Altered basal and adenosine-mediated protein flux from coronary arterioles isolated from exercise-trained pigs

被引:19
作者
Huxley, VH
Williams, DA
Meyer, DJ
Laughlin, MH
机构
[1] UNIV MISSOURI,SCH MED,DEPT ANESTHESIOL,COLUMBIA,MO 65212
[2] UNIV MISSOURI,DEPT VET BIOMED SCI,COLUMBIA,MO 65211
[3] UNIV MISSOURI,DALTAN CARDIOVASC RES CTR,COLUMBIA,MO 65211
来源
ACTA PHYSIOLOGICA SCANDINAVICA | 1997年 / 160卷 / 04期
关键词
alpha-lactalbumin; coronary exchange capacity; coronary microcirculation; permeability; porcine serum albumin; Yucatan Miniature Swine;
D O I
10.1046/j.1365-201X.1997.661369000.x
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Solute flux per unit surface area and concentration gradient. (J(S)/S Delta C). was quantified in arterioles isolated from hearts of sedentary (SED) and exercise-trained (EX) female Yucatan Miniature Swine. Apparent permeability (P-S) was assessed from measures of J(S)/S Delta C for two proteins. alpha-lactalbumin (alpha-lact) and porcine serum albumin (PSA), under basal conditions and following 5 min suffusion with 10(-5) M adenosine (ADO). Both proteins were labelled with the fluorescent dye tetramethyl rhodamine isothiacyanate. Basal P-s to alpha-lact differed with exercise training ((p(s)(alpha-lact))(SED) = 5.2+/-1.8 (median+/-median absolute deviation (MAD), n = 9 pigs) versus (P-s(alpha-lact))(EX) = 7.4+/-1.1x10(-7) cm s(-1), n=9, P<0.05). For the larger protein PSA, basal P-s did not change with training ((p(s)(PSA))(SED) = 5.0+/-1.6, N=1 vs. (p(s)(PSA))(EX) = 4.1+/-1.2x10(-7) cm s(-1), N=11). Suffusion of the arterioles (33+/-4 mu m diameter. n=18 vessels) from SED hearts (n=14) with 10(-5) hn ADO decreased p(s)(alpha-lact) 15+/-8% relative to control and was without effect on P-s(PSA). By contrast, in arterioles (39+/-4 mu m diameter. n=22 vessels) from EX hearts (n=14). ADO increased P-s(alpha-lact) and P-s(PSA) by 32 and 65% respectively, indicating that receptor-mediated changes in permeability were also sensitive to exercise training. These data demonstrate that. for coronary arterioles, permeability to macromolecules adapts to exercise training. The adaptive mechanisms may involve more than one structural component of the vessel wall as the changes in permeability were size-dependent.
引用
收藏
页码:315 / 325
页数:11
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