Veterinary Faculty, University of Ljubljana, Ljubljana, Slovenia.
Equine Vet J. 2011 Jul;43(4):451-9. doi: 10.1111/j.2042-3306.2010.00301.x. Epub 2010 Sep 29.
Frusemide (Fru) is widely prescribed for management of racehorses experiencing EIPH. The effect of Fru in the lung appears to be a reduction in transcapillary pressures and inhibition of the erythrocyte anion exchange, which may lead to attenuation of transpulmonary fluid fluxes during exercise.
Treatment with Fru will attenuate transpulmonary fluid fluxes in horses during high intensity exercise.
In a crossover study, 6 race-fit Standardbred horses were treated with 250 mg of Fru i.v. (FruTr) or placebo (Con) 4 h before exercise on a high speed treadmill until fatigue. Arterial and central mixed venous blood, as well as CO(2) elimination and O(2) uptake, were sampled. Volume changes across the lung and transvascular fluid fluxes were calculated from changes in haemoglobin, packed cell volume, plasma protein and cardiac output (Q).
During exercise, Q increased in both Con and FruTr, with Q being significantly lower in FruTr (mean ± s.e. 301.8 ± 8.5 l/min at fatigue) compared to Con (336.5 ± 15.6 l/min) (P<0.01). At rest frusemide had no effect on erythrocyte (J(ER)) and transvascular (J(V-A)) fluid fluxes across the lung. Exercise had a significant effect on J(ER) and J(V-A) (P ≤ 0.02). During exercise, J(ER) (at fatigue 14.6 ± 2.3 l/min and 11.6 ± 2.2 l/min in Con and FruTr, respectively) and J(V-A) (at fatigue 14.9 ± 2.3 l/min and 12.0 ± 2.2 l/min in Con and FruTr, respectively) were not significantly different between Con and FruTr (P = 0.6 and P = 0.8 for J(ER) and J(V-A), respectively).
Fru does not have a measurable effect on J(ER) and J(V-A). Cardiac output was reduced in FruTr, suggesting that there were also smaller changes in the capillary recruitment and transvascular transmural hydrostatic pressures; however, this did not effect J(V-A). Therefore, Fru at the dose of 250 mg does not appear to be an effective treatment for regulating pulmonary transvascular forces during exercise in horses.
呋塞米(Fru)被广泛用于治疗患有 EIPH 的赛马。Fru 在肺部的作用似乎是降低跨毛细血管压力和抑制红细胞阴离子交换,这可能导致运动期间跨肺液通量的衰减。
在高强度运动中,Fru 治疗会减弱马的跨肺液通量。
在一项交叉研究中,6 匹适应比赛的标准bred 马在高速跑步机上运动前 4 小时接受 250mg Fru 静脉注射(FruTr)或安慰剂(Con)治疗,直至疲劳。采集动脉和中央混合静脉血,以及二氧化碳排除和氧气摄取。从血红蛋白、红细胞压积、血浆蛋白和心输出量(Q)的变化计算肺内体积变化和跨血管液通量。
在运动过程中,Q 在 Con 和 FruTr 中均增加,FruTr 中的 Q 明显低于 Con(疲劳时分别为 301.8 ± 8.5 l/min 和 336.5 ± 15.6 l/min)(P<0.01)。在休息时,呋塞米对红细胞(J(ER))和跨血管(J(V-A))液通量没有影响。运动对 J(ER)和 J(V-A)有显著影响(P ≤ 0.02)。在运动过程中,J(ER)(疲劳时分别为 14.6 ± 2.3 l/min 和 11.6 ± 2.2 l/min 在 Con 和 FruTr 中)和 J(V-A)(疲劳时分别为 14.9 ± 2.3 l/min 和 12.0 ± 2.2 l/min 在 Con 和 FruTr 中)在 Con 和 FruTr 之间没有显著差异(P = 0.6 和 P = 0.8 分别用于 J(ER)和 J(V-A))。
Fru 对 J(ER)和 J(V-A)没有可测量的影响。FruTr 中的心输出量减少,表明毛细血管募集和跨血管跨壁静水压的变化也较小;然而,这并没有影响 J(V-A)。因此,250mg 的剂量的 Fru 似乎不是一种有效治疗马匹运动期间调节肺跨血管力的方法。