Institute of Veterinary Physiology, Vetsuisse Faculty and Zurich Center for Integrative Human Physiology , University of Zurich, 8057 Zurich, Switzerland.
Proc Natl Acad Sci U S A. 2010 Jan 5;107(1):419-23. doi: 10.1073/pnas.0912924107. Epub 2009 Dec 4.
Erythropoietin (Epo) treatment increases hematocrit (Htc) and, consequently, arterial O(2) content. This in turn improves exercise performance. However, because elevated blood viscosity associated with increasing Htc levels may limit cardiac performance, it was suggested that the highest attainable Htc may not necessarily be associated with the highest attainable exercise capacity. To test the proposed hypothesis that an optimal Htc in acute and chronic Epo-treated mice exists--i.e., the Htc that facilitates the greatest O(2) flux during maximal exercise--Htc levels of wild-type mice were acutely elevated by administering novel erythropoiesis-stimulating protein (NESP; wtNESP). Furthermore, in the transgenic mouse line tg6 that reaches Htc levels of up to 0.9 because of constitutive overexpression of human Epo, the Htc was gradually reduced by application of the hemolysis-inducing compound phenylhydrazine (PHZ; tg6PHZ). Maximal cardiovascular performance was measured by using telemetry in all exercising mice. Highest maximal O(2) uptake (VO(2max)) and maximal time to exhaustion at submaximal exercise intensities were reached at Htc values of 0.58 and 0.57 for wtNESP, and 0.68 and 0.66 for tg6PHZ, respectively. Rate pressure product, and thus also maximal working capacity of the heart, increased with elevated Htc values. Blood viscosity correlated with VO(2max). Apart from the confirmation of the Htc hypothesis, we conclude that tg6PHZ adapted better to varying Htc values than wtNESP because of the higher optimal Htc of tg6PHZ compared to wtNESP. Of note, blood viscosity plays a critical role in limiting exercise capacity.
促红细胞生成素(Epo)治疗可增加血细胞比容(Htc),进而提高动脉血氧含量。这反过来又改善了运动表现。然而,由于与 Htc 水平升高相关的血液黏度增加可能会限制心脏功能,因此有人认为,可达到的最高 Htc 不一定与可达到的最高运动能力相关。为了验证促红细胞生成素治疗的急性和慢性小鼠存在最佳 Htc 的假设,即促进最大运动期间最大 O2 通量的 Htc,通过给予新型促红细胞生成蛋白(NESP;wtNESP)急性增加野生型小鼠的 Htc。此外,在由于人 Epo 组成性过表达而达到高达 0.9 Htc 的转基因小鼠系 tg6 中,通过应用溶血诱导化合物苯肼(PHZ;tg6PHZ)逐渐降低 Htc。通过遥测术测量所有运动中的小鼠的最大心血管性能。wtNESP 的最大 O2 摄取量(VO2max)和在亚最大运动强度下的最大疲劳时间分别达到 0.58 和 0.57 的 Htc 值,而 tg6PHZ 分别达到 0.68 和 0.66 的 Htc 值。心率血压乘积,以及心脏的最大工作能力,随 Htc 值的升高而增加。血液黏度与 VO2max 相关。除了证实 Htc 假说外,我们还得出结论,与 wtNESP 相比,tg6PHZ 适应不同 Htc 值的能力更好,因为 tg6PHZ 的最佳 Htc 比 wtNESP 高。值得注意的是,血液黏度在限制运动能力方面起着至关重要的作用。