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Biomedical subjects

B C Fauser

Publications and source records attributed to B C Fauser.

At least 109 records · Page 6Linked to original sources

Growth patterns of nondominant ovarian follicles during the normal menstrual cycle.

Transvaginal ultrasound examinations were performed in seven normally cycling women to characterize growth of nondominant follicles in both ovaries. Mean follicle number showed little variation throughout the menstrual cycle with no differences between dominant and nondominant ovaries. Up to 11 follicles (greater than or equal to 2 mm) were observed in any one ovary. From observations of the first appearance of the dominant follicle (mean size 9.9 +/- 3.0 [SD] mm), selection was assumed to take place on cycle day 6.3 +/- 2.3. The diameter of nondominant follicles always remained less than 11 mm. Growth of small follicles was established in both dominant and nondominant ovaries up to the time of selection. The late follicular and luteal phases were characterized by a decrease in mean growth slopes of nondominant follicles in the dominant ovary only. These observations may provide in vivo evidence for the concept of intraovarian paracrine mechanisms and may have implications for the sonographic diagnosis of anovulation and monitoring of ovulation induction.

Adult↗

Bioactive and immunoreactive FSH in serum of normal and oligospermic men.

In men suffering from idiopathic oligospermia and azoospermia the hypothesis was tested that decreased spermatozoa production could be due in part to inadequate hormonal stimulation of spermatogenesis. In 53 healthy male subjects with normal spermatozoa production (n = 10), varying degrees of oligospermia (n = 40), and azoospermia (n = 3), serum immunoreactive LH, testosterone (T), and oestradiol (E2), and immunoreactive and bioactive FSH concentrations were determined. FSH bioactivity was estimated using the rat granulosa cell aromatase bioassay. Mean LH, T, and E2 levels were similar in the control group (spermatozoa concentration greater than 40 x 10(6)/ml) compared with men exhibiting mild (10-20 x 10(6)/ml), moderate (5-10 x 10(6)/ml), or severe oligospermia (1-5 x 10(6)/ml), and in the azoospermia group. An inverse correlation was found between immunoreactive FSH levels and spermatozoa concentration (P less than 0.05), with elevated levels (twofold increase) of FSH in the combined severe oligospermia and azoospermia (P less than 0.01) groups. Moreover, augmented (P less than 0.01) bioactive FSH levels were also observed in this group of patients. The mean bioactive to immunoreactive FSH ratio was also negatively correlated with sperm counts (P less than 0.005). In addition, T/LH ratios were inversely correlated with immunoreactive (P less than 0.05) and bioactive (P less than 0.05) FSH, which may indicate that altered Leydig cell function is involved in the augmented secretion of FSH. The data presented in this study indicate that immunoreactive FSH, as measured in oligospermia and azoospermia, does not exhibit decreased bioactivity.

Estradiol↗

In vitro and in vivo bioactivity of recombinant human follicle-stimulating hormone and partially deglycosylated variants secreted by transfected eukaryotic cell lines.

Recent studies have shown that Chinese hamster ovary (CHO) cells transfected with the FSH subunit genes secrete bioactive FSH. Here, we determined the in vitro and in vivo bioactivity of recombinant FSH produced by CHO mutant cells deficient in the glycosylation enzyme N-acetylglucosamine transferase-I (NAGT-), resulting in glycoproteins with asparagine-linked (GlcNAc)2(Mannose)5 oligosaccharides, or mutant cells defective in sialic acid transport into the Golgi (ST-). In the latter, glycoproteins are secreted lacking terminal sialic acids. Determination of in vitro bioactivity, using the granulosa cell aromatase bioassay, indicated that both FSH variants are as active as FSH secreted by the wild type (WT) cells and purified pituitary FSH. Also, these normal and variant forms of FSH are equipotent in a radioligand receptor assay using rat testis membranes. However, the variant FSH molecules are more basic than the WT FSH as determined using a chromatofocusing column (pI: wild type 3.6-5.0, NAGT- greater than 7.0, ST- approximately 6.0 and greater than 7.0). Injection of immature estrogen-treated rats with WT FSH induced high aromatase activity in their granulosa cells whereas treatment with either one of the FSH variants was ineffective; the lack of in vivo activity of the FSH variants was correlated with rapid clearance of these molecules in serum. Thus, recombinant human FSH produced by cells deficient in NAGT-I or defective in sialic acid transport retains normal receptor binding and in vitro bioactivity, but exhibits minimal in vivo activity and a shortened half-life when compared to WT FSH, indicating the important role of terminal sugars for FSH action in vivo.

Animals↗

Expression of biologically active human follitropin in Chinese hamster ovary cells.

To study the structure-function relationships of follitropin (FSH), we expressed the hormone in a heterologous cell system. A genomic clone bearing a 3.7-kilobase FSH beta insert containing the entire coding sequence was transfected alone or together with the alpha subunit gene into Chinese hamster ovary cells and stable lines expressing either FSH beta or FSH dimer were selected. Pulse-chase experiments revealed that, when transfected alone FSH beta was very slowly secreted similar to lutropin beta and thyrotropin beta but unlike choriogonadotropin beta which is efficiently secreted. However, cotransfection of the FSH beta and alpha subunit genes resulted in "rescue" of the beta subunit and rapid secretion of dimer. These data support the hypothesis that the glycoprotein hormones of pituitary origin have determinants for secretion that differ from those on the placental hormone, choriogonadotropin. Recombinant FSH stimulated steroidogenesis comparable to purified human FSH isolated from pituitaries in an in vitro rat granulosa cell assay and appears more homogeneous by chromatofocusing. Human FSH produced by this cell line provides a source of bioactive FSH for experimental and clinical use.

Amino Acid Sequence↗

Granulosa cell aromatase bioassay: changes of bioactive FSH levels in the female.

Some modified forms of follicle-stimulating hormone (FSH) may not cross react with the FSH antibody used in the radioimmunoassay (RIA), but still retain their biological activities. Therefore, estimates of immunoreactive FSH may not correspond with FSH bioactivity. The use of in vitro FSH bioassays may disclose possible roles of these heterogenous forms in vivo under various conditions. This review will focus on the history of FSH bioassays, and the widely used in vivo Steelman and Pohley bioassay, based on ovarian weight increase after injection into female rats, is discussed. Since 1971 different biological activities of FSH in various target tissues have been used for the in vitro estimates of FSH bioactivity. The aromatase bioassays involve the measurement of oestradiol in medium of FSH treated Sertoli cells or granulosa cells in culture. Estimates of FSH bioactivity, using the rat granulosa cell bioassay, in serum and urine or normally cycling women, during gonadotropin-releasing hormone-antagonist treatment in hypergonadotropic hypogonadal women and during different stages of female pubertal development will be discussed in more detail.

Animals↗

Inhibitory actions of interleukin-1 beta on steroidogenesis in primary cultures of neonatal rat testicular cells.

Interleukin-1 is an important cytokine produced by activated macrophages. Because macrophages have been localized in the testis and interleukin-1 bioactivity has been observed in the testis, the potential effect of interleukin-1 on gonadotropin-stimulated androgen production was investigated using primary cultures of neonatal rat testis cells. Cells were incubated for 3 days before change of medium and treatment with human chorionic gonadotropin and interleukin-1. After 3 additional days medium testosterone and progesterone levels were determined. Human chorionic gonadotropin treatment (0.30-30 micrograms/l) of cultured cells stimulated testosterone production dose-dependently with a maximum increase greater than 18-fold over control values. Although interleukin-1 treatment alone did not affect testosterone production, the concomitant addition of interleukin-1 beta (0.5-5 X 10(3) U/l) caused a dose-dependent decrease of human chorionic gonadotropin action, with 50% inhibition occurring at 1.4 X 10(3) U/l (0.6 X 10(-11) mol/l; N = 5 experiments). Interleukin-1 beta also inhibited forskolin- and dibutyryl cAMP-stimulated testosterone production. The suppression of human chorionic gonadotropin-induced testosterone production by testis cells was accompanied by increased (greater than 3-fold) progesterone levels. Moreover, the conversion of exogenously added androgen precursors (progesterone and 17 alpha-hydroxyprogesterone) to testosterone by human chorionic gonadotropin-stimulated cells was suppressed by interleukin-1 beta suggesting that the activity of the 17 alpha-hydroxylase enzyme may be decreased.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of transforming growth factor-beta on human chorionic gonadotropin induced testosterone production by cultured rat testicular cells.

The potential role of transforming growth factor-beta (TGF-beta) as an intragonadal regulator in the testis was investigated by studying the effect of TGF-beta on testosterone (T) production by neonatal rat testis cells in primary cultures. After 3 days of preincubation in serum-free medium, testis cells were treated with hormones for 3 additional days. Human chorionic gonadotropin (hCG) treatment (0.3-30 ng/ml) of testis cells elicited a dose-dependent increase of T levels with maximum values greater than 9-fold over baseline. Although TGF-beta alone did not affect T levels, a dose-dependent inhibition of hCG-stimulated T production was observed when cells were cotreated with TGF-beta. Maximal inhibition was greater than 85%, and the IC50 value was 5 ng/ml (2 x 10(-10) M; n = 5 experiments). This inhibitory effect was evident 48 h after the initiation of treatment and could be reversed 1 day after the cessation of TGF-beta exposure of cells. TGF-beta also reduced forskolin and (Bu)2cAMP-induced T production (greater than 85% decrease), indicating that TGF-beta can inhibit steroidogenesis distal to the formation of cAMP. The conversion of exogenously added androgen precursors (progesterone (P) and 17 alpha-hydroxyprogesterone) to T by hCG-stimulated cells was suppressed by the addition of TGF-beta. In contrast, endogenous P accumulation did not change in cultures treated with TGF-beta. Because TGF-beta-like activity has been found in the testis, the observed inhibitory effect of TGF-beta suggests a potential intratesticular regulatory role of this growth factor.

17-alpha-Hydroxyprogesterone↗

Fibroblast growth factor inhibits luteinizing hormone-stimulated androgen production by cultured rat testicular cells.

The effect of fibroblast growth factor (FGF) on LH-stimulated testosterone production was investigated using primary cultures of rat testicular cells. Testicular cells obtained from neonatal rats (8-9 days of age) were maintained in culture for 3 days and then challenged with LH with or without basic FGF. After 3 additional days of culture, the media were collected for steroid RIA. LH treatment of cultured cells stimulated testosterone production in a dose-dependent fashion whereas FGF alone did not affect androgen biosynthesis. In contrast, cotreatment with FGF caused a dose-dependent decrease of LH-stimulated testosterone production, with an IC50 value of 1.1 X 10(-9) M (as calculated from three separate experiments). The inhibitory effect of FGF was evident 24 h after the initiation of treatment and this effect was reversible 1 day after the cessation of FGF treatment. The inhibition of LH-induced testosterone production by FGF (maximal inhibition greater than 90%) was accompanied by a 12-fold increase in progesterone levels, suggesting that the inhibitory effect of FGF was distal to the step of progesterone formation. FGF also inhibited forskolin (10(-5) M)- and (Bu)2cAMP (5 X 10(-4) M)-stimulated testosterone production. Furthermore, FGF inhibited the conversion of exogenously added androgen precursors (progesterone and 17 alpha-hydroxyprogesterone) to testosterone in LH-stimulated cultures indicating that FGF might inhibit 17 alpha-hydroxylase activity. The concept of a direct testicular action of FGF was further supported by the demonstration of high affinity (Kd: 3.9 X 10(-10) M; n = 3 experiments) and low capacity (46,900 sites per cell) FGF receptors in cultured testis cells. The binding of [125I]FGF was inhibited by basic and acidic FGF but not by several other growth factors. In conclusion, we suggest that FGF binds to testicular cells and inhibits LH-stimulated testosterone production by inhibiting, at least partially, 17 alpha-hydroxylase enzyme activities. Because FGF has been purified from testis extracts, this growth factor may have intratesticular paracrine or autocrine functions.

17-alpha-Hydroxyprogesterone↗

Pharmacokinetics of intravenous luteinizing hormone-releasing hormone administration in men: effects of various dosages.

Exogenous luteinizing hormone-releasing hormone (LH-RH) was intravenously administered as a single-bolus injection to 26 healthy normal men. LH-RH doses were selected at 1, 2.5, 5, and 20 micrograms for exploration of the optimum LH-RH dose to obtain adequate pituitary stimulation. Blood samples (for LH-RH and LH determinations) were collected at frequent intervals from 10 minutes before to 60 or 90 minutes after injection. LH-RH peak levels varied, in a dose-dependent way, between 119 +/- 16 and 517 +/- 70 ng/l. Peak values were all reached between 1 and 3 minutes after injection, and elimination occurred rapidly, with half-lives between 2.6 +/- 0.4 and 5.2 +/- 1.0 minutes. The area under the curves increased significantly (P less than 0.01) if the doses of LH-RH had been augmented from 1 to 20 micrograms. Maximum LH values were reached more rapidly in the low-dose (1 and 2.5 micrograms) experiments (between 13.5 and 16.3 minutes), with an obvious decline afterwards. The area under the LH curves increased (P less than 0.01) if the doses of LH-RH had been elevated from 1 to 2.5 micrograms, but no further increase of LH release occurred (P greater than or equal to 0.21) if LH-RH doses were further elevated from 2.5 to 20 micrograms. The current study demonstrates that a 2.5-micrograms intravenous LH-RH dose is best suited for an adequate pituitary stimulation in normal men.

Adult↗

Effect of aromatase inhibition by delta 1-testolactone on basal and luteinizing hormone-releasing hormone-stimulated pituitary and gonadal hormonal function in oligospermic men.

Aromatase inhibition by delta 1-testolactone (TL), 500 mg twice daily for 4 weeks, in nine patients with idiopathic oligospermia lowered circulating estradiol (E2) levels by about 30%, enhanced the secretion of follicle-stimulating hormone (+ 30%), 17-hydroxyprogesterone (17-OHP) (+ 40%), and testosterone (T) (+ 30%), but did not affect serum luteinizing hormone levels. Despite E2 lowering, there was an accumulation of 17-OHP over T, suggesting 17, 20-lyase inhibition. Unexpectedly, administration of TL almost completely deleted the T response to continuous luteinizing hormone-releasing hormone infusion present before TL therapy, despite similar gonadotropin release. Because the 17-OHP response to the luteinizing hormone-releasing hormone infusion was even higher during therapy, the 17,20-lyase lesion seemed aggravated despite substantial reduction of E2 levels. Although the present data suggest that estrogens play a less dominant role in the origin of the late steroidogenetic lesion than previously assumed, the suggestion also arises that TL per se, in addition to its antiestrogenic action, exerts an inhibiting effect on the 17,20-lyase locus, which may obscure the beneficial effect of reducing E2.

Adult↗

Serum luteinizing hormone-releasing hormone (LH-RH) and gonadotropic hormones in men after a bolus dose of LH-RH: comparison of different doses and routes of administration.

Serum levels of luteinizing hormone-releasing hormone (LH-RH), LH, and follicle-stimulating hormone (FSH) were measured for 60 minutes after 5- and 20-micrograms bolus doses of LH-RH given either intravenously or subcutaneously to 20 healthy men, for the study of LH-RH pharmacokinetics and the corresponding pituitary gonadotropin release. Intravenous (5- and 20-micrograms) LH-RH administration revealed much sharper LH-RH pulses, with significantly higher levels between 1 and 5 minutes (P less than 0.001) but lower levels between 30 and 60 minutes (P less than 0.05), compared with the subcutaneous route. No statistically significant differences were observed in the magnitude and time occurrence of maximum LH release or in the area under the LH response curves between intravenous and subcutaneous LH-RH administration, either in the 5-micrograms or in the 20-micrograms group. FSH responses were small and insignificant in all the performed tests. The intravenous route of administration seems preferential in therapeutic regimens that use pulsatile exogenous LH-RH, because the conditions of intermittent pituitary stimulation are more adequately fulfilled and the risk of dose accumulation is reduced. Furthermore, LH-RH doses of 5 micrograms are capable of producing adequate pituitary LH release, whereas increases in the pulse dose up to 20 micrograms seem to have no additional effects.

Adult↗

Pituitary gonadotropin responses to different modes and doses of intravenous luteinizing hormone-releasing hormone administration in normal men.

In 22 potentially fertile men, pituitary gonadotropin secretion was investigated by intravenous luteinizing hormone-releasing hormone (LH-RH) administration. LH-RH was administered continuously (1 microgram/minute) and in a pulsatile fashion (20 micrograms at 20-minute intervals, 20 micrograms at 60-minute intervals, and 60 micrograms at 60-minute intervals), for 3 hours, under standardized conditions. Blood was collected continuously by means of an integrated sampling technique. The mean serum luteinizing hormone (LH) concentration after any type of pulsatile administration rose significantly more than after continuous LH-RH administration. The mean increase in LH after pulsatile LH-RH administration with a 60-micrograms dose and 60-minute intervals was significantly greater than after pulsatile administration with a 20-micrograms dose and 20- or 60-minute intervals. No differences were observed in follicle-stimulating hormone responses after any type of LH-RH administration. These data confirm the existence of a self-priming effect for LH in the men; and maximum pituitary stimulation, within the dosage range tested, is reached after pulsatile LH-RH stimulation with an interval of 60 minutes.

Adult↗

Differential effect of luteinizing hormone-releasing hormone infusion on testicular steroids in normal men and patients with idiopathic oligospermia.

Basal serum gonadotropin levels in 11 oligospermic men were significantly higher than in 9 euspermic control subjects, although most were still in the normal range. Basal serum testosterone (T), 17-hydroxyprogesterone (17-OHP), and estradiol levels and their ratios did not differ significantly. Continuous luteinizing hormone-releasing hormone (LH-RH) infusion (1 microgram/minute for 180 minutes) during integrated blood sampling evoked similar gonadotropin responses in both groups but had a differential effect on T: in the control subjects T increased (P less than 0.01) within 15 minutes to 1.5 times baseline, whereas in the oligospermic men T decreased (P less than 0.01). From 60 minutes on, however, T also significantly rose in the oligospermic men, but the maximum increment was about half lower (P less than 0.01) than in the euspermic men, despite virtually similar rises in 17-OHP. Only in the oligospermic men did the 17-OHP/T ratio increase (P less than 0.02) during LH-RH, which is compatible with the occurrence of a 17,20-lyase block. Serum estradiol did not increase in either group. In conclusion, continuous LH-RH infusion uncovers an intrinsic difference in acute Leydig cell stimulation between euspermic and oligospermic men.

Adult↗

The effect of pulsatile and continuous intravenous luteinizing hormone-releasing hormone administration on pituitary luteinizing hormone and follicle-stimulating hormone release in normal men.

In 14 healthy, potentially fertile men, pituitary gonadotropin responses were studied under standardized conditions. Luteinizing hormone-releasing hormone (LH-RH) was given as a continuous infusion of 1 microgram/minute for 4 hours or in a pulsatile fashion with 20 micrograms as an intravenous bolus at intervals of 20 minutes for 4 hours. Blood was collected continuously by means of an integrated sampling technique. The mean serum luteinizing hormone (LH) concentration showed an oscillating pattern around a plateau level reached within 45 minutes during continuous LH-RH administration. During pulsatile infusion, an identical pattern for the first 45 minutes was observed with, thereafter, a continuous increase from 105 minutes until the end of the infusion. The mean increase in the serum LH level during pulsatile administration was significantly higher (P = 0.00001) than the mean increase seen during continuous infusion. The follicle-stimulating hormone concentration revealed a gradual progressive increase after both methods of stimulation, without a significant difference in the mean increase between the two types of administration. This study demonstrates the existence of a self-priming effect of LH after pulsatile LH-RH administration in the man like that in the woman.

Adult↗