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Non-invasive investigation of endothelium-dependent dilatation of the brachial artery in women with primary Raynaud's phenomenon

Ringqvist, A LU ; Jonason, T ; Leppert, J and Ringqvist, I (1998) In Clinical Science 94(3). p.239-243
Abstract

1. Primary Raynaud's phenomenon is characterized by white fingers and toes with impaired perfusion in response to cold or emotional stress. The aetiology has not been clarified. In previous studies we have demonstrated a season-linked inability in women with primary Raynaud's phenomenon to raise their plasma cGMP levels in response to whole-body cooling, suggesting a dysfunction of the L-arginine-NO-cGMP pathway. To further elucidate the possibility of such a defect in patients with primary Raynaud's phenomenon, we determined flow-mediated dilatation of the brachial artery. 2. Twenty-two premenopausal, non-smoking women with primary Raynaud's phenomenon (mean age 39 +/- 8 years) and 23 healthy controls (mean age 41 +/- 7 years) were... (More)

1. Primary Raynaud's phenomenon is characterized by white fingers and toes with impaired perfusion in response to cold or emotional stress. The aetiology has not been clarified. In previous studies we have demonstrated a season-linked inability in women with primary Raynaud's phenomenon to raise their plasma cGMP levels in response to whole-body cooling, suggesting a dysfunction of the L-arginine-NO-cGMP pathway. To further elucidate the possibility of such a defect in patients with primary Raynaud's phenomenon, we determined flow-mediated dilatation of the brachial artery. 2. Twenty-two premenopausal, non-smoking women with primary Raynaud's phenomenon (mean age 39 +/- 8 years) and 23 healthy controls (mean age 41 +/- 7 years) were studied during two winter weeks. The diameter of the right arm brachial artery was measured by high resolution ultrasonography, at rest and during reactive hyperaemia. The investigation was conducted both with the participants at rest at room temperature and after 40 min of whole-body cooling. 3. Both study groups showed a marked attenuation of flow-mediated dilatation during whole-body cooling, which could partly but not solely be explained by a decreased shear rate. There was, however, no significant difference in flow-mediated diameter (D) increase (% flow-mediated dilatation; delta D/D x 100) between primary Raynaud's phenomenon and controls, either at room temperature (7.8 +/- 0.8 and 9.0 +/- 0.8) or in response to whole-body cooling (3.8 +/- 1.2 and 4.4 +/- 0.7). 4. Thus, whole-body cooling markedly impairs flow-mediated dilatation in women. Flow-mediated dilatation is, however, not decreased in women with primary Raynaud's phenomenon at room temperature or during whole-body cooling, indicating that this particular aspect of endothelial function is not impaired in this setting.

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author
; ; and
publishing date
type
Contribution to journal
publication status
published
keywords
Adult, Brachial Artery/diagnostic imaging, Cold Temperature, Endothelium, Vascular/diagnostic imaging, Female, Humans, Middle Aged, Raynaud Disease/diagnostic imaging, Regional Blood Flow, Ultrasonography, Vasodilation/physiology
in
Clinical Science
volume
94
issue
3
pages
239 - 243
publisher
Portland Press
external identifiers
  • pmid:9616257
  • scopus:0031908020
ISSN
0143-5221
DOI
10.1042/cs0940239
language
English
LU publication?
no
id
fcdc7f94-6a06-4153-9a63-92e6f929d3d3
date added to LUP
2022-05-09 14:39:19
date last changed
2024-06-13 13:01:19
@article{fcdc7f94-6a06-4153-9a63-92e6f929d3d3,
  abstract     = {{<p>1. Primary Raynaud's phenomenon is characterized by white fingers and toes with impaired perfusion in response to cold or emotional stress. The aetiology has not been clarified. In previous studies we have demonstrated a season-linked inability in women with primary Raynaud's phenomenon to raise their plasma cGMP levels in response to whole-body cooling, suggesting a dysfunction of the L-arginine-NO-cGMP pathway. To further elucidate the possibility of such a defect in patients with primary Raynaud's phenomenon, we determined flow-mediated dilatation of the brachial artery. 2. Twenty-two premenopausal, non-smoking women with primary Raynaud's phenomenon (mean age 39 +/- 8 years) and 23 healthy controls (mean age 41 +/- 7 years) were studied during two winter weeks. The diameter of the right arm brachial artery was measured by high resolution ultrasonography, at rest and during reactive hyperaemia. The investigation was conducted both with the participants at rest at room temperature and after 40 min of whole-body cooling. 3. Both study groups showed a marked attenuation of flow-mediated dilatation during whole-body cooling, which could partly but not solely be explained by a decreased shear rate. There was, however, no significant difference in flow-mediated diameter (D) increase (% flow-mediated dilatation; delta D/D x 100) between primary Raynaud's phenomenon and controls, either at room temperature (7.8 +/- 0.8 and 9.0 +/- 0.8) or in response to whole-body cooling (3.8 +/- 1.2 and 4.4 +/- 0.7). 4. Thus, whole-body cooling markedly impairs flow-mediated dilatation in women. Flow-mediated dilatation is, however, not decreased in women with primary Raynaud's phenomenon at room temperature or during whole-body cooling, indicating that this particular aspect of endothelial function is not impaired in this setting.</p>}},
  author       = {{Ringqvist, A and Jonason, T and Leppert, J and Ringqvist, I}},
  issn         = {{0143-5221}},
  keywords     = {{Adult; Brachial Artery/diagnostic imaging; Cold Temperature; Endothelium, Vascular/diagnostic imaging; Female; Humans; Middle Aged; Raynaud Disease/diagnostic imaging; Regional Blood Flow; Ultrasonography; Vasodilation/physiology}},
  language     = {{eng}},
  number       = {{3}},
  pages        = {{239--243}},
  publisher    = {{Portland Press}},
  series       = {{Clinical Science}},
  title        = {{Non-invasive investigation of endothelium-dependent dilatation of the brachial artery in women with primary Raynaud's phenomenon}},
  url          = {{http://dx.doi.org/10.1042/cs0940239}},
  doi          = {{10.1042/cs0940239}},
  volume       = {{94}},
  year         = {{1998}},
}