Long-term treadmill training in mice generally opposed aging effects, maintaining SERCA, sodium-calcium exchange, and collagen at levels not significantly different from adult trained animals.
Does moderate-intensity treadmill running improve age-associated changes in myocyte calcium regulation and cardiac hypertrophy in adult and old mice?
Long-term moderate-intensity exercise in mice opposes age-related changes in myocardial calcium regulation and collagen deposition.
With aging, there is a decline in cardiac function accompanying increasing risk of arrhythmias. These effects are likely to be mechanistically associated with age-associated changes in calcium regulation within cardiac myocytes. Previous studies suggest that lifelong exercise can potentially reduce age-associated changes in the heart. Although exercise itself is associated with changes in cardiac function, little is known about the interactions of aging and exercise with respect to myocyte calcium regulation. To investigate this, adult (12 months) and old (24 months) C57/Bl6 mice were trained using moderate-intensity treadmill running. In response to 10 weeks' training, comparable cardiac hypertrophic responses were observed, although aging independently associated with additional cardiac hypertrophy. Old animals also showed increased L- and T-type calcium channels, the sodium-calcium exchange, sarcoendoplasmic reticulum calcium ATPase, and collagen (by 50%, 92%, 66%, 88%, and 113% respectively). Short-term exercise training increased D-type and T-type calcium channels in old animals only, whereas an increase in sodium-calcium exchange was seen only in adult animals. Long-term (12 months) training generally opposed the effects of aging. Significant hypertrophy remained in long-term trained old animals, but levels of sarcoendoplasmic reticulum calcium ATPase, sodium-calcium exchange, and collagen were not significantly different from those found in the adult trained animals.
Walton et al. (수요일)은 좌심실 노화에 관한 또 다른 연구를 수행했습니다. 중간 강도의 트레드밀 운동이 성숙 훈련 동물과 훈련되지 않은 노화 대조군에서 심장 비대, 칼슘 채널, 나트륨-칼슘 교환, SERCA 및 콜라겐 수준에 미치는 영향을 평가했습니다. 마우스에서의 장기 트레드밀 훈련은 일반적으로 노화 효과에 반대하며 SERCA, 나트륨-칼슘 교환 및 콜라겐을 성숙 훈련 동물과 유의미하게 차이가 나지 않는 수준으로 유지했습니다.
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