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H Gabriel

Publications and source records attributed to H Gabriel.

At least 55 records · Page 3Linked to original sources

Alterations of regular and mature monocytes are distinct, and dependent of intensity and duration of exercise.

Circulating monocytes comprise functionally distinct regular (CD14bright+) and mature (CD14low+) cells. Cell surface receptors were determined by three colour flow cytometry in 8 healthy control subjects. Compared to regular monocytes, mature monocytes had lower levels of the high affinity Fc gamma receptor 1 (CD64), complement receptor 3 (CD11b), CD45RO and higher levels for HLA-DR, LFA-1 (CD11a/CD18), interleukin-2 receptor (CD25), CD45RA and the Fc gamma receptor 3 (CD16). Both regular and mature monocytes were measured before and up to three hours after four different types of exercise (Ex) in endurance trained athletes (n = 9-16). Immediately after anaerobic exercise of 1 min with a maximal lactate concentration (la max) of 12.3 (SD 1.4) mmol.1-1 and exhaustive exercise of 24 (SD 8) min with a maximal lactate concentration (lamax) of 7.4 (SD 2.6) mmol..-1 mature monocytes increased more than regular monocytes. Exhaustive endurance exercise of 87 (SD 21) min [lamax 3.7 (SD 1.0)] led to a similar increase of regular and mature monocytes. 15-33 min after a 100km run regular monocytes increased significantly, whereas mature monocytes decreased. Up to three hours after the end of all exercises mature monocytes fell below pre-exercise values. In conclusion, duration and intensity of exercise alter distinct maturation stages of monocytes differently. It is probable that the avidity of adhesion molecules like LFA-1 to their endothelial ligands is increased to enable the firm attachment to the endothelium.

Adult↗

Suppressed PMA-induced oxidative burst and unimpaired phagocytosis of circulating granulocytes one week after a long endurance exercise.

Ten endurance athletes performed two exhaustive intensive endurance exercises (Ex1: 21 +/- 7 min; Ex2: 18 +/- 6 min) on a cycle ergometer at 110% of their individual anaerobic threshold (maximal lactate concentration at Ex1: 9.7 +/- 2.3 mmol.1-1, Ex2: 9.5 +/- 2.2 mmol.l-1). Ex1 was performed two weeks before, Ex2 8 or 9 days after a long endurance competition (duration: 762 +/- 74 min), respectively. At both exercises before, at the 10th, during the last two and 60 minutes after exercise venous blood samples were taken to determine rat and activity of phagocytosis (FITC-conjugated, opsonized E. coli) and oxidative burst (intracellular oxidation of dihydrorhodamine123 to rhodamine123 after induction by phorbol-myristate-acetate) was measured in circulating granulocytes by flow cytometry. Statistical analysis was performed with procedures of ANOVA. Neither at Ex1 nor at Ex2 rate or activity of phagocytosis changed significantly over time, a difference between Ex1 and Ex2 was not observed. In contrast to Ex1, at Ex2 the bactericidal capacity of granulocytes decreased significantly by 37% at the end of exercise. This effect at Ex2 was reversible within the first hour of recovery. The observed transient and partial suppression of the oxydative burst was not accompanied by clinically apparent infections. Therefore, we conclude that the observed in vitro effect is without major clinical importance in healthy subjects.

Adult↗

Recruitment and recirculation of leukocytes after an ultramarathon run: preferential homing of cells expressing high levels of the adhesion molecule LFA-1.

The alpha L beta 2 (CD11a/CD18) integrin LFA-1 (lymphocyte function-associated antigen-1) mainly contributes to the firm arrest of leucocytes on the endothelium. Its cell surface density is thought to be important for the exercise-induced homing of leucocytes. 9 athletes (7 males, 2 females, age 36-68 years, body mass 64 +/- 10 kg, height: 175 +/- 10 cm) absolved a competitive 100 km run in 8:07 hours (range: 7:29-9:50 hours). Immunophenotyping of circulating leucocytes and data acquisition by three colour flow cytometry before and up to 3 hours after the race showed that post exercise lymphocyte subpopulations with a higher expression of CD11a like CD3+CD8+CD45RO+ T-cells, natural killer cells (CD3-CD16/CD56+) and cytotoxic, not MHC-restricted T-cells (CD3+CD16/CD56+) decreased significantly more than CD45RO+ and CD45RO- helper-T-cells (CD3+CD4+), CD3+CD8+CD45RO-T-cells and B-cells (CD19+), which have lower levels for CD11a. Cell concentrations of regular monocytes (Fc gamma receptor 3 negative, LFA-1 low positive) increased, whereas mature monocytes (Fc gamma receptor 3 low or high positive respectively, LFA-1 high positive) decreased. In conclusion the surface density of the adhesion molecule LFA-1 on leucocytes is likely to contribute significantly to the extent of leucocyte's homing after long endurance exercise.

Adult↗

MR imaging of hip disorders.

Magnetic resonance (MR) imaging has been applied to the study of a variety of hip disorders, principally the evaluation of avascular necrosis. The authors reviewed their experience with MR imaging of a variety of pediatric and adult hip diseases. Attention to the details of the imaging technique is essential for maximizing the diagnostic potential of MR imaging in the work-up of hip disease. Specific protocols that incorporate surface coil imaging, oblique imaging planes, and alternative pulse sequences are the foundation of successful hip studies. Gradient-echo imaging is essential for evaluating cartilaginous disorders, particularly in pediatric patients. For patients to benefit from the diagnostic capabilities of MR imaging, an appreciation of the unique information it provides must be communicated to referring physicians. In addition, an awareness of the atypical and unique MR appearances of certain hip disorders is necessary for accurate interpretation.

Adult↗

Age-related increase of CD45RO+ lymphocytes in physically active adults.

The CD45RO phenotype of peripheral blood CD4+ and CD8+ lymphocytes were determined in physically active males (n = 171) and females (n = 70) ranging in age from 15-68 years. Direct immunofluorescence and dual color flow cytometry was performed for analysis. Absolute cell numbers (r = 0.473) and percentages of CD4+ CD45RO+ (r = 0.648) within the CD4+ population, percentage of CD8+ CD45RO+ cells within the CD8+ lymphocytes (r = 0.498) and total lymphocyte number (r = -0.242) correlated significantly (p < 0.001) with age. We conclude that the age-related increase of CD45RO+ T cells indicates a gradual increase of activated T cells.

Adolescent↗

Circulating leucocyte subpopulations in sedentary subjects following graded maximal exercise with hypoxia.

Ten healthy sedentary subjects [age, 27.5 (SD 3.5) years; height, 180 (SD 5) cm; mass, 69.3 (SD 6.3) kg] performed two periods of maximal incremental graded cycle ergometer exercise in a supine position. Randomly ordered and using an open spirometric system, one exercise was carried out during normoxia [maximal oxygen consumption (VO2max) = 38.6 (SD 3.5) ml.min-1.kg-1; maximal blood lactate concentration, 9.86 (SD 1.85) mmol.l-1; test duration, 22.6 (SD 2.7) min], the other during hypoxia [VO2max = 33.2 (SD 3.2) ml.min-1.kg-1; maximal blood lactate concentration, 10.38 (SD 2.02) mmol.l-1; test duration, 19.7 (SD 2.8) min]. At rest, immediately (0 p) and 60 min (60 p) after exercise, counts of leucocyte subpopulations (flow cytometry), cortisol and catecholamine concentrations were determined. At 0 p in contrast to normoxia, during hypoxia there was no significant increase of granulocytes. There were no significant differences between normoxia and hypoxia in the increases from rest to 0 p in counts of monocytes, total lymphocytes and lymphocyte subpopulations [clusters of differentiation (CD), CD3+, CD4+CD45RO-, CD4+CD45RO+, CD8+CD45RO-, CD8+CD45RO+, CD3+HLA-DR+, CD3-CD16/CD56+, CD3+CD16/CD56+, CD19+] as well as adrenaline, noradrenaline and cortisol concentrations. The counts of CD3-CD16/CD56(+)- and CD8+CD45RO(+)-cells increased most. At 60 p, CD3-CD16/CD56+ and CD3+CD16/CD56(+)-cell counts were below pre-exercise levels and under hypoxia slightly but significantly lower than under normoxia. We concluded that the exercise-induced mobilization and redistribution of most leucocyte and lymphocyte subpopulations were unimpaired under acute hypoxia at sea level. Reduced increases of granulocyte counts during the study and reduced cell numbers of natural killer cells and cytotoxic, not major histocompatibility complex-restricted T-cells, only indicated marginal effects on the immune system.

Adult↗

Pattern recognition of the pulmonary manifestations of AIDS on CT scans.

More than 50% of patients with acquired immunodeficiency syndrome (AIDS) develop pulmonary disease during the course of their illness. The authors reviewed 96 computed tomographic (CT) scans of patients with AIDS in an attempt to describe disease entities by the patterns seen on the scans. Such patterns included isolated ground-glass and interstitial infiltrates, which are suggestive of Pneumocystis carinii pneumonia (PCP). If pleural effusions or parenchymal nodules are also present, AIDS-related lymphoma (ARL) or Kaposi sarcoma (KS) is more likely. Although diffuse alveolar infiltrates are most commonly present in PCP, a segmental alveolar infiltrate is suggestive of a bacterial pneumonia, especially when associated with cavitation or ipsilateral pleural effusion. Well-defined nodules are typical for ARL, whereas ill-defined nodules are more commonly suggestive of KS. Accompanying adenopathy or effusion with nodules further suggests ARL. Different combinations of parenchymal, nodular, and pleural abnormalities may be suggestive for additional diagnoses, including Mycobacterium tuberculosis, M avium-intracellulare, and Cryptococcus neoformans infections and human immunodeficiency virus adenopathy. The authors believe that a specific pattern of involvement can help suggest a likely diagnosis in many instances.

AIDS-Related Opportunistic Infections↗

Increased CD45RA+CD45RO+ cells indicate activated T cells after endurance exercise.

Twelve endurance athletes performed either a 240-km cycle race in the Alps or an ultratriathlon (time: 731 +/- 25 min). Two weeks before (S1) and on the 8th or 9th day after (S2) the competition, an exhaustive exercise at 110% of the individual anaerobic threshold was performed (stress test; S1: 21 +/- 2 min; S2: 18 +/- 2 min). Blood samples at rest, at 10 min, at end, and 60 min after S1 or S2 were taken for immunophenotyping of leukocytes with fluorescein- or phycoerythrin-conjugated monoclonal antibodies (CD3, CD4, CD8, CD14, CD16, CD45, CD45RO, CD45RA, CD69, HLA-DR) and dual color flow cytometry. Of the lymphocyte subpopulations, the CD45RO(+)-lymphocytes had higher cell numbers at S2 than at S1 (P < 0.01). This was due to the increase of CD45RA+CD45RO+ lymphocytes (P < 0.005), but not to the CD45RA-CD45RO+ lymphocytes (P > 0.05). Both the CD4+ (+39%) and CD8+ (+75%) cells were increased at S2. The activation markers CD69 and HLA-DR were not significantly increased at S2. Our conclusion is that a approximately 12-h endurance exercise induces activation of T-cells, which is indicated by the increase of CD45RA+CD45RO+. This might also indicate an increase of memory cells by prolonged endurance exercise.

Adult↗

[Supernumerary urethras in men. Report of supernumerary blind epispadias].

Supernumerary urethra, a rare anatomical anomaly, can be explained by various embryological theories, accounting for the multitude of classifications proposed. Its diverse, minor or very severe clinical manifestations suggest the diagnosis, which is confirmed by retrograde and voiding cystourethrography. Treatment is surgical or, more rarely, endoscopic.

Adult↗

Differential mobilization of leucocyte and lymphocyte subpopulations into the circulation during endurance exercise.

A total of 14 healthy subjects [means (SD): 27.6 (3.8) years; body mass 77.8 (6.6) kg; height 183 (6) cm] performed endurance exercise to exhaustion at 100% of the individual anaerobic threshold (Th(an)) on a cycle ergometer (mean workload 207 (55) W; lactate concentrations 3.4 (1.2) mmol.l-1; duration 83.8 (22.2) min, including 5 min at 50% of individual Th(an)). Leucocyte subpopulations were measured by flow cytometry and catecholamines by radioimmunological methods. Blood samples were taken before and several times during exercise. Values were corrected for plasma volume changes and analysed using ANOVA for repeated measures. During the first 10 min of exercise, of all cell subpopulations the natural killer cells (CD3-CD16/CD56+) increased the most (229%). Also CD3+CD16/CD56+ (84%), CD8+CD45RO- (69%) cells, eosinophils (36%) and monocytes (62%) increased rapidly during that time. CD3+, CD3+HLA-DR+, CD4+CD45RO+, CD4+CD45RO-, CD8+CD45RO+ and CD19+ cells either did not increase or increased only slightly during exercise. Adrenaline and noradrenaline increased nearly linearly by 36% and 77% respectively at 10 min exercise. The increase of natural killer cells and heart rates between rest and 10 min of exercise correlated significantly (r = 0.576, P = 0.031). We conclude that natural killer cells, cytotoxic, non-MHC-restricted T-cells, monocytes and eosinophils are mobilized rapidly during the first minutes of endurance exercise. Both catecholamines and increased blood flow are likely to contribute this effect.

Adult↗

Mobilization of circulating leucocyte and lymphocyte subpopulations during and after short, anaerobic exercise.

A group of 11 healthy athletes [age, 27.4 (SD 6.7) years; body mass, 75.3 (SD 9.2) kg; height, 182 (SD 8) cm; maximal oxygen uptake, 58.0 (SD 9.9) ml.kg-1.min-1] conducted maximal exercise of 60-s duration on a cycle ergometer [mean exercise intensity, 520 (SD 72) W; maximal lactate concentration, 12.26 (SD 1.35) mmol.l-1]. Adrenaline and noradrenaline, and leucocyte subpopulations were measured flow cytometrically at rest, after 5-min warming up at 50% of each individual's anaerobic threshold (followed by 5-min rest), immediately after (0 min), 15 min, 30 min, and 1, 2, 4 and 24 h after exercise. Granulocytes showed two increases, the first at 15 min and, after return to pre-exercise values, the second more than 2 h after exercise. Eosinophils also increased at 15 min but decreased below pre-exercise values 2 h after exercise. Total lymphocytes and monocytes had their maximal increases at 0 min. Out of all lymphocyte subpopulations CD3-CD16/CD56(+)- and CD8+CD45RO--cells increased most and had their maximal cell counts at 0 min. The CD3(+)-, CD4+CD45RO(+)-, CD8+CD45RO(+)-, and CD19(+)- increased at 0 min, but had their maximum at 15 min. During the hours after exercise CD3-CD16/CD56(+)-, CD3+CD16/CD56(+)-, CD8+CD45RO(+)- and CD8+CD45RO--cells were responsible for the lymphocytopenia. The CD3(+)- and CD3-CD16/CD56(+)-cells were lower 24 h after exercise than before exercise. Adrenaline and noradrenaline increased during exercise. In conclusion, short anaerobic exercise led to a sequential mobilization of leucocyte subpopulations. The rapid increase of natural killer cells and monocytes may have been due to increased blood flow and catecholamine concentrations.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Immunoregulatory hormones, circulating leucocyte and lymphocyte subpopulations before and after endurance exercise of different intensities.

Sixteen subjects (male, age: 26.3 +/- 3.5 years, weight: 75.1 +/- 6.5 kg, maximal oxygen uptake: 53.6 +/- 6.7 ml.min-1.kg-1) performed endurance exercises at 100% (exhaustive), and 85% (limited) of the individual anaerobic threshold [IAT; workload (100% IAT): 3.00 +/- 0.50 W.kg-1, duration of both exercises: 87 +/- 21 min]. Before (b), immediately (0 p), 60 min (60 p), 120 min (120 p) and 24 hours (24 hp) after exercise, leucocyte subpopulations (flow cytometry) as well as epinephrine, norepinephrine, cortisol, beta-endorphin and ACTH were determined. At 0 p, 60 p and 120 p, granulocytes were significantly higher at 100% IAT than at 85% IAT, lymphocytes and monocytes did not differ. At 60 p and 120 p, granulocytes had highest, lymphocytes lowest values. CD8(+)- and CD16(+)-lymphocytes showed greater changes than CD3(+)-, CD4(+)-, CD19(+)-lymphocytes and were significantly higher at 100% IAT than at 85% IAT (0 p). Epinephrine and norepinephrine were significantly higher at 100% IAT than at 85% IAT. Cortisol, ACTH and beta-endorphin increased at 100% IAT, but not at 85% IAT (0 p). Significant correlations were calculated for cortisol (0 p) versus granulocytes (60 p, 120 p) at 100% IAT. Epinephrine did not correlate to increases of lymphocytes or lymphocyte subpopulations. In conclusion, increases of granulocytes, CD16(+)- and CD8(+)-lymphocytes are dependent on the intensity of endurance exercises and precise definition of the individual workload is important. The increase of granulocytes after exercise is partly due to increased levels of cortisol. Increased cell numbers of lymphocytes, especially CD16(+)-cells, did not correlate to increased levels of catecholamines.

Adrenocorticotropic Hormone↗

Circulating leucocyte and lymphocyte subpopulations before and after intensive endurance exercise to exhaustion.

Seventeen healthy cyclists [age 20.8 (SD 4.8) years; body mass 68.3 (SD 7.7) kg; body fat, 11.4 (SD 2.6) %; height, 179.1 (SD 5.9) cm; VO2max, 60.9 (SD 7.4) ml.kg-1.min-1] conducted intensive endurance exercise to exhaustion (stress test, ST) on a cycle ergometer at 110% of their individual anaerobic threshold [Than,individual; exercise intensity, 3.97 (SD 0.6) W.kg-1; duration, 23.9 (SD 8.3) min; maximal lactate concentration, 7.39 (SD 2.59) mmol.l-1]. The distribution of leucocyte subpopulations was measured flow cytometrically: before, immediately after (0), 5 (+5), 30 (+30) and 60 (+60) min after ST. The lymphocytes (0 min) and granulocytes (+60 min) were mainly responsible for the increase of leucocytes. Lymphocytes were significantly lower at +30 and +60 min than before. CD3-CD16/CD56+ (+480%) and CD8(+)-lymphocytes (+211%) increased at 0 min more than the other lymphocyte subpopulations (CD(3+)-cells, +100%; CD(4+)-cells, +56%; CD(19+)-cells, +64%). CD3-CD16/CD(56+)- and CD(8+)-cells also were mainly responsible for the decreased values of lymphocytes at +30 min and +60 min compared to before. At 0 min naive CD(8+)-cells (CD45RA+, CD45RO-) increased more than memory CD(8+)-cells (CD45RA-, CD45RO+). Changes of naive and memory CD(4+)-cells did not differ. All lymphocyte subpopulations, in particular CD(8+)- and CD3-CD16/CD(56+)-cells, decreased rapidly between 0 min and 5 min. We conclude that an intensive endurance exercise to exhaustion causes a mobilisation of lymphocytes, especially of natural killer cells (CD3-CD16/CD56+) and naive, unprimed CD(8+)-cells (CD45RA+, CD45RO-) which may be transported to injured muscles.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

[Female vesical instability: etiologic problems in 209 cases].

Based on a series of 209 cases, the authors investigate the aetiological factors responsible for vesical instability in adult females. Fifty five p. cent of patients suffered from incontinence due to isolated urgency. These patients presented a history of neurological disturbances in 21 cases, total hysterectomy in 22 cases and surgery for incontinence in 54 cases. Sixty p. cent of cases presented with genital prolapse. There were 7 cases of urinary tract infection, 2 cases of renal stones and 2 bladder tumours. Urodynamic studies revealed 60 dysuric syndromes. The responsibility of urinary tract infection or genital prolapse in the development of vesical instability is questionable. Nevertheless, the frequency of genital prolapse in the present series argues in favour of deficiency of the perineal musculature which decreases the capacity for inhibition of the detrusor. Lastly, 40% of patients did not have any neurological causes or any vesical or adjacent pathology. These cases were described as idiopathic vesical instability for which the aetiopathogenesis remains unknown.

Adult↗

[Long-term results of male urethral stenosis].

Long-term outcome in 142 patients after endoscopic or surgical treatment or urethral stenosis were evaluated. Results seem disappointing. Development of new therapeutic methods is desirable: the principle of use of an endoprosthetic material for stenoses of the bulbar urethra is described, and the operative technique and preliminary results are reported.

Endoscopy↗