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Ontogeny and regulation of variant thyroid hormone receptor isoforms in developing rat testis.

High affinity-low capacity nuclear triiodothyronine (T3) receptors (TRs), identified as a product of c-erbAalpha proto-oncogene, are expressed in prepubertal rat Sertoli cell. At this age, exogenous T3 treatment as well as hypothyroidism affects Sertoli cell functions. We examined the ontogenetic expression pattern of TRs in the rat testis. Northern analysis confirms that TRs are expressed at high level from fetal development until prepubertal period. RNase protection analysis demonstrates that TRalpha2, the variant isoform of TRalpha1, is constitutively expressed at all ages, while TRalpha3 is absent in the adult gonad. While TRalpha1 and TRalpha2 expression declines during development, Rev-erbAalpha (Rev), the antisense mRNA encoded by the same c-erbAalpha genomic locus, increases beginning 5 days after birth and maximizing in adulthood. TRalpha1, TRalpha2, and Rev mRNAs do not appear to be directly regulated by thyroid hormone in testis; however, short-term neonatal hypothyroidism leads to the expression of TRalpha1 and its variant in adult testis, which is absent in control coeval animals. Thus, during development of rat testis, the levels of messages of genes encoded in the c-erbAalpha. genomic locus have different ontogenetic control. The ontogenetic profile of TRalpha1 and its variant isoforms within the seminiferous epithelium suggests that these receptors are involved in the differentiation of the male gonad.

Aging↗

[Isolated epididymal torsion in dissociation of testis-epididymis].

Complete dissociation of testis and epididymis is rare. An isolated torsion of the epididymis has not been reported so far. We report two cases: a 6-month-old boy who was admitted with fever and swollen hemiscrotum and an 18-year-old youth with acute onset of pain in the left hemiscrotum. Immediate inguinal surgical exploration of the baby showed a complete infarction of the epididymis due to an isolated epididymal torsion with dissociation of testis and epididymis. Epididymectomy was carried out and the testis was sutured down. In the case of the youth, the surgical exploration also showed an isolated epididymal torsion due to dissociation of testis and epididymis. The epididymis could be rescued by raising the torsion. The isolated torsion of the epididymis should be included in the differential diagnosis of acute scrotum in childhood.

Acute Disease↗

Induction of oxidative stress in the rat testis after short-term exposure to the organochlorine pesticide methoxychlor.

Methoxychlor is one of the environmental contaminants that has been shown to induce reproductive abnormalities in male rats. The mechanism of action of methoxychlor on the male reproductive system remains unclear. In the present study we have sought to investigate whether short-term administration of methoxychlor induces oxidative stress in the testis of adult rats. Methoxychlor (50, 100, or 200 mg/kg body weight per day) was administered orally for 1, 4, or 7 days. The animals were killed using anesthetic ether on the day following the last dosing. The weights of epididymides, seminal vesicles, and ventral prostate decreased after 50, 100, or 200 mg/kg per day for 7 days but remained unchanged after 1 and 4 days of treatment. The production of superoxide anion and hydrogen peroxide increased in the animals that received methoxychlor for 4 and 7 days. The activities of the antioxidant enzymes superoxide dismutase, catalase, glutathione reductase and glutathione peroxidase decreased, while the level of lipid peroxidation increased in the testis after 4 or 7 days of treatment. The results indicated that short-term exposure to methoxychlor induces oxidative stress in the testis by decreasing antioxidant enzymes and increasing lipid peroxidation, possibly by inducing reactive oxygen species. In conclusion, the adverse effect of methoxychlor on the male reproduction could be due to induction of oxidative stress in testis.

Administration, Oral↗

Short period exposure to di-(2-ethylhexyl) phthalate regulates testosterone metabolism in testis of prepubertal rats.

Exposure of pubertal rats to di-(2-ethylhexyl) phthalate (DEHP) for 14 days was reported to result in reduced testosterone (T) biosynthesis by altering androstenedione 17beta-hydroxysteroid dehydrogenase (17beta-HSD) activity. However, our study indicated that shorter period exposure of DEHP (100 or 1000 mg/kg for 5 days) to 4-week-old male rats did not affect the activity of 17beta-HSD, the rate-limiting enzyme of T biosynthesis in the testis. Testosterone 5alpha-reductase (T5alpha-R) activity in the testis was significantly enhanced, while aromatase mRNA was significantly reduced by increasing doses of DEHP. The expressions of cytochrome P450 (CYP) isoforms, CYP2C11 and CYP3A, in the testis increased along with their enzymatic activities, T16alpha- and T6beta-hydroxylation, respectively. Thus, the current study clearly indicates that the short period exposure to DEHP alters T metabolism through altering activities of T5alpha-R, aromatase and CYP2C11/3A2 in the testis of prepubertal rats, and that they are more sensitive marker enzymes to the DEHP exposure than those of biosynthetic enzymes of T from androstenedione.

17-Hydroxysteroid Dehydrogenases↗

Molecular cloning of rat and mouse membrane cofactor protein (MCP, CD46): preferential expression in testis and close linkage between the mouse Mcp and Cr2 genes on distal chromosome 1.

Human membrane cofactor protein (MCP, CD46) is widely distributed and is one of the plasma membrane complement inhibitors. We isolated cDNA clones encoding genetic homologues of human MCP from a rat testis cDNA library. Northern blot analysis indicated that rat MCP is preferentially expressed in testis, similar to what is found with guinea pig MCP. We identified several different cDNAs, which were presumably generated by alternative splicing from a single-copy gene. The most prevalent isoform corresponded to the Ser/Thr/Pro-rich C type of human MCP. Mouse MCP cDNA was cloned by polymerase chain reaction based on the nucleotide sequence of rat MCP. The deduced amino acid sequence showed 77.8% identity to rat MCP. Mouse MCP was also preferentially expressed in testis. Unique expression in testis in rat and mouse as well as guinea pig suggests that MCPs in these species not only act as complement regulatory proteins but may also have more specialized functions in fertilization or reproduction. Genetic mapping by linkage analysis indicated that the mouse Mcp gene is located on distal chromosome 1, closely linked to the complement receptor 2 (Cr2) gene.

Amino Acid Sequence↗

Dilatation of the rete testis: ultrasound study.

The aim of this study was to show the US findings in mode B and color Doppler duplex of the dilatation of the rete testis, in order to analyze its association with other scrotal processes and to confirm their inclusion into the benign testicular lesions. We present seven diagnosed cases (mean age 61 years) of dilatation of the rete testis to which a clinical control and US was accomplished up to 1 year. The scrotal sonography study was carried out with a linear probe of 7.5 Mhz. In the US examination we observed in all cases an intratesticular image located in the mediastinum testis constituted by anechoic and serpiginous tubular structures, which do not show any blood flow with the color Doppler. In one case the mentioned observations were bilateral. Five cases had cysts in epididymis and the last case showed an increase in size in the epididymis head. Color Doppler duplex examination did not detected flow dots in the seven patients. The dilatation of the rete testis is a benign entity frequently associated with pathology in epididymis, with specific US findings which permit avoidance of invasive tests.

Adult↗

Molecular characterization of the porcine testis-specific phosphoglycerate kinase 2 (PGK2) gene and its association with male fertility.

We have isolated and characterized the porcine testis-specific phosphoglycerate kinase 2 (PGK2) gene, and 1665 bp of full-length PGK2 cDNA were also compiled using modified rapid amplification 5'-RACE and 3'-RACE information. The results of genomic and cDNA sequences of the porcine PGK2 gene demonstrated that it is a single-exon intronless gene with a complete open reading frame of 1251 bp encoding a PGK protein of 417 amino acids. Real-time quantitative PCR results showed that PGK2 mRNA was solely expressed in the testis. There was a lower amount of PGK2 expression in the testis of a 10-month-old herniated boar and a very small amount of PGK2 expression in the testis of an 8-week-old cryptorchid piglet compared to an adult boar. Two SNPs in the PGK2 gene (SNP-A: T427C; SNP-B: C914A) resulting in amino acid substitutions (SNP-A: Ser102-Pro102; SNP-B: Thr264-Lys264) were detected and genotyped among six pig breeds. The nucleotide C at SNP-A responsible for the amino acid exchange to proline could lead to the loss of a casein kinase II (CK2) phosphorylation site in the PGK2 peptide. Association analyses between PGK2 genotypes and several traits of sperm quantity and quality were performed. The results showed that SNP-B has a positive significant effect on semen volume in the breed Pietrain (p = 0.08), i.e., boars carrying genotype CC revealed an increased volume of 49 ml compared with boars having the genotype AA.

Amino Acid Sequence↗

T-lymphocyte subsets in the contralateral testis after unilateral blunt testicular trauma in pre-pubertal mice.

Although spermatozoa express antigens, they normally do not produce an immunological response because of the blood-testis barrier and the predominance of CD8(+) T-lymphocytes in the rete testis. Unilateral blunt testicular trauma (UBTT) has been reported to decrease fertility. The present study was designed to evaluate the sub-populations of T-lymphocytes in mice with testicular trauma. Twenty male mice aged 20 days were randomized into control and test groups. At about 70 days of age the contralateral testis was harvested, cell suspensions were prepared, and immunofluorescence staining was performed for detection of CD4(+ )and CD8(+) T-lymphocytes by flow-cytometry. The ratio of CD8(+) and CD4(+) lymphocytes was significantly higher (P < 0.001) in the control mice compared to the UBTT group (1.3 +/- 0.3 vs 0.5 +/- 0.01). The results suggest that UBTT alters the CD8(+)/CD4(+) ratio in the contralateral testis, which may have an important bearing on the pathogenesis of infertility in cases of testicular injury.

Animals↗

PLU-1, a transcriptional repressor and putative testis-cancer antigen, has a specific expression and localisation pattern during meiosis.

PLU-1, a large multi-domain nuclear protein with strong transcriptional repression activity, is a member of the ARID family of DNA binding proteins. In previous studies, high levels of expression of Plu-1 mRNA and PLU-1 protein were detected in breast cancers, while expression in normal adult tissues was detected only in the testis, ovary and transiently in the mammary gland of the pregnant female. Due to its high levels of expression in the testis and to its specific relationship to cancer, PLU-1 has been proposed to belong to the family of testis-cancer antigens. In this study we attempted to determine putative functions for PLU-1 during spermatogenesis. To address this, we analysed the pattern of expression and localisation of this protein in mouse testicular cells during postnatal development and adulthood. Using in situ hybridisation and immunostaining of testis sections we show that Plu-1 mRNA and PLU-1 protein are both highly expressed in the mitotic spermatogonia. Expression is reduced dramatically in the early prophase I stages (zygotene, leptotene), but reappears at pachytene and is still detectable in diplotene cells. We also found that PLU-1 localises diffusely over the nucleus, which indicates a potential chromatin binding ability of this protein. Consistent with this notion, we found that PLU-1 is present in the chromatin fraction in biochemical cell fractionation experiments using both somatic and meiotic cells. Our data point to a role for PLU-1 in meiotic transcription, which may be restricted to certain meiotic stages and may be mediated by the ability of this protein to associate with the chromatin.

Animals↗

Cellular localization of estrogen receptor-alpha (ERalpha) and -beta (ERbeta) mRNA in the boar testis.

Boar testes synthesize high amounts of estrogens which are known to stimulate several male sexual functions in a variety of extragonadal target tissues. Possible effects within the testis depend on the existence of the estrogen receptor subtypes alpha and beta (ERalpha, ERbeta). The precise cellular localization of these subtypes within the testis was, so far, based mainly on protein expression studies using different antibodies in several species including boars shows contradictory results. Therefore, we investigated the ERalpha and ERbeta gene expression using RT-PCR of testis homogenates and RT-PCR after UV-single cell microdissection combined with in-situ hybridization of four fertile boars with an average age of 32 weeks. Both ERalpha and ERbeta mRNA were found in testis homogenates. Using in-situ hybridization and UV-single cell microdissection ERalpha mRNA was present in type A and type B spermatogonia up to mid-pachytene primary spermatocytes in stage V-VIII and stage I of the seminiferous epithelial cycle, but not in other cells. ERbeta mRNA was found only in Sertoli cells. Interstitial Leydig cells revealed neither ERalpha nor ERbeta mRNA. The data suggest a direct impact of estrogen in the boar on Sertoli cell function via ERbeta and germ cell formation via ERalpha.

Animals↗

Complex multilocular cystic lesion of rete testis, accompanied by smooth muscle hyperplasia, mimicking intratesticular Leydig cell neoplasm.

Non-neoplastic smooth muscle cell proliferation occurs under a variety of circumstances in many body organs. These abnormalities have been described as hypertrophy, hyperplasia or hamartomatous proliferations. In the male genital system, the excessive growth of smooth muscle in spermatic cord or paratesticular tissue is rare. In previously described cases, these lesions presented as masses but lacked the microscopic features of a neoplasm. We describe a complex multilocular cystic lesion composed of cystic transformation of the rete testis associated with smooth muscle proliferation mimicking intratesticular Leydig cell neoplasm. The lesion consists of three separate components: (1) cystic dilatation of the rete testis; (2) diffuse, interstitial smooth muscle proliferation with intraseptal expansion; and (3) extensive stroma with myxoid areas and scattered interstitial Leydig cells. These morphological findings, supported by a wide immunohistochemical panel, are consistent with cystic dilatation of the rete testis associated with smooth muscle hyperplasia, most probably of myoid origin. To the best of our knowledge, no similar complex lesion of the rete testis has yet been reported.

Adult↗

Identity of M2A (D2-40) antigen and gp36 (Aggrus, T1A-2, podoplanin) in human developing testis, testicular carcinoma in situ and germ-cell tumours.

Testicular germ-cell tumours of young adults are derived from a pre-invasive intratubular lesion, carcinoma in situ (CIS). In a recent genome-wide gene expression screening using cDNA microarrays, we found PDPN over-expressed in CIS compared to normal adult testis. PDPN encodes podoplanin (Aggrus, human gp36, T1A-2), a transmembrane glycoprotein expressed in lymphatic endothelium and various solid tumours. To examine a potential role for PDPN in testicular neoplasms and during testicular development, we investigated its expression pattern during the development of human testis and in a series of testicular CIS, gonadoblastoma and overt germ-cell tumours. We established by RT-PCR and by immunohistochemistry with a gp36 antibody that PDPN mRNA and the protein product were expressed in testes with germ-cell neoplasms but not in the normal adult testis. We also found gp36 expression in early foetal gonocytes and immature Sertoli cells, similar to the expression pattern of M2A antigen, a previously identified marker for CIS and seminoma. This reinforced our previous proposal that M2A (D2-40) antigen was identical to gp36 (podoplanin, Aggrus, T1A-2). Our findings also suggest that podoplanin has a function in developing testis, most likely at the level of cell-cell interactions among pre-meiotic germ cells and immature Sertoli cells.

Adolescent↗

Contribution to the origin and development of the appendices of the testis and epididymis in humans.

Hydatids, as appendices of testis or epididymis, were discovered by Morgagni in 1703 and 1705 and published by him in 1761. Hydatids are considered to be remnants of the cranial part of the Mullerian duct (MD), Wolffian duct (WD), or mesonephric tubules. They are localized as sessile or pedunculated appendices at the cranial pole of testis and at the head of epididymis, or at analogous organs in women. The clinical relevance is known: acute scrotum with torsion of appendices, or metaplasia. However, little is known about the embryological development of hydatids. Therefore, we studied the origin and development of appendix testis (AT) and appendix epididymidis (AE) in human embryos from stage 14 (Carnegie Collection), 6.5 mm GL, 32 days, to fetuses of 170 mm, 17th week. Light and scanning-electron microscopy as well as plastic reconstructions from serial sections of the cranial parts of MD and WD reveal that hydatids already form during regression or transformation of the ducts. At stage 18, 15-16 mm GL, 44 days, the cranial parts of MD and WD exhibit morphological features that give a preview on the definite form and position of later appendices. In fetuses from 45 mm GL, ninth week onward, we found anlagen of pedunculated hydatids (AE) deriving from the ampullated cranial end of the WD, which in many cases opened into the coelomic cavity. The unpedunculated AT derived from the persisting funnel region of the MD. The development of duct-independent, accessory appendices was observed. We paid special attention to a pedunculated hydatid in a fetus of 120 mm, 14th week, and the cranial regressing WD. A classification of hydatids is presented. Photographs and histological sections of (sessile) appendices testis (AT), and (pedunculated) appendices epididymidis (AE) with torsion of stalks exhibit the final forms and positions of hydatids in adult.

Animals↗

Application of morphometric techniques to postnatal rat testes in organ culture: insights into testis growth.

The extent of Sertoli cell proliferation during fetal and neonatal development determines the final adult testis size and potential for sperm output. To gain further knowledge of the factors that regulate Sertoli cell proliferation, the present study used a new approach to analyse changes in morphology and proliferation in the postnatal testis by combining organ culture with morphometric analysis. Fragments of rat testes from days 0 to 10 postpartum were cultured in contact with DMEM for 6 h or 72 h and fixed. The effects of ovine follicle-stimulating hormone (FSH) and activin were studied in an additional 72-h organ culture experiment using day 9 testes. Bromodeoxyuridine (BrdU) was added for the last 6 h of culture to mark proliferating cells. Two-microm sections of the fragments were analysed for morphological changes of the seminiferous cords, and the proportion of BrdU-labelled Sertoli and germ cells was determined. Assessment of 6-h samples revealed growth characteristics consistent with those observed in vivo during days 1-10 of postnatal development. From day 2 onwards, the volume fraction of seminiferous cords began to increase, while significant growth in cross-sectional area of the cords occurred only after day 6. In these culture conditions, germ cell proliferation and testicular architecture was consistent with that expected for the age of the tissue at time of explant. The proportion of dividing Sertoli cells declined from 15-20% at days 0-4 postpartum to below % at day 10 postpartum in the 6-h culture, and it was low or abolished in the 3-day culture at all time points. Activin and FSH together, but not singly, stimulated Sertoli cell proliferation in the 72-h culture. This paper presents a new approach to analysis of in vitro testis development. The combination of fragment culture and stereological analysis permits rigorous and detailed assessment of developmental changes in the postnatal testis.

Activins↗

Diagnostic and therapeutic laparoscopy for nonpalpable testis.

BACKGROUND: We evaluated the use of laparoscopy in the management of impalpable testis to determine what advantages it might offer over the open approach. METHODS: Over a 5.5-year period, a total of 46 patients with 53 nonpalpable testes underwent a laparoscopic procedure at our hospital. There were 28 cases of intraabdominal testis (52.83%), 18 cases of the vas and vessels entering the internal ring (33.96%), and seven cases of intraabdominally absent testis (13.20%). We performed a laparoscopic orchiopexy for 24 testes (scrotal in 21 cases and partial to the inguinal canal in three cases) and an orchiectomy for three testes. We encountered inguinal hernia in 14 cases (26.41%). RESULTS: At follow-up, all testes were the same size as at the time of operation and were well positioned in the scrotum, except for four testes that required reoperation due to partial migration at the superficial inguinal ring. The operating time was <1 h in unilateral cases and <2 h for the bilateral cases. All procedures were completed successfully without conversion or complications. CONCLUSIONS: Laparoscopy is the only exploratory procedure that is accurate enough to enable the diagnosis of nonpalpable testis and also allow the surgical treatment to be done in the same setting.

Abdomen↗

Barrier function of microvessels and roles of glial cell line-derived neurotrophic factor in the rat testis.

The expression and localization of glial cell line-derived neurotrophic factor (GDNF) and its receptor GFR alpha1 in the testis were examined, because the blood-testis barrier is a well-known tissue barrier and we previously reported that GDNF reduced the endothelial permeability of the blood-brain barrier (BBB). Five minutes after intravenous injection of Evans blue (molecular weight, 960.6) or fluorescent dextran (molecular weight 10000 and 70000), Evans blue was observed outside microvessels of the testis, whereas the fluorescent dextran was not. Immunohistochemically, GDNF was detected in alpha-smooth muscle actin-positive cells around the seminiferous tubules and in microvessels. On the other hand, GFR alpha1 was detected in endothelial cells in the interstitial space, as well as in spermatocytes. Although occludin was positive in Sertoli cells and endothelium, claudin-5 was localized only in the endothelium of the microvessels. Thus, it became very clear that the microvessels in the testis possessed relatively impermeable tight junctions, and that the alpha-smooth muscle actin-positive cells secreted GDNF, which receptor was expressed in endothelial cells. Because this relation between GDNF and GFR alpha1 is similar to that observed in the BBB, we hypothesize that GDNF is a general regulator of tight junctions of the endothelium forming a blood-tissue barrier in a paracrine fashion.

Amino Acid Sequence↗

Real-time monitoring of nitric oxide and blood flow during ischemia-reperfusion in the rat testis.

In the present study, we attempted to clarify the role of nitric oxide (NO) and its release during the ischemia-reperfusion rat testis. Eight-week-old male Sprague-Dawley rats were divided into seven groups: age-matched control rats, ischemia (30 minutes)-reperfusion (30 minutes) rats without NG-nitro-L-arginine methyl ester (L-NAME) and L-arginine (L-Arg) treatment, ischemia (30 minutes)-reperfusion (30 minutes) rats treated with L-NAME (10, 30, and 100 mg/kg), ischemia-reperfusion rats treated with L-Arg (10 and 30 mg/kg). Sixty minutes prior to induction of ischemia, L-NAME or L-Arg was administrated intraperitoneally. Real-time monitoring of blood flow and NO release were measured simultaneously with a laser Doppler flowmeter and an NO-selective electrode, respectively. NO2-NO3 and malonaldehyde (MDA) concentrations were measured in the experimental testes. Furthermore, we investigated possible morphological changes in the testis. Clamping of the testicular artery decreased blood flow to 5-20% of the basal level measured before clamping. Immediately following clipping of the artery, NO release rapidly increased. After removing the clip, NO release gradually returned to the basal level. This phenomenon was enhanced by treatment with L-Arg and inhibited by treatment with L-NAME. NO2-NO3 concentrations were increased by treatment with L-Arg and decreased by treatment with L-NAME, while MDA concentrations were increased by treatment with L-NAME and were decreased by treatment with L-Arg. In histological studies, the ischemia-reperfusion caused infiltration of leukocytes and a rupture of microvessels in the testis. Our data suggest that NO has cytoprotective effects on ischemia-reperfusion injury in the rat testis.

Animals↗

Identification and characteristics of a novel testis-specific gene, Tsc21, in mice and human.

Testis-specific genes are essential for spermatogenesis in mammalian male reproduction. We have identified a novel gene, Tsc21, exclusively expressed in mice and human testes from the results of the Affymetrix Genechip analysis in the six developmental stages of testis of postnatal Balb/C mice. The full cDNA length of Tsc21 was 810 bp, with a 543 bp open reading frame encoding a 180 amino acids protein with a predicted molecular weight of 21.040 kDa. A Blast search in the mouse genome database localized the Tsc21 gene to mice chromosome 6C3. Multiple amino acid sequence alignment of human, mouse, and rat homologous genes showed that mice Tsc21 protein was highly homologous with the human Tsc21 gene (70%) and rat Tsc21 gene (86%). The results of reverse transcriptase-polymerase chain reaction analysis showed that the mice Tsc21 is exclusively expressed in the testis and epididymis of mice, and its expression is only detected after the mice is 35 days old. Human Tsc21 is also exclusively expressed in testis of human. Considering the expression profile Tsc21 in mice and human, we propose that Tsc21 may play a role during mammalian male spermatogenesis. Our study should be a basis for function characterization of the Tsc21 gene, leading to the elucidation of the molecular events underlying mammalian male reproduction.

Amino Acid Sequence↗