Rahmani Maryam, Pham Toan, Crossman David J, Tran Kenneth, Taberner Andrew J, Han June-Chiew
Auckland Bioengineering Institute, The University of Auckland, Auckland, New Zealand.
Department of Physiology, The University of Auckland, Auckland, New Zealand.
Sci Rep. 2024 Dec 28;14(1):31242. doi: 10.1038/s41598-024-82604-3.
Cardiac sex-difference functional studies have centred on measurements of twitch force and Ca dynamics. The energy expenditures from these two cellular processes: activation (Ca handling) and contraction (cross-bridge cycling), have not been assessed, and compared, between sexes. Whole-heart studies measuring oxygen consumption do not directly measure the energy expenditure of these activation-contraction processes. In this study, we directly quantified these energy expenditures in terms of heat production. Left-ventricular trabeculae were dissected from rats aged 9-13 weeks. Mechano-energetics of trabeculae were characterized using our work-loop calorimeter under various conditions including varying muscle lengths, stimulus frequencies, and afterloads. Each trabecula was subjected to protocols that allowed it to contract either isometrically or shorten to perform work-loops. Force production, length change, and heat output were simultaneously measured. We extracted various metrics: twitch kinetics, shortening kinetics, mechanical work, and heat associated with cross-bridge cycling and Ca cycling, and quantified mechanical efficiency. Results show no sex differences in any of the metrics. Peak mechanical efficiency was not affected by sex (10.25 ± 0.57% in female trabeculae; 10.93 ± 0.87% in male trabeculae). We conclude that cardiac mechanics and energetics are not affected by sex at the muscle level, within the rat age range studied.
心脏性别差异功能研究主要集中在对抽搐力和钙动力学的测量上。然而,尚未对两性之间这两个细胞过程(激活(钙处理)和收缩(横桥循环))的能量消耗进行评估和比较。测量耗氧量的全心脏研究并不能直接测量这些激活 - 收缩过程的能量消耗。在本研究中,我们根据产热直接量化了这些能量消耗。从9至13周龄的大鼠中解剖出左心室小梁。在包括不同肌肉长度、刺激频率和后负荷等各种条件下,使用我们的工作回路热量计对小梁的机械能量学进行表征。每个小梁都要经历使其等长收缩或缩短以执行工作回路的实验方案。同时测量力的产生、长度变化和热量输出。我们提取了各种指标:抽搐动力学、缩短动力学、机械功以及与横桥循环和钙循环相关的热量,并量化了机械效率。结果表明,在任何指标上均无性别差异。峰值机械效率不受性别影响(雌性小梁为10.25±0.57%;雄性小梁为10.93±0.87%)。我们得出结论,在所研究的大鼠年龄范围内,心脏力学和能量学在肌肉水平上不受性别的影响。