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Biomedical subjects

H Weicker

Publications and source records attributed to H Weicker.

At least 19 recordsLinked to original sources

The effect of maximal exercise on the activity of neutrophil granulocytes in highly trained athletes in a moderate training period.

Leucocyte cell counts and the phagocytic and chemotactic activities of neutrophil granulocytes were investigated in highly endurance-trained long-distance runners (n = 10) and triathletes (n = 10) during a moderate training period and compared with untrained subjects (n = 10) before and up to 24 h after a graded exercise to exhaustion on a treadmill. After exercise a leucocytosis was noted with a significant increase in lymphocyte (P < or = 0.01) and neutrophil (P < or = 0.01) counts in all groups. In neutrophils the number of ingested inert latex beads was significantly increased (P < or = 0.01) from 0.21 (SD 0.09) to 0.45 (SD 0.22) in controls, from 0.20 (SD 0.12) to 0.56 (SD 0.16) in long-distance runners and from 0.25 (SD 0.08) to 1.03 (SD 0.42) particles per cell in triathletes 24 h after exercise, compared with resting values. The capability of neutrophils to produce microbicidal reactive oxygen species fell (P < or = 0.05) immediately after exercise in all subjects and then increased by 36 (SD 8)%, 31 (SD 6)% and 19 (SD 9)% in controls, runners and triathletes respectively up to 24 h after exercise (P < or = 0.05) compared with pre-start values. With respect to the absolute number of neutrophils, ingestion capacity, production of superoxide anions and chemotactic activity, no significant differences were found between athletes and control subjects at rest and after exercise.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Sympathetic neuronal activity in diabetic and non-diabetic subjects with peripheral arterial occlusive disease.

Despite the vasoconstrictory influence of the alpha-adrenergic system on the peripheral blood circulation the results of the sympathectomy were not satisfying in the therapy of peripheral arterial occlusive disease (PAOD). The aim of the present investigation was to clarify the pathophysiologic mechanisms of this clinical observation. Free and sulfoconjugated catecholamines were determined in the femoral artery, vein, and cubital vein of 19 healthy controls, 21 non-diabetic patients with PAOD stage II, 8 non-diabetic (PAOD IV) and 20 diabetic patients (D IV) with PAOD stage IV. In comparison with controls and group PAOD II an increased sympathoneuronal tone in group PAOD IV was evident at rest. Sympathetic activation was not restricted to the affected limb, since femoral and cubital venous norepinephrine levels were not different and plasma epinephrine fractional extraction (PEFE) was not altered by angiopathy. The lower sympathoneuronal activation in the group D IV may be attributed to an impaired pain perception or a reduced dopamine beta-hydroxylase activity indicated by a lower ratio of norepinephrine to dopamine. The failing long-term efficacy of lumbar sympathectomy in critical arterial limb disease may be explained by marked spontaneous sympathicolysis in diabetics, whereas in non-diabetics with sympathetic activation other mechanisms like development of unilateral Mönckeberg sclerosis, progression of proximal arterial occlusion or induction of steal effects have to be discussed.

Adult

Interaction between hormones and the immune system.

After a short introduction into the general topic, the catecholamine-induced increase of leukocytes in which the granulocytes are predominant after short-term exercise is discussed. The reduction of lymphocytes is associated with work-dependent cortisol increase after long-term exercise or 1 h after strenous work. The catecholamine-stimulated lymphocytes increase could be explained by the liberation of the cells from the endothelial vessel wall after catecholamine interaction with the beta-adrenoceptors and by mobilization from lymph nodes and spleen after beta-adrenergic stimulation. Catecholamines reduce the proliferation of lymphocytes and the degranulation of mast cells, preventing hypersensitivity reaction due to inhibited mediator liberation. The influence of cortisol and cytokines and vice versa is discussed. The hormonal changes after runs of different intensities and duration are demonstrated; they show an interaction with immunological regulation. The neuroimmune modulation after physical and psychological stress also has to be considered in immune regulation since under this condition the secretion of encephalins, endorphins, ACTH, and cortisol is increased. The significance of enhanced vasopressin secretion causing postural fainting by vagovasal reaction indicates also the effect of a neuropeptide which is related to immunological reactions. In the changes of lymphocyte subclasses, the homing effect of these cells should be regarded. Advices which can improve the immunologic behaviour, avoiding susceptibility to infections by well-conducted training regimens and adequate periods of regeneration time, are necessary.(ABSTRACT TRUNCATED AT 250 WORDS)

Catecholamines

O-Methylated and sulfoconjugated catecholamines: differential activities at human platelet alpha 2-adrenoceptors.

The physiological effects of the sulfoconjugates of epinephrine, norepinephrine, and the 3-O-methylated catecholamines, metanephrine, normetanephrine, and methoxytyramine were examined with regard to their alpha 2-adrenoceptor binding properties and aggregation activity in human platelets. Sulfoconjugation of catecholamines resulted in the loss of both their competitive potency for [3H]yohimbine binding and their influence on platelet aggregation. O-Methyl substituted catecholamines showed attenuation of their alpha 2-adrenoceptor binding affinities when compared with those of the corresponding non-esterified amines. Unlike the free amine epinephrine, which stimulated platelet aggregation, the O-methylated catecholamine derivatives inhibited aggregation. Inhibition was dose-dependent and restricted to the alpha 2-adrenoceptor mediated aggregation response stimulated by epinephrine (1 microM) or potentiated by subthreshold concentrations of epinephrine (30-300 nM) in the presence of subaggregatory doses of vasopressin (10-30 nM). Collagen- and ADP-induced platelet aggregation was not affected. The hydrophilic beta-antagonist CGP 12177 displayed no effects. However, high concentrations (0.1 mM) of both isomers of the strongly lipophilic beta-adrenoceptor antagonist propranolol inhibited the actions of all aggregators by stabilizing the membrane. Such a nonspecific membrane interaction of the methylated catecholamines could be excluded because of their low lipid solubility calculated in a n-octanol-phosphate buffer system at pH 7.4. We suggest therefore that methylated catecholamines are biological alpha 2-adrenoceptor antagonists acting on alpha 2-adrenoceptor stimulated reactions of human platelets. Whether this receptor antagonism is relevant to other human tissues needs clarification. Sulfated catecholamines, however, are wholly ineffective at this receptor site and may constitute a pathway to control the concentration of the active free catecholamines.

Adrenergic beta-Antagonists

Catecholamine sulfates as internal standards in HPLC determinations of sulfoconjugated catecholamines in plasma and urine.

A method is described to measure catecholamine sulfates from human plasma and urine by isocratic reversed-phase high-performance liquid chromatography with electrochemical detection. For this measurement we use catecholamine 3-sulfate isomers as internal standards and determine the sulfoconjugates only after eliminating the catecholamines. Catecholamines that have previously been used as internal standards are shown to cause a significant overestimation (P less than 0.05) of the catecholamine sulfates--by 10% to 25% and 20% to 42% in human plasma and urine, respectively. The detection limits (signal-to-noise ratio greater than 3) in plasma and urine samples were about 80 pmol/L for each analyte. The intra-assay and interassay CVs were less than 4.0% and 10.6% in human plasma and less than 6.6% and 12.8% in human urine, respectively. The calibration curves for all catecholamine sulfates in human plasma and urine were linear (r greater than 0.96; P less than 0.001) over the respective concentration ranges of 0.1-100 nmol/L and 5-1000 nmol/L.

Adrenal Gland Neoplasms

Controlled-release levodopa/benserazide (Madopar HBS): clinical observations and levodopa and dopamine plasma concentrations in fluctuating parkinsonian patients.

In five levodopa (L-dopa)-treated patients with Parkinson's disease with severe fluctuations of motor performance, plasma L-dopa as well as dopamine levels were measured during 2 days, first under optimal standard L-dopa with peripheral decarboxylase inhibitor (PDI) and then after a dose adjustment period using slow-release L-dopa/benserazide (Madopar HBS) in an open inpatient trial. Three patients benefited from the slow-release preparation; two patients deteriorated with a tendency to have an unpredictable response, a delay to turn "on" with the first dose in the morning, as well as an increase in dyskinesia corresponding to L-dopa cumulation during the day. These problems were subsequently also seen during the follow-up period of 1 year in those patients who benefited from Madopar HBS as inpatients. This might indicate that patient compliance is more difficult with the new formulation. After 1 year all patients had returned to their previous standard L-dopa/PDI treatment. L-Dopa levels continued to fluctuate, but to a lesser degree with Madopar HBS. The equivalent L-dopa dosage had to be increased by 56% (29-100%) with Madopar HBS while mean dopamine levels increased in four patients (by 47-257%) without the occurrence of peripheral side-effects. This implies that with the new formulation more L-dopa is metabolized to dopamine and explains the necessity to increase the equivalent L-dopa dosage.

Aged

Decrease in rat cardiac beta 1- and beta 2-adrenoceptors by training and endurance exercise.

The cardiac beta-adrenoceptor adaptation to physical activity was investigated in rats which were subjected to a six-week endurance swimming training (ET; n = 7) and a training of high intensity (MT; n = 7). In addition, the effect of a single bout of endurance exercise without preceding training (EE; n = 7) was evaluated. These groups were compared with a sedentary control group (C; n = 9). Beta-adrenergic receptors in rat myocardial membranes were labelled using the high affinity antagonist radioligand (-)125iodocyanopindolol (ICYP). Computer modelling techniques provided estimates of the maximal binding capacity (Bmax) and the dissociation constants (KD). Tissue was constantly kept at temperatures of less than or equal to 4 degrees C and incubated at 4 degrees C for 18 h in buffer containing 100 microM GTP so as to prevent masking of beta-adrenoceptors by endogenous norepinephrine. In comparison with the C group (Bmax = 43.2 +/- 1.6 fmol/mg protein, KD = 11.7 +/- 1.5 pM) computerized coanalyses of saturation binding data of ET, MT, and EE revealed a 13.0%, 25.5%, and 16.6% decrease in Bmax (P less than 0.01), respectively, without significantly differing KD values (10.6 pM, 9.0 pM, 10.5 pM, respectively). We provide the first evidence that acute exercise lowers the sarcolemmal beta-adrenoceptor number in the rat heart. In the competition radioligand binding, CGP20712A and ICI118.551 were employed as subtype-selective antagonists of beta 1- and beta 2-adrenoceptors, respectively, to determine the relative proportions of the receptor subtypes. The ratio of beta 1-/beta 2-adrenoceptors in C was 67.5:32.5 and no statistically significant variation occurred in animals subjected to physical activity. On the basis of published data we assume that acute exercise induces a sequestration of beta-adrenoceptors from the cell surface to some intracellular compartment, whereas the molecular basis of the chronic beta-adrenoceptor down-regulation may involve a training-induced reduction in receptor synthesis. Our findings on cardiac beta-adrenoceptor adaptation to physical activity may represent one of the mechanisms underlying the relative bradycardia in trained subjects.

Adaptation, Physiological

Blood ammonia determination in a specific field test as a method supporting talent selection in runners.

Twenty-six male runners aged 14-16 years not yet specifically trained for sprint or middle-distance running performed a field test with distances of 25 m, 75 m, and 1000 m. Before the field test they were designated as sprinters (n = 19) and middle-distance runners (n = 7) according to their self-assessment and the estimation of the coaches. Blood ammonia and lactate concentrations were measured before and after the runs, and heart rates as well as the perceived exertion were evaluated. The most remarkable finding was a significantly higher ammonia increase in the supposed sprinters after 75 m compared with the supposed middle-distance runners. The ammonia concentrations after 1000 m were considerably less pronounced in both groups and did not differ significantly. The ratio of the ammonia concentration after the 75-m and the 1000-m distance was defined as an index. A high index was typical for designated sprinters, whereas a low index was found in supposed middle-distance runners. The combination of this index and the assessment of the coaches makes it possible to recommend special training regimens.

Adenine Nucleotides

Purine nucleotides and AMP deamination during maximal and endurance swimming exercise in heart and skeletal muscle of rats.

The purine nucleotides, phosphocreatine (PCr), ammonia, and lactic acid were investigated in skeletal muscles of rats with prominent type I, type IIa, type IIb fibers, and the heart after exhaustive and endurance swimming tests. ATP, ADP, AMP, IMP, and PCr were determined by HPLC with UV detection in controls after maximal and endurance training for 6 weeks with or without a respective final test and also after final exhaustive or endurance test without preceding training. The swimming time in these tests was longer with than without training. A pronounced ATP decrease and a large increase in IMP, up to 4.9 mumol/g wet weight, were found in type IIb fibers after the maximal final test without preceding training. Compared with skeletal muscle, the IMP concentration in the heart was significantly lower after all exercise bouts, even though after maximal exercise AMP augmentation was highest, ATP reduction was greatest, and energy charge was lowest. The difference between the heart and skeletal muscle in the production of IMP indicates that despite AMP and ADP accumulation, myoadenylate deaminase (MAD) activity in the heart is considerably lower than in skeletal muscle, especially in type IIb fibers. The smaller amount of MAD per tissue, and also the different MAD isozyme pattern of the heart as reported in the literature, may be attributed to lower activation. The difference between MAD activation of the soleus muscle and of the iliacus muscle, both consisting predominantly of type I fibers, suggests that MAD activity may be influenced by biochemical demand and oxygen supply, varying with the anatomical localization. Even though ammonia and lactic acid were highly correlated, it is questionable whether the H+ ion increase due to the lactate accumulation itself triggers MAD activation, as has been found for AMP and ADP in skeletal muscle.

AMP Deaminase

Comparison of alanine production after L-leucine and AMP deamination in an enzymatic model and in muscle specimens.

The amination of 2-oxoglutarate to glutamate by the deamination of leucine followed by the transamination of pyruvate to alanine in skeletal muscle is generally accepted. However, alanine formation following AMP deamination by AMP deaminase is still questionable even though it is theoretically possible. For this reason, we investigated in an enzymatic model the dependence of alanine yield both on the increasing concentration of AMP and leucine as amino group donors as well as on AMP deaminase and leucine dehydrogenase augmentation. Up to a concentration of 375 microM neither of the amino group donors produced a difference in the glutamate nor alanine yield. At a concentration of 500 microM ammonia formation was less, but alanine production was higher when leucine was present as a starting material. However, in muscle samples obtained from trained or untrained rats we did not find an increase in alanine yield when AMP was added to the muscle sample, even though NH3 production was significantly higher in samples with than in those without AMP. This discrepancy might be further elucidated by hindquarter perfusion experiments, in which alanine release would be determined after AMP deamination enhanced by electrostimulation of these muscle groups.

AMP Deaminase

Sympathoadrenergic regulation and the adrenoceptor system.

We investigated the effects of endurance and high-intensity training periods on the plasma catecholamine (CA) concentration at rest; on the basal alpha- and beta-adrenoceptor density, regulation, and function on circulating cells; and on the cardiovascular adaptation in long-distance runners and swimmers. The findings of each period were compared with those of untrained men. Endurance training of the long-distance runners and the swimmers led both to a reduced sympathetic activity at rest, indicated by lower CA values, and to a lower beta-receptor density and responsiveness on circulating lymphocytes and an increased alpha 2-receptor sensitivity on circulating platelets. During the high-intensity training period beta-receptor density and responsiveness increased, alpha 2-receptor sensitivity normalized, and heart rate as well as blood pressure values increased in both trained groups. The basal sympathetic activity remained reduced, but the norepinephrine-to-epinephrine (NE/EPI) ratio increased. The NE/EPI ratio might play an important part in the regulation of adrenoceptor density during these different training periods. Swimming-specific characteristics caused different physiological impacts compared with running training, but an attenuated baroreceptor sensitivity might be indicated in both intensively trained groups.

Adenylyl Cyclases

Isomer specific kinetics of dopamine beta-hydroxylase and arylsulfatase towards catecholamine sulfates.

Both isomers of epinephrine sulfate were synthesized, unequivocally identified by 1H-NMR and highly purified from catecholamines (less than 90 ppm). Bacterial as well as pig liver arylsulfatase A and B demonstrated a higher substrate turnover of epinephrine-4-sulfate, norepinephrine-4-sulfate and dopamine-4-sulfate as compared to the 3-sulfate isomers. The arylsulfatase B however, is less important for the deconjugation of these sulfoconjugates than arylsulfatase A. Since arylsulfatase A occurs in most human tissues, it might be of physiological significance in the deconjugation of the catecholamine sulfate isomers. Furthermore the kinetic data at pH 7.4 and 6.9 suggest the increased cleavage of the sulfate group, e.g. during exercise-induced acidosis. In contrast to results reported in the literature, dopamine sulfates were no substrates of dopamine beta-hydroxylase.

Animals

Assessment of muscular metabolism in peripheral arterial occlusive disease using 31P nuclear magnetic resonance spectroscopy. Comparison with metabolite concentrations in femoral blood.

The behaviour of muscular metabolism was investigated in 10 patients with peripheral arterial occlusive disease stage II at rest and after maximum ergometric calf exercise. The intracellular concentrations of phosphocreatine, inorganic phosphate and adenosine triphosphate as well as muscle pH were measured by means of 31P magnetic resonance spectroscopy and compared with those from a control group. In addition, arteriovenous differences in concentrations of lactate, pyruvate, ammonia, hypoxanthine and alanine in the femoral blood were determined. The fall in intracellular phosphocreatine concentration during exercise was significantly greater in the calf muscles of patients with arterial occlusion than in controls and correlated linearly with the increase in femoral arteriovenous differences in lactate, ammonia and alanine. A significant fall in intracellular pH occurred during muscular activity only in the patient group, but not in the identically exercised control group. The fall in pH correlated closely with the rise in arteriovenous lactate difference in the femoral blood. The intramuscular ATP concentration remained constant throughout the exercise procedure. The behaviour of both the directly and indirectly measured metabolites permits the deduction of activation of the creatine kinase reaction, glycolysis, myokinase reaction and the purine nucleotide cycle during exercise-induced hypoxia in the presence of arterial occlusive disease. The anaerobic production of energy is sufficient to maintain the ATP concentration even during claudication pain.(ABSTRACT TRUNCATED AT 250 WORDS)

Acid-Base Equilibrium

Influence of peripheral arterial occlusive disease on muscular metabolism. Part 2: Changes in pyruvate, alanine, and urea concentration in femoral blood.

The metabolites pyruvate, alanine and urea were determined under resting conditions in blood from the femoral artery, femoral vein and cubital vein of 23 patients with stage II, 10 patients and 20 diabetics with stage IV PAOD as well as 19 healthy volunteers. Measurements were also carried out immediately and 20 min after ergometric calf exercise in the patients with stage II PAOD and the controls. In both patient groups with stage IV PAOD, there were lower arterial and venous alanine levels and higher urea concentrations at rest than in patients with adequate resting circulation, which is evidence for increased hepatic alanine extraction. After exercise, a significantly higher increase in the arteriovenous difference of pyruvate concentration was to be found in the patient group with stage II PAOD than in the control group. Moreover, there was a significant increase in femoral venous concentration and a rise in the arteriovenous difference of alanine, indicating muscular release, only in the PAOD patients and not in the volunteers in spite of a three times higher exercise load. The exercise-induced rise in femoral venous alanine correlated closely with those of pyruvate and ammonia. Alanine formation fulfills the function of a non-toxic carrier of muscularly produced amino groups and represents in PAOD a compensating mechanism that delays the limitation of muscular contractility. Alanine determination, especially in association with an exercise test, appears to be suitable for assessing the extent of anaerobic energy production in muscles of limbs affected by PAOD.

Alanine

Influence of peripheral arterial occlusive disease on muscular metabolism. Part 1: Changes in lactate, ammonia, and hypoxanthine concentration in femoral blood.

The concentrations of lactate, ammonia and hypoxanthine were determined in blood from the femoral artery, femoral vein and cubital vein under resting conditions in 23 patients with stage II, 10 patients and 20 diabetics with stage IV peripheral arterial occlusive disease (PAOD) and in 19 healthy subjects. The metabolite concentrations were also measured immediately and 20 min after calf exercise in the patients with stage II PAOD and in the controls. At rest, there was a negative arteriovenous difference in femoral lactate level and a positive arteriovenous difference in the ammonia level in all groups. After exercise to the claudication limit, the femoral venous concentration and arteriovenous difference for lactate increased in the patient group significantly higher than in the controls, who were exercised three times as heavily. Furthermore, there was a significant rise in femoral venous ammonia concentration with inversion of the arteriovenous difference into the negative range and an increase in femoral venous hypoxanthine concentration only in the patients with PAOD and not in the controls. A significant correlation was found between the exercise-induced increases in lactate and ammonia. The results indicate activation of the purine nucleotide cycle in the muscles of limbs with impaired circulation, even for a short duration of load. This can be explained by activation of the AMP-deaminase in type I and type IIa muscle fibres by anoxaemia. The purine nucleotide cycle has an emergency metabolic function in ischaemia to maintain muscle contractility. Ammonia determination in femoral blood permits, in association with lactate and hypoxanthine determination, a precise quantitative assessment of the metabolic effects of PAOD.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged

[Comparison of 3 latest-generation glucose micro-reflectometers].

Three glucose reflectance meters (Reflolux II = Accu-Chek II, Glucometer II and Hypocount GA) were tested for precision and accuracy when used by medical personnel of a diabetic outpatient department and for self-monitoring at home. In addition, the visual readability of the appropriate reagent strip was checked. All three systems were sufficiently valid for reflectometric reading, while visual evaluation showed a higher deviation. The precision of Accu-Chek II under optimal conditions in the outpatient department was comparable to the precision of laboratory examinations (CV 3.3%). When used by patients themselves, Accu-Chek II and Glucometer II were sufficiently precise (CV 4.8% [corrected] and 5.3% respectively). These devices are recommended for blood glucose self-monitoring.

Adult

Comparison of sympatho-adrenergic regulation at rest and of the adrenoceptor system in swimmers, long-distance runners, weight lifters, wrestlers and untrained men.

The effects of different physical training regimes on the plasma catecholamine values at rest and the density and responsiveness of adrenergic receptors at rest were investigated. The changes during well-defined training periods of swimmers, long-distance runners, weight lifters and wrestlers were compared with untrained male volunteers. The training of swimmers and long-distance runners, building up endurance, resulted in a significantly lower basal plasma norepinephrine (NE) concentration and a significantly or possibly lower ratio NE:EPI (epinephrine). Both values indicated reduced sympathetic activity and resulted also in a significantly lower beta-receptor density and a higher alpha 2-receptor sensitivity compared with the other groups investigated. However, swimming-specific characteristics provoked labile hypertensive blood pressure regulation with an unchanged heart rate in swimmers. Static training of weight lifters, building up power, also led to a lower NE concentration compared with untrained subjects, whereas beta-receptor density was unchanged and alpha 2-receptor density and sensitivity were decreased. Elevated blood pressure values were observed in weight lifters and swimmers due to a reduced baroreceptor sensitivity. The dynamic training of wrestlers affected only basal heart rate and alpha 2-receptor sensitivity, both of which were decreased. Different kinds of physical training caused various adaptations of the basal activity of the autonomic nervous system in which adrenergic receptors also became adapted. In this context, the stronger adrenergic circulatory component of overall sympathetic activity at rest in swimmers and long-distance runners resulted in lower beta-receptor density, and the reduced noradrenergic component sensitized alpha 2-receptors.

Adenylyl Cyclases