L-(+)-LACTATE INFUSION INTO WORKING DOG GASTROCNEMIUS - NO EVIDENCE LACTATE PER SE MEDIATES VO2 SLOW COMPONENT

被引:70
作者
POOLE, DC [1 ]
GLADDEN, LB [1 ]
KURDAK, S [1 ]
HOGAN, MC [1 ]
机构
[1] AUBURN UNIV, DEPT HLTH & HUMAN PERFORMANCE, AUBURN, AL 36849 USA
关键词
EXERCISE ENERGETICS; MUSCLE METABOLISM; GAS EXCHANGE KINETICS;
D O I
10.1152/jappl.1994.76.2.787
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Constant-load exercise that engenders a sustained lactic acidosis (i.e., above the lactate threshold) is accompanied by a slow component of O-2 uptake (VO2) kinetics that increases VO2 above rather than toward the predicted value. This response arises predominantly from within the exercising limbs and is temporally correlated with that of blood lactate. Lactate exerts a disproportionate metabolic stimulatory effect on gluconeogenic tissues, and there is a strong indication that lactate infusions may increase VO2 Of resting tissues. To investigate the potential role of lactate in the VO2 slow component, we infused lactate in 20-min square-wave pulses (change of 10 mM) into the arterial blood supply of an electrically stimulated and surgically isolated dog gastrocnemius preparation (2 X 60-min bouts, similar to 30-40% peak VO2; n = 5) under iso-pH conditions at constant muscle temperature. With lactate infusions, intramuscular lactate concentration ([La]) rose proportionally with inflowing [La] (muscle [La] = 6.34 + 0.38 blood [La]; r = 0.642, P < 0.05) to similar to 80% of arterial blood [La], and neither blood (control, 1.39 +/- 0.01; high lactate, 7.40 +/- 0.01; P > 0.05) nor muscle (control, 7.02 +/- 0.03; high lactate, 7.00 +/- 0.04; P > 0.05) pH was changed. Compared with control values, lactate infusion decreased muscle VO2 from 5.1 +/- 0.3 to 4.1 +/- 0.2 ml min(-1) 100 g(-1) (P < 0.05). However, VO2 relative to tension remained constant. Notwithstanding the obvious differences between this preparation and the exercising human, this finding does not support a role for lactate per se in driving the VO2 slow component during intense exercise.
引用
收藏
页码:787 / 792
页数:6
相关论文
共 36 条
[1]  
BARCLAY JK, 1975, MED SCI SPORT EXER, V7, P116
[2]   DEPRESSING EFFECTS OF CALCIUM-ANTAGONISTS ON OXYGEN-CONSUMPTION IN ISOLATED SKELETAL-MUSCLE DURING POTASSIUM DEPOLARIZATION [J].
BARNES, WS .
CANADIAN JOURNAL OF PHYSIOLOGY AND PHARMACOLOGY, 1988, 66 (06) :836-840
[3]   LINEAR AND NONLINEAR CHARACTERISTICS OF OXYGEN-UPTAKE KINETICS DURING HEAVY EXERCISE [J].
BARSTOW, TJ ;
MOLE, PA .
JOURNAL OF APPLIED PHYSIOLOGY, 1991, 71 (06) :2099-2106
[4]   GAS EXCHANGE FOLLOWING LACTATE AND PYRUVATE INJECTIONS [J].
BERTRAM, FW ;
WASSERMAN, K ;
VANKESSE.AL .
JOURNAL OF APPLIED PHYSIOLOGY, 1967, 23 (02) :190-+
[5]   EFFECT OF RESPIRATORY ALKALOSIS ON SKELETAL-MUSCLE METABOLISM IN THE DOG [J].
BRICE, AG ;
WELCH, HG .
JOURNAL OF APPLIED PHYSIOLOGY, 1985, 58 (02) :658-664
[6]   EFFECT OF ENDURANCE TRAINING ON POSSIBLE DETERMINANTS OF VO2 DURING HEAVY EXERCISE [J].
CASABURI, R ;
STORER, TW ;
BENDOV, I ;
WASSERMAN, K .
JOURNAL OF APPLIED PHYSIOLOGY, 1987, 62 (01) :199-207
[7]  
COYLE EF, 1992, MED SCI SPORT EXER, V24, P782
[8]   CHEMICAL ENERGETICS OF SLOW-TWITCH AND FAST-TWITCH MUSCLES OF THE MOUSE [J].
CROW, MT ;
KUSHMERICK, MJ .
JOURNAL OF GENERAL PHYSIOLOGY, 1982, 79 (01) :147-166
[9]  
GAESSER G A, 1992, Medicine and Science in Sports and Exercise, V24, pS123, DOI 10.1249/00005768-199205001-00735
[10]  
GAESSER GA, 1992, FASEB J, V6, pA1236