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Germ cell loss in the XXY male mouse: altered X-chromosome dosage affects prenatal development.

Male mammals with two X chromosomes are sterile due to the demise of virtually all germ cells; however, the underlying reasons for the germ cell loss remain unclear. The use of a breeding scheme for the production of XXY male mice has allowed us to experimentally address the question of when and why germ cells die in the XXY testis and whether the defect is due to the presence of an additional X chromosome in the soma, the germ cells themselves, or both. Our studies demonstrate that altered X-chromosome dosage acts to impair germ cell development in the testis at a much earlier stage than suggested by previous studies of XX sex-reversed males or XX/XY chimeras. Specifically, we noted significantly reduced germ cell numbers in the XXY testis during the period of germ cell proliferation in the early stages of testis differentiation. Although the somatic development of the XXY testis is morphologically and temporally normal, our studies indicate that germ cell demise reflects a defect in somatic/germ cell communication, since, in an in vitro system, the proliferative potential of fetal germ cells from XXY males is indistinguishable from that of normal males.

Animals↗

Angiotensin-converting enzyme and male fertility.

The angiotensin-converting enzyme (ACE; EC 3.4.15.1) gene (Ace) encodes both a somatic isozyme found in blood and several other tissues, including the epididymis, and a testis-specific isozyme (testis ACE) found only in developing spermatids and mature sperm. We recently used gene targeting to disrupt the gene coding for both ACE isozymes in mice and reported that male homozygous mutants mate normally but have reduced fertility; the mutant females are fertile. Here we explore the male fertility defect. We demonstrate that ACE is important for achieving in vivo fertilization and that sperm from mice lacking both ACE isozymes show defects in transport within the oviducts and in binding to zonae pellucidae. Males generated by gene targeting that lack somatic ACE but retain testis ACE are normally fertile, establishing that somatic ACE in males is not essential for their fertility. Furthermore, male and female mice lacking angiotensinogen have normal fertility, indicating that angiotensin I is not a necessary substrate for testis ACE. Males heterozygous for the mutation inactivating both ACE isozymes sire wild-type and heterozygous offspring at an indistinguishable frequency, indicating no selection against sperm carrying the mutation.

Animals↗

[Course of tissue acidosis, lactic acid production and morphologic changes in testicular tissue during ischemia. Effect of hypothermic measures].

More than 90% of patients with testicular torsion lose their testis, either because orchiectomy is necessary or because ischaemic atrophy develops. The critical time before irreversible changes to the testis have taken place is, according to literature, 4-6 h. The aim of our study was to measure the tissue acidification (pH) in the testis at different temperatures and to estimate the effect of cooling on pH, lactate accumulation and morphological changes. In 36 human testes (obtained by orchiectomy in patients with metastatic prostate cancer) we measured the tissue acidification (pH), the tissue lactate level and the morphological changes at temperatures of 35, 25, 15 and 5 degrees C. We also measured the same parameters in 12 testes taken from young dogs. At the normal testicular temperature of about 35 degrees C the pH falls to 6.0 within 1 h of ischaemia. Cooling to 15 degrees C can extend this time to 6 h. The tissue lactate level rises from 25 mumol/gdw to nearly 200 mumol/gdw at 35 degrees C. The morphology of semithin sections of the testis shows swelling of the intratubular tissue (spermatogenesis) with loss of the interstitial space. Reducing temperature can also slow-down these changes. The critical pH value of the testis beyond which irreversible changes take place is not known; a pH of less than 6.0 is thought to be the probable threshold.

Acid-Base Equilibrium↗

Ultrastructural study of the boar seminiferous epithelium: changes in cryptorchidism.

The present study compares the ultrastructural features of Sertoli cells and germ cells between scrotal testes of healthy boars and abdominal testes of unilateral and bilateral cryptorchid boars. In healthy boars, spermatogonia are flat cells lying in close association with the basal lamina. As differentiation progresses, spermatogonia acquire an oval profile and lose their contact with the basal lamina. Spermatocytes are round cells moving from the basal compartment of the seminiferous epithelium to the luminal compartment. Spermatids exhibit complex morphological changes leading to the formation of spermatozoa. Sertoli cells extend from the basal lamina to the tubular lumen. The nucleus encloses fine euchromatin and one or two nucleoli; the nuclear envelope has a few deep infoldings. The lateral cell membranes form junctional specializations that constitute the blood-testis barrier. The cytoplasm encloses smooth endoplasmic reticulum, vesicles, aggregates, and scattered mitochondria. The seminiferous epithelium of abdominal testes from unilateral and bilateral cryptorchid boars contains few spermatogonia with an abnormal appearance; the alteration in germ cell number is more severe in the bilateral disease. In unilateral cryptorchid boars, spermatogonia appear as either large pyramidal cells or roundish cells; in bilateral cryptorchid boars, spermatogonia show roundish profiles and degenerative patterns. Abdominal testes of both unilateral and bilateral cryptorchid boars are constituted by immature Sertoli cells that show abnormal cytoplasmic content, defective development of the blood-testis barrier, and atypical nuclear appearance; in bilateral cryptorchid boars, immature Sertoli cells exhibit degenerative signs. At postpubertal age, unilateral and bilateral cryptorchidism induce total arrest of spermatogenesis at spermatogonial stage as a result of an abnormal differentiation of the Sertoli cells. Moreover, the degeneration of abdominal testes initiates earlier in bilateral cryptorchidism than in unilateral cryptorchidism.

Animals↗

Ultrasonography of the developing reproductive tract in ram lambs: effects of a GnRH agonist.

In spring-born ram lambs, the testes (from 2 wk), prostate and vesicular glands (from 4 wk) were examined by ultrasonography every 2 wk up to 26 wk of age. Image analysis was done (numerical pixel values). Ram lambs were treated with a long acting formulation of a GnRH superagonist (Leuprolide acetate; 1.5 mg/kg) at 3 and 7 wk of age. In blood samples taken every 15 min for 8 h, mean serum LH, LH pulse amplitude, and basal and mean serum FSH concentrations were lower at 5 wk of age, and LH pulse frequency was lower at 15 wk of age in animals given Leuprolide acetate compared with those of the controls. There were no differences (P>0.05) in testis, prostate or vesicular gland development between treated and control animals. Testicular diameter of the left and right testes in transverse and longitudinal planes increased slowly to 8 wk of age, more rapidly to 18 wk of age, then more slowly to 26 wk of age (P<0.05). Numerical pixel values of testicular images decreased from 2 to 8 wk of age, increased to 22 wk of age and then plateaued. Width of the prostate increased from 4 to 26 wk of age, but length and width of the vesicular glands increased slowly to 8 wk of age, more rapidly to 18 wk of age and then plateaued (P<0.05). Numerical pixel values for the prostate declined from 4 to 8 wk and for the vesicular glands, declined from 4 to 10 wk of age; numerical pixel values increased to 12 wk and then decreased to a nadir at 18 wk, followed by a steady increase to 26 wk of age (P<0.05). We concluded that developmental patterns of numerical pixel values of the testes, prostate and vesicular glands in ram lambs reflect stages of development, but treatment with a GnRH superagonist at 3 and 7 weeks of age did not affect growth of testes, vesicular or prostate glands.

Journal Article↗

A stereological study of the different cell populations in chicken testes treated with follicle-stimulating hormone during embryonic development.

Quantitative morphological methods were used to analyse the histomorphometric changes and variations in the number and size of cells from diverse cellular populations in testes of newly hatched chicks treated with follicle stimulating hormone (FSH) during embryonic development. The tissue was fixed and embedded in Epon and sections were morphometrically measured under light microscopy, using point counting for volume densities and the Floderus equation to determine numerical density. The average volume of the individual cell was determined by dividing the volume density by the numerical density. Results indicate that FSH administration causes an increase in the number of Sertoli cells and spermatogonia, as well as enlargement of the individual Sertoli cells leading consequently to an increase in the diameter and volume density of the testicular seminiferous tubules. Results also reveal an increase in the volume density of the interstitial cords of the Leydig cells, this expansion is due to the enlargement of the individual Leydig cells and not to an increase in their number, which remains constant. We conclude that testes of chick embryos are able to respond to FSH treatment, as revealed by the changes in the number and size of the cells conforming the diverse cellular populations of the testis. FSH treatment during embryonic development induces histomorphometric changes in both the interstitial tissue and seminiferous tubules, accelerating their growth and differentiation.

Animals↗

Developmental expression and spermatogenic stage specificity of transcription factors GATA-1 and GATA-4 and their cofactors FOG-1 and FOG-2 in the mouse testis.

OBJECTIVE: The transcription factors GATA-1 and GATA-4 have been implicated in the regulation of testicular development and function. Their cofactors FOG-1 and FOG-2 are expressed in the gonads, but their cell-specific and developmental expression in the testis remains unresolved. Therefore, we analyzed GATA-1, GATA-4, FOG-1 and FOG-2 expression in detail, from undifferentiated male urogenital ridge to adult testis. METHODS: Immunohistochemistry and in situ hybridization were applied on mouse testicular samples. RESULTS: GATA-4 and FOG-2, but not GATA-1 or FOG-1, were expressed as early as in the male urogenital ridge. FOG-2 expression was localized in the Sertoli cells at embryonal day 12.5 (E12.5), but it diminished with advancing fetal testicular development. In E17.5 testis, FOG-2 was present only in the testicular capsule and a subset of fetal Leydig cells. FOG-1 was expressed from E15.5 Sertoli cells onwards, whereas GATA-1 was not detected during the fetal period at all. In the postnatal testis, FOG-2 was abundantly expressed immediately after birth, but in adult testis its expression was predominantly restricted to stage VII-XII seminiferous tubules. Stage specificity was also found for FOG-1, which, similarly to GATA-1, was abundantly expressed in stage VII-XII tubules during adulthood. CONCLUSIONS: Our results indicate that FOG-2, in addition to GATA-4, has a role in early gonadal development and sexual differentiation, and FOG-1 at later fetal stages, while GATA-1 executes its action postnatally. The findings suggest that, in contrast to the hematopoietic system and the heart, GATA-1 and GATA-4 do not use FOG-1 and FOG-2 respectively as their only cofactors during the early stages of testicular development.

Aging↗

Translation of protamine mRNA in a rabbit reticulocyte cell-free system.

Protamine mRNA isolated from the microsomal and postribosomal supernatant fractions of trout testis in poly A(+) (polyadenylated RNA)and poly A (-) (RNA devoid of poly A(+)) forms (GEDAMU, L. & Dixon, G.H. (1976) J. Biol. Chem. 251, 1446-1454 and 1455-1463) was translated in the heterologous rabbit reticulocyte cell-free system; the products were shown to be identical in mobility with authentic protamine by polyacrylamide and starch gel electrophoresis. Chromatography, on carboxymethyl cellulose (Whatman CM-52), of the labelled polypeptide products synthesized in this cell-free system in the presence of poly A (+) and poly A(-) mRNA fractions also showed that [14C]arginine was incorporated into all three protamine components resolved in this system, but there was an unequal and variable incorporation of label into the three components with different preparations of mRNA. These results were interpreted as showing that the population of subcomponents of the protamine mRNA coding for the three different protamine polypeptides varied in batches of trout testis at differing stages of development. In addition, the proportion of mRNA components varied between the poly A(+) and poly A(-) editions of the mRNA, and it appeared that the poly A(-) mRNA fraction might represent the product of deadenylation of an earlier population of poly A(+) mRNA.

Animals↗

Fragile X syndrome and neoplasia.

Among 100 males with fragile X [fra(X)] or Martin-Bell syndrome, two have developed malignancies. The first case, a 57-year-old man with fra(X) expression in 12% of peripheral blood lymphocytes, developed a seminoma of the left testis at age 45 years and in the right testis at age 50 years. The second case, a 16-year-old white boy with fra(X) expression in 23% of lymphocytes, developed a mucin-producing adenocarcinoma of the colon at age 14 years. Because of the unusual nature of the tumors observed in these patients and in 2 other patients from the literature, we suggest that individuals with the fra(X) syndrome may be at increased risk of cancer.

Adenocarcinoma, Mucinous↗

Binding of nuclear proteins to an upstream element involved in transcriptional regulation of the testis-specific histone H1t gene.

The testis-specific histone H1t is synthesized during spermatogenesis exclusively in late pachytene primary spermatocytes. Transcription of the H1t gene is repressed in every tissue except testis. Within the testis, transcription is repressed during development before the spermatocyte stage and in later stages of germinal cell maturation. Mechanisms involved in transcriptional repression of the H1t gene are unknown. To assess the contribution of upstream H1t promoter sequence to transcriptional silencing in nonexpressing cells, H1t-promoted reporter vectors were constructed using pGL3 Basic. Transient expression assays with these reporter vectors driven by H1t promoter deletions allowed us to identify a region from 948 to 780 bp upstream from the H1t transcriptional initiation site that functions as a silencer. Examination of nuclear protein binding to this DNA regulatory region by electrophoretic mobility shift assays using extracts from C127I cells, rat testis, and pachytene spermatocytes revealed a low mobility band produced only by nuclear proteins derived from nonexpressing cells that may contain proteins that repress H1t gene transcription.

Animals↗

Immunocytochemical demonstration of substance P in hamster Leydig cells during ontogenesis.

The cellular localization of substance P immunoreactivity was demonstrated at the light microscopical level in the hamster testis during fetal and postnatal development. A selective immunostaining was observed both of fetal and adult generation of Leydig cells. The comparison of the immunocytochemical findings with the ultrastructural characteristics of Leydig cells provided evidence that Leydig cells besides their androgen-producing capacity also had an neuropeptide producing function. The possible role of substance P in the local paracrine control of gametogenesis was discussed.

Animals↗

Development of heterologous down-regulation of lactogen receptors in the rat testis.

Gonadotropin-induced loss (down-regulation) of testicular lactogen receptors was studied in 5-60-day-old rats. An i.m. injection of 600 IU/kg of hCG elicited in 5-day-old animals a 38-56% increase in testicular lactogen binding, measurable between 6 and 72 h after the hormone injection. In contrast, at the age of 60 days the same hCG dose decreased lactogen receptors by 75% at 24 h, which loss recovered in 2-3 days. When the amount of lactogen receptors was measured 24 h after the hCG injection (600 IU/kg) at different ages, the binding increased on average by 50% between ages 5 and 20 days, no effect on binding was seen at day 30, and a loss of binding by 50% was evident in animals of 40 days of age and older. The present results indicate that the plasma-membrane events elicited by gonadotropin binding to neonatal Leydig cells are clearly different from those occurring in the adult, and that down-regulation and functional coupling of LH and lactogen receptors are accompaniments of functional differentiation of the Leydig cell during pubertal maturation.

Age Factors↗

Testicular development and endocrine characteristics of boars selected for either high or low testis size.

Thirty-six Landrace x Large White cross boars were selected from litters with either high or low estimated breeding values for 150-d paired testis weight. Blood samples were taken via jugular venipuncture at eight ages (42, 56, 70, 84, 98, 112, 126 and 140 d). At each sampling age, nine blood samples were taken at 30-min intervals. Luteinizing hormone (LH) was determined on the individual serum samples. Serum samples from each boar at each age were pooled and concentrations of follicle-stimulating hormone (FSH), estradiol-17 beta (E2) and testosterone (T) were determined. Paired testis width, testis length and body weight were measured at 98, 112, 126 and 140 d of age. Backfat probe, weights of excised testes and histological data on testes were obtained at 140 d of age. Boars with high testis weight (HTW) were heavier (P less than .05), had higher adjusted backfat probes (P less than .01) and had consistently larger in situ testis measurements (P less than .01) than did low testis weight (LTW) boars. Boars with HTW had heavier (P less than .01) testes and epididymides at 140 d of age. They also had a higher percentage of seminiferous tubules in which spermatogenesis was present (P less than .05), a larger percentage of tubules with a lumen (P less than .05) and tubules had a larger mean diameter (P less than .01) than did those of boar with LTW. Adjustment of in situ testis measurements and excised testis weights for body weight reduced line differences by less than 20%. A rise in LH concentrations occurred at approximately 100 d of age. Boars with HTW had higher (P less than .05) and more variable (P less than .01) LH concentrations than did boars with LTW. Boars with HTW also had higher maximum concentrations of LH during the pubertal rise (P less than .01) and these concentrations tended to reach maximum levels at younger ages. Concentrations of T increased in a fashion that was nearly linear with age (P less than .01) and tended to be higher for the boars with HTW (P less than .10). Concentrations of E2 changed little from 42 to 84 d of age but increased steadily thereafter. Boars with HTW had a more rapid increase in E2 concentrations than did boars with LTW (P less than .05).(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Prevention of seminiferous tubular atrophy in a naturally cryptorchid rat model by early surgical intervention.

In an attempt to determine whether the seminiferous tubular atrophy of the cryptorchid testis is preventable by early surgical correction of the cryptorchid state, aberrantly developed gubernacula destined to result in a cryptorchid testis in the Long-Evans cryptorchid (LE/ORL) rat were surgically reimplanted to the bottom of the scrotum on day 10 to 12 of age. Testis descent was monitored and the changes in testicular histology and in the volumes of the seminiferous tubules and Leydig cells were examined at day 60. As expected, normal testis descent occurred on or about day 25. Compared to untreated undescended testes at day 60, relative seminiferous tubular volumes (volume: % +/- SEM) were significantly increased by early surgical reimplantation of the gubemacula (89 +/- 1 vs. 66 +/- 3; P < 0.01). Absolute seminiferous tubular volumes (microliter +/- SEM) were also significantly increased by early surgical intervention when compared to undescended nontreated testes (893 +/- 27 vs. 170 +/- 12; P < 0.01). The testes of the surgically corrected cryptorchid animals were similar in all respects to those found in the descended testes of the sham-operated controls. Relative Leydig cell volume (% +/- SEM) was increased in the untreated cryptorchid testes compared to the surgically corrected testes (5.2 +/- 0.6 vs. 1.2 +/- 1.0; P < 0.05). Relative Leydig cell volumes in the surgically corrected testes were not significantly different from those found in the sham-operated descended controls. A modest but significant (P < 0.05) increase in absolute Leydig cell volume was also noted in the cryptorchid testes when compared both to normal controls or surgically corrected cryptorchid testes. From these observations, we conclude that early gubernaculopexy reverses the histologic changes normally seen in the cryptorchid rat testis to a relatively normal histologic architecture. These data provide experimental evidence to support the value of orchiopexy in the treatment of cryptorchidism.

Animals↗

[Male pseudohermaphroditism. State and present problems (author's transl)].

The authors describe the male phenotypic sexual development in the fetus: transformation of the undifferentiated gonad into testis under the HY antigen influence; testicular secretion of testosterone (which allows the development of the wolffian ducts derivatives) and of MIF (which inhibits the development of the mullerian duct; masculinization of the external genitalia under the influence of dihydrotestosterone. They outline the three abnormalities which may lead to a male pseudohermaphroditism: disorders of testicular differentiation, defects of testicular function and androgen insensitiveness at the target areas. They consider the diagnostic steps and the therapeutic management especially in relation to the choice of the sex and the risk of gonadoblastoma.

Androgens↗

[Bilateral germ tumors of the testis. Report of 5 cases and review of the literature].

OBJECTIVE: To know the prevalence of the bilateral germ cell tumours of testis diagnosed in our Department and to review the literature. MATERIAL AND METHODS: 64 patients diagnosed of a germ cell tumour of the testis were followed during an average period of 51.4 months (1-168 months). RESULTS: 5 (7.8%) patients developed a second germ cell testicular tumour. In one patient the tumours were synchronous while in the remaining four were metachronous, occurring in an average interval of 59 months. One patient with a metachronous tumour died as consequence of the second tumour. In two of the five patients risk factors were identified, one presented testicular atrophy and the second referred history of undescended testis. DISCUSSION: The probability of developing a germinal testis tumour between the patients with history of a previous germ cell tumour of the testis is sensibly greater than between the general population. The prevalence of the bilateral tumours of the testis oscillates between 1-5% and approximately 75% will be metachronous. The principal factor that can predict the appearance of a second testicular tumour is the presence of the carcinoma in situ (Cis) in the contralateral testicular biopsy. Except in cases of testicular atrophy or previous history of undescended testis we do not recommend routine biopsy of the other testis.

Adolescent↗