997 resultados para gonadal development


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Stoppa-Vaucher S, Ayabe T, Paquette J, Patey N, Francoeur D, Vuissoz J-M, Deladoëy J, Samuels ME, Ogata T, Deal CL. 46, XY gonadal dysgenesis: new SRY point mutation in two siblings with paternal germ line mosaicism. Familial recurrence risks are poorly understood in cases of de novo mutations. In the event of parental germ line mosaicism, recurrence risks can be higher than generally appreciated, with implications for genetic counseling and clinical practice. In the course of treating a female with pubertal delay and hypergonadotropic hypogonadism, we identified a new missense mutation in the SRY gene, leading to somatic feminization of this karyotypically normal XY individual. We tested a younger sister despite a normal onset of puberty, who also possessed an XY karyotype and the same SRY mutation. Imaging studies in the sister revealed an ovarian tumor, which was removed. DNA from the father's blood possessed the wild type SRY sequence, and paternity testing was consistent with the given family structure. A brother was 46, XY with a wild type SRY sequence strongly suggesting paternal Y-chromosome germline mosaicism for the mutation. In disorders of sexual development (DSDs), early diagnosis is critical for optimal psychological development of the affected patients. In this case, preventive karyotypic screening allowed early diagnosis of a gonadal tumor in the sibling prior to the age of normal puberty. Our results suggest that cytological or molecular diagnosis should be applied for siblings of an affected DSD individual.

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Human chorionic gonadotropin (hCG) and luteinizing hormone (LH) are structurally and functionally similar glycoprotein hormones acting through the same luteinizing hormone chorionic gonadotropin receptor (LHCGR). The functions of LH in reproduction and hCG in pregnancy are well known. Recently, the expression of LHCGR has been found in many nongonadal tissues and cancers, and this has raised the question of whether LH/hCG could affect the function or tumorigenesis of these nongonadal tissues. We have also previously generated an hCG expressing mouse model presenting nongonadal phenotypes. Using this model it is possible to improve our understanding of nongonadal action of highly elevated LH/hCG. In the current study, we analyzed the effect of moderately and highly elevated hCG levels on male reproductive development and function. The main finding was the appearance of fetal Leydig cell (FLC) adenomas in prepubertal males. However, the development and differentiation of FLCs were not significantly affected. We also show that the function of hCG is different in FLCs and in adult Leydig cells (ALC), because in the latter cells hCG was not able to induce tumorigenesis. In FLCs, LHCGR is not desensitized or downregulated upon ligand binding. In this study, we found that the testicular expression of two G protein-coupled receptor kinases responsible for receptor desensitization or downregulation is increased in adult testis. Results suggest that the lack of LHCGR desensitization or downregulation in FLCs protect testosterone (Te) synthesis, but also predispose FLCs for LH/hCG induced adenomas. However, all the hCG induced nongonadal changes observed in male mice were possible to explain by the elevated Te level found in these males. Our findings indicate that the direct nongonadal effects of elevated LH/hCG in males are not pathophysiologically significant. In female mice, we showed that an elevated hCG level was able to induce gonadal tumorigenesis. hCG also induced the formation of pituitary adenomas (PA), but the mechanism was indirect. Furthermore, we found two new potential risk factors and a novel hormonally induced mechanism for PAs. Increased progesterone (P) levels in the presence of physiological estradiol (E2) levels induced the formation of PAs in female mice. E2 and P induced the expression and nuclear localization of a known cell-cycle regulator, cyclin D1. A calorie restricted diet was also able to prevent the formation of PAs, suggesting that obesity is able to promote the formation of PAs. Hormone replacement therapy after gonadectomy and hormone antagonist therapy showed that the nongonadal phenotypes observed in hCG expressing female mice were due to ovarian hyperstimulation. A slight adrenal phenotype was evident even after gonadectomy in hCG expressing females, but E2 and P replacement was able to induce a similar phenotype in WT females without elevated LH/hCG action. In conclusion, we showed that the direct effects of elevated hCG/LH action are limited only to the gonads of both sexes. The nongonadal phenotypes observed in hCG expressing mice were due to the indirect, gonadal hormone mediated effects of elevated hCG. Therefore, the gonads are the only physiologically significant direct targets of LHCGR signalling.

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Male sex determination in humans is controlled by the SRY gene, which encodes a transcriptional regulator containing a conserved high mobility group box domain (HMG-box) required for DNA binding. Mutations in the SRY HMG-box affect protein function, causing sex reversal phenotypes. In the present study, we describe a 19-year-old female presenting 46,XY karyotype with hypogonadism and primary amenorrhea that led to the diagnosis of 46,XY complete gonadal dysgenesis. The novel p.E89K missense mutation in the SRY HMG-box was identified as a de novo mutation. Electrophoretic mobility shift assays showed that p.E89K almost completely abolished SRY DNA-binding activity, suggesting that it is the cause of SRY function impairment. In addition, we report the occurrence of the p.G95R mutation in a 46,XY female with complete gonadal dysgenesis. According to the three-dimensional structure of the human SRY HMG-box, the substitution of the conserved glutamic acid residue by the basic lysine at position 89 introduces an extra positive charge adjacent to and between the positively charged residues R86 and K92, important for stabilizing the HMG-box helix 2 with DNA. Thus, we propose that an electrostatic repulsion caused by the proximity of these positive charges could destabilize the tip of helix 2, abrogating DNA interaction.

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O motivo deste estudo foi o percentual elevado de descarte de touros por alterações reprodutivas, precisamente qualidade de sêmen, que se apresenta em determinados sistemas produtivos nos quais estão inseridas as raças sintéticas. Através de cinco experimentos foi permitido observar o comportamento da espermatogênese de touros de raças sintéticas do nível cromossômico ao funcional do epitélio seminífero. O experimento I, avaliou por seis meses as características seminais de 12 touros, seis de uma raça pura e seis de uma sintética, contendo em cada grupo touros aptos e inaptos a reprodução classificados por qualidade de sêmen. Os animais do grupo sintético não apresentaram recuperação das características seminais durante o período de avaliação, como os puros, indicando um quadro degenerativo permanente neste conjunto de indivíduos. O experimento II buscou identificar uma relação entre a morfologia do cromossomo Y e tipos de cruzamentos, com a qualidade seminal de touros de duas raças sintéticas, Braford e Brangus-Ibagé. A relação da morfologia do Y com a condição reprodutiva não foi comprovada, no entanto considerando os tipos de cruzamentos para obtenção de touros 3/8, os cruzamentos que utilizam fêmea ¼ com macho ½ sangue filho de Nelore proporcionam um maior percentual de animais considerados inaptos ao exame de sêmen. Este experimento sugere medidas práticas para evitar o cruzamento que traz maiores prejuízos econômicos. O experimento III foi proposto para a avaliar a intensidade de redução de células espermáticas anômalas ao longo do epidídimo em touros de uma raça sintética. A redução da freqüência de gota citoplasmática proximal foi distinta entre os grupos de touros classificados quanto a morfologia espermática e entre as regiões do epidídimo, sendo portanto um indicador sensível da qualidade espermática e classificação da fertilidade potencial de animais de raças híbridas. O experimento IV avaliou a freqüência dos túbulos seminíferos nos diferentes estádios do ciclo espermatogênico em touros de duas raças sintéticas. Nas fases iniciais do ciclo espermatogênico, todos os touros apresentam gametogênese semelhante. Nas fases em que ocorrem as divisões meióticas, os touros inaptos apresentaram maior freqüência e a na fase de maturação das espermátides os touros aptos apresentaram maior freqüência. Estes resultados indicam que nos touros inaptos ocorre um bloqueio na fase das meioses, diminuindo a freqüência dos estádios de maturação das espermátides. O experimento V identificou a expressão diferencial de um fator de crescimento (transforming growth factor alpha- TGFα) no epitélio seminífero de touros Braford e Brangus-Ibagé, aptos e inaptos à reprodução, e também avaliou a freqüência de células de Sertoli nestes animais, como um estudo inicial do controle parácrino da espermatogênese. A maior freqüência da expressão de TGFα foi observada nos estádios I e III, e também na raça Brangus-Ibagé. O número médio das células de Sertoli foi semelhante entre estádios e raças dos touros. Em todos experimentos em que as raças Braford e Brangus-Ibagé foram confrontadas, os resultados obtidos foram diferentes. As maiores freqüências de alterações na qualidade seminal não podem ser extrapoladas para todas as raças sintéticas, cabendo a prerrogativa para cada raça de um estudo específico e ajustado às suas condições de criação.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Since gonadal denervation and pineal deafferentation by cervical superior ganglionectomy affect sexual development, this study was performed to evaluate testicular steroidogenesis, spermatogenesis and the cervical superior ganglion (CSG) histology in rats treated with guanethidine (GD). The treatment was performed by GD s.c. injections for 3 weeks, from the 21st day of age to the 41st day of age (pre-puberty), when the animals were sacrificed. Different doses were used: group A=10 mg/kg/day, group B=50 mg/kg/day and saline (control group). Testicular denervation was confirmed by HPLC for catecholamines in testicular tissue. Testicular concentrations (TC) of progesterone (P4) and testosterone (T) were measured by RIA. Significantly higher TC of P4 and lower TC of T were observed only in group A in comparison with group B and the control group. No alteration of sperm production was observed in either treated group. Histological analysis of CSG showed only few neuronal alterations in group A rats, while in group B the nervous cells were practically destroyed. This suggests that 10 mg/kg/day GD treatment probably produces a specific blockade of 17 alpha-hydroxylase/17,20 desmolase at pre-puberty leading to a decrease of the androgen production. However, in the 50 mg/kg/day group no differences were observed concerning the steroid profiles, this result being attributed to the extensive damage to the CSG observed only in group B. The CSG destruction causes deafferentation of the pineal gland producing abolishment of the inhibition of the 17 alpha-hydroxylase/17,20 desmolase promoted by melatonin or by an out of phase production of androgen.

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Two experiments were performed using the aromatase inhibitor (AI) letrozole (100mg/kg) to promote sex change, from female-to-male, in protogynous dusky grouper. One experiment was performed during the breeding season (spring) and the other at the end of the breeding season (summer). During the spring, AI promoted sex change after 9weeks and the sperm produced was able to fertilize grouper oocytes. During the summer, the sex change was incomplete; intersex individuals were present and sperm was not released by any of the animals. Sex changed gonads had a lamellar architecture; cysts of spermatocytes and spermatozoa in the lumen of the germinal compartment. In the spring, after 4weeks, 11ketotestosterone (11KT) levels were higher in the AI than in control fish, and after 9weeks, coincident with semen release, testosterone levels increased in the AI group, while 11KT returned to the initial levels. Estradiol (E2) levels remained unchanged during the experimental period. Instead of decreasing throughout the period, as in control group, 17 α-OH progesterone levels did not change in the AI-treated fish, resulting in higher values after 9weeks when compared with control fish. fshβ and lhβ gene expression in the AI animals were lower compared with control fish after 9weeks. The use of AI was effective to obtain functional males during the breeding season. The increase in androgens, modulated by gonadotropins, triggered the sex change, enabling the development of male germ cells, whereas a decrease in E2 levels was not required to change sex in dusky grouper. © 2013 Elsevier Inc.

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Fêmeas e machos adultos de P. squamosissimus (Pisces, Teleostei, Sciaenidae) foram coletados mensalmente no Rio Pará, que banha a ilha do Capim (PA) (S 010 34. 971`; W 0480 52.932`), durante o período de fevereiro de 2004 a fevereiro de 2005, correspondendo ao total de 234 espécimes. As gônadas foram coletadas, fixadas e processadas de acordo com os métodos usuais utilizados para processamento em parafina e análise em microscopia de luz. A espécie em estudo é uma das principais fontes de proteína animal para a população local, sendo capturada de forma intensa e ininterrupta ao longo do ano. Com base em informações dos pescadores locais, essa captura parece estar determinando uma aparente diminuição quantitativa e qualitativa em seus estoques locais. A espécie apresenta desova parcelada e o desenvolvimento gonadal foi caracterizado nos estádios de repouso, maturação, maduro e esvaziado ou semi-esvaziado. Gônadas maduras foram encontradas nos meses de dezembro, janeiro e julho. A análise de correlação entre o estádio gonadal maduro e a variação temporal da relação gonadossomática (ΔRGS) indica também a ocorrência de desova nos respectivos meses. Não obstante, as informações obtidas da correlação entre a ΔRGS e a média de oócitos maduros e percentual de espermatozóides por túbulo seminífero, respectivamente, também indicaram haver desova nos respectivos meses, sendo que aparentemente a espécie apresenta uma desova mais intensa ou desova principal entre os meses de dezembro e janeiro (inverno), e outra desova menos intensa ou secundária no mês de julho (verão). Com base no método da morfologia tubular, foram determinados oito estádios do ciclo do epitélio seminífero (CES), sendo que no estádio 1 os túbulos seminíferos são compostos por espermatogônias primárias e cistos de spermatogônias secundárias; o estádio 2 é composto por espermatogônias primárias e secundárias e cistos de espermatócitos; estádio 3 é caracterizado por espermatogônias primárias, secundárias, cistos de espermatócitos e de espermátides jovens ou recém-formadas; estádio 4 com túbulos seminíferos caracterizados pela presença de espermatogônias primárias e secundárias, espermatócitos e por cistos de espermátides jovens e tardias; estádio 5 apresenta todas as células anteriores e é marcado pelo surgimento de espermatozóides no lúmen tubular; estádio 6 tem como características a diminuição dos cistos de células germinativas e considerável aumento do número de espermatozóides no lúmen tubular; os túbulos seminíferos no estádio 7 contêm poucos cistos de células germinativas e se inicia o esvaziamento da massa de espermatozóides do lúmen tubular; estádio 8 é o último do CES e é caracterizado pela aparente desorganização dos cistos remanescentes de células germinativas no túbulo seminífero.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Sexual differentiation in the brain takes place from late gestation to the early postnatal days. This is dependent on the conversion of circulating testosterone into estradiol by the enzyme aromatase. The glyphosate was shown to alter aromatase activity and decrease serum testosterone concentrations. Thus, the aim of this study was to investigate the effect of gestational maternal glyphosate exposure (50 mg/kg, NOAEL for reproductive toxicity) on the reproductive development of male offspring. Sixty-day-old male rat offspring were evaluated for sexual behavior and partner preference; serum testosterone concentrations, estradiol, FSH and LH; the mRNA and protein content of LH and FSH; sperm production and the morphology of the seminiferous epithelium; and the weight of the testes, epididymis and seminal vesicles. The growth, the weight and age at puberty of the animals were also recorded to evaluate the effect of the treatment. The most important findings were increases in sexual partner preference scores and the latency time to the first mount; testosterone and estradiol serum concentrations; the mRNA expression and protein content in the pituitary gland and the serum concentration of LH; sperm production and reserves; and the height of the germinal epithelium of seminiferous tubules. We also observed an early onset of puberty but no effect on the body growth in these animals. These results suggest that maternal exposure to glyphosate disturbed the masculinization process and promoted behavioral changes and histological and endocrine problems in reproductive parameters. These changes associated with the hypersecretion of androgens increased gonadal activity and sperm production.

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Tridacnid clams are conspicuous inhabitants of Indo-Pacific coral reefs and are traded and cultivated for the aquarium and food industries. In the present study, daily growth rates of larvae of the giant clam Tridacna crocea were determined in the laboratory during the first week of life. Adults were induced to spawn via intra-gonadal serotonin injection through the byssal orifice. After spawning oocytes were collected, fertilized and kept in 3 L glass beakers and raceways treated with antibiotics to avoid culture contamination. Larvae were fed twice with the microalga Isochrysis galbana and zooxanthellae were also offered twice during the veliger stage (days 4 and 6). Larval length was measured using a digitizing tablet coupled to a microcomputer. Larval mortality was exponential during the first 48 hours of life declining significantly afterwards. Mean growth rate was 11.3 mu m day-1, increasing after addition of symbionts to 18.0 mu m day-1. Survival increased to ca. 75% after the addition of zooxanthellae. The results describe the growth curve for T. crocea larvae and suggest that the acquisition of symbionts by larvae may be useful for larval growth and survival even before larvae have attained metamorphosis.

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Objective: To assess reproductive function in male ankylosing spondylitis (AS) patients in comparison to healthy controls. Methods: Twenty AS patients were compared to 24 healthy male subjects with regard to demographic data, urological examination, testicular ultrasound (US), semen analysis, anti-sperm antibodies, and hormone profile. Exclusion criteria were present use of sulfasalazine or methotrexate, and ever use of biological/cytotoxic agents. Disease activity of AS was evaluated by clinical and laboratory assessments. Results: Demographic data were similar in AS and controls (p = 0.175). Varicocele was found significantly more frequently in AS patients than in controls (40% vs. 8%, p = 0.027). Semen analysis revealed no significant differences in sperm quality between AS patients and controls (p > 0.05). By contrast, the median of normal sperm forms was significantly lower in AS patients with vs. those without varicocele [13.5 (range 2-27) vs. 22 (range 10-32.5)%, p = 0.049] whereas no difference in sperm morphology was observed comparing AS patients and controls without varicocele (p = 0.670). Comparison of AS patients with and without varicocele showed that anti-sperm antibodies, hormones, inflammatory markers, and disease activity scores did not contribute to the impaired sperm morphology observed in AS patients with varicocele. Conclusions: An increased frequency of varicocele was found in AS patients associated with sperm abnormalities but independent of therapy, anti-sperm antibodies, hormonal alterations, or disease parameters. Investigation for varicocele should be routine in AS patients with fertility problems.

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Despite advances in our understanding of the mechanisms involved in sex determination and differentiation, the specific roles of many genes in these processes are not completely understood in humans. Both DMRT1 and FGF9 are among this group of genes. Dmrt1 controls germ cell differentiation, proliferation, migration and pluripotency and Sertoli cell proliferation and differentiation. Fgf9 has been considered a critical factor in early testicular development and germ cell survival in mice. We screened for the presence of DMRT1 and FGF9 mutations in 33 patients with 46,XY gonadal dysgenesis. No deletions in either DMRT1 or FGF9 were identified using the MLPA technique. Eight allelic variants of DMRT1 were identified, and in silico analysis suggested that the novel c.968-15insTTCTCTCT variant and the c.774G>C (rs146975077) variant could have potentially deleterious effects on the DMRT1 protein. Nine previously described FGF9 allelic variants and six different alleles of the 3' UTR microsatellite were identified. However, none of these DMRT1 or FGF9 variants was associated with increased 46,XY gonadal dysgenesis. In conclusion, our study suggests that neither DMRT1 nor FGF9 abnormalities are frequently involved in dysgenetic male gonad development in patients with non-syndromic 46,XY disorder of sex development. (C) 2012 Published by Elsevier Masson SAS.