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Saboune, J.

Publications and source records attributed to Saboune, J..

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Investigating the temporal effects of ovarian failure on single muscle fibre contractility using a chemically-induced ovarian failure model in mice

We investigated the effects of chemically-induced ovarian failure on single muscle fibre contractility of the soleus and extensor digitorum longus (EDL) muscles throughout ovarian failure, thereby mimicking the menopausal transition into late-stage menopause: [(D60;peri-menopause), (D120;onset of menopause), (D134;early-onset menopause), (D176;late-stage menopause)]. We used 4-vinylcyclohexene diepoxide (VCD) to induce ovarian failure in sexually-mature female mice. At D120 and D176, mice with VCD-induced ovarian failure produced higher force as compared with controls (p<0.05). On D134, however, VCD had lower force production compared with controls (p<0.05). The cross-sectional area of the soleus fibres from the VCD group was larger at D120 compared with controls (p<0.05), but not at any other time point (p>0.05). As well, at D120-D176, the proportion of Type II fibres relative to Type I increased for the soleus, but not the EDL. No differences in rate of force redevelopment (Ktr) was observed for the soleus (p>0.05), while calcium sensitivity increased by late-stage menopause (p<0.05). There were no differences in force, cross-sectional area, stiffness, Ktr, or calcium sensitivity between groups for the EDL (p>0.05). Muscle contractility across the peri-menopausal transition into late-stage menopause is both muscle and phase-dependent, emphasizing the complexity of changing hormones throughout the lifespan on muscle contractile function.

physiology↗

Effects of VCD-induced ovarian failure on single muscle fiber contractility in a mouse model of menopause

ObjectiveMenopause is associated with impairments in muscle contractile function. The temporal and mechanistic basis of this dysfunction are not known. Using a mouse model of menopause we identified how gradual ovarian failure affects single muscle fiber contractility. Study designMice were injected with VCD over 15 days and ovarian failure developed over 120 days. Mice were then sacrificed and slow-type soleus (SOL) and fast-type extensor digitorum longus (EDL) muscles were dissected and chemically permeabilized for mechanical testing. Main outcome measuresMuscle fiber contractility was assessed via: force, rate of force redevelopment, instantaneous stiffness, and calcium sensitivity across three relative force levels (pCa10,pCa50,pCa90). ResultsPeak force and cross-sectional area (CSA) of the SOL were [~]33% and [~]24% greater in the VCD group as compared with controls (P<0.05), respectively, with no differences in force produced by the EDL fibers across groups (P>0.05). Upon normalizing force to CSA there were no differences across groups (P>0.05). Rate of force development was [~]33% faster for SOL in the VCD group compared to control. Ca2+ sensitivity did not differ between groups for either muscle at pCa50 (P>0.05). In the VCD group, Ca2+ sensitivity was higher for EDL, but lower for SOL at pCa10 and pCa90 (P<0.05), respectively. ConclusionsIn our mouse model of menopause, alterations to muscle contractility were much less evident as compared with ovariectomized models. This divergence across models highlights the importance of better approximating the natural trajectory of menopause during and after the transitional phase of ovarian failure on neuromuscular function.

physiology↗