Pacher Pál, Mabley Jon G, Liaudet Lucas, Evgenov Oleg V, Marton Anita, Haskó György, Kollai Márk, Szabó Csaba
National Institute on Alcohol Abuse and Alcoholism, 12420 Parklawn Dr., MSC-8115, Bethesda, MD 20892-8115, USA.
Am J Physiol Heart Circ Physiol. 2004 Nov;287(5):H2132-7. doi: 10.1152/ajpheart.00405.2004. Epub 2004 Jul 1.
Aging is associated with profound changes in the structure and function of the heart. A fundamental understanding of these processes, using relevant animal models, is required for effective prevention and treatment of cardiovascular disease in the elderly. Here, we studied cardiac performance in 4- to 5-mo-old (young) and 24- to 26-mo-old (old) Fischer 344 male rats using the Millar pressure-volume (P-V) conductance catheter system. We evaluated systolic and diastolic function in vivo at different preloads, including preload recruitable stroke work (PRSW), maximal slope of the systolic pressure increment (+dP/dt), and its relation to end-diastolic volume (+dP/dt-EDV) as well as the time constant of left ventricular pressure decay, as an index of relaxation. The slope of the end-diastolic P-V relation (EDPVR), an index of left ventricular stiffness, was also calculated. Aging was associated with decrease in left ventricular systolic pressure, +dP/dt, maximal slope of the diastolic pressure decrement, +dP/dt-EDV, PRSW, ejection fraction, stroke volume, cardiac and stroke work indexes, and efficiency. In contrast, total peripheral resistance, left ventricular end-diastolic volume, left ventricular end-diastolic pressure, and EDPVR were greater in aging than in young animals. Taken together, these data suggest that advanced aging is characterized by decreased systolic performance accompanied by delayed relaxation and increased diastolic stiffness of the heart in male Fischer 344 rats. P-V analysis is a sensitive method to determine cardiac function in rats.
衰老与心脏结构和功能的深刻变化相关。为有效预防和治疗老年人的心血管疾病,需要利用相关动物模型对这些过程有基本的了解。在此,我们使用Millar压力-容积(P-V)电导导管系统研究了4至5月龄(年轻)和24至26月龄(年老)的Fischer 344雄性大鼠的心脏性能。我们在不同前负荷下评估了体内的收缩和舒张功能,包括前负荷可募集搏功(PRSW)、收缩压增量的最大斜率(+dP/dt)及其与舒张末期容积的关系(+dP/dt-EDV),以及左心室压力衰减的时间常数,作为舒张的指标。还计算了舒张末期P-V关系(EDPVR)的斜率,作为左心室僵硬度的指标。衰老与左心室收缩压、+dP/dt、舒张压下降的最大斜率、+dP/dt-EDV、PRSW、射血分数、搏出量、心脏和搏功指数以及效率的降低有关。相反,衰老动物的总外周阻力、左心室舒张末期容积、左心室舒张末期压力和EDPVR比年轻动物更大。综上所述,这些数据表明,在雄性Fischer 344大鼠中,衰老的特征是收缩性能下降,同时伴有舒张延迟和心脏舒张僵硬度增加。P-V分析是确定大鼠心脏功能的一种敏感方法。