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Influence of ambient temperature on plasma ammonia and lactate accumulation during prolonged submaximal and self-paced running.

This study examined the effects of heat stress on the accumulation of plasma ammonia, lactate, and urate during prolonged running. Nine highly trained endurance runners completed two running trials in a counterbalanced fashion in cool (15 degrees C) and in hot (35 degrees C) humid (60% relative humidity) conditions. Subjects ran on a motorised treadmill at 70% of peak treadmill running speed for 30 min (submaximal) followed by a self-paced 8-km performance run. Blood was drawn at pre-exercise, end-submaximal and end-performance run and analysed for plasma ammonia, lactate, and urate. Four subjects failed to complete the performance run in the heat and the performance times for the rest of the subjects was increased from 27.3 (0.6) min in cool conditions to 31.3 (1.2) min in hot conditions (P < 0.05). The end-performance rectal temperature was 38.6 (0.1) and 39.2 (0.1) degrees C (P<0.05) in cool and hot conditions, respectively. Differences in plasma lactate at the end of submaximal running were not significant. However, at the end of performance runs lactate was 6.0 (0.9) m mol x l(-1) in cool and 3.1 (0.5) mmol x l(-1) in hot conditions, values that were significantly different (P<0.05). Plasma ammonia increased from pre-exercise to approximately equal to 59 micromol x l(-1) at the end-submaximal runs for both coditions and further at the end of performance runs to 108.5 (11) micromol x l(-1) (P<0.05) in hot but not in cool conditions. Plasma urate increased from pre-exercise to 311.2 (25.9) micromol x l(-1) at end-submaximal runs and to approximately equal to 320.4 micromol x l(-1) at end-performance runs in hot and cool environments. The findings that plasma urate accumulation was similar at the completion of running in both conditions, while ammonia was significantly augmented in hot conditions compared with cool, suggest that ammonia accumulation during heat stress exercise might be derived from sources other than purine catabolism.

Adult↗

Adjustments of cardiac function during prolonged exercise relative to lactate threshold.

Alterations in cardiac function during prolonged submaximal exercise relative to lactate threshold (LT) were evaluated on 7 normal healthy males aged 30.3 +/- 5.7 years. Systolic time intervals were analyzed through simultaneous recordings of electrocardiogram, phonocardiogram, and impedance cardiogram at a paper speed of 50 mm/s. Determination of stroke volume (SV) was based upon the method described by Kubicek et al. ANOVA followed by the Scheffe post-hoc comparison revealed that SV and myocardial contractility indices (MSER and PEP/LVET) remained relatively unchanged throughout 40-min cycling exercise, although the changes in heart rate and oxygen uptake were statistically significant. In addition, systolic blood pressure remained almost unchanged during the exercise. These results may be interpreted as evidence of the "contractility reserve", i.e., the ability of maintaining heart muscle contractility during prolonged exercise at LT intensity.

Adult↗

Single-voxel 1H-MRS investigation of brain metabolic changes during lactate-induced panic.

Intravenous sodium lactate infusion is a robust laboratory technique for eliciting panic in susceptible individuals. The objective for this study was to replicate previous work which found differential brain lactate rises among lactate-sensitive panic subjects relative to control subjects using single-voxel 1H-magnetic resonance spectroscopy (MRS). Single-voxel 1H-MRS was used to measure brain lactate changes in the insular cortex region among 13 panic disorder subjects and 10 healthy control subjects during the infusion. One panic subject prematurely terminated the study due to a panic response during lactate infusion. Data from two additional control subjects and one panic subject were lost due to technical problems. Four panic subjects were reinfused with lactate while panic-free under treatment with fluoxetine (20 mg/day). At the time of initial infusion, all subjects were medication-free for at least 1 month. Ten panic subjects, but no control subjects, panicked during lactate infusion. In comparison to control subjects, panic subjects demonstrated significantly greater and prolonged brain lactate rises in the insular cortex region. Three of four medicated panic subjects experienced blockage of panic symptoms during lactate reinfusion but all exhibited persistent excesses in brain lactate rise. Consistent with our prior observations, greater and prolonged lactate rises in the insular brain region occur during and following lactate infusion among panic subjects compared to control subjects. This differential brain metabolic response did not appear to normalize when a small subset of panic patients were reinfused following resolution of panic symptoms during treatment over 3-4 months with fluoxetine.

Adult↗

Effects of branched-chain amino acid supplementation on serum creatine kinase and lactate dehydrogenase after prolonged exercise.

BACKGROUND: The aim of this study was to examine the effects of branched-chain amino acid (BCAA) supplementation on serum indicators of muscle damage after prolonged exercise. We hypothesized that BCAA supplementation would reduce the serum activities of intramuscular enzymes associated with muscle damage. METHODS: To test this hypothesis, sixteen male subjects were assigned to one of two groups: the supplemental group (consuming 12 g x d(-1) BCAA for 14 d in addition to their normal diet) or the control group (normal diet only). Baseline serum creatine kinase (CK) and lactate dehydrogenase (LDH), shown to be accurate indicators of muscle damage, were determined during the week before the exercise test. The exercise test was administered on day seven and required the subjects to cycle for 120 min on an ergometer at approximately 70% VO2max. Blood samples were taken prior to and immediately following exercise and at 1 hr, 2 hrs, 3 hrs, 4 hrs, 1 d, 3 d, 5 d and 7 d postexercise. All subjects were required have their diets analyzed daily during the 14 d. RESULTS: Dietary analyses indicated that all subjects consumed the recommended daily intake of BCAA (0.64 g x kg(-1)) in their normal diets. Baseline serum values for CK and LDH were not different between groups in the 7 d prior to the test (p>0.05). However there were significant increases (p<0.05) between the pre-exercise and postexercise values for LDH and CK until 5 d postexercise test. Importantly, the BCAA supplementation significantly reduced this change in LDH from 2hrs to 5 d posttest, and CK from 4 hrs to 5 d post-test (p<0.05). CONCLUSIONS: These results indicate that supplementary BCAA decreased serum concentrations of the intramuscular enzymes CK and LDH following prolonged exercise, even when the recommended intake of BCAA was being consumed. This observation suggests that BCAA supplementation may reduce the muscle damage associated with endurance exercise.

Adult↗

Comparative lactate kinetics after short and prolonged submaximal exercise.

Arterial blood lactate concentrations were determined in two groups of eleven males before, during and after near 2 W.kg body mass-1 bicycle exercise. One group of subjects cycled for 3 min, whereas the second group exercised for 60 min. All the lactate curves during recovery could be fitted to a bi-exponential time function consisting of a rapidly increasing and a slowly decreasing component. This typical evolution pattern indicates that the two-compartment model which has been proposed to represent the movements of lactate after short exercise applies also to recovery from prolonged exercise. Lengthening exercise duration decreased (respectively 10% and 28%) the value of both velocity constants of the fits to the lactate recovery curves, with the difference (28%) being statistically significant for the velocity constant describing the slowly decreasing part of the curves. This result indicates that extending exercise from 3 to 60 min impairs the ability to remove lactate after the exercise.

Adult↗

Policy considerations for the introduction and promotion of the lactational amenorrhea method: advantages and disadvantages of LAM.

Some attributes of LAM are unquestionably positive, such as the fact that it is effective. Clinical trials of LAM have upheld the Bellagio Consensus that the chance of pregnancy is less than 2% in the first 6 months postpartum in amenorrheic women who are fully or nearly fully breastfeeding. Secondary data analyses in numerous settings have drawn the same conclusion. Whether as a strategy or a method, used correctly or even if used imperfectly, LAM is a reliable way to avoid pregnancy. To the extent that LAM represents an additional contraceptive option, this is also clearly positive since a broad array of contraceptive options maximizes the likelihood of finding a good fit between user and method, and increases contraceptive use. Other characteristics of LAM represent potentially positive impacts. If LAM is shown to be an effective conduit to other modern methods, the implications are profoundly positive. If LAM is cost effective, for households and/or for programs, this will also make the method extraordinarily attractive. Conversely, some aspects of LAM are negative, such as the fact that it affords no protection against STDs, it requires counseling from a well-informed provider, and intensive breastfeeding can make heavy demands on the woman's time. Many of the remaining attributes of LAM may not be important to a policy decision about LAM promotion. For example, whether LAM is actualized as a strategy or a method may not be important to a decision to promote LAM, although it has a huge impact on how services are delivered. Some factors may be profound on a local or individual level. For example, one simple factor, such as the absence of full/nearly full breastfeeding, can rule out the method as an option, while another, such as the fact that it provides the needed waiting period during vasectomy counseling, can make LAM the method of choice. Although LAM seems unlikely to have widespread popularity in societies like the United States, within such settings are breastfeeding women for whom other contraceptive choices are not satisfactory and to whom LAM is attractive. Although clinicians cannot be expected to directly provide LAM education in every setting, women should be informed about LAM as an effective contraceptive choice, and clinicians should be prepared to make referrals to competent sources. The future of LAM, especially in terms of formal, programmatic initiatives, may continue to be focussed in transitional and less developed settings. Comparative cost/benefit analyses for both the family planning program and the household will contribute meaningfully to decisions about whether to use LAM and whether to include LAM in national and local family planning policies and programs. The most important call to action is to implement operations research designed to determine what factors, if any, will maximize the uptake of a second modern contraceptive method after LAM protection expires among never-users of family planning, to compare this with other contraceptive strategies, and to evaluate the cost aspects. If the potential of LAM to be a conduit to other modern contraceptive methods is effectively realized, the method can be profoundly important in the development of communities and in family formation. Because LAM is effective in preventing pregnancies, and because it extends the range of contraceptive choices, considering LAM on the policy level is always appropriate. Despite the array of drawbacks to LAM, as with any other family planning method, the potential assets of LAM, especially the promise to introduce nonusers to contraception, are sufficiently important to warrant the introduction of LAM within an operations research framework to both capitalize on its intrinsic strengths and determine its programmatic robustness. In the 10 years since the concept of LAM was pronounced as the Bellagio Consensus, claims have been made both for and against its use. During this time, program and policy leaders have been giv

Amenorrhea↗

Ethanol intoxication and lactated Ringer's resuscitation prolong hemorrhage-induced lactic acidosis.

Ethanol (EtOH) blunts the respiratory and metabolic compensation during hemorrhage, resulting in a more severe lactic acidemia. We hypothesized that lactated Ringer's (LR) resuscitation may exacerbate this lactic acidemia. Male guinea pigs were implanted with arterial and venous catheters. Two days after catheter placement, conscious animals were injected intraperitoneally with 1 g/kg EtOH, 0.3 g/kg EtOH, or an equal volume of water 30 min before hemorrhage (60% of estimated blood volume). After 30 min of hemorrhagic shock, animals were resuscitated with isotonic saline (S) or LR at 1 mL/min (three times shed blood volume). Mean arterial blood pressure (MABP) was not affected by pretreatment with either dose of EtOH, but was significantly decreased by hemorrhage in all groups. Both S and LR resuscitation slightly increased MABP, but neither restored it to prehemorrhage values. Blood lactate levels increased in all groups during hemorrhage and remained elevated for 3 h in animals pretreated with 1 g/kg EtOH. In the group pretreated with 0.3 g/kg EtOH, pH decreased during shock but returned to prehemorrhage levels during the resuscitation period. Resuscitation with S returned pH to prehemorrhage values in animals pretreated with 1.0 g/kg EtOH. Resuscitation with LR did not exacerbate, but did prolong, the lactic acidemia after shock in animals pretreated with 1.0 g/kg EtOH. Administration of additional lactate during intoxication and hypovolemia for hemodynamic stabilization before blood transfusion may exacerbate a metabolic stress.

Acidosis↗

Stimulus-induced brain lactate: effects of aging and prolonged wakefulness.

Both aging and sleep deprivation disturb the functions of the frontal lobes. Deficits in brain energy metabolism have been reported in these conditions. Neurons use not only glucose but also lactate as their energy substrate. The physiological response to elevated neuronal activity is a transient increase in lactate concentrations in the stimulated area. We have previously shown that cognitive stimulation increases brain lactate. To study the effect of prolonged wakefulness on the lactate response we designed an experiment to assess brain lactate levels during a 40-h sleep deprivation period in young (19-24 years old; n = 13) and in aged (60-68 years old; n = 12) healthy female volunteers. Brain lactate levels were assessed with proton MR-spectroscopy ((1)H MRS) during the performance of a silent word generation task. The (1)H MRS voxel location was individually selected, using functional magnetic resonance imaging, to cover the activated area in the left frontal lobe. The degree of sleepiness was verified using vigilance tests and self-rating scales. In the young alert subjects, the silent word generation test induced a 40% increase in lactate, but during the prolonged wakefulness period this response disappeared. In the aged subjects, the lactate response could not be detected even in the alert state. We propose that the absence of the lactate response may be a sign of malfunctioning of normal brain energy metabolism. The behavioral effects of prolonged wakefulness and aging may arise from this dysfunction.

Adult↗

Evaluation of sometribove in a prolonged-release system in lactating dairy cows--production responses.

Primiparous (n = 105) and multiparous (n = 136) Holstein cows were used to evaluate efficacy of sometribove (n-methionyl bovine somatotropin, bST) in a dose titration study. Cows were fed TMR for ad libitum intake, were milked twice daily, and were allocated randomly within parity (1 vs. 2+) to treatments of 0, 250, 500, or 750 mg bST/14 d in a prolonged-release formulation. Subcutaneous injections commenced 60 +/- 3 d postpartum and continued throughout lactation. During a standardized treatment period of 252 d, treatment with increasing dosages of bST increased 3.5% FCM yield in a dose-dependent manner for both primiparous (2.5 kg/d, 10.2%; 3.5 kg/d, 14.3%; and 5.9 kg/d, 24.1%) and multiparous cows (3.1 kg/d, 12.1%; 3.9 kg/d, 15.2%; and 6.8 kg/d, 26.5%). Milk content of fat, protein, lactose, ash, Ca and P, and SCC were not affected by treatment. Over the 252-d treatment period, voluntary intake of energy was increased in bST-treated cows such that BW gain, body condition score, and net energy balance did not differ among treatment groups. Productive efficiency (milk per unit NEL intake corrected for BW change) over the treatment period was significantly increased in a dose-dependent manner for multiparous cows (4.1, 6.8, and 11.0%). Results demonstrated that bST administered in a prolonged-release formulation was efficacious in enhancing milk production and feed efficiency.

Animals↗