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G Majdic

Publications and source records attributed to G Majdic.

18 recordsLinked to original sources

Combinations of genetic changes in the human cAMP-responsive element modulator gene: a clue towards understanding some forms of male infertility?

The cAMP-responsive element modulator (CREM) gene plays a pivotal role in the mouse spermatogenesis, but its role in the human infertility has not been fully established. We performed a mutation screening in 13 Slovenian men with round spermatid arrest and in six controls. Eleven genetic changes have been identified in the human CREM gene, three novel single-nucleotide polymorphisms [within the promoters P1, P3 and intervening sequence 1 (IVS1)], one insertion (IVS2) and one non-sense mutation (exon gamma). Some infertile patients seem to accumulate potentially harmful genetic changes. We identified a patient with no CREM immunoreactive protein that was homozygous for the nucleotide changes in all promoters, IVS 1, 2, 6, and was heterozygous for the mutation in exon gamma. Interestingly, insertion in IVS2 (IVS2-58_55insT) results in a four-fold decrease in binding of nuclear proteins. Computer predictions suggested the presence of a potential novel CREM promoter, however, random amplification of cDNA ends from the human testis cDNA library was not successful in confirming a novel transcription start site of the CREM gene. Screening of a larger number of patients and controls is required to elucidate whether the observed combinations of genetic changes in the CREM gene can explain some forms of male infertility.

Adult↗

Establishment of a pregnancy following intravaginal insemination with epididymal semen from a dog castrated due to benign prostatic hyperplasia.

Benign prostatic hyperplasia was diagnosed in an American Staffordshire Terrier of high breeding value presenting concurrent haematuria. Castration as a treatment was synchronized with the oestrus cycle of a bitch selected for insemination. After castration the cauda epididymis was flushed with Gent semen extender and collected spermatozoa were filtered and analysed by Hamilton Thorn computer assisted sperm analysis. A total of 7 ml semen containing 742 x 10(6) spermatozoa with 76.5% mean motility was used for insemination. Intravaginal insemination of the bitch was performed with an insemination catheter for dogs (Kruuse, Marslev, Denmark) on the day when plasma progesterone levels reached 9.9 ng/ml. Normal pregnancy without complications resulted in eight live-born puppies 63 days after insemination. This is the first report of a normal pregnancy and birth of puppies from a bitch inseminated with epididymal semen obtained from a dog affected by benign prostate hyperplasia.

Animals↗

Freezability of equine semen after glass beads column separation.

REASONS FOR PERFORMING STUDY: The success rate of artificial insemination following the freezing of stallion semen is limited; therefore, improving the stallion semen quality after the freezing and thawing process is a necessary objective. OBJECTIVES: To investigate the influence of glass bead column separation on the freezability of stallion semen. HYPOTHESIS: Glass beads in a column separator remove damaged and dead spermatozoa in the ejaculate during centrifugation. METHODS: In total, 50 ejaculates from 6 Lipizzaner stallions were studied. Each ejaculate was divided into 2 parts, one half processed following standard procedure and the second half used for the column separation procedure. After freezing, semen quality was evaluated using standard tests for motility, morphology and viability of semen. RESULTS: Motility and progressive motility of the column-separated (CS) semen were significantly higher (P < 0.001) before freezing and immediately, 24 and 48 h after thawing. A significant increase (P < 0.001) in the percentage of hypoosmotic positive spermatozoa was observed in CS samples. The percentage of total morphological changes in the separated samples before and after freezing was significantly lower (P < 0.001) compared with samples prepared using the standard procedure. A substantial decrease (P < 0.001) was found in the percentage of spermatozoa with damaged acrosomes. However, the percentage of spermatozoa with coiled tails was increased in the separated samples (P < 0.001). CONCLUSIONS: Column separation before freezing has a positive effect on the quality of thawed equine semen. POTENTIAL RELEVANCE: The quality of CS frozen/thawed samples indicates their potential use for increasing insemination success in mares.

Animals↗

Postnatal hypothyroidism does not affect prepubertal testis development in boars.

Young boars were treated with propiothiouracil to induce hypothyroidism to examine its effects on postnatal testicular development. Treatments with 0.1% 4-propyl-2-thiouracil (PTU) in drinking water started after weaning, at 3 weeks of age and all boars were severely hypothyroid at 6 weeks of age as determined by measuring T3 and T4 in blood plasma. Boars were castrated at different ages up to 20 weeks and their testes used for histological and immunohistochemical analyses. Although small but significant reduction in testis weight was observed from 8 to 12 weeks of age, this was not accompanied by significant difference in testicular volume. By 20 weeks of age, at the beginning of puberty, the differences in testis weights between control and treated groups of boars disappeared suggesting there is no lasting effect of hypothyroidism on postnatal development of boar testis. Immunohistochemical staining was used to determine the presence of molecular markers in both Sertoli and Leydig cells. Again, there were no differences between testes from control and treated boars in the pattern or intensity of immunostaining using antibodies against 3beta-hydroxysteroid dehydrogenase, antimullerian hormone or proliferating cell nuclear antigen (PCNA). Immunostaining with antibodies against PCNA showed interesting results as it was observed that Sertoli cells still express this marker of proliferating cells at 14 weeks of age, later than previously suggested cessation of Sertoli cell proliferation. This study suggests that hypothyroidism in boars does not have similar effects on postnatal testis development as reported in some other species.

Animals↗

Developmental roles of the steroidogenic acute regulatory protein (StAR) as revealed by StAR knockout mice.

Steroidogenic acute regulatory protein (StAR) is essential for adrenal and gonadal steroidogenesis, stimulating the translocation of cholesterol to the inner mitochondrial membrane where steroidogenesis commences. StAR mutations in humans cause congenital lipoid adrenal hyperplasia (lipoid CAH), an autosomal recessive condition with severe deficiencies of all classes of steroid hormones. We previously described StAR knockout mice that mimic many features of lipoid CAH patients. By keeping StAR knockout mice alive with corticosteroid replacement, we now examine the temporal effects of StAR deficiency on the structure and function of steroidogenic tissues. The adrenal glands, affected most severely at birth, exhibited progressive increases in lipid deposits with aging. The testes of newborn StAR knockout mice contained scattered lipid deposits in the interstitial region, presumably in remnants of fetal Leydig cells. By 8 weeks of age, the interstitial lipid deposits worsened considerably and were associated with Leydig cell hyperplasia. Despite these changes, germ cells in the seminiferous tubules appeared intact histologically, suggesting that the StAR knockout mice retained some capacity for androgen biosynthesis. Sperm maturation was delayed, and the germ cells exhibited histological features of apoptosis, consistent with suboptimal androgen production. Immediately after birth, the ovaries of StAR knockout mice appeared normal. After the time of normal puberty, however, prominent lipid deposits accumulated in the interstitial region, accompanied by marked luteinization of stromal cells and incomplete follicular maturation that ultimately culminated in premature ovarian failure. These studies provide the first systematic evaluation of the developmental consequences of StAR deficiency in the various steroidogenic organs.

Adrenal Cortex Hormones↗

Lanosterol 14alpha-demethylase (CYP51), NADPH-cytochrome P450 reductase and squalene synthase in spermatogenesis: late spermatids of the rat express proteins needed to synthesize follicular fluid meiosis activating sterol.

Lanosterol 14alpha-demethylase (CYP51) is a cytochrome P450 enzyme involved primarily in cholesterol biosynthesis. CYP51 in the presence of NADPH-cytochrome P450 reductase converts lanosterol to follicular fluid meiosis activating sterol (FF-MAS), an intermediate of cholesterol biosynthesis which accumulates in gonads and has an additional function as oocyte meiosis-activating substance. This work shows for the first time that cholesterogenic enzymes are highly expressed only in distinct stages of spermatogenesis. CYP51, NADPH-P450 reductase (the electron transferring enzyme needed for CYP51 activity) and squalene synthase (an enzyme preceding CYP51 in the pathway) proteins have been studied. CYP51 was detected in step 3-19 spermatids, with large amounts in the cytoplasm/residual bodies of step 19 spermatids, where P450 reductase was also observed. Squalene synthase was immunodetected in step 2-15 spermatids of the rat, indicating that squalene synthase and CYP51 proteins are not equally expressed in same stages of spermatogenesis. Discordant expression of cholesterogenic genes may be a more general mechanism leading to transient accumulation of pathway intermediates in spermatogenesis. This study provides the first evidence that step 19 spermatids and residual bodies of the rat testis have the capacity to produce MAS sterols in situ.

Animals↗

Higher thyroid hormone levels in neonatal life result in reduced testis volume in postpubertal bulls.

Thyroid hormones appear to determine adult testis size in rodents by regulating the period of Sertoli cell proliferation in the neonatal period. In the present study, the correlation between neonatal thyroid hormone levels (T3 and thyroxin, T4) and postpubertal testis size in Simental bulls was examined. T3 and T4 levels were measured in blood plasma from 35 calves immediately after their arrival at the AI centre at age 3-6 months. Testis size (height and width) was measured at 12 months of age in the same live animals. A significant negative correlation (r = -0.55; p < or = 0.001) was found between T4 and calculated testicular volume using either the Pearson correlation test or linear regression analysis, while the levels of T3 and testis volume showed a negative correlation, although this did not reach statistical significance (r = -0.20, p < or = 0.05). The results of this study suggest, therefore, that neonatal thyroid hormone levels might have the same effect on testicular size in cattle as they do in rodents.

Animals↗

Immunoexpression of the steroidogenic enzymes 3-beta hydroxysteroid dehydrogenase and 17 alpha-hydroxylase, C17,20 lyase and the receptor for luteinizing hormone (LH) in the fetal rat testis suggests that the onset of Leydig cell steroid production is independent of LH action.

The production of testosterone in the adult testis is mainly regulated by LH. Testosterone is essential for normal development of the male fetus. The regulation of testosterone production in the fetal testis is less clear than in the adult testis, and there are indications that at least the onset of androgen production in the fetal testis takes place in an LH-independent way. The aim of the present study was to compare the onset of synthesis and pattern of expression of LH receptors and two important steroidogenic enzymes, 3beta-hydroxysteroid dehydrogenase (3beta-HSD) and 17alpha-hydroxylase/17,20-lyase (P450c17), in fetal rat gonads. Whole fetuses (13.5 and 14.0 postcoitum (p.c.), testes, and ovaries dissected from fetuses on Days 14.5 p.c. to 20.5 p.c. and testes obtained on Days 3, 5, and 7 postpartum were fixed in Bouin's solution and processed for immunocytochemistry. In all samples of fetal testis, 3beta-HSD was detected on Day 14.5 p.c., and immunoexpression of P450c17 appeared one day later on Day 15.5 p.c. Thereafter, immunoexpression of both enzymes remained intense throughout gestation and postnatally. In contrast, immunoexpression of LH receptors was detectable only from Day 16.5, when a few weakly positive cells were present, but it became more intense one and two days later. Similar to the immunostaining for 3beta-HSD and P450c17, immunostaining for LH receptor remained strong throughout gestation and during the first 7 days of postnatal life. No immunoexpression of any of the three proteins studied was detected in the fetal ovary at any age. These data show very early immunoexpression of 3beta-HSD, which was detected one day before the reported start of steroid production by the fetal Leydig cells. In contrast, immunoexpression of LH receptors was evident only after immunoexpression of both the steroidogenic enzymes studied had became apparent and after the reported start of steroidogenesis, which is consistent with the theory that onset of steroidogenesis in the fetal rat testis is an LH-independent process.

3-Hydroxysteroid Dehydrogenases↗

Maternal oestrogen/xenoestrogen exposure alters expression of steroidogenic factor-1 (SF-1/Ad4BP) in the fetal rat testis.

Expression of steroidogenic factor 1 (SF-1/Ad4BP) is essential for gonadal differentiation. We have assessed whether expression of SF-1 in the gonads of rat fetuses was altered following maternal treatment with diethylstilbestrol (DES, a synthetic oestrogen) or 4-octylphenol (OP, a xenoestrogen). Pregnant rats were injected subcutaneously with DES (500 microg/kg), OP (600 mg/kg) or vehicle (oil, control) on days 11.5 and 15.5 post coitum (p.c.) and fetal rat testes were recovered on day 17.5 p.c. The level of expression of SF-1 was determined by RNase protection assay and immunocytochemistry. In both DES- and OP-exposed fetuses immunoexpression of SF-1 was reduced in Sertoli and interstitial cells when compared with controls. In parallel, a significant decrease occurred in the total amount of SF-1 mRNA (P < 0.05) in fetal testes but not in fetal ovaries. These results suggest that: (a) Sertoli cell-derived oestradiol may be important in the physiological regulation of SF-1 in the fetal testis; and (b) one mechanism by which inappropriate exposure to oestrogens might alter the genetic cascade that ensures normal development of the testis is via altered expression of SF-1.

Animals↗

Fetal and perinatal influence of xenoestrogens on testis gene expression.

The incidence of reproductive abnormalities in the male has been reported to have increased during the past 50 years. It has been suggested that these changes may be attributable to the presence of chemicals with oestrogenic activity in our environment. The aim of the experiments described in this chapter was to investigate the effects of acute exposure to high levels of xenoestrogens either indirectly during fetal life, or directly during neonatal life, on gene expression in the testis and pituitary. Fetal treatment involved administration of diethylstilbestrol (DES), 4-octylphenol (OP) or vehicle (oil, control) to pregnant rats on days 11.5 and 15.5 post coitum; fetuses were recovered on day 17.5. There was no difference between fetuses from control and treated mothers in either the overall histology of the testes or numbers of Leydig cells as determined by immunohistochemistry with an antibody directed against 3 beta-HSD. However there was a consistent and striking reduction in the amount of P450 17-a hydroxylase C17, 20 lyase (P450c17) and steroidogenic factor 1 (SF-1) detected by immunocytochemistry in testes from treatment groups given the higher doses of OP and DES. Oestrogen receptors (ER alpha) were present in the fetal leydig cells of all animals. Neonatal treatment involved direct injection of oil (control), DES, OP or Bisphenol A (Bis A) on days 2, 4, 6, 8, 10 and 12; pituitaries and testes were recovered on day 18. Testis weights and seminiferous tubule diameters were significantly reduced in animals treated with DES. In these same animals immunocytochemical localisation revealed that the amounts of FSH beta subunit and inhibin alpha subunit were reduced in their pituitaries and testes respectively. OP did not appear to have an acute, measurable effect on testis gene expression but a reduction in testis weight was noted in adult animals given the same treatment regime. The effects observed are consistent with negative feedback by oestrogens on pituitary production of FSH resulting in retarded maturation of seminiferous tubules and reduced Sertoli cell numbers. These studies have demonstrated that administration of high levels of oestrogens can affect gene expression in the testis early in life. However, the relevance of these findings to observations in man await a) a greater understanding of the physiological role(s) of oestrogens in normal males, b) an evaluation of the sources, routes of exposure, concentrations in vivo and bioavailability of xenoestrogens.

Animals↗

CYP17 gene analysis in hyperandrogenised women with and without exaggerated 17-hydroxyprogesterone response to ovarian stimulation.

Nine patients with polycystic ovary syndrome (PCOS) and exaggerated serum level of 17-hydroxyprogesterone (17-OHP) response to gonadotropin (GnRH) agonist stimulation, and seven patients with PCOS, but normal 17-OHP response have been analysed for possible linkage of PCOS with genetic defects on the 17 alpha-hydroxylase/17,20-lyase gene (CYP17). A portion of the regulatory and the entire coding domain for this enzyme have been analysed by PCR-SSCP analysis. Samples have been also screened for the previously reported -34 bp polymorphism, which creates a new SP1-type promoter site, but was excluded as the primary genetic defect. We have varied gel concentrations, reduced running temperatures, added glycerol to polyacrylamide gels and performed electrophoresis on longer gels in order to improve the resolving power of SSCP. Screening of the CYP17 gene revealed no mutations associated with the disease in the examined group of patients. Also, the -34 bp polymorphism proved to be equally distributed among patient and control samples, which in our case were non-related. The results indicate that, when germline mutations in question, CYP17 may be excluded as a candidate gene for these subtypes of PCOS.

17-alpha-Hydroxyprogesterone↗

Testicular expression of inhibin and activin subunits and follistatin in the rat and human fetus and neonate and during postnatal development in the rat.

Inhibins, activins, and follistatins are all believed to play roles in the regulation of FSH secretion by the pituitary and in the paracrine regulation of testis function. Previous studies have resulted in conflicting data on the pattern of expression of the inhibin/activin subunits, and little information on expression of follistatin during fetal/neonatal life. We have made use of new, highly specific monoclonal antibodies and fixed tissue sections from fetal, neonatal, and adult rats, and limited amounts of fetal and neonatal human testis, to undertake a detailed immunocytochemical study of the pattern of expression of these regulatory proteins. In the rat, positive immunostaining for the alpha-subunit of inhibin (alpha) was first detectable on day 14.5 post coitum (p.c.), the first day on which the testis could be morphologically distinguished from the ovary. During fetal life, the alpha-immunostaining was most prominent in the fetal Leydig cells. In Sertoli cells, alpha-immunostaining was slightly stronger on days 14.5 and 15.5 p.c. compared with 16.5-20.5. After birth, alpha-immunostaining remained intense in fetal Leydig cells but declined following their replacement with their adult-type counterparts; in contrast, alpha-subunit increased in Sertoli cells immediately after birth. Immunostaining with antibodies specific to betaB-subunit showed a similar pattern to that of the alpha-subunit, except that positive immunostaining was first detectable on day 16.5 p.c., 2 days later than immunostaining for the alpha-subunit. The pattern of betaB-immunostaining in postnatal samples paralleled that of the alpha-subunit. Immunostaining using antibodies against the betaA-subunit did not produce any significant reaction product in any sample. Follistatin was undetectable in the fetal rat testis but appeared in the Leydig cells immediately after birth and its expression remained intense throughout postnatal development and in adult testis. No evidence was obtained for expression of either the inhibin/activin subunits or follistatin in the germ cells, peritubular myoid cells, or other interstitial cells in any of the sections examined. In the human fetal testis, both alpha- and betaB-subunits were immunodetectable at 16, 18, and 24 weeks gestation in Sertoli and Leydig cells, with stronger immunostaining in Sertoli cells at 24 weeks. Postnatally at 4 months, immunoexpression of the betaB-subunit was no longer detectable, whereas the alpha-immunostaining became weaker but was still present in both Sertoli and Leydig cells. No positive immunostaining for betaA-subunit or follistatin was detectable at any time point studied. In conclusion, we have shown that, in the rat testis, the majority of inhibin alpha-subunit and inhibin/activin betaB-subunit is immunolocalized to the fetal-type Leydig cells during fetal/neonatal life but, following birth, immunoexpression in the Sertoli cells of both subunits increases markedly while follistatin is immunodetectable only postnatally.

Activins↗

Immunolocalisation of oestrogen receptor-alpha within the testis and excurrent ducts of the rat and marmoset monkey from perinatal life to adulthood.

The sites of action and the physiological role of oestrogens in the male reproductive tract are poorly understood. We have undertaken a systematic study of the immunoexpression of oestrogen receptor-alpha (ER alpha) in the male rat from late fetal life through to adulthood and compared the findings with results obtained in the marmoset monkey (Callithrix jacchus) from neonatal to adult life. The testes, rete testis, efferent ducts and epididymis were examined from normal male rats (aged 4, 8, 10, 15, 20, 25, 38, 48 and 90 days) and from male rat fetuses on days 17.5 and 18.5 of gestation; comparable tissues were examined from neonatal, infantile, peripubertal and adult marmosets aged 8, 18-24, 54-62 and 92-112 weeks respectively. Immunolocalisation of ER alpha used antigen retrieval and a monoclonal antibody directed to the N-terminus, which had proved superior to six other antisera tested. ER alpha was immunoexpressed in interstitial cells, including the fetal/ neonatal generation of Leydig cells, in both the rat and marmoset. In the rat, the adult generation of Leydig cells were also immunopositive for ER alpha whereas the comparable cells in the marmoset were only weakly immunopositive. ER alpha was not expressed in Sertoli cells, peritubular myoid cells, blood vessels or germ cells at any time in either species. In late fetal life in the rat, ER alpha was immunoexpressed in cells surrounding the mesonephric tubules, whereas postnatally it was expressed in the epithelium of the rete testis and efferent ducts at all ages from 4 to 90 days; this immunoexpression was most pronounced in the efferent ducts. In the marmoset, the efferent ducts, but not the rete testis, also showed intense immunoexpression of ER alpha. Apart from sporadic immunostaining for ER alpha in the epididymal duct of the rat in the neonatal period, the caput, corpus and cauda epididymis were negative for immunoexpression of ER alpha at all ages in both species. These findings suggest that the main actions of oestrogens in the male reproductive tract, mediated by ER alpha, are related to the development and function of the efferent ducts and the Leydig cells. In consideration of data from this and previous studies of oestrogen binding, we predict possible sites of expression of other oestrogen receptors (e.g. ER beta) in Sertoli cells and the epididymis. Interactive effects, related to the relative levels of androgens and oestrogens, could be physiologically important in the excurrent ducts of the adult testis.

Age Factors↗

Expression of cytochrome P450 17alpha-hydroxylase/C17-20 lyase in the fetal rat testis is reduced by maternal exposure to exogenous estrogens.

Testosterone is required for normal development of the male reproductive tract. Synthesis of testosterone occurs in the Leydig cells and is dependent upon the expression of several enzymes, including cytochrome P450 17alpha-hydroxylase/C17-20-lyase (P450c17), which is highly regulated within the testis. The aim of the present study was to investigate whether maternal exposure to estrogenic chemicals was able to affect Leydig cell function in the developing male fetus at the time of masculinization. Pregnant rats were injected sc with diethylstilbestrol (DES; 100 or 500 micrograms/kg), 4-octylphenol (OP; 100 or 600 mg/kg), or vehicle (oil, control) on days 11.5 and 15.5 postcoitum. Doses were chosen to reflect the reported estrogenic potency of the chemicals in vitro. On day 17.5, fetal testes were fixed before performing in situ hybridization and immunocytochemistry, used for extraction of RNA, or homogenized in phosphate buffer for determination of 17alpha-hydroxylase enzyme activity. There was no difference between fetuses from control and treated mothers in either the overall histology of the testes or the apparent number of Leydig cells, as determined by immunocytochemistry with an antibody directed against 3beta-hydroxysteroid dehydrogenase. However, there was a consistent and striking reduction in the amount of P450c17 detected by immunocytochemistry in testes from the groups given the higher dose of DES or OP. These observations were supported by measurement of 17alpha-hydroxylase activity, which was significantly reduced compared with that in controls (6.25 +/- 0.65 pmol/testis x min) in fetuses from animals treated with 100 micrograms/kg DES (4.27 +/- 0.39; P < 0.05), 500 micrograms/kg DES (1.4 +/- 0.47; P < 0.001), or 600 micrograms/kg OP (4.25 +/- 0.33; P < 0.05). RT-PCR and in situ hybridization revealed that these changes were mirrored by reductions in P450c17 messenger RNA in testes from fetuses from treated mothers compared with control levels. In conclusion, maternal treatment with either a potent sythetic estrogen (DES) or a putative environmental estrogen (OP) results in reduced expression of the messenger RNA and protein for P450c17 in fetal Leydig cells. These results, therefore, provide a mechanism by which inappropriate exposure of the fetus to estrogenic chemicals might have an adverse effect on fetal steroid synthesis and masculinization.

Aldehyde-Lyases↗

Differential patterns of expression of DAX-1 and steroidogenic factor-1 (SF-1) in the fetal rat testis.

Gonadal differentiation is dependent upon a cascade of molecular and morphological events. Steroidogenic factor 1 (SF-1) and DAX-1 have been implicated in this process. A SF-1 binding site has been reported to be present on the DAX-1 gene. We therefore used immunocytochemistry to determine whether these two transcription factors are co-expressed in the fetal testis. DAX-1 was immunolocalised to the cytoplasm of interstitial cells from fetal testis of rat and human from day 15.5 and 16 weeks of gestation respectively. SF-1 was detected in nuclei of fetal Sertoli and interstitial cells. In the fetal rat expression of SF-1 in interstitial cells was not uniform; cells with abundant SF-1 all contained 3-beta HSD and were classified as Leydig cells. DAX-1 expression was not exclusive to cells which contained SF-1 and SF-1/DAX-1 co-expressing cells were not exclusively fetal Leydig cells. We conclude that in the fetal testis expression of the DAX-1 protein is not dependent upon the presence of SF-1 although SF-1 is present at an earlier stage of gestation in the gonad. DAX-1 may therefore play a separate or complementary role to that of SF-1 in the modulation of testicular gene expression and differentiation.

3-Hydroxysteroid Dehydrogenases↗

Immunolocalisation of androgen receptor to interstitial cells in fetal rat testes and to mesenchymal and epithelial cells of associated ducts.

Androgens are required for the development of male internal and external genitalia. Androgen action is mediated by an intracellular receptor which acts as a transcription factor following activation by ligand binding. The aim of the present study was to define the time of appearance of androgen receptor (AR) in the male fetal rat gonad using immunohistochemistry. Intact fetuses (days 13.5-16.5) or testicular tissue (days 16.5-20.5 and days 3-7 postnatal) were fixed in Bouins' solution and processed into paraffin wax. On day 16.5 nuclear AR were present in mesenchymal cells surrounding the Wolffian duct but those around the Mullerian duct were receptor negative. During the following day (17-18) the abundance of nuclear staining increased, becoming detectable in the epithelial cells of the Wolffian ducts. Within the testis some nuclear staining was apparent at day 17 but was confined to interstitial cells surrounding the seminiferous cords. As development of the testis proceeded the abundance of nuclear AR in peritubular and elongated mesenchymal cells increased. AR were not detected in fetal Leydig cells expressing 3 beta-hydroxysteroid dehydrogenase nor in the ovaries or associated ducts of female fetuses at the same ages. In conclusion, in the rat we have found AR expression detectable by immunohistochemistry in mesonephric mesenchyme to be confined to that underlying the Wolffian ducts and to be absent from the area around the degenerating Mullerian duct. On and after day 17 of gestation AR is present in Wolffian duct epithelial cell nuclei and within the testis it is confined to peritubular and interstitial cells which may have migrated from the mesonephros.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Combined histochemical and immunohistochemical determination of three muscle fibre types in a single section of porcine skeletal muscle.

The method of successive staining for SDH and immunohistochemical detection of fast contracting muscle fibres in pig muscle tissue has been used for demonstration of three muscle fibre types (slow oxidative, SO; fast metabolic intermediate, FI; fast glycolytic, FG). It gives basic information on contractile and metabolic muscle fibre properties in a single frozen section and can be well applied to the pale, soft and exudative (PSE) changes affecting pig muscles.

Adenosine Triphosphatases↗

Calcitonin- and somatostatin-positive cells in thyroid gland of pigs at different ages.

Immunohistochemical studies were carried out on calcitonin-, somatostatin- and serotonin-reactive cells in newborn pigs and pigs at 3 weeks and 7 months old. The aim of these studies was to examine if the expression of various bioactive substances by parafollicular cells in the pig thyroid varied during development. The volume density of the follicular epithelium was nearly the same in newborn and 3-week-old piglets and significantly lower in 7-month-old animals. The volume density of calcitonin-positive cells, expressed as a percentage of the follicular epithelium density, was similar in young animals, being 12.10% and 13.03% in newborn and 3-week-old piglets, respectively. A small but significant increase to 14.40% was seen in 7-month-old pigs. Somatostatin-positive cells formed a much smaller population at all time points, but these also showed a significant increase with age (0.13%, 0.17% and 0.52% of follicular epithelium density in newborn, 3-week- and 7-month-old pigs, respectively). However the changes in the volume density of somatostatin-positive cells correlated inversely with thyroid activity, the density being highest when the activation index was lowest, suggesting that thyroid activity may be regulated by an increase in the synthesis of this inhibitory peptide. Serotonin-positive cells were extremely rare at all time points and their volume density was not calculated.

Age Factors↗