Literature DB >> 16730738

Gender differences in biomechanical properties of intramural coronary resistance arteries of rats, an in vitro microarteriographic study.

Mate Matrai1, Metin Mericli, Gyorgy L Nadasy, Maria Szekeres, Szabolcs Varbiro, Ferenc Banhidy, Nandor Acs, Emil Monos, Bela Szekacs.   

Abstract

The prevalence of ischemic heart disease is lower in premenopausal females than in males of corresponding age. This should be related to gender differences in coronary functions. We tested whether biomechanical differences exist between intramural coronary resistance arteries of male and female rats. Intramural branches of the left anterior descending coronary artery (uniformly approximately 200microm in diameter) were isolated, cannulated and studied by microarteriography. Intraluminal pressure was increased from 2 to 90mmHg in steps and steady-state diameters were measured. Measurements were repeated in the presence of vasoconstrictor U46619 (10(-6)M) and the endothelial coronary vasodilator bradykinin (BK) (10(-6)M). Finally, passive diameters were recorded in calcium-free saline. A similar inner radius and a higher wall thickness (41.5+/-2.9microm vs. 31.4+/-2.7microm at 50mmHg in the passive condition, p<0.05) resulted in lower tangential wall stresses in male rats (18.9+/-1.9kPa vs. 24.9+/-2.5kPa at 50mmHg, p<0.05). Isobaric elastic modulus of vessels from male animals was significantly smaller at higher pressures. Vasoconstrictor response was significantly stronger in male than in female animals. Endothelial relaxations induced by BK were not different. This is the first demonstration that biomechanical characteristics of intramural coronary resistance arteries of a mammalian species are different in the male and female sexes. Higher wall thickness and higher vascular contractility in males are associated with similar endothelial function and larger high-pressure elasticity compared to females. These gender differences in biomechanics of coronary resistance arteries of rats may contribute to our better understanding the characteristic physiological and pathological differences in humans.

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Year:  2006        PMID: 16730738     DOI: 10.1016/j.jbiomech.2006.04.002

Source DB:  PubMed          Journal:  J Biomech        ISSN: 0021-9290            Impact factor:   2.712


  5 in total

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Authors:  Jenine K Sanzari; Paul C Billings; Jolaine M Wilson; Eric S Diffenderfer; Arturo A Arce-Esquivel; Pamela K Thorne; Maurice H Laughlin; Ann R Kennedy
Journal:  Life Sci Space Res (Amst)       Date:  2015-01

2.  Remodeling of Wall Mechanics and the Myogenic Mechanism of Rat Intramural Coronary Arterioles in Response to a Short-Term Daily Exercise Program: Role of Endothelial Factors.

Authors:  Mária Szekeres; György L Nádasy; Gabriella Dörnyei; Annamária Szénási; Akos Koller
Journal:  J Vasc Res       Date:  2018-02-14       Impact factor: 1.934

3.  Network analysis of the left anterior descending coronary arteries in swim-trained rats by an in situ video microscopic technique.

Authors:  Marianna Török; Petra Merkely; Anna Monori-Kiss; Eszter Mária Horváth; Réka Eszter Sziva; Borbála Péterffy; Attila Jósvai; Alex Ali Sayour; Attila Oláh; Tamás Radovits; Béla Merkely; Nándor Ács; György László Nádasy; Szabolcs Várbíró
Journal:  Biol Sex Differ       Date:  2021-05-26       Impact factor: 5.027

4.  Long-term exercise results in morphological and biomechanical changes in coronary resistance arterioles in male and female rats.

Authors:  Marianna Török; Anna Monori-Kiss; Éva Pál; Eszter Horváth; Attila Jósvai; Petra Merkely; Bálint András Barta; Csaba Mátyás; Attila Oláh; Tamás Radovits; Béla Merkely; Nándor Ács; György László Nádasy; Szabolcs Várbíró
Journal:  Biol Sex Differ       Date:  2020-02-12       Impact factor: 5.027

5.  Sex Differences in Exercise-Training-Related Functional and Morphological Adaptation of Rat Gracilis Muscle Arterioles.

Authors:  Petra Merkely; Marcell Bakos; Bálint Bányai; Anna Monori-Kiss; Eszter M Horváth; Judit Bognár; Rita Benkő; Attila Oláh; Tamás Radovits; Béla Merkely; Nándor Ács; György L Nádasy; Marianna Török; Szabolcs Várbíró
Journal:  Front Physiol       Date:  2021-07-12       Impact factor: 4.566

  5 in total

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