Key result
A procedure using Spinner flasks with collagenase, hyaluronidase, and trypsin yielded 4-6 x 10^6 myocytes/g wet wt with 61% viability, which responded independently to anoxia, acidosis, and low glucose.
The study establishes a reliable method for isolating viable, Ca2+-tolerant adult canine ventricular myocytes suitable for in vitro models of cellular injury.
Facilitates ex vivo studies of adult canine myocytes; leaves open generalizability to human cells.
A procedure is described for the production of large numbers of Ca2+-tolerant adult canine ventricular myocytes. Gentle tissue dissociation is achieved in Spinner flasks using 320 mosM enzyme buffer containing collagenase hyaluronidase, and trypsin in the presence of millimolar levels of Ca2+. The technique allows for the complete removal of erythrocytes, the gentle removal of closely adhering nonmuscle cells (less than 3% contamination), and the selective removal of damaged from nondamaged myocytes. Total myocyte yields averaged 4-6 x 10(6)/g wet wt; 61.0 +/- 6.5% of the cells have rod-shaped morphology and are "viable" based on trypan blue exclusion. Only 3.9 +/- 1.1% of the rod-shaped cells beat spontaneously when challenged with 2 mM Ca2+. Exposure to 2 mM Ca2+ at 37 degrees C results in minimal loss of viability (2.1 +/- 1.3%/h) based on both trypan blue uptake and creatine kinase release. Simulation of cellular (i.e., membrane) injury in vitro is performed by the separate application of the perturbations of anoxia, acidosis, and low glucose to the canine myocyte suspensions; the data suggest that these myocytes are affected independently by these perturbations and are in good agreement with the results obtained by others using the isolated rat myocyte system.
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Spanier et al. (1982) studied this question. Preparation of Ca2+-tolerant adult canine ventricular myocytes and exposure to anoxia, acidosis, and low glucose was evaluated on Myocyte yield, viability, and response to anoxia/acidosis. A procedure using Spinner flasks with collagenase, hyaluronidase, and trypsin yielded 4-6 x 10^6 myocytes/g wet wt with 61% viability, which responded independently to anoxia, acidosis, and low glucose.
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