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Taneli Raivio

Publications and source records attributed to Taneli Raivio.

9 recordsLinked to original sources

Serum androgen bioactivity in adolescence: a longitudinal study of boys with constitutional delay of puberty.

We have examined the relationship between serum androgen bioactivity, as measured with a recombinant cell bioassay, and progression of puberty in 14 boys with constitutional delay of puberty. Six boys were followed up without treatment (control group), and eight boys received low-dose (1 mg/kg) testosterone enanthate im for 0-6 months together with an aromatase inhibitor, letrozole, 2.5 mg orally once a day for 0-12 months (treatment group). In the control group, serum androgen bioactivity increased during the course of puberty (P < 0.001). During 0-12 months of the study, the boys in the treatment group had higher androgen bioactivity levels (P < 0.05) and faster rate of pubic hair growth than the control boys (P < 0.05). Overall, the average serum androgen bioactivity during 12 months of follow-up correlated strongly with the concomitant changes in Tanner genital (r(S) = 0.89; n = 13; P < 0.005) and pubic hair stages (r(S) = 0.79; n = 13; P < 0.01). In conclusion, our results suggest that circulating androgen bioactivity mediates the tempo of pubertal maturation and that the combination of testosterone and letrozole given to boys with constitutional delay of puberty accelerates puberty.

Adolescent↗

Reduced circulating androgen bioactivity in patients with prostate cancer.

BACKGROUND: Previous studies on immunoreactive androgen levels in serum have revealed equivocal associations with the risk of prostate cancer (CaP). The aim of this study was to compare serum biological androgen activity between men with newly diagnosed CaP and age-matched men with benign prostatic hyperplasia (BPH). METHODS: Caucasian men with newly diagnosed, untreated CaP (n = 101) and age-matched patients with BPH (n = 103) were investigated. Serum androgen bioactivity (ABA) levels were measured using a recently developed recombinant cell bioassay. RESULTS: In comparison to men with BPH, CaP patients with Gleason score >or=8 (n = 16) had lower serum ABA (P < 0.05), and patients with Gleason score or=8 (P = 0.07) displayed suppressed ABA levels in relation to serum testosterone. As the entire group, men with CaP (n = 101) had significantly lower serum ABA than age-matched men with BPH (n = 103): median 3.0 nM (range, 0.8-6.4 nM) versus 3.2 nM (range, 0.8-7.9 nM) testosterone equivalents, respectively (P < 0.005). By contrast, serum immunoreactive testosterone and SHBG concentrations and free androgen indices did not differ significantly between the two groups. CONCLUSIONS: Patients with CaP have lower serum ABA than controls with BPH, and men with low or high Gleason score display suppressed circulating ABA-to-testosterone ratio. These features may reflect interaction between variables such as the degree of tumor differentiation and tumor volume with androgen metabolism.

Aged↗

Termination of pregnancy with mifepristone and prostaglandin suppresses transiently circulating glucocorticoid bioactivity.

Mifepristone is a potent antiglucocorticoid, the administration of which results in a dose-dependent activation of the hypothalamic-pituitary-adrenal axis. However, the net effect of this compound on circulating glucocorticoid activity is not known. We have used a recombinant cell bioassay to study glucocorticoid bioactivity (GBA), measured directly from serum, in 18 women undergoing medical termination of an early pregnancy with 200 mg mifepristone, followed by 0.8 mg misoprostol, a prostaglandin. Increased serum mifepristone was accompanied by an increase in serum cortisol that was insufficient to maintain circulating GBA within the normal (pre-mifepristone) range (34.7-93.8 nM cortisol equivalents); after approximately 43, 46, and 68 h of mifepristone ingestion, the mean serum GBA levels were much lower than the mean pre-mifepristone level (P < 0.0001). At the corresponding times, 16, 13, and 12 women displayed subnormal serum GBA levels (ranges, <15.6-23, <15.6-25.6, and <15.6-32.5 nM cortisol equivalents, respectively). Altogether 11 subjects displayed subnormal serum GBA (range, <15.6-32.5 nM cortisol equivalents) continuously in the presence of high concentrations of mifepristone. Two weeks after mifepristone administration, circulating GBA had returned to normal levels in all subjects. We conclude that 200 mg mifepristone elicits a significant suppression of serum GBA, to one third of the pretreatment value, despite the compensatory increase in the serum cortisol concentration.

Abortifacient Agents, Nonsteroidal↗

Serum androgen bioactivity in cryptorchid and noncryptorchid boys during the postnatal reproductive hormone surge.

The first postnatal months of life in boys are characterized by activation of the hypothalamic-pituitary-testicular axis that results in the well depicted surge of reproductive hormones. Serum testosterone levels at that time are high, but infants do not display signs of virilization, and subsequently there is only indirect evidence that circulating androgens during the surge are biologically active. We used a recombinant cell bioassay to determine serum androgen bioactivity in 80 3-month-old boys born after full-term pregnancies (37-42 wk) in whom localization of the testes was determined by palpation after birth and at a mean age of 3 months. At that age, serum androgen bioactivity ranged from less than 0.8 to 1.9 nM testosterone equivalents and correlated with serum testosterone concentration (r = 0.71; P < 0.0001; n = 34), free androgen index (r = 0.80; P < 0.0001; n = 34), age (r = -0.29; P < 0.01; n = 80), and localization of the testes (r = -0.24; P < 0.05; n = 80). Moreover, all boys in this study with detectable androgen bioactivity (n = 26) had testes located in scrotal or high scrotal position (n = 64), whereas all boys (n = 16) with at least 1 suprascrotal, inguinal, or nonpalpable testis had nonmeasurable androgen bioactivity in serum (P < 0.01). We conclude that 3-month-old boys are exposed to biological effects of androgens during the postnatal activation of the hypothalamic-pituitary-testicular axis, and that this exposure may be reduced in boys with at least 1 testis located superior to the scrotum.

Androgens↗

Inhibins in childhood and puberty.

Inhibin is a heterodimeric glycoprotein that consists of an alpha-subunit linked to either a betaA subunit (inhibin A) or to a betaB subunit (inhibin B) and it exists in at least six different isoforms. These isoforms can not be measured separately by immunoassays. In boys, serum inhibin B levels change in concert with the increase in gonadotrophins. Associated with the postnatal activation of gonadotrophin secretion, the early inhibin B secretion is sustained until the age of 18-24 months; thereafter serum concentrations subside. In boys, between Tanner stages G1 and G2, serum inhibin B concentration again increases, but then plateaus. Inhibin A levels in human males are below the detection limit, but in girls, during the postnatal activation of gonadotrophin secretion, both serum inhibin A and inhibin B concentrations are measurable. Serum inhibin B levels correlate positively with age several years before the clinical onset of puberty, suggesting increasing follicular activity in late prepuberty. During female puberty, the inhibin B level increases from Tanner stage B1 through stage B3, suggesting high follicular activity before the development of ovulatory menstrual cycles, but serum inhibin A levels become measurable later in puberty, in agreement with the idea that inhibin A is mainly produced by the corpus luteum.

Adolescent↗

Activation of the bone morphogenetic protein signaling pathway induces inhibin beta(B)-subunit mRNA and secreted inhibin B levels in cultured human granulosa-luteal cells.

During the human menstrual cycle the circulating levels of inhibin B, a dimer of inhibin alpha- and beta(B)-subunits, fluctuate in a fashion distinct from that of inhibin A, the alpha-beta(A)-subunit dimer. This suggests that human inhibin subunits are each regulated in a distinct manner in human ovarian granulosa cells by endocrine and local factors. We have previously shown using cultures of human granulosa-luteal (hGL) cells that gonadotropins stimulate the steady state mRNA levels of inhibin alpha- and beta(A)-subunits, but not those of the beta(B)-subunit, which, on the other hand, are up-regulated by, for instance, activin and TGF beta. We recently identified the TGF beta gene family member bone morphogenetic protein-3 (BMP-3) as a granulosa cell-derived growth factor, but whether BMP-3 or other structurally related BMPs regulate human granulosa cell inhibin production is not known. We show here that hGL cells express mRNAs for distinct serine/threonine kinase receptors (BMP-RIA and BMP-RII) and Smad signaling proteins (Smad1, Smad4, and Smad5) involved in the mediation of cellular effects of BMPs. Subsequently, we determined in hGL cell cultures the effects of distinct members of the BMP family previously found to be expressed in mammalian ovaries. Recombinant BMP-2 induces potently in a time- and concentration-dependent manner the expression of the inhibin beta(B)-subunit mRNAs in hGL cells without affecting the levels of alpha- or beta(A)-subunit mRNAs. BMP-6 has a similar, but weaker, effect than BMP-2, whereas BMP-3 and its close homolog, BMP-3b (also known as growth differentiation factor-10) had no effect on inhibin subunit mRNA expression. hCG treatment of hGL cells was previously shown to abolish the stimulatory effect of activin on beta(B)-subunit mRNA levels, and here hCG is also shown to suppress the effect of BMP-2. Furthermore, BMP-2 stimulates hGL cell secreted dimeric inhibin B levels in a concentration-dependent manner. Depending on the experiment, maximal increases in inhibin B levels of 6- to 28-fold above basal levels were detected during a 72-h culture period. We conclude that activation of the BMP-signaling pathway in hGL cells stimulates inhibin beta(B)-subunit mRNA levels and leads at the protein level to a dramatic stimulation of secreted inhibin B dimers. Our results are consistent with the suggestion that in addition to the distinct activin- and TGF beta-activated signaling pathways, the BMP-activated pathway is likely to be implicated in the complex regulation of inhibins in the human ovary.

Bone Morphogenetic Protein 2↗

Transactivation assay for determination of glucocorticoid bioactivity in human serum.

We have developed a mammalian cell (COS-1) bioassay, which measures glucocorticoid bioactivity (GBA) directly from a small amount of human serum. The assay is based on the expression of human glucocorticoid receptor (GR) together with a coactivator protein and reporter plasmid containing GR response elements upstream of the luciferase gene. Ten microliters of human serum, in duplicate, are added directly to the cell culture medium, and GBA is derived from reporter gene activity. The assay differentiates between biopotencies of synthetic steroids, and importantly, mifepristone (RU486) is able to block glucocorticoid-induced response. The assay is sensitive (<15.6 nM cortisol in fetal calf serum) and precise, with the within- and between-assay coefficients of variation less than 8% and 10%, respectively. We measured serum GBA (bioassay) and cortisol (RIA) levels in 34 asthmatic children (age range, 5.7-14.2 yr) at baseline and after treatment with either inhaled budesonide (800 microg/d, n = 14), fluticasone propionate (500 microg/d, n = 14), or cromones (control group, n = 6). Pretreatment serum GBA and cortisol levels correlated strongly (r = 0.90, P < 0.0001, n = 34). Two months of treatment with inhaled budesonide resulted in excess GBA in circulation, which was not attributable to endogenous cortisol (P < 0.001). In the fluticasone propionate group, the presence of serum excess GBA was at the borderline of statistical significance (P < 0.08) after 2 months of inhalation therapy, and no excess GBA was detected in the cromone group. In conclusion, our bioassay enables measurement of mammalian cell response to bioactive glucocorticoids in circulation and provides a novel means to investigate patients receiving drugs acting through the GR.

Administration, Inhalation↗

Serum androgen bioactivity during 5alpha-dihydrotestosterone treatment in elderly men.

The androgens used in the treatment of age-related androgen decline have different bioactivities that cannot be evaluated with conventional detection methods for serum steroids. We have recently developed a recombinant cell bioassay for the determination of androgen bioactivity in human serum that is based on androgen-specific interaction between the ligand-binding domain (LBD) and the N-terminal region of the androgen receptor (AR). In this work, we examined the effect of topically applied 5alpha-dihydrotestosterone (DHT; 7.5-10 g of 2.5% DHT gel daily for 6 months) on circulating androgen bioactivity in 14 men (age range, 51-63 years) with symptoms of andropause and pretreatment serum testosterone less than 15 nM, or serum sex hormone-binding globulin concentration greater than 30 nM, or both. The mean (+/-SEM) pretreatment androgen bioactivity was 3.3 +/- 0.3 nM testosterone equivalents, and the levels correlated with serum testosterone concentration (r =.55, P <.05). DHT gel treatment induced a sixfold increase (from 1.5 +/- 0.1 nM to 9.0 +/- 0.7 nM) in mean serum DHT level, whereas endogenous testosterone and estradiol levels measured with radioimmunoassays were suppressed by approximately 70% and approximately 50%, respectively (P <.0001). Concomitantly, serum androgen bioactivity increased by sevenfold (from 3.3 +/- 0.3 to 23.6 +/- 2.8 nM testosterone equivalents; P <.0001). We conclude that DHT gel therapy in elderly men significantly increases their circulating androgen bioactivity as measured with a mammalian cell bioassay. An androgen-specific bioassay such as ours may enable investigation of other androgens with different bioactivities, such as selective AR modulators.

Aging↗