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B Robaire

Publications and source records attributed to B Robaire.

At least 37 records · Page 2Linked to original sources

Induction of apoptosis in the germ cells of adult male rats after exposure to cyclophosphamide.

Treatment with cyclophosphamide, a commonly used anticancer drug, may result in oligozoospermia or azoospermia. The objective of this study was to determine whether exposure of male rats to cyclophosphamide induces apoptosis in male germ cells, and if so, when the peak of apoptosis occurs and at what specific stages of spermatogenesis. The presence of apoptosis was determined by terminal deoxynucleotidyl transferase-mediated dUTP nick end-labeling (TUNEL) detection in situ and by an increase in DNA fragmentation (DNA ladder). To determine the time course of drug-induced apoptosis, male Sprague-Dawley rats were treated with a single dose (70 mg/kg BW) of cyclophosphamide, and the testes were fixed 0, 4, 8, 12, 18, 24, and 48 h after treatment. To determine the dose response, rats were treated with doses of cyclophosphamide (0, 2, 7, 20, and 70 mg/kg), and the testes were fixed 12 h after treatment. A low spontaneous incidence of apoptosis was observed in controls, in particular in premeiotic germ cells of stages I-IV and XI-XIV of the seminiferous tubules. In cyclophosphamide-exposed rats, the incidence of apoptosis increased progressively at 4 h and 8 h, reached a peak at 12 h (about 3.5-fold above control), and then decreased rapidly to control levels by 48 h. A 70-mg/kg dose of cyclophosphamide induced a significant increase in apoptosis; lower doses did not. Although drug-induced apoptosis occurred in all stages of germ cells, it was most pronounced in spermatogonia and spermatocytes in stages I-IV and XI-XIV. Thus, apoptosis may be involved in the occurrence of oligozoospermia or azoospermia after cyclophosphamide treatment. Apoptosis of damaged premeiotic germ cells may serve a critical role in protecting subsequent generations from the diverse effects of toxicants.

Animals↗

Immunocytochemical localization of the Ya, Yc, Yb1, and Yb2 subunits of glutathione S-transferases in the testis and epididymis of adult rats.

Glutathione S-transferases (GSTs) are dimeric proteins that come from a multigene family. They can be grouped into five classes (alpha, mu, pi, sigma, theta) based on the degree of amino acid homology of their subunits. These GST isozymes are able to catalyze the conjugation of glutathione with a wide variety of electrophiles, thereby protecting important cellular constituents from electrophilic attack. In the present study, the distribution of the Ya and Yc subunits from the alpha family, as well as the Yb1 and Yb2 subunits from the mu gene family was examined using immunocytochemistry in the adult rat testis and epididymis. The results of these four GST subunits were also compared with two other subunits, the Yf and Yo proteins, which have already been investigated in our laboratory [Veri et al. (1993), J. Androl., 14:23-44; Veri et al. (in press), J. Androl.]. In the testis, Leydig cells were intensely stained for all six subunits. Within the seminiferous epithelium, Sertoli cells were reactive only for antibodies raised against the Ya, Yb1 and Yf subunits. Among germ cells, all spermatogonia, spermatocytes and step 1-15 spermatids were virtually unreactive for each of the six GSTs. However, moderate to intense staining was seen over steps 16-19 spermatids with the anti-Yo and anti-Ya antibodies, and intense staining over step 19 spermatids with the anti-Yb1 and anti-Yb2 antibodies. In the rete testis, Yf, Yo, Yb1, and Yb2 subunits were intensely reactive over the epithelial cells with weak staining for Yc and no staining for Ya antibodies. Interestingly, in the efferent ducts the Yc, Yb1, and Yf proteins were intensely reactive over ciliated cells, whereas only the Yc protein was intensely reactive over nonciliated cells. In the epididymis, immunoreactivity varied among the principal and basal cells of a given epididymal region for each GST antibody. In the case of principal cells, several of the GSTs showed a similar immunostaining pattern along the tubule. Although not identical in intensity of reaction, the Yc, Yb1, Ya and Yo proteins showed an increase in staining intensity from the proximal to distal segments of the epididymis. In contrast, the Yb2 protein was intensely expressed only in the distal caput with weak levels throughout the rest of the epididymis. The Yf reactivity was strongest from the distal initial segment to the distal caput and unreactive in the corpus and proximal cauda epididymidis.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Structure and turnover of junctional complexes between principal cells of the rat epididymis.

The epididymal junctional complex between adjacent principal cells is composed of apically located gap, adherens and tight junctions. Tight junctions between adjacent epithelial cells lead to the formation of the blood-epididymal barrier. The objectives of this study were to examine the structure of the epididymal junctional complex in the different regions of the epididymis and to review the regulation of epithelial cadherin in the rat epididymis. Changes in the structure of the junctional complex, at the level of the electron microscope, were evident when comparing the initial segment to other regions of the epididymis. In the initial segment, the tight junction spanned a considerable length of the apical plasma membrane but had few desmosomes. In the other regions of the epididymis, the span of merging plasma membranes was considerably reduced, but in these regions, numerous desmosomes were present in the apical region. Several examples of what appeared to be a loss of portions of the plasma membrane of adjacent principal cells were evident along the entire epididymis. Such images as the invagination of a portion of the lateral plasma membrane of one principal cell into another, constriction of the invaginated area and eventual detachment leading to the formation of annular junctions suggest that there is a turnover of plasma membranes. The formation of cellular junctions involves the interactions of cell adhesion proteins followed by the addition of junctional proteins which assemble into tight and gap junctions. Epithelial cadherin (E-Cad), a calcium-dependent cell adhesion protein, was localized to the principal cells of the epididymis. Immunocytochemistry at the level of the electron microscope showed that E-Cad was present between the lateral plasma membranes of adjacent principal cells, both in the region of the junctional complex and in the deeper lying areas. E-Cad was also present in annular junctions located in close proximity to the junctional complex, indicating that these structures were related to the plasma membrane. E-Cad mRNA levels are regulated during postnatal epididymal development. In the caput-corpus epididymidis, E-Cad mRNA concentrations increase to peak at 42 days of age. This is well correlated with the conversion of testosterone to dihydrotestosterone in the epididymis. In the cauda epididymidis, however, E-Cad mRNA concentrations do not increase as a function of age, indicating that this protein is regulated in a segment-specific manner.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Effects of chronic low-dose cyclophosphamide exposure on the nuclei of rat spermatozoa.

Previous studies from our laboratory have shown that chronic exposure of the father to low doses of cyclophosphamide results in a significant increase in early embryonic death with little effect on the male reproductive system in rats. Such effects on progeny outcome are hypothesized to be mediated by an action of the drug on the nucleus of spermatozoa. The purpose of the present studies was to investigate the effects of cyclophosphamide treatment for 1 or 6 wk on the pattern of decondensation of sperm nuclei and on the sulfhydryl content of sperm nuclear proteins. Adult male rats were treated with cyclophosphamide (6.1 mg/kg/day) daily for 1 or 6 wk. Cauda epididymal spermatozoa were collected, demembranated, and then incubated with dithiothreitol (DTT) and proteinase K. The in vitro decondensation pattern of the nuclei of spermatozoa was divided into two phases: nuclear swelling and nuclear elongation. Spermatozoa from animals treated for 1 wk with cyclophosphamide showed the same decondensation pattern as those treated with vehicle (saline) alone. However, spermatozoa from animals treated for 6 wk with cyclophosphamide showed normal initial nuclear swelling but had a markedly affected nuclear elongation pattern. The changes with time in the decondensation pattern of these spermatozoa were quantitated by morphometric analysis of the head region of the spermatozoa. The nuclear area, curvature, and length of spermatozoa obtained from chronically drug-treated males were all significantly smaller than for those obtained from controls, while cell diameter was not affected.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Regulation of epididymal epithelial cell functions.

It is well established that the epididymis is the site where spermatozoa are matured and stored, but our understanding of the regulation of epididymal epithelium functions and their effects on spermatozoa is still fairly limited. The most active regulator of epididymal functions seems to be dihydrotestosterone, the 5 alpha-reduced metabolite of testosterone. Our laboratory has focused on the regulation of 5 alpha-reductase, with studies encompassing its messenger RNA, protein and enzyme activity. We have also investigated the hormonal regulation and distribution of other specific key proteins found in epididymal epithelial cells that play critical roles in the function of these cells. These proteins include clusterin or sulfated glycoprotein-2 and the glutathione S-transferases (GST). Using complementary experimental approaches, including orchidectomy and hormonal replacement, efferent duct ligation, and developmental studies, we have established that 5 alpha-reductase enzyme activity is present in both nuclear and microsomal fractions; the nuclear enzyme appears almost exclusively in the initial segment of the epididymis. In addition, 5 alpha-reductase activity and the mRNAs for both the type 1 and type 2 form of the enzyme are regulated differentially with respect to age and site within the epididymis. Immunolocalization of the protein has revealed that it is located in principal cells and that its subcellular location is dependent on the region of the epididymis. These results indicate that there is both transcriptional and post-transcriptional regulation of the expression of 5 alpha-reductase. Clusterin is a hydrophobic protein secreted by Sertoli cells and found in high concentration in the epididymis. This glycoprotein is expressed at its highest levels in the initial segment and caput epididymidis and at very low levels in the corpus and cauda epididymidis of the intact rat, and it exhibits a novel pattern of androgen regulation. In the areas of highest expression, there is no androgen dependence; however, orchidectomy causes a dramatic increase in the message for clusterin, which is suppressible by androgens in the segments where expression is normally lowest. The GSTs are a family of enzymes thought to play a key role in detoxification. Members of the GST family are expressed in a region-dependent manner along the rat epididymis. We have found that the localization of one member of this enzyme family, GST P, or subunit Yp, is selective for basal cells in the corpus and cauda epididymidis.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Damage to rat spermatozoal DNA after chronic cyclophosphamide exposure.

Treatment of male rats with low dosages of cyclophosphamide causes a dramatic increase in early embryo death among their progeny without significantly affecting the general health of the male. It is hypothesized that cyclophosphamide exerts its effects by targeting specific components of spermatozoal nuclei. The purpose of the present studies was to investigate the effects of chronic cyclophosphamide treatment on spermatozoal DNA. Two approaches were pursued. The first was to determine total DNA damage by using the alkaline elution method. The second was to study spermatozoal DNA template function by using an in vitro DNA synthesis system. Adult male rats were treated with saline or cyclophosphamide (6.1 mg/kg/day) daily for 1 or 6 wk. Cauda epididymal spermatozoa were collected and subjected to alkaline elution using DNA-DNA dot hybridization to quantify the fractionated DNA. One week of treatment with cyclophosphamide caused DNA single strand breaks that could be detected only in the presence of proteinase K in the lysis solution; no DNA cross-links were observed in the animals that received 1-wk drug treatment. In contrast, 6 wk of treatment with cyclophosphamide induced a significant increase in both DNA single strand breaks and cross-links in spermatozoal nuclei; the cross-links were attributable primarily to DNA-DNA linkages. The availability of spermatozoal DNA for template function was not affected by 1 wk of treatment with cyclophosphamide but was markedly affected after 6 wk of treatment with this drug. It is proposed that during chromatin transition processes the male genome may be in an open dynamic state with many exposed sites that are vulnerable to alkylating agents. Since there is no DNA repair during spermiogenesis, damage to the genome by alkylation at this stage may be cumulative, resulting in the production of dysfunctional germ cells.

Animals↗

Steady state steroid 5 alpha-reductase messenger ribonucleic acid levels and immunocytochemical localization of the type 1 protein in the rat testis during postnatal development.

Steroid 5 alpha-reductase is the rate-limiting enzyme in the production of 5 alpha-reduced steroids in many tissues. Developmental changes in 5 alpha-reductase activity play an important role in regulating the amount of testosterone that is secreted by the testis. To date, the regulation of testicular 5 alpha-reductase has been studied extensively at the level of enzyme activity. Regulation at the messenger RNA (mRNA) and protein levels, however, has not been investigated. The objectives of the present study were to determine the steady state mRNA levels for the 5 alpha-reductase isozymes, types 1 and 2, and to immunolocalize the 5 alpha-reductase type 1 protein in the developing rat testis (7-91 days postpartum). Consistent with previously reported enzyme activity studies, type 1 5 alpha-reductase mRNA levels were most abundant in the immature animal (days 21-28). Unlike 5 alpha-reductase activity, however, type 1 mRNA levels did not decline thereafter to reach nearly undetectable levels in the adult (day 91). In contrast, 5 alpha-reductase type 1 mRNA levels remained relatively constant between days 42-91. The 5 alpha-reductase type 1 transcript size did not remain constant during postnatal testicular development. The characteristic 2.5-kilobase type 1 transcript size was detected in immature rats (days 21-28), whereas in the adult (day 91), a slower migrating 2.7-kilobase type 1 mRNA species was observed. An antipeptide antiserum specific to rat 5 alpha-reductase type 1 was used to immunolocalize the 5 alpha-reductase type 1 protein. At all ages examined, the immunoperoxidase reaction was localized predominantly to the interstitial tissue of the testis. On postnatal day 7, clusters of interstitial cells resembling fetal Leydig cells were clearly immunoreactive. The staining intensity increased steadily from day 7 onwards, so that by days 21 and 28, interstitial cells with the appearance of immature Leydig cells were intensely immunoreactive (peak expression). This was followed by a progressive decrease in staining intensity between days 28-91, so that by day 91 (adult) Leydig cell immunoreactivity was barely detectable. Immunocytochemical staining revealed a predominantly cytoplasmic localization; significant nuclear staining was not evident. We conclude that the expression of the 5 alpha-reductase type 1 protein is primarily found in the cytoplasm of Leydig cells, is dependent on age, and that this expression closely parallels 5 alpha-reductase enzyme activity.

3-Oxo-5-alpha-Steroid 4-Dehydrogenase↗

Developmental expression of the Yf subunit of glutathione S-transferase P in epithelial cells of the testis, efferent ducts, and epididymis of the rat.

BACKGROUND: Glutathione S-transferases (GSTs) are a family of isozymes that catalyze the conjugation of the tripeptide, glutathione, to various electrophilic compounds. The major GST in the pi class is GST-P, a homodimer of the Yf subunit, also known as Yp or rat subunit 7. This subunit is found in high concentrations in the epididymis and has recently been immunolocalized within epithelial principal and basal cells of the epididymis. METHODS: In the present study we examine in groups of animals fixed in Bouin's fixative for light microscopy and in 4% paraformaldehyde and 0.5% glutaraldehyde in phosphate buffer for electron microscopy, the pattern of immunostaining for the Yf subunit of GST-P in the testis, efferent ducts and epididymis at various ages after birth. RESULTS: In the epididymis, on postnatal days 7 and 15, an immunoperoxidase reaction was localized exclusively to the apical and supranuclear regions of the undifferentiated columnar epithelial cells of the entire epididymis. By day 21, a dramatic change had taken place. In the initial segment, intermediate zone and proximal caput epididymidis, the columnar cells showed a distinct checkerboard-like staining pattern with cells ranging from being intensely reactive to unreactive. In contrast, principal cells of the distal caput, corpus, and proximal cauda epididymidis were weakly reactive. By day 28 the ratio of reactive to unreactive cells in the initial segment, intermediate zone, and proximal caput epididymidis was higher. By day 39, the differentiated columnar epithelial cells, referred to as principal cells, took on their adult staining pattern in the proximal and middle areas of the initial segment as well as the corpus and proximal cauda epididymidis where they were slightly reactive; in the distal initial segment they were strongly reactive. At day 49, principal cells in the intermediate zone and proximal caput became intensely reactive, while showing a distinct checkerboard-like staining pattern in the distal caput; similar observations were made for tissues taken from 56 and 90-day-old animals. Basal cells also showed a variable staining pattern in the different epididymal regions as a function of age. At day 21, when they first appeared, they were unreactive except for an occasional reactive cell in the corpus region. At day 28, only in the corpus epididymidis were many basal cells seen to be reactive. By day 39 the more numerous basal cells of the corpus and proximal cauda epididymidis were intensely reactive and remained so into adulthood. In these regions, basal cells appeared as dome-shaped cells (days 21, 28, 39), but then gradually flattened out and exhibited processes (days, 49, 56, adults) which collectively appeared to envelop the base of each tubule in a mesh-like network. The change in basal cell shape in each region coincided with the arrival of fluid and spermatozoa into the lumen (corpus day 49, proximal cauda day 56). In other epididymal regions, basal cells at day 28 were mostly unreactive. However, there was a gradual increase in the number of reactive basal cells of these regions between day 39 and 56. CONCLUSIONS: The present results thus demonstrate a dramatic change in the immunostaining pattern for the Yf subunit of GST-P during postnatal development for both principal and basal cells along the epididymis. Such results suggest that different factors play a role in the regulation of the expression of the Yf protein, not only in different epididymal regions, but also in different cell types during postnatal development.

Animals↗

Developmental expression of the glutathione S-transferase Yo subunit in the rat testis and epididymis using light microscope immunocytochemistry.

BACKGROUND: Glutathione S-transferases (GSTs) are a family of isozymes that catalyze the conjugation of glutathione with various toxic electrophilic compounds. GSTs are composed of several classes based on the degree of sequence homology of their subunits. The Yo subunit, a member of the mu class, is expressed at high levels in the testis and epididymis. The purpose of this study was to immunolocalize the GST-Yo in these tissues during development. METHODS: The testes and epididymides of rats aged 7, 15, 21, 28, 39, 42, 45, 49, and 56 days were fixed in Bouin's fixative, and immunostained for light microscopic analysis. RESULTS: In the testis the cytoplasm of all germ cells was unreactive until day 39. At that time, step 18 spermatids appeared moderately reactive, while the few observed step 19 spermatids were intensely reactive as were their residual bodies. The presence of residual bodies indicates that spermiation takes place as early as day 39; however, the number of step 19 spermatids is low at this age. A progressive increase in the size of the tubule and number of elongating spermatids was seen between days 42 and 49. In addition, by day 49, a weak staining was observed in steps 12-15, moderate in steps 16-17, and intense in steps 18-19 spermatids. In terms of the intensity of staining, cell types stained, size of the tubules, and number of elongating spermatids, no difference was noted between day 49, 56, and adult animals. Thus Yo protein expression in germ cells reached maturity by day 49. The epithelial cells of the rete testis were intensely reactive at day 7 and remained so throughout development. In contrast, while the epithelial cells of the efferent ducts at day 7 were intensely reactive, they were weakly reactive by day 39 and remained so at later ages. Along the entire epididymis, the columnar epithelial cells showed a moderate apical/supranuclear reaction from day 7 to 28. By day 39 principal cells of the initial segment became weakly reactive, while those in the caput and corpus were moderately stained, a situation seen at later ages including adults. Only by day 49 did principal cells of the proximal cauda become moderately stained as seen in adult animals. Thus the expression of the Yo protein in the principal cells of the proximal cauda may be regulated by different factors than those of the caput and corpus epididymidis. Alternatively, the expression of the Yo subunit in principal cells of the proximal cauda may develop later since this region would be the last to receive luminally derived testicular products. In the initial segment, the decrease in staining of principal cells at day 39 may be due to an inhibiting factor emanating from the testis. Spermatozoa appeared in the lumen of each epididymal region well after the expression of Yo had reached its adult staining pattern indicating that they are not a factor. CONCLUSIONS: Overall these results suggest that the expression of GST-Yo in the various cells of the testis and epididymis are controlled by different factors during postnatal development.

Animals↗

Paternal cyclophosphamide exposure causes decreased cell proliferation in cleavage-stage embryos.

Exposure of the male germ cell to cyclophosphamide during spermatogenesis and sperm maturation can interfere with development of the embryo. When male rats were treated with a chronic low dose of cyclophosphamide for 4 wk there was a dramatic increase in early postimplantation loss in their progeny, characterized by implantation sites selectively lacking in embryonic tissues. The present study was designed to determine the earliest appearance of a paternal effect of cyclophosphamide treatment and to examine whether the embryonic lineage was selectively affected. Male Sprague-Dawley rats were orally dosed for 4-5 wk with saline or 6 mg/kg per day of cyclophosphamide; their progeny were obtained on Days 2, 2.5, 3, 4, and 4.5 of gestation. Paternal cyclophosphamide treatment had no effect on the mean number of embryos per pregnant female. However, as early as Day 3 of gestation, there was a significant decrease in cell number among the embryos sired by cyclophosphamide-treated males, increasing to a greater than 50% decrease in cell number by Day 4. The cell doubling time in embryos sired by treated males (16 h) was longer than that of controls (12 h). This decreased proliferation rate was confirmed by a dramatic decrease in the capacity of both Day 3 and Day 4 embryos sired by cyclophosphamide-treated males to incorporate [3H]thymidine over a 26-h culture period. Cytogenetic analysis in a limited number of blastomeres entering metaphase revealed no evidence of chromosomal abnormalities. Both the trophectoderm and the inner cell mass cells were proportionally decreased in Day 4.5 embryos sired by cyclophosphamide-treated males. Thus, paternal cyclophosphamide exposure affected both cell lineages in the conceptus as early as Day 3 of gestation.

Animals↗

Immunocytochemical localization of 4-ene steroid 5 alpha-reductase type 1 along the rat epididymis during postnatal development.

Dihydrotestosterone (DHT), the active androgen in many tissues, is synthesized from testosterone by the enzyme 4-ene steroid 5 alpha-reductase (5 alpha-reductase; EC 1.3.1.22). In the epididymis, the maturation and storage of spermatozoa are dependent on the presence of 5 alpha-reduced androgens. The regulation of epididymal 5 alpha-reductase is complex. To date, the regulation of this enzyme has been studied extensively at the level of enzymatic activity and more recently at the mRNA level. Regulation at the level of the protein, however, remains poorly understood. We have raised rabbit polyclonal antibodies to a 24-mer synthetic peptide whose sequence was determined from the predicted amino acid sequence for rat 5 alpha-reductase type 1 to immunolocalize the 5 alpha-reductase type 1 protein in the rat epididymis during postnatal development. Western blot analysis revealed a specific immunoreactive band of 26 kilodaltons in male rat liver, epididymis, and prostate; this apparent molecular size is identical to that obtained when the 5 alpha-reductase type 1 cDNA is expressed in mammalian cells. Furthermore, the relative protein levels, liver > epididymis > prostate, were consistent with the mRNA levels for type 1 rat 5 alpha-reductase. Perfusion-fixed paraffin-embedded epididymal tissue sections were used to immunolocalize type 1 5 alpha-reductase. In the adult rat epididymis, the most intense immunoperoxidase reaction was observed in a discrete lobule of the initial segment of the epididymis. A progressive decrease in staining intensity occurred distally along the tissue to the cauda epididymis. The staining reaction was specific to cytoplasmic elements of epithelial principal cells; no reaction was evident over nuclei. However, specifically in the initial segment, very intense staining was seen in the infranuclear region of the principal cells. In the proximal caput epididymidis, the staining was primarily confined to an oval region above the nuclei, whereas in the remaining epididymal regions, weak staining was seen throughout the cytoplasm. Thus, the intracellular localization of the 5 alpha-reductase type 1 protein changed as one moved down the epididymis. Finally, the pattern of immunolocalization of 5 alpha-reductase type 1 protein was different in the epididymis of rats of different postnatal ages. On day 7, no reactivity was noted; by day 28, a weak apical staining of principal cells was seen throughout the epididymis; by day 47, the adult pattern of staining had been established. Our results revealed that the expression and intracellular localization of the 5 alpha-reductase type 1 protein are both age dependent and epididymal segment specific.

3-Oxo-5-alpha-Steroid 4-Dehydrogenase↗

Photoperiod-mediated increases in serum concentrations of inhibin, follicle-stimulating hormone, and luteinizing hormone are accentuated in adult shortened-scrotum rams without corresponding decreases in testosterone and estradiol.

Relationships between "seasonal" changes in the secretion of gonadotropic (FSH, LH) and gonadal feedback (inhibin, testosterone, estradiol) hormones were examined in the adult ram. Eight Dorset x Leicester x Suffolk rams were kept in photoperiod-controlled rooms for 2 yr and subjected to alternating 4-mo periods of stimulatory (8 h light) and inhibitory (16 h light) day-lengths. The scrota of four rams were shortened at the outset to elevate testicular temperature and presumably impair inhibin secretion by Sertoli cells. Blood samples were collected serially from the jugular vein every 3 wk, and scrotal circumference of the four control rams were measured every 2 wk. Testicular recrudescence and regression were completed in the second month of the short- and long-day periods, respectively. Mean serum concentrations of testosterone and estradiol varied in synchrony across months (r = 0.42) and were similar between the groups of rams, except early in the short-day periods when testosterone was 50% lower in the shortened-scrotum rams because of smaller "seasonal" increases in testosterone pulse amplitude and baseline concentration. Increases in the secretion of gonadotropic hormones during testicular recrudescence were greater in magnitude (FSH) and/or of longer duration (FSH, LH pulse amplitude, and baseline LH) in rams with shortened scrota. In fact, mean FSH concentration was an average of 250% higher in the shortened-scrotum vs. the control rams throughout the last two photoperiod cycles. Mean inhibin concentration varied with month in accordance with FSH (r = 0.52) and either remained normal or was higher than usual (e.g., 55% during testicular regression) in the shortened-scrotum rams.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Developmental changes in epithelial cadherin messenger ribonucleic acid and immunocytochemical localization of epithelial cadherin during postnatal epididymal development in the rat.

The formation of junctional complexes between adjacent epithelial principal cells leads to formation of the blood-epididymal barrier; this barrier is complete by 21 days of postnatal age. Cadherins are cell surface proteins that mediate intercellular adhesion and are involved in the formation of adherence, gap, and tight junctions between epithelial cells. In the adult rat epididymis, epithelial cadherin (E-Cad) is localized in principal cells; E-Cad mRNA concentrations are androgen dependent in this tissue. The objectives of this study were to determine the regulation of E-Cad mRNA concentrations and the pattern of immunocytochemical localization of E-Cad during epididymal development. Using Northern blot analysis, we noted that in the caput-corpus epididymidis, there was a 3-fold increase in E-Cad mRNA concentrations between 7-14 days; an additional 3-fold increase between days 35-42, when E-Cad mRNA concentrations reached their peak, was noted. A dramatic decrease in E-Cad mRNA was observed between 42-49 days of age. This effect was transitory as E-Cad mRNA concentrations returned to almost 80% of peak concentrations on day 56 and remained constant thereafter. In the cauda epididymidis, E-Cad mRNA concentrations increased by only 1.6-fold between days 7-21. E-Cad mRNA concentrations then decreased by 70% to their lowest concentrations on day 56. There was a 2-fold increase in E-Cad mRNA concentrations between postnatal ages 56-91 days. These results suggest that the developmental regulation of E-Cad mRNA concentrations is segment specific. A subsequent study on the longitudinal distribution of E-Cad mRNA levels in six epididymal segments at 21, 42, and 56 days of age revealed that the relative proportion of E-Cad mRNA along the epididymis changes as a function of age. An immunocytochemical study with the light microscope, using an anti-E-Cad antibody, demonstrated that the localization and relative concentrations of E-Cad varied as a function of age. On day 15, the immunoperoxidase staining of the entire epididymal epithelium was apical, with the weakest staining in the cauda epididymidis. By day 21, the reaction spread to cover the supranuclear region of the principal cells in all segments, while on day 39, it covered the entire cytoplasm of these cells, suggesting a high rate of synthesis or storage of the protein. At later time intervals, the intensity of staining over the principal cells appeared to increase with age.(ABSTRACT TRUNCATED AT 400 WORDS)

Aging↗

Epithelial cells of the epididymis show regional variations with respect to the secretion of endocytosis of immobilin as revealed by light and electron microscope immunocytochemistry.

The localization of immobilin, a glycoprotein known to be present and to immobilize spermatozoa in the lumen of the epididymis, was investigated using light and electron microscope immunocytochemistry. In the light microscope, a distinct immunoperoxidase reaction product was observed in the lumen over the brush border of the epithelial nonciliated cells of the efferent ducts, while only a faint reaction was seen over their supranuclear region. In the proximal area of the initial segment of the epididymis no immunoperoxidase staining was observed either over epithelial cells or in the lumen. In the middle area of the initial segment, several epithelial principal cells became intensely immunostained but the majority were unstained; a weak reaction appeared in the lumen. In the distal area of the initial segment, more principal cells became immunostained, and while some were intensely reactive, others were moderately or weakly stained or unreactive. In the intermediate zone and proximal caput epididymidis, the principal cells showed the maximal immunoreactivity with all principal cells being reactive; staining in the lumen also reached its maximal reactivity in these areas. Immunostaining of principal cells gradually decreased along the epididymal duct and disappeared in the cauda epididymidis, however, an intense reaction persisted in the lumen. In the distal area of the cauda epididymidis, clear cells were reactive. In the electron microscope, immunogold labeling of reactive principal cells of the middle and distal areas of the initial segment, intermediate zone, and caput epididymidis was detected over cisternae of endoplasmic reticulum, stacks of Golgi saccules, and spherical electron lucent (200-400 nm in diameter) vesicles. The latter were present on the trans face of the Golgi stack, in the vicinity of th Golgi apparatus, and close to the apical cell surface; they are considered as secretory vesicles involved in the secretion of immobilin. In the distal area of the cauda epididymidis, epithelial clear cells showed an intense immunogold labeling over their endocytic apparatus. Immunogold labeling in the lumen of the epididymis was found over a fine flocculent material dispersed between the sperm. This material was especially abundant in the cauda epididymidis and did not appear to be bound to the surface of the sperm. The present results suggest that principal cells of the epididymis are involved in the secretion of immobilin, but that a differential secretory pattern exists between epididymal segments with maximal secretory activity occurring in the intermediate zone and proximal caput epididymidis, while no secretion takes place in the cauda epididymidis. Excess immobilin appears to be endocytosed for degradation by clear cells of the cauda epididymidis.

Animals↗

Structural differentiation of the epithelial cells of the testicular excurrent duct system of rats during postnatal development.

The light and electron microscopic appearance of the various epithelial cells lining the efferent ducts and different regions of the epididymis were examined in rats on postnatal days 21, 39, 49, 56, and 90 to determine the role of androgens and/or spermatozoa, as well as other possible factors, on the structural differentiation of these cells. Five conclusions may be drawn from the observations made. First, on day 21 epithelial cells of all regions are structurally undifferentiated. Second, it was not until day 49 that nonciliated cells of the efferent ducts resembled those of adult animals, suggesting that more than one factor, such as androgens, testicular products, and/or spermatozoa, is needed for their full structural differentiation. Third, principal cells of the epididymis become structurally differentiated by day 39, i.e., these cells contained an elaborate Golgi apparatus, endoplasmic reticulum cisternae, and numerous 200-400 nm electron lucent secretory vesicles, as well as a full complement of endocytic organelles; this occurred in spite of the absence of spermatozoa in the epididymal lumen. The differentiation of these epididymal cells may be under the influence of androgens, which are known to be high at this time, but may also be due to specific secretions from Sertoli cells secreted directly into the efferent ducts. Fourth, clear cells of the cauda epididymidis are fully differentiated by day 39. The presence of degenerating germ cells in the lumen of the cauda epididymidis and various cellular debris, as well as high androgen levels, may be factors causing the differentiation of the cells of this region. Finally, clear cells of the corpus and cauda epididymidis only become fully differentiated by day 49, at a time when spermatozoa appear in the lumen, despite high levels of androgens at day 39; this observation indicates that the presence of spermatozoa in the lumen may be a necessary factor in causing their differentiation. Overall, these results suggest that a combination of different factors are necessary for the structural differentiation of the various epithelial cell types of the different regions of the epididymis.

Age Factors↗

Paternal cyclophosphamide treatment causes postimplantation loss via inner cell mass-specific cell death.

Treatment of the father with the anticancer alkylating agent cyclophosphamide has negative effects on embryonic development in the rat. Four-week treatment of male rats with a low dose of cyclophosphamide causes a dramatic, dose-dependent increase in postimplantation death of the progeny. Several recent studies have indicated that the paternal genome is required for the development of the extraembryonic tissues. Thus, the purpose of this study was to determine which tissues of the implanting embryo were affected by paternal exposure to cyclophosphamide. Male Sprague-Dawley rats were given cyclophosphamide (6 mg/kg/day) or saline by gavage and bred to untreated female rats after 4 weeks of treatment. Pregnant female rats were killed on day 7 of gestation, and implantation sites were dissected from the uterus, fixed, embedded in Epon for semithin serial sectioning, and stained for subsequent light microscopy. Strikingly, many of the implantation sites of affected embryos sired by treated males displayed an apparently normal trophectoderm enclosing a region of dying cells, containing dark-stained pyknotic nuclei. Very few or no inner cell mass-derived embryonic cells were present in these implantation sites. Therefore, there is a selective death of inner cell mass-derived cells in day 7 implantation sites obtained from the progeny of cyclophosphamide-treated males. The results of this study suggest that treatment of the male with cyclophosphamide can affect paternal genes specifically required for development of the inner cell mass cells of the embryo, without an apparent effect on those genes required for normal trophectoderm.

Animals↗

Increased postimplantation loss and malformations among the F2 progeny of male rats chronically treated with cyclophosphamide.

Cyclophosphamide, administered to the male rat, produces increased pre- and postimplantation loss in the progeny as well as an increase in the numbers of malformed and growth retarded fetuses. The purpose of this study was to determine whether the adverse effects of chronic paternal cyclophosphamide exposure are transmissible to the next generation, the F2 progeny. Adult male rats were treated by gavage daily with saline or with cyclophosphamide (3.4 or 5.1 mg/kg) for 4 or 18 weeks and mated. The male and female offspring in each treatment group (F1 generation) were randomly mated. The resulting pregnant females were killed on day 20 of gestation to evaluate progeny outcome in the F2 generation. There was a significant increase in postimplantation loss among the offspring of the group whose fathers had been treated with cyclophosphamide at a dose of 5.1 mg/kg/day. Exposure to a dose of 5.1 mg/kg/day of cyclophosphamide also resulted in an F2 generation with a significantly decreased mean fetal weight per litter and a significant increase in the number of malformed fetuses. The malformations observed among the F2 progeny included open eyes, omphalocele, generalized edema, syndactyly, gigantism, and dwarfism. Thus, exposure of the father to cyclophosphamide does result in a specific and heritable alteration in the fertility of the surviving "apparently normal" F1 progeny. Interestingly, the adverse consequences of exposure of male rats to cyclophosphamide are similar in the F2 generation to those previously reported for the F1 progeny.

Animals↗