Pacher Pál, Nagayama Takahiro, Mukhopadhyay Partha, Bátkai Sándor, Kass David A
Section on Oxidative Stress Tissue Injury, Laboratories of Physiological Studies, National Institutes of Health/NIAAA, 5625 Fishers Lane, MSC-9413, Bethesda, Maryland 20892-9413, USA.
Nat Protoc. 2008;3(9):1422-34. doi: 10.1038/nprot.2008.138.
Ventricular pressure-volume relationships have become well established as the most rigorous and comprehensive ways to assess intact heart function. Thanks to advances in miniature sensor technology, this approach has been successfully translated to small rodents, allowing for detailed characterization of cardiovascular function in genetically engineered mice, testing effects of pharmacotherapies and studying disease conditions. This method is unique for providing measures of left ventricular (LV) performance that are more specific to the heart and less affected by vascular loading conditions. Here we present descriptions and movies for procedures employing this method (anesthesia, intubation and surgical techniques, calibrations). We also provide examples of hemodynamics measurements obtained from normal mice/rats, and from animals with cardiac hypertrophy/heart failure, and describe values for various useful load-dependent and load-independent indexes of LV function obtained using different types of anesthesia. The completion of the protocol takes 1-4 h (depending on the experimental design/end points).
心室压力-容积关系已成为评估完整心脏功能最严谨、最全面的方法。得益于微型传感器技术的进步,这种方法已成功应用于小型啮齿动物,能够详细表征基因工程小鼠的心血管功能、测试药物治疗效果并研究疾病状况。该方法的独特之处在于能够提供更具心脏特异性且受血管负荷条件影响较小的左心室(LV)性能指标。在此,我们展示了采用这种方法的操作(麻醉、插管和手术技术、校准)的描述及视频。我们还提供了从正常小鼠/大鼠以及患有心脏肥大/心力衰竭的动物获得的血流动力学测量示例,并描述了使用不同类型麻醉获得的各种有用的LV功能负荷依赖性和负荷独立性指标的值。该实验方案的完成需要1 - 4小时(取决于实验设计/终点)。