic nerve activity and abdominal visceral fat in obese men.
  • Measured muscle sympathetic nerve activity using microneurography in 37 sedentary men.

Structured PICO

Is higher abdominal visceral fat associated with increased muscle sympathetic nerve activity in sedentary men?

P
Population
37 sedentary men (age 18 to 40 years, BMI <= 35 kg/m2) across a wide range of adiposity, including a subgroup of 13 with higher abdominal visceral fat and 13 matched peers with lower abdominal visceral fat.
I
Intervention
Higher abdominal visceral fat (HAVF)
C
Comparator
Lower abdominal visceral fat (LAVF) matched for age, total fat mass, and abdominal subcutaneous fat
O
Outcome
Muscle sympathetic nerve activity (MSNA) measured by microneurographysurrogate

Abdominal visceral fat is strongly associated with elevated muscle sympathetic nerve activity in men, independent of total body fat, suggesting a mechanism linking visceral obesity to cardiovascular risk.

Abstract

BACKGROUND: Muscle sympathetic nerve activity (MSNA) is elevated in obese humans. However, the potential role of abdominal visceral fat as an important adipose tissue depot linking obesity to elevated MSNA has not been explored. Accordingly, we tested the hypothesis that MSNA would be increased in men (age=18 to 40 years, body mass index 0.05), total fat mass-matched (20.6+/-2.1 versus 20.8+/-2.4 kg, P>0.05) and abdominal subcutaneous fat-matched (230.6+/-24.9 versus 261.4+/-34.8 cm(2), P>0.05) peers with lower abdominal visceral fat levels (LAVF; n=13, visceral fat= 73.0+/-6.0 cm2). METHODS AND RESULTS: MSNA (microneurography), body composition (dual energy x-ray absorptiometry), and abdominal visceral and subcutaneous fat (computed tomography) were measured in 37 sedentary men across a wide range of adiposity. MSNA was approximately 55% higher in men with HAVF compared with men with LAVF (33+/-4 versus 21+/-2 bursts/min, P<0.05). Furthermore, MSNA was more closely associated with the level of abdominal visceral fat (r=0.65, P<0.05) than total fat mass (r=0.323, P<0.05) or abdominal subcutaneous fat (r=0.27, P=0.05). The relation between MSNA and abdominal visceral fat was independent of total body fat (r=0.61, P<0.05). CONCLUSIONS: The results of our study indicate that MSNA is elevated in men with visceral obesity. Our observations are consistent with the idea that abdominal visceral fat is an important adipose tissue depot linking obesity with sympathetic neural activation in humans. Furthermore, these findings may have important implications for understanding the increased risk of developing cardiovascular diseases in individuals with visceral obesity.

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Cite This Study

Alvarez et al. (2002) studied this question.

synapsesocial.com/papers/6a1e875a7f6e8bbb23690b7ehttps://doi.org/10.1161/01.cir.0000041244.79165.25
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Also Consider

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

  1. 1Baroreflex modulation of sympathetic outflow during physiological increases of vasopressin in humans1992 · 105 citations
  2. 2Sympathetic Activity in Obese Subjects With and Without Obstructive Sleep Apnea1998 · 524 citations
  3. 3Body fat and sympathetic nerve activity in healthy subjects.1994 · 384 citations
  4. 4Reduced sympathetic nervous activity. A potential mechanism predisposing to body weight gain.1993 · 293 citations
  5. 5Participation of the Hypothalamus-Hypophysis Axis in the Sympathetic Activation of Human Obesity2001 · 64 citations