O'Connell Timothy D, Rodrigo Manoj C, Simpson Paul C
Department of Medicine, The University of South Dakota, Sioux Falls, USA.
Methods Mol Biol. 2007;357:271-96. doi: 10.1385/1-59745-214-9:271.
Cardiac myocytes are activated by hormonal and mechanical signals and respond in a variety of ways, from altering contractile function to inducing cardio-protection and growth responses. The use of genetic mouse models allows one to examine the role of cardiac-specific and other genes in cardiac function, hypertrophy, cardio-protection, and diseases such as ischemia and heart failure. However, studies at the cellular level have been hampered by a lack of suitable techniques for isolating and culturing calcium-tolerant, adult mouse cardiac myocytes. We have developed a straightforward, reproducible protocol for isolating and culturing large numbers of adult mouse cardiac myocytes. This protocol is based on the traditional approach of retrograde perfusion of collagenase through the coronary arteries to digest the extracellular matrix of the heart and release rod-shaped myocytes. However, we have made modifications that are essential for isolating calcium-tolerant, rod-shaped adult mouse cardiac myocytes and maintaining them in culture. This protocol yields freshly isolated adult mouse myocytes that are suitable for biochemical assays and for measuring contractile function and calcium transients, and cultured myocytes that are suitable for most biochemical and signaling assays, as well as gene transduction using adenovirus.
心肌细胞受激素和机械信号激活,并以多种方式做出反应,从改变收缩功能到诱导心脏保护和生长反应。利用基因小鼠模型能够研究心脏特异性基因和其他基因在心脏功能、肥大、心脏保护以及诸如缺血和心力衰竭等疾病中的作用。然而,细胞水平的研究一直受到缺乏合适技术来分离和培养耐钙成年小鼠心肌细胞的阻碍。我们已经开发出一种简单、可重复的方案来分离和培养大量成年小鼠心肌细胞。该方案基于通过冠状动脉逆行灌注胶原酶以消化心脏细胞外基质并释放杆状心肌细胞的传统方法。不过,我们进行了一些改进,这些改进对于分离耐钙、杆状成年小鼠心肌细胞并使其在培养中维持存活至关重要。此方案可产生适合生化分析、测量收缩功能和钙瞬变的新鲜分离的成年小鼠心肌细胞,以及适合大多数生化和信号转导分析以及使用腺病毒进行基因转导的培养心肌细胞。