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Published on: September 28, 2015
Recombinant human matrix metalloproteinase-2 impairs cardiovascular β-adrenergic responses
Karina C Ferraz1, Ozélia Sousa-Santos, Evandro M Neto-Neves
1Department of Pharmacology, Faculty of Medical Sciences, State University of Campinas, Campinas, Brazil.
Abstract:
Growing evidence supports the involvement of matrix metalloproteinases (MMPs) in the pathogenesis of many cardiovascular diseases. Particularly, imbalanced MMP-2 activity apparently plays a critical role in cardiovascular remodelling. While some studies have suggested that MMP-2 may affect the vascular tone and impair β-adrenoreceptor function, no previous study has examined the acute haemodynamic effects of MMP-2. We examined the effects of recombinant human MMP-2 (rhMMP-2) administered intravenously to anaesthetized lambs at baseline conditions and during β(1) -adrenergic cardiac stimulation with dobutamine. We used 26 anaesthetized male lambs in two study protocols. First, rhMMP-2 (220 ng/kg/min. over 60 min.) or vehicle was infused in the lambs, and no significant haemodynamic changes were found. Therefore, we infused dobutamine at 5 μg/kg/min. i.v. (or saline) over 180 min. in lambs that had received the same rhMMP-2 infusion preceded by doxycycline i.v. at 10 mg/kg (or saline). Plasma and cardiac MMP-2 levels were assessed by gelatin zymography, and gelatinolytic activity was assessed by spectrofluorimetry. Dobutamine decreased systemic vascular resistance index, and this effect was attenuated by rhMMP-2 infusion. Moreover, dobutamine increased the cardiac index and left ventricular dP/dt(max) , and these effects were attenuated by rhMMP-2. The previous administration of doxycycline blunted rhMMP-2-induced changes in dobutamine responses. While the infusion of rhMMP-2 did not increase plasma and cardiac MMP-2 levels, it increased cardiac gelatinolytic activity, and doxycycline blunted this effect. Our findings show that rhMMP-2 exerts no major haemodynamic effects in lambs. However, rhMMP-2 impairs the responses elicited by activation of β-adrenoreceptors.
Insights
Matrix metalloproteinase-2 (MMP-2) does not significantly alter hemodynamics but impairs beta-adrenoreceptor responses during cardiac stimulation. This suggests MMP-2 plays a role in cardiovascular remodeling by affecting adrenergic function.
Area of Science:
- Cardiovascular Physiology
- Biochemistry
- Pharmacology
Background:
- Matrix metalloproteinases (MMPs), particularly MMP-2, are implicated in cardiovascular disease pathogenesis and remodeling.
- Previous research suggests MMP-2 may influence vascular tone and beta-adrenoreceptor function, but its acute hemodynamic effects are unknown.
- Understanding MMP-2's role is crucial for developing targeted cardiovascular therapies.
Purpose of the Study:
- To investigate the acute hemodynamic effects of recombinant human MMP-2 (rhMMP-2) in anesthetized lambs.
- To determine if rhMMP-2 alters cardiovascular responses during beta(1)-adrenergic stimulation with dobutamine.
- To assess the impact of MMP-2 inhibition (using doxycycline) on these responses.
Main Methods:
- 26 anesthetized male lambs were used in two study protocols.
- rhMMP-2 or vehicle was infused intravenously, followed by dobutamine or saline infusion.
- Hemodynamic parameters, cardiac gelatinolytic activity, and MMP-2 levels were measured.
- Doxycycline was administered to inhibit MMP-2 activity.
Main Results:
- rhMMP-2 infusion alone did not cause significant hemodynamic changes.
- rhMMP-2 attenuated the effects of dobutamine on systemic vascular resistance and cardiac function (cardiac index, left ventricular dP/dt(max)).
- Doxycycline administration blunted the rhMMP-2-induced alterations in dobutamine responses and cardiac gelatinolytic activity.
Conclusions:
- rhMMP-2 does not exert major acute hemodynamic effects in lambs.
- rhMMP-2 impairs cardiovascular responses mediated by beta-adrenoreceptor activation.
- These findings highlight a potential role for MMP-2 in modulating adrenergic signaling in the cardiovascular system.
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