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白三烯C4和D4不会增加离体灌注豚鼠肺的滤过系数。

Leukotrienes C4 and D4 do not increase filtration coefficient of excised perfused guinea pig lungs.

作者信息

Albert R K, Greenberg G, Guest R J, Luchtel D, Henderson W R

出版信息

J Appl Physiol (1985). 1987 Jan;62(1):1-9. doi: 10.1152/jappl.1987.62.1.1.

DOI:10.1152/jappl.1987.62.1.1
PMID:3558172
Abstract

We tested the direct effects of leukotriene (LT) C4 or D4 on the pulmonary vascular fluid filtration coefficient (Kf) by adding these LT's to the cell-depleted perfusate of excised guinea pig lungs. Pulmonary arterial (Ppa) and airway (Paw) pressures were monitored, and left atrial pressure was kept constant during 10 min of constant-flow perfusion. Kf's were then calculated by two methods [Drake and colleagues (KfD), Am. J. Physiol. 234 (Heart Circ. Physiol. 3): H266-H274, 1978; and Goldberg (KfG), Am. J. Physiol. 239 (Heart Circ. Physiol. 8): H189-H198, 1980] from the change in lung weight resulting from a no-flow zone 3 hydrostatic stress applied for 20 min. With no LT's (Tyrode's buffer alone), the mean +/- SE Paw was 9.0 +/- 0.7 cmH2O and the Ppa was 14.2 +/- 1.1 cmH2O throughout the 10-min perfusion. The KfD and KfG were 1.239 +/- 0.169 and 1.586 +/- 0.223 ml X min-1 X mmHg-1 X 100 g lung-1, respectively. The mean +/- SE lung wet-to-dry ratio (W/D) after the 20-min hydrostatic stress was 16.7 +/- 1.6. Within 30-45 s of adding 4 micrograms of LTC4 or LTD4, Paw and Ppa both increased and remained elevated throughout the perfusion period. The KfD and KfG were 1.586 +/- 0.223 and 2.071 +/- 0.234 ml X min-1 X mmHg-1 X 100 g lung-1, respectively, and the W/D was 18.1 +/- 1.7 after LTC4 (all P greater than 0.4 compared with Tyrode's buffer alone) and 1.417 +/- 0.200 and 1.851 +/- 0.244 ml X min-1 X mmHg-1 X 100 g lung-1, respectively, with a W/D of 20.5 +/- 1.3 after LTD4 (all P greater than 0.4 compared with Tyrode's buffer alone).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们通过将白三烯(LT)C4或D4添加到切除的豚鼠肺的无细胞灌注液中,测试了它们对肺血管液体滤过系数(Kf)的直接影响。监测肺动脉(Ppa)和气道(Paw)压力,并在10分钟恒流灌注期间保持左心房压力恒定。然后通过两种方法[德雷克及其同事(KfD),《美国生理学杂志》234卷(心脏循环生理学3):H266 - H274,1978年;以及戈德堡(KfG),《美国生理学杂志》239卷(心脏循环生理学8):H189 - H198,1980年]根据施加20分钟的无血流区3静水压力导致的肺重量变化来计算Kf。在无LT(仅用台氏缓冲液)的情况下,在整个10分钟灌注过程中,平均±标准误Paw为9.0±0.7 cmH2O,Ppa为14.2±1.1 cmH2O。KfD和KfG分别为1.239±0.169和1.586±0.223 ml·min-1·mmHg-1·100 g肺-1。在20分钟静水压力后,平均±标准误肺湿干比(W/D)为16.7±1.6。在添加4微克LTC4或LTD4后的30 - 45秒内,Paw和Ppa均升高,并在整个灌注期保持升高。添加LTC4后,KfD和KfG分别为1.586±0.223和2.071±0.234 ml·min-1·mmHg-1·100 g肺-1,W/D为18.1±1.7(与仅用台氏缓冲液相比,所有P均大于0.4);添加LTD4后,KfD和KfG分别为1.417±0.200和1.851±0.244 ml·min-1·mmHg-1·100 g肺-1,W/D为20.5±1.3(与仅用台氏缓冲液相比,所有P均大于0.4)。(摘要截短至250字)

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