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Characterization of Sertoli cell-germ cell junctional specializations in dissociated testicular cells.

To further characterize Sertoli cell-germ cell junctional specializations seminiferous tubules from sexually mature Sprague-Dawley rats were dissociated by enzymatic and mechanical methods. Ultrastructural analysis of cell suspensions prepared by incubation in collagenase alone or by mechanical methods revealed that spermatids remained attached to Sertoli cells or Sertoli cell fragments. Such cellular associations were found only between Sertoli cell fragments and spematids in which the developing acrosome had made contact with the plasma membrane (step 8 and subsequent steps of spermiogenesis). Furthermore, the fragments were confined to that region of the plasma membrane over the acrosome. The Sertoli cell half of this adhesive site displayed the typical elements of Sertoli cell junctions, filamentous bundles and associated cisterna of endoplasmic reticulum, in apposition to the spermatids. The spermatids demonstrated no surface specializations at the attachment sites. In contrast, in cell suspensions prepared with trypsin, spermatids were free of attachments to Sertoli cells or their fragments. These results demonstrate that: (1) the junctions act to bind cells together, (2) adhesive type contact is established between Sertoli cells and spermatids at step 8 and subsequent steps of spermiogenesis, (3) contact is restricted to the spermatid plasma membrane over the acrosome, and (4) spermatids can be freed from the junctional specializations by treatment with trypsin.

Animals

[Studies on the aggregation of rat Sertoli cells, germ cells and peritubular cells in vitro].

Dissociated testicular cell suspensions from 5, 10, 15, 20 and 25 day postnatal rats were cultured either on solid agar as a substratum or in a flask under slow rotation. Spherical or cord-like aggregations were formed from cells under both conditions. Sections from the aggregations showed that they were comprised mainly of Sertoli cells, with peritubular cells located around the aggregations. A few germ cells were present within those aggregations from cultures of rat testicular cells younger than ten days, while no germ cell could be found within aggregations from rats older than fifteen days. Based on these observations, we conclude that testicular cells in post-natal rats still maintain a limited capacity for cell adhesion and recognition and are thus able to form cellular aggregations.

Animals

Quantitation of Sertoli cell-germ cell desmosome gap junctions in relation to meiotic divisions in the male rat.

Desmosome-gap (D-G) junctions were quantified in relation to germ cell meiosis in the male, specifically to test the hypothesis that the loss of these junctions is related to successful passage of cells through diplotene phase of Meiosis I and the two cytokineses that follow. Such a hypothesis has been proposed as the cause for the resumption of meiosis that occurs prior to ovulation in the female. D-G junctions were quantified in pachytene spermatocytes (stage XII), diplotene spermatocytes (stage XII), secondary spermatocytes (stage XIV) and step 1 spermatids (stage I). These were referred to as the cells of interest as compared with spermatocytes (zygotene spermatocytes, zygotene spermatocytes, pachytene spermatocytes, pachytene spermatocytes) in the same stages, respectively, that served as controls termed control cells. Since gap junctions are not easily recognized in the average sectioned profile of a desmosome-gap junction, only the desmosomal component was quantified. The data were expressed as both numbers and length of junctions per tubule, per cell profile and per unit lineal membrane length to overcome errors inherent in the methodologies utilized. There was no indication that numbers of junctions changed specifically in the cells of interest after passage through diplotene suggesting that these junctions do not have a comparable role in meiotic continuance in the male as proposed for the female. Interestingly, the control cells always showed greater numbers and length of junctions than the cells of interest suggesting that junction may relate more to the period of initiation of meiosis than to its continuance.

Animals

A cytological and cytoskeletal comparison of Sertoli cells without germ cell and those with germ cells using the W/WV mutant mouse.

The distribution of F-actin and intermediate filaments in the W/WV mouse was investigated by light and transmission electron microscopy, and fluorescence methods. No spermatogenic cells were detected in the seminiferous epithelium of the W/WV mouse. Its seminiferous tubule was one-half the diameter of that in the normal (+/+) mouse. The Sertoli cell which was an only component of the W/WV mouse seminiferous epithelium was decreased in height, but still retained the polarity as evidenced by light microscopy. The Sertoli cell organelles were similar in appearance when normal and mutant mice were compared. F-actin was recognized at ectoplasmic specialization (ES) of the W/WV mouse Sertoli cell and appeared similar to the normal mouse. However, the junction with ES was more extensive compared with that of the normal mouse Vimentin in the W/WV mouse Sertoli cell was distributed around the nucleus and extended towards the tubular lumen similar to the normal mouse. Its extension within the Sertoli cell trunk, however, was restricted to a lesser degree as compared with that in the normal. Thus, the subcellular Sertoli cell and the distribution of F-actin and intermediate filaments (vimentin) in the W/WV mouse Sertoli cell seemed not to be strikingly affected by lack of spermatogenic cells, suggesting minimal influence of germ cells on Sertoli cell cytology and cytoskeleton.

Actins

The in vitro effects of four isomers of dinitrotoluene on rat Sertoli and Sertoli-germ cell cocultures: germ cell detachment and lactate and pyruvate production.

The present study was undertaken to evaluate the in vitro effects of four isomers of a known testicular toxicant, dinitroluene (DNT). Rat Sertoli or Sertoli-germ cell cocultures were treated, after 3 days in culture, with DNT isomers (0.01 to 100 microM) or 1,3-dinitrobenzene (1,3-DNB) for 24 hr. Cellular morphology, germ cell detachment (GCD) and lactate pyruvate production were used as sensitive effect markers of in vitro toxicity. Morphologically the Sertoli cell monolayer remained intact 24 hr after exposure to DMSO, 1,3-DNB, or DNT isomers. Some apparent cytotoxicity was observed at 100 microM 3,4-DNT: the monolayer was disrupted with extensive vacuolation of the Sertoli cells. Cocultures treated with concentrations of 50 microM DNT isomers closely resembled cells treated with 100 microM 1,3-DNB. GCD increased in a dose-dependent manner (0.01 and 10 microM DNT isomers) increasing between 2- and 10-fold over control. Both lactate and pyruvate production increased with rising concentrations of DNT isomers. The most sensitive effect was seen with 3,4-DNT (10 to 25 microM). In the case of 2,6-DNT, despite increases in GCD and lactate production, only a minimal increase in pyruvate was demonstrated. Overall, the ratio of lactate to pyruvate production declined with increasing doses of DNT. These results indicate that the four isomers of DNT directly affected Sertoli cell morphology and function, effects comparable to those seen with the Sertoli cell toxicant 1,3-DNB. Further, the data support the hypothesis that DNT may be a Sertoli cell toxicant.

Animals

Occurrence of nuage in fetal human germ cells.

Germ cells of human fetuses aged 7-13 weeks were studied. Dense fibrous material called nuage was found in the cytoplasm of human fetal germ cells. The nuage increased in frequency in the germ cells during the interval studied. In oogonia the nuage occurred much more frequently than in spermatogonia and the frequency of nuage in oogonia increased earlier than in spermatogonia. The number of nuage was continuously at a higher level in oogonia than in spermatogonia. It is suggested that these findings support the theory that the nuage may act as a germ cell determinant.

Female

Interrelationships between Sertoli cells and germ cells in the Syrian hamster.

The interrelationships of the Sertoli cells and germ cells in the Syrian hamster were examined using the electron microscope. Demosome-like junctions were observed attaching Sertoli cells to spermatogonia and spermatocytes. In the region of the junctions dense plaques lay on the cytoplasmic surfaces of the plasmalemma of the opposing cells. Sertoli cell cytoplasmic filaments converged in the area of the junctions and inserted into the subsurface densities. Filaments were not observed associated with the subsurface densities of the germ cells. In the region of the junctions a 15...20 nm gap, filled with an attenuate amorphous substance, separated the plasmalemmata. Another attachment device termed "junctional specialization" occurred between Sertoli cells, and preleptotene spermatocytes and all successive developmental steps in the germ cell line in the hamster. The junctional specializations consisted of a mantel of Sertoli cell cytoplasmic filament lying subjacent to the Sertoli cell plasmalemma and an opposed cisterna of the endoplasmic reticulum. In stages VII-VIII preleptotene supermatocytes were observed in transit from the basal compartment to the adluminal compartment. While Sertoli-Sertoli junctions adluminal to the spermatocytes remained intact, typical Sertoli-Sertoli junctions formed between opposed Sertoli cell processes basal to the spermatocytes. It is proposed that, during the passage of spermatocytes in to the adluminal compartment, junctional specializations associated with preleptotene spermatocytes in the basal compartment migrate basal to the spermatocytes and contribute to formation of Sertoli-Sertoli junctions. Treatment of seminiferous tubules with hypertonic media was used to demonstrate that the junctional specializations function in cell-to-cell adhesion. Data indicated that these junctions function to retain the developing spermatids within the seminiferous epithelijm until the time of spermiation. At spermination the junctional specializations disappear and the spermatids drift off into the tubule lumen.

Animals

Trout Sertoli cells and germ cells in primary culture: I. Morphological and ultrastructural study.

In order to characterize trout Sertoli cells and germ cells obtained after testis dissociation and cell separation, we have studied their morphology, ultrastructure, survival, and ability to express differentiated activities in primary cultures. After dissociation, the fine structure of Sertoli cells does not differ from that observed in situ and only minor changes are shown for at least 13 days. Until they are flattened in a monolayer, they keep the ability to retain germ cells on their surface. When flattened, some of them are able to divide. At the opposite of meiotic germ cells, spermatogonia can develop independently of Sertoli cells. They are able to proliferate during at least 10 days. Spermatocytes and spermatids are obtained as single cells and multinucleated giant cells (symplasts). In the absence of somatic cells, their maximal viability is approximately 5 days, whereas spermatocytes adhering to Sertoli cells can survive at least 10-12 days, provided trout lipoproteins are present. Spermatocytes are able to differentiate to spermatids, although this process is impaired for some cells. The adhesion of spermatogonia and spermatocytes to Sertoli cells is specific, mediated by desmosome-like junctions and favored by lipoproteins. These data are compared to what is known in mammals and in amphibians.

Animals

Temporal appearance of seasonal changes in numbers of Sertoli cells, Leydig cells, and germ cells in stallions.

The temporal appearance of seasonal changes in numbers of Leydig, Sertoli, and germ cells was evaluated to determine if seasonally increased daily spermatozoan production might be preceded by changes in numbers of either of two somatic testicular cells. A significant increase in numbers of spermatogonia and Sertoli cells preceded the significant increase in number of Leydig cells in the approaching breeding season. Seasonal changes in parenchymal weight and in numbers of Sertoli cells, Leydig cells, and germ cells were maximal in May and June. Numbers of A or B spermatogonia in June were 2.4 to 2.5 times the number present in January. During the same time period, numbers of other germ cells, as well as Leydig cells and Sertoli cells, were increased by 1.5 to 1.9 times. The magnitude of change between January and March (first time period that the change was significant) was greater for A spermatogonia (1.7-fold) than for other cell types (1.3-fold to 1.5-fold). Hence, the need to accommodate more spermatogonial progeny might cause increased testicular size and number of somatic cells, including Sertoli cells. Season did not influence the rate of degeneration between A and B spermatogonia. However, in the breeding season, the conversion of B spermatogonia to primary spermatocytes was reduced. The lack of a seasonal difference in the ratio of primary spermatocytes per Sertoli cell was consistent with a limited capacity of individual Sertoli cells to accommodate primary spermatocytes.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Ethylnitrosourea treatment increases lectin binding to mouse germ cells.

Germ cell toxicity was assessed by investigating the binding of FITC-labeled lectins to mouse testis cells before and 18 days after treatment with ethylnitrosourea (ENU). Flow cytometry of testis cells dual-labeled with FITC-lectin plus the DNA stain, propidium iodide, allowed analysis of haploid (1C), diploid (2C), and dividing (4C) cell populations. Soybean agglutinin, wheat germ agglutinin, concanavalin A and Limax flavus agglutinin bound to normal mouse testis cells containing 1C, 2C or 4C DNA. Asparagus pea lectin and Bandeireae simplicifolia I isolectin B4 did not. ENU treatment reduced the number of testis cells and increased lectin binding, particularly of those lectins which bound to untreated cells.

Animals

Effective salvage chemotherapy with etoposide, dactinomycin, and methotrexate in refractory germ cell cancer. Australasian Germ Cell Trial Group.

Fifty-one patients with advanced germ cell malignancy who had either failed to achieve complete remission with initial cisplatin, vinblastine, and bleomycin chemotherapy or who had relapsed after complete response (CR) to this therapy and then proven refractory on retreatment, were treated with etoposide (75 mg/m2 for 3 days), dactinomycin (1 mg/m2 day 1), and methotrexate (30 mg/m2 day 1) (EAM) every 3 weeks. Courses were continued until maximum response without empirical limit, and if complete remission was achieved, two courses of consolidation therapy were given before cessation of treatment. Thirteen patients (25%) were complete responders with residual masses containing fibrosis or benign teratoma being subsequently resected in seven patients. Two patients had persisting viable carcinoma within residual masses that were completely resected, leaving no evidence of disease (NED); the combined CR plus NED rate was 29%. The only pretreatment factor significantly influencing this response rate was tumor volume. Toxicities were moderate, with leukopenia being observed in 28% of patients, but it was severe in only 2%. There was one death from septicemia. Severe nausea and vomiting occurred in only 9% of patients and treatment-related stomatitis was observed in 42%. All patients achieving CR plus NED have been followed for a minimum of 5 years and no relapses have occurred, suggesting that these patients are cured. Unlike other regimens of salvage chemotherapy, this treatment program did not contain cisplatin and it is contended that a completely noncrossresistant drug regimen based on etoposide provides the opportunity to further improve the curability of patients with advanced germ cell cancer.

Antineoplastic Combined Chemotherapy Protocols

Dose intensity and outcome with combination chemotherapy for germ cell carcinoma. Australasian Germ Cell Trial Group.

Two hundred and fifty-three patients with advanced stage germ cell carcinoma received induction chemotherapy with vinblastine, bleomycin and cisplatin, sometimes with subsequent surgical resection of residual masses. Overall, 191 patients (76%) achieved complete remission or no evidence of disease after surgery (CR + NED). With 64 months median follow-up only 24 patients have relapsed (13%) and 68% of all patients treated are long-term survivors and 84% of patients entering CR + NED are alive. Toxicity with this chemotherapy was considerable, including seven deaths from leukopenia and septicaemia and eight deaths from bleomycin lung toxicity. Dose reductions or omissions of the drug from the treatment programme was necessary with cisplatin in 8% of patients, with vinblastine in 37% and with bleomycin in 35% of patients. Analysis of these alterations in dose intensity for each drug revealed that initial treatment response and subsequent survival were not compromised by reductions in intended doses of drug administered for either vinblastine or bleomycin. Too few patients had dose reductions of cisplatin for meaningful analysis. This apparent lack of major dose-response effect for either vinblastine or bleomycin in the present treatment programme for germ cell carcinoma has prompted the initiation of a randomized study to determine whether deletion of bleomycin from treatment for patients with good prognostic pretreatment characteristics improves the therapeutic index of this very successful therapy.

Antineoplastic Combined Chemotherapy Protocols

A POU-domain transcription factor in early stem cells and germ cells of the mammalian embryo.

The murine oct-3 gene encodes a transcription factor containing a POU-specific domain and a homeodomain. In marked contrast to other homeodomain-encoding genes, oct-3 is expressed in the totipotent and pluripotent stem cells of the pregastrulation embryo and is down-regulated during differentiation to endoderm and mesoderm, suggesting that it has a role in early development. The oct-3 gene is also expressed in primordial germ cells and in the female germ line.

Amino Acid Sequence

Placental alkaline phosphatase immunohistochemistry of intratubular malignant germ cells and associated testicular germ cell tumors.

Two hundred three testicular germ cell tumors were studied immunohistochemically for the presence of placental alkaline phosphatase (PLAP). Special emphasis was placed on the pattern and incidence of positive staining of intratubular malignant germ cells (ITMGCs) adjacent to tumors. 99% of cases with adjacent ITMGCs showed a positive staining reaction in some or all IT-MGCs present. Other germ cell elements showed at least a focal positive staining reaction in the following proportions: seminomas, 96%; embryonal carcinomas, 96%; yolk sac tumors, 25%; mature teratomas, 5%; immature teratomas, 4%; choriocarcinomas, 45%; and syncytiotrophoblasts, 43%. The staining pattern for seminomas tended to be diffuse, whereas for embryonal carcinomas the staining pattern was more focal. Yolk sac tumors stained inconsistently for PLAP and a positive reaction was limited to a small percentage of cells. Syncytiotrophoblasts, singly or in choriocarcinomas, also showed variable positivity. These results corroborate the fact that PLAP is a sensitive marker for ITMGC, seminoma, and embryonal carcinoma.

Adult

Frequency of intratubular germ cell neoplasia with invasive testicular germ cell tumors. Histologic and immunocytochemical features.

Intratubular germ cell neoplasia (ITGCN) has been regarded as the preinvasive stage of testicular germ cell tumors. We evaluated its frequency in 53 testicular germ cell tumors and determined whether immunohistochemical stains for alpha-fetoprotein, human chorionic gonadotropin, carcinoembryonic antigen, and ferritin demonstrated an advantage in its detection in comparison with hematoxylin-eosin and periodic acid-Schiff (PAS) stains. Residual seminiferous tubules were found at the periphery of the invasive neoplastic foci in 47 cases. Intratubular germ cell neoplasia was detected in several or multiple seminiferous tubules in 46 cases (98%). Exquisite localization of PAS-positive intracellular granules was present in all but one case of ITGCN. Focal immunocytochemical positivity for human chorionic gonadotropin, carcinoembryonic antigen, and ferritin was noted in 2.3% of cases. We conclude that ITGCN is present in most invasive germ cell tumors and the PAS stain is very reliable in its demonstration. Antigenic expression of the proteins that we examined is extremely limited in these primordial germ cells.

Carcinoembryonic Antigen

Age-dependent Sertoli cell responsiveness to germ cells in vitro.

This study investigated the effect of germ cells (greater than 80% mid- and late-pachytene spermatocytes) on the secretion of androgen binding protein (ABP) and transferrin by monolayer cultures of Sertoli cells isolated from rats aged 10, 18 or 26 days. There was an age-dependent increase in secretion of ABP and transferrin. Treatment of the Sertoli cell monolayers with hypotonic buffer to remove residual germ cells reduced this increase significantly. On the other hand, addition of germ cells to hypotonic-treated Sertoli cell monolayers increased both basal and FSH + testosterone-stimulated ABP and transferrin secretion at all three ages, although Sertoli cells from 10-day-old animals showed the greatest response. Moreover, addition of germ cells reduced responsiveness to FSH + testosterone in Sertoli cell monolayers obtained from rats aged 18 or 26 days. In monolayers obtained from 10-day-old rats, the opposite effect was noted in the case of ABP secretion. The stimulatory effect of germ cells on ABP and transferrin secretion was proportional to their number, and was reversed 48 h after the germ cells added previously were removed by hypotonic treatment. Whereas the reversal was complete with cultures of Sertoli cells isolated from 18- and 26-day-old rats, approximately 40% of the stimulatory effect remained after removal of germ cells from cultures from the 10-day-old age group. Adhesion of germ cells to Sertoli cell monolayers was also found to be age-dependent, with the largest proportion of added germ cells adhering to Sertoli cells isolated at 18 and 26 days of age. It is concluded that germ cells can significantly and differentially modulate the basal and hormone-stimulated secretory activity of Sertoli cells in vitro and that Sertoli cell responsiveness to germ cells (pachytene spermatocytes) is age-dependent and seems to appear early during the maturation process, before these germ cells appear in the testis.

Aging

Keratin 7 is a marker for a subset of trophoblastic cells in human germ cell tumors.

Human testicular germ cell tumors were studied immunohistochemically with the monoclonal antibody to the 54-kd keratin polypeptide (keratin 7) to determine whether this antibody could be used selectively to identify trophoblastic cells. The antibody reacted with the intermediate filaments in the cytoplasm of some cells in choriocarcinoma cell lines, and in trophoblastic cells in mixed germ cell tumors and a seminoma. It did not react with classic seminoma cells, embryonal carcinoma, yolk sac carcinoma, or somatic tissues of mixed germ cell tumors. On the basis of these data we conclude that monoclonal antibody to keratin 7 is a marker for a subset of trophoblastic cells in human germ cell tumors.

Adult