首页> 外文期刊>The Journal of Physiology >Tetrahydrobiopterin augments endothelium-dependent dilatation in sedentary but not in habitually exercising older adults.
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Tetrahydrobiopterin augments endothelium-dependent dilatation in sedentary but not in habitually exercising older adults.

机译:四氢生物蝶呤在久坐的人中增加了内皮依赖性的扩张,但在习惯性锻炼的老年人中却没有。

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Endothelium-dependent dilatation (EDD) is impaired with ageing in sedentary, but not in regularly exercising adults. We tested the hypotheses that differences in tetrahydrobiopterin (BH(4)) bioactivity are key mechanisms explaining the impairment in EDD with sedentary ageing, and the maintenance of EDD with ageing in regularly exercising adults. Brachial artery flow-mediated dilatation (FMD), normalized for local shear stress, was measured after acute oral placebo or BH(4) in young sedentary (YS) (n = 10; 22 +/- 1 years, mean +/- s.e.m.), older sedentary (OS) (n = 9; 62 +/- 2), and older habitually aerobically trained (OT) (n = 12; 66 +/- 1) healthy men. At baseline, FMD was approximately 50% lower in OS versus YS (1.12 +/- 0.09 versus 0.57 +/- 0.09 (Deltamm (dyn cm(-2))) x 10(-2), P < 0.001; 1 dyn = 10(-5) N), but was preserved in OT (0.93 +/- 0.08 (Deltamm (dyn cm(-2))) x 10(-2)). BH4 administration improved FMD by approximately 45% in OS (1.00 +/- 0.10 (Deltamm (dyn cm(-2))) x 10(-2), P < 0.01 versus baseline), but did not affect FMD in YS or OT. Endothelium-independent dilatation neither differed between groups at baseline nor changed with BH4 administration. These results suggest that BH4 bioactivity may be a key mechanism involved in the impairment of conduit artery EDD with sedentary ageing, and the EDD-preserving effect of habitual exercise.
机译:在久坐的人中,内皮依赖性扩张(EDD)会因衰老而受损,但在经常锻炼的成年人中则不会。我们检验了以下假设:四氢生物蝶呤(BH(4))生物活性的差异是解释久坐衰老对EDD的损害以及在经常锻炼的成年人中随着衰老保持EDD的关键机制。在急性久坐(YS)(n = 10; 22 +/- 1年,平均+/- sem)后,对急性口服安慰剂或BH(4)进行测量后,针对局部切应力标准化的肱动脉血流介导的扩张(FMD) ),久坐的(OS)(n = 9; 62 +/- 2)和经习惯性有氧运动训练(OT)(n = 12; 66 +/- 1)的健康男性。在基线时,OS上的FMD与YS相比降低了约50%(1.12 +/- 0.09对0.57 +/- 0.09(Deltamm(dyn cm(-2)))x 10(-2),P <0.001; 1 dyn = 10(-5)N),但以OT(0.93 +/- 0.08(Deltamm(dyn cm(-2)))x 10(-2))保存。 BH4给药可使OS中的FMD改善约45%(1.00 +/- 0.10(Deltamm(dyn cm(-2))x 10(-2),P <0.01与基线相比)),但不影响YS或OT中的FMD 。内皮依赖性扩张在基线时各组之间均无差异,也未随BH4给药而改变。这些结果表明,BH4的生物活性可能是久坐衰老导致导管动脉EDD受损和习惯性锻炼保持EDD的关键机制。

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