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Liquid chromatography-tandem mass spectrometry assay for human serum testosterone and trideuterated testosterone.

A liquid chromatography tandem mass spectrometry assay for serum testosterone (T) and trideuterated testosterone (d(3)T) was developed in order to support clinical research studies that determine the pharmacokinetics, production rate, and clearance of testosterone by administration of trideuterated testosterone. After adding 19-nortestosterone as the internal standard (I.S.), sodium acetate buffer, and ether, to a serum aliquot, the mixture was shaken and centrifuged, and the ether was dried. The extract was reconstituted in methanol and 15 microl was injected into a liquid chromatograph equipped with an autosampler and Applied Biosystems-Sciex API 300 triple quadrupole mass spectrometer operated in the positive ion mode. T, d(3)T, and I.S. were monitored with transitions m/z 289 to m/z 97, m/z 292 to m/z 97, and m/z 275 to m/z 109, respectively. The two calibration curves were linear over the entire measurement range of 0-20 ng/ml for T and 0-2.0 ng/ml for d(3)T. The LOQs for T and d(3)T were 0.5 ng/ml and 0.05 ng/ml. The recoveries for T and d(3)T were 91.5 and 96.4%. For T at 1.25 ng/ml and 4.0 ng/ml, the intra-day precision (RSD, %) was 3.9 and 4.3% and intra-day accuracy 0.01 and 4.5%, respectively. The inter-day precision at these levels was 5.3 and 5.4% and inter-day accuracy was 1.9 and 0.3%. For d(3)T at 0.125 ng/ml and 0.4 ng/ml, the intra-day precision (RSD, %) was 2.8 and 8.3% and intra-day accuracy was 1.8 and 5.6%. The inter-day precision at these levels was 10.0 and 7.6% and inter-day accuracy was 5.7 and 3.4%. The concentrations of T in the 38 healthy subjects ranged from 2.5 to 14.0 ng/ml (mean 6.2 ng/ml).

Calibration↗

Increased free testosterone but normal 5 alpha-reduced testosterone metabolites in obese premenopausal women.

OBJECTIVE: The aim of the study was to investigate whether the absence of increased 5 alpha-reductase activity explained the absence of hirsutism in premenopausal obese women with increased free testosterone (FT) levels. DESIGN: As in hyperandrogenicity there generally exists evidence for increased 5 alpha-reductase activity, we measured, as parameters of 5 alpha-reductase activity, plasma levels of 5 alpha-androstane-3 alpha,17 beta-diol glucuronide (ADG) and androsterone glucuronide (ADTG) as well as their precursor levels in obese women without hirsutism, obese hirsute women, non-obese hirsute women, and non-obese, non-hirsute women. PATIENTS: Eighty-two premenopausal women (20-45 years old) were studied, in four age matched groups: 39 controls, 18 obese without hirsutism, 11 non-obese hirsute and 14 obese hirsute women. MEASUREMENTS: Blood samples were taken between days 5 and 7 of the menstrual cycle. Steroid hormone levels were measured by radioimmunoassay. Free testosterone levels were measured by equilibrium dialysis. RESULTS: Compared to controls, mean free testosterone levels were increased (P less than 0.01) in obese, obese hirsute and hirsute patients, whereas mean DHEAS levels were increased in hirsute and obese hirsute (P less than 0.01), but not in obese, women. Mean androstanediol glucuronide levels were markedly increased in hirsute and obese hirsute patients (P less than 0.01), but not in obese women. Plasma androsterone glucuronide levels were increased in hirsute (P less than 0.01), in the normal range in obese hirsute, and decreased in obese women (P less than 0.01). CONCLUSIONS: These results show that, despite the presence of higher free testosterone levels, neither 5 alpha-reductase activity (as suggested by normal androstanediol glucuronide levels) nor adrenal androgen precursor levels (DHEAS) are increased in obese women without hirsutism.

3-Oxo-5-alpha-Steroid 4-Dehydrogenase↗

Some solute-solvent complexes involving testosterone and testosterone propionate.

Solute-solvent interactions have been studied by observing the influences of carbon tetrachloride, carbon disulphide, ethyl oleate, isopropyl myristate and octanol on the solubilities of testosterone and testosterone propionate in an inert solvent (cyclohexane). Complexation with testosterone was detected, but there was no evidence of complexation between testosterone propionate and these solvents. The solvent-induced infrared shifts were due to non-specific solvent effects. The existence of solute-solvent complexes between the two solutes and chloroform, previously detected by infrared absorption, was confirmed. The solubility technique, which has previously only been used with solid complexing agents, is adaptable to liquid complexing agents, but has limitations.

Solubility↗

Testosterone and testosterone precursors in the spermatic vein and in the testicular tissue of old men. Reduced oxygen supply may explain the relative increase of testicular progesterone and 17 alpha-hydroxyprogesterone content and production in old age.

Testosterone and the testosterone precursors pregnenolone, progesterone, 17 alpha-hydroxyprogesterone, 17 alpha-hydroxypregnenolone, androstenedione, androstenediol and dehydroepiandrosterone were measured in the spermatic vein plasma and in the testicular tissue of young and old men. Testosterone and its precursors decreased in the testicular tissue of old men. However, progesterone and 17 alpha-hydroxyprogesterone increased in relation to testosterone in the testicular tissue and in the spermatic vein of old men. It is assumed that these age-dependent changes are caused by an impaired oxygen supply of the ageing testes. This hypothesis is supported by the observation that the same changes in steroid pattern seen in old age can be observed under reduced oxygen supply in in vitro incubation experiments with testicular tissue.

Adolescent↗

The partial female to male sex reversal in Wnt-4-deficient females involves induced expression of testosterone biosynthetic genes and testosterone production, and depends on androgen action.

Wnt-4 signaling has been implicated in female development, because its absence leads to partial female to male sex reversal in the mouse. Instead of Mullerian ducts, Wnt-4-deficient females have Wolffian ducts, suggesting a role for androgens in maintaining this single-sex duct type in females. We demonstrate here that testosterone is produced by the ovary of Wnt-4-deficient female embryos and is also detected in the embryonic plasma. Consistent with this, the expression of several genes encoding enzymes in the pathway leading to the synthesis of testosterone in the mouse is induced in the Wnt-4-deficient ovary, including Cyp11a, Cyp17, Hsd3b1, Hsd17b1, and Hsd17b3. Inhibition of androgen action with an antiandrogen, flutamide, during gestation leads to complete degeneration of the Wolffian ducts in 80% of the mutant females and degeneration of the cortical layer that resembles the tunica albuginea in the masculinized ovary. However, androgen action is not involved in the sexually dimorphic organization of endothelial cells in the Wnt-4 deficient ovary, because flutamide did not change the organization of the coelomic vessel. These data imply that Wnt-4 signaling normally acts to suppress testosterone biosynthesis in the female, and that testosterone is the putative mediator of the masculinization phenotype in Wnt-4-deficient females.

17-Hydroxysteroid Dehydrogenases↗

Testosterone-estradiol binding globulin binds to 2-methoxyestradiol with greater affinity than to testosterone.

This report describes the unexpected observation that testosterone-estradiol binding globulin (TeBG) binds 2-methoxyestradiol better than it binds either testosterone or 17 beta-estradiol. As determined by competitive displacement of 3H-testosterone from TeBG adsorbed onto a solid phase matrix of Con A-Sepharose, the relative binding activities of 2-methoxyestradiol, testosterone and 17 beta-estradiol for TeBG were 2.0, 1.0 and 0.32, respectively. In contrast, 2-methoxyestradiol, which is known to bind with low affinity to estrogen receptors, had only low affinity binding to the androgen receptor, as determined by competitive displacement of 3H-dihydrotestosterone using 64-24 rat mammary tumor cells. 2-Methoxyestradiol is the first example of a naturally occurring steroid which binds with high affinity to TeBG but with low affinity to both androgen and estrogen receptors.

2-Methoxyestradiol↗

Relationships of plasminogen activator inhibitor activity and lipoprotein(a) with insulin, testosterone, 17 beta-estradiol, and testosterone binding globulin in myocardial infarction patients and healthy controls.

The relationships between plasminogen activator inhibitor (PAi) activity and lipoprotein(a) [Lp(a)] and insulin, testosterone, 17 beta-estradiol, and testosterone binding globulin (TEBG) were assessed in 42 myocardial infarction male patients and 74 healthy controls. Patients had higher levels of insulin than did controls (87 +/- 30 vs. 75 +/- 28 pmol/L, respectively; P < 0.04), and no differences were found in levels of PAi activity, testosterone, 17 beta-estradiol, and TEBG. Lp(a) levels greater than 0.3 g/L were more frequent in patients than in controls (P < 0.002). In all subjects, PAi activity levels were significantly and positively correlated with body mass index (r = 0.20, P < 0.05), triglycerides (r = 0.38, P < 0.0001), and insulin (r = 0.27, P < 0.005) and were negatively correlated with testosterone (r = -0.28, P < 0.005) and TEBG (r = -0.42, P < 0.001). Stepwise multiple regression analysis showed triglyceride, insulin, and TEBG levels to be significantly related to PAi activity. No significant correlations were found between Lp(a) levels and all hormonal variables studied and between Lp(a) and PAi activity (r = -0.06, P < 0.58). These results suggest that TEBG is significantly and independently related to PAi levels.

Adult↗

Seasonal changes of testicular weight, sperm production, serum testosterone, and in vitro testosterone release in Korean ring-necked pheasants (Phasianus colchicus karpowi).

To study the biology of reproduction of male Korean ring-necked pheasants kept under natural conditions of temperature and photoperiod, testicular weight, serum testosterone concentrations, testosterone release from the luteinizing hormone (LH)-stimulated testis in vitro and sperm production were measured. Significant changes associated with seasonal cycles were found. Testis weight decreased dramatically in August, remained low until February, rapidly increased from March to high levels to June, and decreased subsequently. Serum testosterone concentrations remained little from August until February, but increased sharply in March to reach the highest levels in April. Thereafter, the concentrations decreased significantly from June. The testosterone release was low from August to February, increased abruptly in March to reach the highest levels in May, and showed rapid decrease thereafter. Sperm production decreased to nondetectable levels from August to February, increased markedly in March, reached a peak in May, and sharply decreased thereafter. Thus, the pheasants breed from late March to late June. These results indicate that the Korean ring-necked pheasant, under natural conditions, exhibits characteristics of a seasonal cycle in reproduction.

Animals↗

A simple method for estimating equilibrium constants for serum testosterone binding resulting in an optimal free testosterone index for use in elderly men.

An algorithm was developed to evaluate equilibrium constants for testosterone (Te) and sex hormone-binding globulin (SHBG) or albumin from serum free testosterone (FTe) measurements performed in a panel of 30 healthy elderly men by means of a near-reference method, i.e., symmetric dialysis (affinity constants: SHBG-Te, 1.13 x 10(9) L/mol; albumin-Te, 4.4 x 10(4) L/mol). Using these estimates, a free testosterone index (FTeI) was calculated from total Te and SHBG concentrations in a further 35 elderly men. This FTeI perfectly matches with actually measured free testosterone concentrations by symmetric dialysis in this second group, with a mean ratio index/measurement of 0.998+/-0.016 (SEM). The efficacy of the algorithm, which represents a simple alternative to previous cumbersome methods for estimation of equilibrium constants, is thereby demonstrated.

Aged↗

Effect of long-term testosterone oenanthate administration on male reproductive function: clinical evaluation, serum FSH, LH, testosterone, and seminal fluid analyses in normal men.

The effect of long-term testosterone administration on male reproductive function has been investigated in seven healthy young men age 20 to 27 years. Testosterone oenanthate (TOe) was administered in doses of 250 mg per week for 21 weeks. No toxic side-effects were observed. Libido, sexual potency, frequency of sexual intercourse and body hair development generally remained unaffected, but there was a reversible mean weight gain of 3.6 kg during TOe administration. Seminal fluid parameters and radioimmunoassayable serum FSH, LH, testosterone, and androstenedione levels were monitored before, during, and after TOe administration. The serum testosterone rose approximately by a factor of two, while the serum FSH and LH were rapidly suppressed after the initiation of the TOe therapy. The mean sperm concentration fell to values below three million spermatozoa per ml, and changes in sperm motility, the percentage of normal sperm morphology, and seminal fructose concentrations generally paralleled those of the mean sperm concentrations. In contrast, the mean seminal fluid volume and serum androstenedione levels did not change significantly during TOe administration. The mean sperm concentration showed a marked recovery 13 to 16 weeks after TOe withdrawal, but sperm counts remained below pre-treatment levels in three out of seven subjects 25 to 28 weeks after discontinuation of TOe.

Adult↗

LH and testosterone release in developing bulls following LH-RH treatment. Effect of gonadectomy and chronic testosterone propionate pre-treatment.

LH and testosterone release after LH-RH treatment was studied in male calves from 1 week to 8 months of age. Total LH release, LH peak values and duration of the discharge increased from 1 week to 4 months of age by 406, 453 and 110%, respectively. Significant decreases of 54, 48 and 24% were observed at 6 months of age compared to 4 months of age. This was followed by steep increases in those variables of 344, 129 and 69% at 8 months compared to 4 months. A testosterone response following an LH increase was first seen at 4 months of age when a weak discharge occurred in 2 out of 5 calves. In older calves strong and LH-correlated testosterone responses were always observed. In a second experiment the LH response to LH-RH was studied in 6 months old calves castrated 2 months previously. The total LH response was 61% greater than in intact controls. When animals were castrated and pre-treated briefly with testosterone propionate the response was increased by 183% and the time to reach the LH peak was increased by 360%. From these and other results a synthesis of endocrine events during the first year of life is proposed. In particular it seems that the period between 4 and 8 months of age is crucial since interactions between steroid feedback and pituitary sensitivity to LH-RH change and eventually reach an equilibrium.

Age Factors↗

Seasonal variations in plasma testosterone and dihydrotestosterone levels and in metabolic clearance rate of testosterone in rams in Algeria.

Plasma concentrations of testosterone, measured weekly in 16 Ouled-Djellal rams in Algeria, were lowest in autumn and early winter months, increased in February-March and reached highest levels (about 5 ng/ml) in early summer, before decreasing in autumn. Plasma dihydrotestosterone levels were very low and paralled those of testosterone until July (50 pg/ml); there was then an unexplained rise in October-November (50 pg/ml). The metabolic clearance rate of testosterone was low in November and January, and significantly increased in March and June (about 2000 1/24 h). Consequently, the production rate of testosterone was approximately 5-fold higher in June than in January. These data suggest that the short-day photoperiodic theory is not applicable to all breeds of sheep or to all environmental conditions.

Algeria↗

[Levels of testosterone-estradiol-binding globulin TeBG and of testosterone in pregnancy with relation to the sex of the foetus (author's transl)].

A practical and economic method for the quantification of testosterone-estradiol-binding globulin TeBG is described. The procedure premits the differentiation without overlap of the TeBP levels in males, non-pregnant females and during pregnancy. Mean titles were 1/5, 1/93 and 1/360 respectively. During pregnancy, we found high levels of TeBG and increased plasma testosterone, with mean values of 143.4 nanograms/100 ml. We have found no significant differences in TeBG levels, or in maternal blood testosterone levels in relation to fetal sex; however, plasma testosterone levels were significantly different among new born of different sex, with mean values of 96.25 nanograms per cent for males and 78.21 nanograms per cent for females.

Estradiol↗

Effects of administration of testosterone on some biochemical correlates in seminal vesicle of Heteropneustes fossilis (Bloch) during preparatory phase: a study correlating changes in plasma testosterone level and testis activity.

In the catfish H. fossilis, administration of testosterone (0.25, 0.5, 1 and 2 micrograms/g body weight for 20 days) during mid-preparatory phase (March) increased plasma testosterone, gonadosomatic index, seminal vesicle-somatic index and concentrations of total proteins, fructose and hexosamines in seminal vesicle (SV) and testis in a dose-related manner. In the lowest dosage (0.25 microgram) group, only the hexosamine and SV protein levels were significantly high. Glucose level decreased in a dose-related manner, the decrease being not significant in the 0.25 microgram group. The results indicate that testosterone stimulates SV and testicular secretions of total proteins, hexosamines and fructose in catfish. Decrease in glucose content suggests its conversion into fructose under testosterone stimulation.

Animals↗

Concentrations of salivary testosterone and plasma total, non-sex-hormone-binding globulin-bound, and free testosterone in normal and hirsute women during administration of dexamethasone/synthetic corticotropin.

Preliminary data indicate that the concentration of circulating cortisol may affect the binding of testosterone to plasma proteins. This interdependency was evaluated by the assessment of plasma cortisol, salivary (ST) and plasma total testosterone (TT), testosterone not bound to sex-hormone-binding globulin (n-SHBGT), and free testosterone (FT) in normal and in hyperandrogenemic women during combined dexamethasone/synthetic corticotropin administration. The concentrations of TT, FT, and ST significantly increased (P less than 0.001) during this dynamic test both in the controls and in hirsute women. Remarkably, however, n-SHBGT remained virtually unchanged in normal women in the follicular phase, decreasing in the luteal phase, and decreasing even more markedly in the hirsute women. Both the normal and the hirsute women showed a statistically significant negative correlation between the percentage of n-SHBGT and plasma total cortisol (P less than 0.001). The apparent decrease of n-SHBGT was the result of displacement of T from corticosteroid-binding globulin (CBG) by the increase in cortisol after the infusion of synthetic corticotropin: the CBG-bound T was measured as n-SHBGT because CBG was not precipitated with 50% saturated ammonium sulfate. Our results indicate that ST or FT better represents the clinical status of androgenicity than does n-SHBGT, as assessed by ammonium sulfate precipitation, because n-SHBGT also depends on the concentration of cortisol.

Adrenocorticotropic Hormone↗

The development of a radioimmunoassay system for testosterone (T) and dihydrotestosterone (DHT). Part 3. The preparation of radioiodinated testosterone.

A two step-method was applied for the preparation of a tracer adequate for a radioimmunoassay (RIA) system for testosterone. Histamine was radioiodinated by the Chloramine-T method and then coupled to testosterone-3-carboxymethyl-oxime (T-3-CMO) derivative. After purification by TLC, the steroid tracer was stable in ethanol for at least four months. Using an anti-T-3-CMO-BSA serum, a (bridge) homologous RIA system for testosterone was developed. The reagents (antiserum, tracer and standard) were incubated 2 hrs at 37 degrees C and then the free radioactivity was removed by a dextran-charcoal suspension. The testosterone RIA system, with the sensitivity of 30 pg/tube, is suitable for the measurement of the steroid hormone in biological fluids and tissues.

Animals↗

Testosterone : testosterone estradiol binding globulin ratio in evaluating hirsute women.

Testosterone : testosterone estradiol binding globulin (TEBG) ratio is evaluated in 35 hirsute women (age 12 to 38 years), and 14 healthy nonhirsute normal controls (age 21 to 40 years). This is an attempt to emphasize the significance of TEBG in evaluating hirsute women. This is a significant negative linear correlation between the weight of the patients and TEBG concentrations (r = 0.414, P less than 0.05). There is negative linear correlation between TEBG and serum free testosterone concentration that reached significance only in the hirsute nonobese. T:TEBG ratio is significantly high in hirsute women compared to the controls. T:TEBG ratio shows a significant positive linear correlation with free testosterone concentration. In addition, T:TEBG ratio is a direct simple method of evaluating hirsute women. Demulen and Dexamethazone treatment produced a significant fall in T:TEBG ratio in hirsute women.

Adolescent↗

[Relationship between testosterone binding proteins and testosterone and LH plasma concentrations in the young bull].

Plasma levels of testosterone and LH were measured by radioimmunoassay from blood samples of young bulls of 9 to 15 months of age. The binding constants of specific testosterone binding plasma proteins were determined from the same samples. No significant difference of these values could be seen during the 25 hr. sampling period, contrary to large fluctuations in testosterone and LH plasma concentrations. But, the testosterone binding constants values were significantly lower after puberty (15 months) than at 9 and 12 months of age.

Animals↗