6533b7d7fe1ef96bd12679a9

RESEARCH PRODUCT

Morphometric analysis of cardiac conduction fibers in horses and dogs, a comparative histological and immunohistochemical study with findings in human hearts

Amparo Ruiz-sauriH.y. EstupiñánH.y. EstupiñánFabián Gómez-torresFabián Gómez-torres

subject

MalePathologymedicine.medical_specialty040301 veterinary sciencesConnexin0403 veterinary science03 medical and health sciencesDogsHeart Conduction SystemTrichromeCardiac conductionmedicineAnimalsHumansHorses030304 developmental biology0303 health sciencesGeneral Veterinarybusiness.industryGap junctionHorse04 agricultural and veterinary sciencescardiovascular systemImmunohistochemistryDesminElectrical conduction system of the heartbusiness

description

Abstract The principal function of the ventricular conduction system is rapid electrical activation of the ventricles. The aim of this study is to conduct a morphometric study to pinpoint the morphological parameters that define cardiac conduction cells, allowing us to distinguish them from other cells. Five male horse hearts and five male dog hearts were used in the study. The hearts were fixed in a 5% formaldehyde solution. Histological sections of 5 μm thickness were acquired and stained with hematoxylin-eosin and Masson's trichrome and cardiac conduction cells and their junctions were identified by desmin, connexin 40 and a PAS method. We found statistically significant differences in cardiac conduction fibers density and thickness, which was much higher in horses than in dogs (p = 0.000 for both values). By comparing the measured parameters of the cells in both species, we determined that cardiac conduction cells area and diameters were greater in horses than in dogs (p = 0.000 for all values). In dogs there are more junctions (30.8%) than in horses (26.1%), a statistically significant difference (p = 0.041). Our findings regarding the cardiac conduction fibers distribution in the animal species studied becomes new knowledge that contributes to the morphological study of this component of the cardiac conduction system and also makes it possible to locate exactly the site with the highest density of cardiac conduction fibers as a contribution to the cardiological study of these structures that lead to the prevention of ventricular arrhythmias and the identification of their treatment site.

https://doi.org/10.1016/j.rvsc.2021.02.013