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Sandrine Compagnie

Publications and source records attributed to Sandrine Compagnie.

3 recordsLinked to original sources

Erectile dysfunction in hypercholesterolemic atherosclerotic apolipoprotein E knockout mice.

INTRODUCTION: Erectile dysfunction (ED) and cardiovascular diseases share the same risk factors. Although the use of hypercholesterolemic rabbit models has proven to be useful to illustrate the link between ED and hypercholesterolemia, the cost of daily maintenance of the animals and necessity for important amounts of drug have limited their use. AIM: We aimed to develop a new model of atherosclerosis-associated ED in a well-known experimental model of atherosclerosis, the apolipoprotein E knockout (ApoE KO) mouse. METHODS: Erectile function was evaluated by recording frequency-dependent increases in intracavernous pressure following electrical stimulation of the cavernous nerve in 26-, 32-, and 38-week-old ApoE KO mice fed a Western-type diet and age-matched C57BL6/J anesthetized mice. Atherosclerotic lesions were evaluated by planimetry in oil red O-stained aortas. RESULTS: We found that in contrast to C57BL6/J mice, ApoE mice displayed atherosclerotic lesions covering 22% of the aortic luminal surface at 26 weeks of age and increasing to 27% and 35% at 32 weeks and 38 weeks of age, respectively. The amplitude of erectile responses to electrical stimulation of the cavernous nerve was markedly impaired in 26-week-old ApoE KO mice as compared with age-matched C57BL6/J mice. Impairment in erectile function persisted in ApoE KO mice 32 and 38 weeks of age. CONCLUSIONS: The ApoE KO mouse, a well-characterized model to study disorders associated with hypercholesterolemia and atherosclerosis in cardiovascular research, could therefore be suitable for investigation of disease-modifying effects of new therapeutic strategies aiming to target both atherosclerosis and ED.

Animals↗

Erectile dysfunction: an early marker for hypertension? A longitudinal study in spontaneously hypertensive rats.

Erectile dysfunction (ED) is another manifestation of vascular disease. We evaluated the natural history of ED in the spontaneously hypertensive rat (SHR) and the respective participation of associated pathophysiological modifications, i.e., endothelial dysfunction and tissue remodeling. SHR and their normotensive counterparts [Wistar-Kyoto rats (WKY)] of 6, 12, and 24 wk of age (n = 12) were used to evaluate erectile function, erectile and aortic tissue reactivity, and remodeling. Erectile responses in SHR are reduced at all ages (P < 0.001). In both aortic and erectile tissues of SHR and WKY, relaxations to ACh are altered progressively with age, although more markedly in SHR. They are decreased at 12 wk of age in erectile tissue of SHR compared with WKY (maximal relaxation: -19.2 +/- 2.8% vs. -28.3 +/- 3.9%, P < 0.001) but only at 24 wk of age in aortas (-47.9 +/- 6.4% vs. -90.5 +/- 2.9%, P < 0.001). Relaxations to sodium nitroprusside are unaltered in aortic rings of both strains but enhanced in erectile tissue of SHR at 12 wk of age. Major modifications in the distribution of collagen I, III, and V in SHR occur in both types of tissue and are detectable sooner in erectile tissue compared with aortic tissue. The onset of ED is detectable before the onset of hypertension in the SHR. Structural and functional alterations, while similar, occur earlier in erectile compared with vascular tissue. If confirmed in humans, ED could be an early warning sign for hypertension, and common therapeutic strategies targeting both ED and hypertension could be investigated.

Acetylcholine↗

Distinct mechanisms implicated in atherosclerosis-induced erectile dysfunction in rabbits.

Ageing and atherosclerosis (ATH) are well-known risk factors for erectile dysfunction (ED). To identify the mechanisms implicated in ATH-induced ED, independently of its ageing-associated component, we studied (i) erectile responses in vivo, and, (ii) endothelium-dependent and independent relaxations of corporal strips from young adult (YAD, n=6), adult (AD, n=6), and cholesterol-fed (ATH, n=8) New-Zealand white rabbits. Measurement of Intima/Media (I/M) ratio on iliac arteries from ATH rabbits determined those with moderate (Mod ATH, 0.5+/-0.3) or severe (Sev ATH, 1.5+/-0.4, P<0.05 Mann-Whitney) atherosclerotic lesions. Erectile responses were reduced in AD compared with YAD rabbits (at 6 V to 10 Hz: 51.6+/-4.6% vs. 57.5+/-1.4%); they were similar in AD and mod ATH rabbits (48.1+/-4.6%) but drastically impaired in Sev ATH rabbits (34.8+/-5.4%, P<0.05, two-way analysis of variance (ANOVA)). Corporal endothelium-dependent and -independent relaxations were comparable in YAD and AD rabbits (maximal relaxation to acetylcholine: 51.3+/-9.5 vs. 56.1+/-9.3%) but decreased in ATH rabbits (37.1+/-1.6%, P<0.001, two-way ANOVA). These results suggest that the mechanisms implicated in ATH-induced ED are distinct from the ageing-related process in rabbits. Thus, future therapeutic targets to treat or prevent ATH-induced ED may include the reduction of the atherosclerotic plaque size or progression, as well as an improvement of the smooth muscle and endothelial reactivity of the corpus cavernosum.

Animals↗