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SKA-31, an activator of Ca2+-activated K+ channels, improves cardiovascular function in aging
Cini Mathew John1, Rayan Khaddaj Mallat1, Ramesh C Mishra1
1Dept. of Physiology and Pharmacology, Cumming School of Medicine, University of Calgary, Canada; Libin Cardiovascular Institute, Cumming School of Medicine, University of Calgary, Canada.
Insights
Long-term treatment with SKA-31, a calcium-activated potassium channel activator, improved cardiovascular function in aging rats. This treatment enhanced vascular health and cardiac performance without causing immune or tissue damage.
Area of Science:
- Cardiovascular Physiology
- Aging Research
- Pharmacology
Background:
- Aging is a major risk factor for cardiovascular disease, leading to vascular dysfunction like endothelial dysfunction.
- Small- and intermediate-conductance Ca2+-activated K+ channels (KCa2.3 and KCa3.1) are key in vascular endothelium and mediate vasodilation.
- The long-term effects of in vivo KCa channel activator administration on aging vasculature are unknown.
Purpose of the Study:
- To investigate the effects of prolonged in vivo administration of the KCa channel activator SKA-31 on aging-related cardiovascular deficits.
- To determine if SKA-31 treatment can ameliorate age-associated declines in vascular and cardiac function.
- To assess the safety of SKA-31 treatment regarding immune response and tissue toxicity.
Main Methods:
- Aged male Sprague Dawley rats were treated daily with SKA-31 (10 mg/kg) or vehicle for 8 weeks.
- Evaluations included echocardiography, arterial pressure myography, immune cell and plasma cytokine analysis, and tissue histology.
- Young rats were also treated with SKA-31 to assess effects in a non-aged state.
Main Results:
- SKA-31 treatment improved endothelium-dependent vasodilation and reduced vascular contractility in aged rats.
- Cardiac function, including ejection fraction and stroke volume, was preserved by SKA-31, returning to levels seen in young rats.
- SKA-31 did not induce pro-inflammatory changes or cause adverse tissue histopathology in multiple organs.
- Treatment in young rats showed minimal effects on vascular reactivity, protein expression, or immune parameters.
Conclusions:
- Long-term administration of the KCa channel activator SKA-31 effectively improved aging-related cardiovascular function in rats.
- SKA-31 treatment ameliorated vascular and cardiac deficits associated with aging without adverse immune or tissue effects.
- These findings suggest SKA-31 as a potential therapeutic agent for age-related cardiovascular diseases.
Abstract:
Aging represents an independent risk factor for the development of cardiovascular disease, and is associated with complex structural and functional alterations in the vasculature, such as endothelial dysfunction. Small- and intermediate-conductance, Ca2+-activated K+ channels (KCa2.3 and KCa3.1, respectively) are prominently expressed in the vascular endothelium, and pharmacological activators of these channels induce robust vasodilation upon acute exposure in isolated arteries and intact animals. However, the effects of prolonged in vivo administration of such compounds are unknown. In our study, we hypothesized that such treatment would ameliorate aging-related cardiovascular deficits. Aged (∼18 months) male Sprague Dawley rats were treated daily with either vehicle or the KCa channel activator SKA-31 (10 mg/kg, intraperitoneal injection; n = 6/group) for 8 weeks, followed by echocardiography, arterial pressure myography, immune cell and plasma cytokine characterization, and tissue histology. Our results show that SKA-31 administration improved endothelium-dependent vasodilation, reduced agonist-induced vascular contractility, and prevented the aging-associated declines in cardiac ejection fraction, stroke volume and fractional shortening, and further improved the expression of endothelial KCa channels and associated cell signalling components to levels similar to those observed in young male rats (∼5 months at end of study). SKA-31 administration did not promote pro-inflammatory changes in either T cell populations or plasma cytokines/chemokines, and we observed no overt tissue histopathology in heart, kidney, aorta, brain, liver and spleen. SKA-31 treatment in young rats had little to no effect on vascular reactivity, select protein expression, tissue histology, plasma cytokines/chemokines or immune cell properties. Collectively, these data demonstrate that administration of the KCa channel activator SKA-31 improved aging-related cardiovascular function, without adversely affecting the immune system or promoting tissue toxicity.
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