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A P Hikim

Publications and source records attributed to A P Hikim.

At least 19 recordsLinked to original sources

Testicular heat exposure enhances the suppression of spermatogenesis by testosterone in rats: the "two-hit" approach to male contraceptive development.

The objectives of the study were to determine stage-specific changes in the kinetics of germ cell apoptosis induced by administration of exogenous testosterone (T) alone and to examine whether addition of a single testicular heat exposure would enhance the induction of germ cell apoptosis and the suppression of spermatogenesis by T. Adult male rats were implanted with 3-cm SILASTIC brand capsules (Dow Corning Corp.) containing T for up to 6 weeks. Intratesticular T levels declined to 2.9% of control values by 1 week and remained suppressed at 2, 3, and 6 weeks after T administration. The incidence of germ cell apoptosis (expressed as numbers per 100 Sertoli cells) was low in control rats (0-9.52). After T treatment, the mean incidence of apoptosis at stages VII-VIII increased significantly by 1 week (21.43 +/-3.33) and showed further increases by 6 weeks (56.30 +/- 7.47); apoptotic rates remained low at early (I-VI) and later (XII-XIV) stages. To test whether the combination of T with a single testicular heat exposure resulted in more complete suppression of spermatogenesis than either treatment alone, four groups of adult rats received one of the following treatments: 1) a subdermal empty polydimethylsilozane implant, 2) exposure to a single testicular heating (43 C for 15 min) applied on day 14, 3) 3-cm T implant, or 4) 3-cm T implant and a single testicular heat exposure (applied on day 14). All animals were killed at the end of 6 weeks. In the heat-treated group, testis weight and testicular sperm counts were decreased to 65.4% and 28.9% of control levels, respectively. The corresponding values in the T-treated group were 49.7% and 24.9% of control levels, respectively. Notably, addition of heat to T further reduced testis weight to 31.1% of control levels and testicular sperm counts to near zero. Histomorphometric analysis showed that all treatments reduced seminiferous tubular diameter and epithelial and luminal volume, with the greatest decrease after combined T and heat treatment. Heat exposure in animals bearing T implants markedly reduced the number of pachytene spermatocytes and round spermatids through apoptosis, resulting in tubules devoid of mature spermatids. Spermatogonia and preleptotene spermatocytes remained unaffected. These results clearly demonstrate that 1) exogenous T reduces intratesticular T and induces apoptosis mainly at stages VII-VIII within 1-6 weeks; 2) the combined treatment of T and heat markedly inhibits spermatogenesis, resulting in near azoospermia within 6 weeks; and 3) meiosis and spermiogenesis are the most vulnerable phases of spermatogenesis in response to T plus heat treatment. These findings suggest that a combination of hormonal treatment such as T and a physical agent (heat exposure) is more effective in suppressing spermatogenesis than either treatment alone. We hypothesize that combination of two antispermatogenic agents ("two hit") working at separate stages of the spermatogenic cycle will lead to greater male contraceptive efficacy.

Animals↗

Single exposure to heat induces stage-specific germ cell apoptosis in rats: role of intratesticular testosterone on stage specificity.

Short term exposure of the testis to heat causes degeneration of germ cells. However, the mechanisms underlying this process are poorly understood. The major objectives of this study were to determine whether the heat-induced loss of germ cells in the adult rat occurs via apoptosis, to document its stage-specific and cell-specific distribution, and to examine whether intratesticular testosterone (T) plays any role in the stage specificity of heat-induced germ cell death. Testes of adult male Sprague-Dawley rats were exposed to 22 C (control) or 43 C for 15 min. Animals were killed on days 1, 2, 9, and 56 after heat exposure. Germ cell apoptosis was characterized by DNA gel electrophoresis and in situ terminal deoxynucleotidyl transferase-mediated deoxy-UTP nick end labeling assay. The incidence of germ cell apoptosis [apoptotic index (AI)] was quite low in control rats (AI = 0.04-0.1). Mild hyperthermia within 1 or 2 days resulted in a marked activation (AI = 4.7-5.6) of germ cell apoptosis predominantly at early (I-IV) and late (XII-XIV) stages. Stages V-VI and VII-VIII were relatively protected from heat-induced apoptosis. Spermatocytes, including pachytenes at stages I-IV and IX-XII, diplotene and dividing spermatocytes at stages XIII-XIV, and early (steps 1-4) spermatids, were most susceptible to heat. On day 9, the majority of the tubules were severely damaged and displayed only a few remaining apoptotic germ cells. By day 56, spermatogenesis was completely recovered, and the incidence of germ cell apoptosis was compatible with the control levels. To determine whether intratesticular T plays a role in protecting germ cells at stages VII-VIII against heat-induced cell death, adult rats were exposed to local testicular heating on day 2 or were given a daily sc injection of GnRH antagonist (GnRH-A) for 4 days with and without a single exposure of testes to heat applied on day 2. By day 4, the incidence of increased germ cell apoptosis at stages other than VII-VIII were not different between heat-treated and GnRH-A- plus heat-treated groups, whereas the control group and the group treated with GnRH-A alone showed minimal apoptosis. GnRH-A addition to heat resulted in a further increase in apoptosis (by 3.2-fold) at stages VII-VIII over the values measured in the heat-treated group, and it became comparable to that at all other stages. Collectively, these results provide evidence that 1) heat induces germ cell apoptosis in a stage-specific and cell-specific fashion; and 2) intratesticular T plays a pivotal role in protecting germ cells at stages VII-VIII against heat-induced cell death. However, the possible involvement of various other factors, including growth factors, thermoprotectants, cytokines, and various death-related proteins, in protecting germ cells against heat-induced apoptosis cannot be ruled out.

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Spontaneous germ cell apoptosis in humans: evidence for ethnic differences in the susceptibility of germ cells to programmed cell death.

Spontaneous death of certain classes of germ cells has been shown to be a constant feature of normal spermatogenesis in a variety of mammalian species, including the human. Recent studies on various animal models have demonstrated that apoptosis is the underlying mechanism of germ cell death during normal spermatogenesis. Withdrawal of gonadotropins and/or testosterone further accelerates the germ cell apoptosis. We examined the involvement of apoptosis in the spontaneous loss of germ cells in men. Testicular samples obtained at autopsy from 5 Chinese and 9 non-Hispanic Caucasian men were analyzed. To identify individual germ cells undergoing apoptosis, we used a modified terminal deoxynucleotidyl transferase-mediated deoxy-UTP nick end labeling technique that detects germ cell apoptosis with high sensitivity and specificity. Testicular sections from all 14 subjects exhibited spontaneous occurrence of germ cell apoptosis involving spermatogonia, spermatocytes, and spermatids (apoptotic indexes, 1.6 +/- 0.4 2.5 +/- 0.6, and 5.5 +/- 1.2, respectively). The incidence of spermatogonial (2.8 +/- 0.8 vs. 1.0 +/- 0.2) as well as spermatid (9.3 +/- 2.1 vs. 8.4 +/- 0.9) apoptosis was higher in Chinese than in Caucasian men. A higher incidence of spermatocyte apoptosis was also noted for Chinese (4.4 +/- 1.4) compared to Caucasian (1.9 +/- 0.4) men, but the difference was not statistically significant. These results suggest that germ cell death during normal spermatogenesis in men occurs via apoptosis and provide evidence for ethnic differences in the inherent susceptibility of germ cells to programmed cell death. Our data may also help to explain the greater efficacy of testosterone-induced spermatogenic suppression to azoospermia observed in Asian compared to non-Asian men.

Adult↗

Separation of germ cell apoptosis from toxin-induced cell death by necrosis using in situ end-labeling histochemistry after glutaraldehyde fixation.

In situ end-labeling of fragmented DNA is routinely being used to detect apoptotic cells in various tissues including the testis. In this study, we examined the influence of various fixatives (neutral buffered formalin, paraformaldehyde, and glutaraldehyde) on the testicular structural integrity and immunoreactivity of fragmented DNA in apoptotic germ cells of the adult rat. Accelerated apoptosis of germ cells was induced in the adult rate by gonadotropin deprivation. Visualization of apoptotic DNA fragmentation in individual germ cells was achieved by direct immunoperoxidase detection of digoxigenin-labeled genomic DNA. Glutaraldehyde fixation significantly improved the in situ detection of apoptotic germ cells while maintaining excellent morphological preservation. The labeling is also specific for apoptosis since necrotic germ cells show no specific signals. Fixed tissues could be processed for electron microscopy for further characterization of germ cell death using morphological criteria. Thus, glutaraldehyde fixation is advantageous for recognition of apoptotic germ cells with high sensitivity and specificity on a cell-by-cell basis. It should also be applicable to detect apoptosis in other cells and tissues.

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Temporal and stage-specific effects of recombinant human follicle-stimulating hormone on the maintenance of spermatogenesis in gonadotropin-releasing hormone antagonist-treated rat.

Despite considerable attention to the hormonal regulation of spermatogenesis, the role of FSH in adult mammals remains controversial. This is mainly due to the unavailability until recently of FSH preparations free of contaminating LH and discrepant results in various species. Using LH-free recombinant human FSH (rhFSH), we sought to determine if FSH is able to maintain spermatogenesis in rats in which both LH and FSH, but not other pituitary hormones, are markedly suppressed by GnRH-A treatment. Groups of five adult SD rats were given daily sc injections of vehicle, Nal-Glu-GnRH-A (1.25 mg/kg BW) or GnRH-A + 10 IU rhFSH for up to 4 weeks. In agreement with our previous report, GnRH-A treatment for 1 week led to a significant (P < 0.05) reduction in testis weight (26.6%) and in the number of specific germ cells involving preleptotene (27.7%) and pachytene spermatocytes (36.7%) and step 7 spermatids (30.3%) at stage VII of the seminiferous epithelial cycle. The number of advanced spermatids declined by 44.3%. Concomitant administration of rhFSH for 1 week resulted in a significant increase in testicular weight, tubular areas at stage VII-VIII, and in the absolute volumes of seminiferous tubules and their lumens compared to GnRH-A alone. Most importantly, FSH replacement to GnRH-A-treated rats fully attenuated the early (1 week) GnRH-A-induced reduction in germ cell numbers at stage VII as well as the number of advanced (steps 17-19) spermatids, and effectively prevented GnRH-A-induced reduction in the number of pachytene spermatocytes and step 7 spermatids for 2 weeks. In addition, FSH replacement to GnRH-A-treated rats was able to increase the number of B spermatogonia available for entry into meiosis and maintain the number of preleptotene spermatocytes throughout the treatment period. The observed beneficial effects of rhFSH on spermatogenesis in GnRH-A-treated rats are most likely not due to the stimulation of the Leydig cell function (via paracrine interaction between Sertoli and the Leydig cells), because FSH addition to GnRH-A had no discernible effect on intratesticular or plasma T levels, accessory organs weight, and the total volume of the Leydig cells when compared with GnRH-A alone.(ABSTRACT TRUNCATED AT 400 WORDS)

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Involvement of apoptosis in the induction of germ cell degeneration in adult rats after gonadotropin-releasing hormone antagonist treatment.

In adult mammals, including man, germ cell death is conspicuous during spermatogenesis and plays a pivotal role in sperm output. The possible mechanism(s) underlying this phenomenon remains, however, poorly understood. Apoptosis is a programmed physiological process by which cells die either spontaneously or in response to changes in the levels of specific physiological stimuli. Previously, we reported that early deprivation of gonadotropin and testosterone by GnRH antagonist (GnRH-A) treatment is followed by a stage-specific degeneration of germ cells in the testis. In this study, we examined the possible involvement of apoptosis in the induction of germ cell degeneration. Adult male rats were given a daily injection of Nal-Glu GnRH-A (1 mg/kg BW) for 0 (control), 2, or 5 days. The onset of germ cell degeneration was assessed by high resolution light microscopy as well as by a germ cell degeneration assay. The occurrence of apoptosis was characterized by 1) detection of internucleosomal DNA fragmentation after agarose gel electrophoresis, and 2) direct immunoperoxidase detection of digoxigenin-labeled genomic DNA in specific cell types. The earliest morphological signs of germ cell degeneration involving preleptotene and pachytene spermatocytes, step 7 spermatids (at stage VII), and step 19 spermatids (at both stages VII and VIII) were detected 5 days after the commencement of GnRH-A treatment. The onset of germ cell degeneration was further accompanied by a significant increase in the degree of low mol wt DNA fragmentation. In situ detection of apoptosis within this time frame fully corroborates the observed stage-related degeneration of specific germ cells. These results suggest that apoptosis provides the basic mechanism by which germ cells die in the testis in response to a lack of hormonal stimulation.

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The hamster Sertoli cell in early testicular regression and early recrudescence: a stereological and endocrine study.

Utilizing stereological techniques, the hamster Sertoli cell at Stage VII of the spermatogenic cycle was examined for early signs of regressive changes after short-term photoperiod-induced testicular regression and for early signs of stimulation after short-term photoperiod-induced recrudescence. After 4-6 weeks of exposure to short photoperiod, germ cell degeneration was prominent but there were only minimal changes in Sertoli cell structure. These included a decline in volume of multivesicular bodies and in the surface area of mitochondrial membranes and adluminal plasma membrane, while no changes were noted in the other parameters measured. Of the endocrine changes, only plasma FSH levels had declined at this time and there were virtually no significant correlations between plasma FSH levels and the various structural parameters. The general lack of Sertoli cell changes in response to a short exposure to inhibitory photoperiod in the seasonally breeding hamster is similar to the early response to hypophysectomy in the none-seasonal rat. During early photoperiod-related recrudescence, testis weight, tubular lumen volume and interstitial parameters were increased. Significantly more preleptotene spermatocytes (about a 50% increase) were present in stage VII tubules, though adluminal germ cells did not increase in number. At this time some structural features of the Sertoli cells were enhanced in volume (cytoplasm, smooth and rough endoplasmic reticulum) and surface area (outer and inner mitochondrial membranes, smooth and rough endoplasmic reticulum and the basal compartment plasma membrane). Blood levels of FSH and testosterone were increased significantly but correlated only with rough endoplasmic reticulum, suggesting that initiation of the synthetic processes was important in reestablishment of spermatogenesis.(ABSTRACT TRUNCATED AT 250 WORDS)

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Time course of recovery of spermatogenesis and Leydig cell function after cessation of gonadotropin-releasing hormone antagonist treatment in the adult rat.

This study examined the time course of recovery of spermatogenesis and its relationship to the temporal changes in circulating levels of gonadotropin and testosterone (T) and intratesticular T levels after cessation of treatment with a potent GnRH antagonist (GnRH-A). Adult male rats were given a daily sc injection of Nal-Glu-GnRH antagonist (1250 micrograms/kg BW) for 4 weeks and killed in groups of five 0, 1, 2, 3, 4, and 6 weeks after discontinuation of treatment. After cessation of treatment, plasma FSH levels returned to control values by 6 weeks, whereas LH levels returned to control values within 1 week. Both circulating as well as intratesticular levels of T returned to normal levels by 3 and 4 weeks, respectively. Interestingly, a rebound in both FSH and intratesticular T, but not in plasma T, beyond control levels occurred early in the recovery phase. The total volume of Leydig cells, which was only 15% of control values, increased 4.3-fold within 1 week and was not significantly different from control values (92% recovery) by 2 weeks posttreatment. Enumeration of earlier phases of germ cells as well as homogenization-resistant advanced (steps 17-19) spermatids revealed a progressive increase in germ cell numbers with time. Complete restoration of the numbers of preleptotene spermatocytes, pachytene spermatocytes, step 7 spermatids, and advanced spermatids occurred 1, 3, 4, and 6 weeks, respectively, after termination of GnRH-A treatment. There was also a complete reversal of GnRH-A-induced changes in testicular weight, tubule diameter, and volume of seminiferous tubules and their lumens by 6 weeks posttreatment, paralleling the recovery of spermatogenesis. These results suggest that 1) complete recovery of spermatogenesis and various other testicular parameters can be achieved in GnRH-A-treated rats after cessation of treatment; 2) the progression of various germ cells during the recovery period follows the normal time schedule of germ cell development; and 3) the recovery of spermatogenesis is preceded by supranormal levels of FSH and intratesticular T. These findings further emphasize the suitability of antagonistic analogs of GnRH for male fertility control.

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Reproductive toxicity of theobromine and cocoa extract in male rats.

The toxicities of theobromine and cocoa extract on the reproductive tract of male rats were compared in the present study. A cocoa powder extract containing 117 mg theobromine/g extract was prepared using 85% boiling methanol. Sprague-Dawley rats were weighed and dosed daily for 31 days with vehicle, 250 mg/kg theobromine, 2.14 g/kg cocoa extract (117 mg theobromine/g extract), or 0.43 g/kg cocoa extract by oral gavage. The animals were sacrificed on day 32. One testis and epididymis were removed and weighed. The epididymis was saved for the determination of epididymal sperm reserves. The remaining testis was fixed by whole body glutaraldehyde perfusion and processed for morphologic examination. A decrease in body weight gain and epididymal weights were observed in theobromine and high-dose cocoa-extract-treated groups. Theobromine and high-dose cocoa extract caused vacuolation within the Sertoli cell, abnormally shaped spermatids, and failed release of late spermatids in treated animals. Most of the vacuolations were found in the earlier and middle stage seminiferous tubules (stages I to VIII). However, the frequency of some parameters of testis alterations were significantly lower in the high-dose cocoa-extract-treated group compared to the theobromine-treated group. These data demonstrate the ability of a cocoa extract containing theobromine to alter testis structure in a similar pattern but with reduced intensity compared to that observed after oral exposure to pure theobromine.

Animals↗

Further observations on estrus and ovulation in woodchucks (Marmota monax) in captivity.

The woodchuck is a seasonally breeding sciurid rodent. Female woodchucks are monoestrous and, when isolated from males, remain in a prolonged period of estrus characterized by a clear predominance of cornified cells in the vaginal smear. This study was designed to characterize relationships between the degree of vaginal cornification and sexual receptivity, and to study ovulation and related phenomena of this species in captivity. Fourteen individually caged adult females, maintained under standard laboratory conditions for 9-23 mo, were used in this investigation. Females exhibiting predominantly (67-97%) cornified smears were always receptive, regardless of the time interval from the onset of estrus, and mated within 24 h of pairing. Mated females allowed to complete pregnancy gave birth to live pups 30-32 days later. Litter size ranged from 3-7 pups. Serum progesterone (P) levels increased to approximately 2 ng/ml during the first week of pregnancy and greater than 5 ng/ml during the second and third weeks of pregnancy. Serum estradiol (E2) levels were elevated during the first week of pregnancy and began to decline thereafter. Examination of ovarian serial sections revealed that ovulation took place between 20 and 32 h after copulation. Serum levels increased significantly (4-fold) after ovulation (1.2 +/- 0.3 vs. 0.3 +/- 0.01 ng/ml). However, the circulating levels of E2 remained unchanged between the periods before (53 +/- 1 pg/ml) and after ovulation (60 +/- 3 pg/ml). Ovulation was not simultaneous in all mature follicles.(ABSTRACT TRUNCATED AT 250 WORDS)

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Testis structure in the sys (symplastic spermatids) mouse.

Testes of mice with the recessive insertional mutation termed symplastic spermatids (sys) were assessed for structural and developmental abnormalities. Homozygous (sys/sys) males are infertile due to an abnormality in spermatogenesis leading to azoospermia. The major interruption to spermatogenesis occurs when the intercellular bridges that connect round spermatids open prematurely resulting in the formation of symplasts. Symplasts contain as many as 285 nuclei. Development of spermatids within symplasts is arrested just before, or just after, elongation of the spermatid nuclei begins. Symplasts degenerate and appear to be phagocytized by Sertoli cells and by intratubular macrophages. In addition, degeneration of young round spermatids and also spermatocytes occasionally is observed. Spermatocyte degeneration is substantial in some tubules and leaves them depleted of cells other than basal compartment cells. Sertoli cell abnormalities are prominent and include intracellular vacuolation, absence of apical processes surrounding round spermatids, degeneration, and occasional sloughing. Although reduplication and infolding of the basal lamina is also seen, this does not appear as a common phenomenon. The sys phenotype is first manifest in animals between 19 days and 22 days of age. Considerable variability is seen in testis histology of prepubertal animals; some display degenerating pachytene spermatocytes and virtually no Sertoli cell vacuoles, while others display vacuoles without apparent elevated numbers of degenerating spermatocytes. Although this study has not revealed the primary cell type(s) affected by the insertional inactivation event, it is possible that the abnormalities in the Sertoli cells are responsible for germ cell degeneration as it is generally recognized that deficits in the Sertoli cell can result in major germ cell abnormalities but not vice versa.

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Reinitiation of spermatogenesis by exogenous gonadotropins in a seasonal breeder, the woodchuck (Marmota monax), during gonadal inactivity.

The present study was undertaken (1) to document structural and functional changes in the testes of seasonally breeding woodchuck during active and inactive states of spermatogenesis and (2) to evaluate the ability of exogenous gonadotropins to reinitiate spermatogenesis outside the breeding season. During seasonal gonadal inactivity, there were significant (P less than 0.05) reductions in volumes of several testicular features (testis, seminiferous tubules, tubular lumen, interstitial tissue, individual Leydig cells, Leydig cell nuclei, and Leydig cell cytoplasm) as compared with gonadally active animals. The diameter of the seminiferous tubules was decreased by 26%, and Leydig cell numbers also declined in the regressed testes. These changes were accompanied by a decline in testosterone (T) levels in both plasma and testis, and reduction in epithelial height of accessory reproductive organs. A hormonal regimen was developed that would reinitiate spermatogenesis in captive, sexually quiescent woodchucks. A combination of PMSG and hCG markedly stimulated testicular growth and function and restored spermatogenesis qualitatively. Quantitatively normal spermatogenesis was restored in 2 of 6 treated males. Morphometric analyses revealed substantial increases in seminiferous tubular diameter and in the volume of seminiferous tubules, tubular lumen, total Leydig cells, and individual Leydig cells in the hormone-treated animals. These increased values corresponded to 99, 75, 68, 51, and 200%, respectively, of the values measured in naturally active woodchucks. Leydig cell numbers, however, remained unchanged and approximated only 31% of the number found in naturally active testes. Hormonal stimulation also resulted in a significant rise in serum T as well as in the total content of testicular T, and a marked increase in epithelial height in various accessory reproductive glands. The most effective hormonal protocol for stimulating spermatogenesis was treatment with 12.5 IU of PMSG twice a week for 4 weeks followed by 12.5 IU of PMSG + 25 IU of hCG twice a week for 4 weeks.

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Seasonal variations in circulating levels of progesterone and estradiol in unmated adult female woodchucks (Marmota monax) in captivity.

The annual profile of serum levels of progesterone (P) and estradiol-17 beta (E2) was characterized in a seasonally breeding rodent, the woodchuck (Marmota monax). Hormonal levels were determined in serum samples taken at weekly or biweekly intervals from unmated female woodchucks maintained all year indoors under controlled conditions of photoperiod and temperature. Annual fluctuations included a rise of E2 levels during late January through February, followed by a modest increase in plasma P concentrations by late March, the latter attaining peak values during April and May. A temporal dissociation of peak values of circulating levels of P and E2 during the annual reproductive cycle was also detected. The timing of changes in serum levels of P and E2 in these captive woodchucks corresponded to reproductive events during the normal breeding season of the woodchuck in the southern part of its range.

Animals↗

The estrous cycle of captive woodchucks (Marmota monax).

Changes in vaginal cytology were assessed and correlated with temporal changes in circulating concentrations of progesterone (P) and estradiol-17 beta (E2) during the breeding season (February to March) in a seasonally breeding rodent, the woodchuck (Marmota monax). Ten individually caged adult females, maintained under laboratory conditions for 3-11 mo, were studied. Vaginal smears were taken each morning for 2 consecutive months beginning 1 February 1990. Seven of 10 females exhibited readily identifiable estrus, characterized by a clear predominance (83%) of cornified cells. The earliest estrous smear was recorded on 3 February and the latest on 12 March. These animals were monoestrous and remained in a prolonged estrous period during their brief breeding season. The average duration of estrus was 18.1 +/- 2.1 days, ranging from 12-27 days. Levels of P and E2 were determined in serum samples taken before, during, and after estrus from 7 females who exhibited estrus. No changes in the circulating levels of P were apparent during the estrous cycle. However, there was a consistent pattern of estradiol secretion characterized by elevated levels of E2 before and during estrus, followed by a significant (p less than 0.05) decline in E2 levels one week after the end of estrus. Elevated levels of E2 preceded and coincided with maximal degree of vaginal cornification. Thus, the termination, but not the onset, of estrus in woodchucks reflected closely the temporal pattern of changes in serum E2 levels during the breeding season.

Animals↗

Correlative morphology and endocrinology of Sertoli cells in hamster testes in active and inactive states of spermatogenesis.

The seasonally breeding golden (Syrian) hamster, which exhibits photoperiod-dependent transitions between active and inactive states of spermatogenesis, was used as a model to study Sertoli cell structure in the two extreme phases of gonadal activity. The structural parameters of the Sertoli cell and its subcellular organelles were assessed using accepted stereological procedures during active and inactive states of spermatogenesis, and the results correlated with a battery of endocrine parameters obtained from the same animals. Short photoperiod-induced testicular involution was associated with a significant decrease in virtually all morphological parameters of the Sertoli cell, including a dramatic decrease in the volumes and surface areas of the Sertoli cells and their major subcellular organelles. Sertoli cell size and surface area were significantly and positively correlated with the testicular weight, volume of the seminiferous tubule, tubular lumena, tubule diameter, and germ cell numbers. Similar correlations were recorded between the number of germ cells and nearly all subcellular parameters of the Sertoli cell. Only those structural elements that are related to degredative processes (lysosomes and lipid) did not show significant volumetric differences between gonadally active and inactive animals. The observed changes in the structural parameters of the Sertoli cells were significantly correlated with the reduction in plasma levels of FSH, LH, and testosterone and intratesticular levels of testosterone. Exposure of hamsters to a short photoperiod was also associated with an increase in concentration (femtomoles per mg protein), but a decrease in the total content (femtomoles per testis) of testicular FSH receptors. The dissociation of changes in the content and concentration of FSH receptors appears to be related to changes in basal compartment plasma membrane surface areas of the Sertoli cells during testicular regression. The striking changes in Sertoli cell morphology between active and inactive states of spermatogenesis are structural manifestations of alterations in the function of these cells in response to the concomitant endocrine changes in the testis and indicate a virtual shut-down of Sertoli cell function during short photoperiod-induced testicular regression.

Animals↗

Structure/function relationships in active and inactive hamster Leydig cells: a correlative morphometric and endocrine study.

Spermatogenesis can be turned on or off in the seasonally breeding golden (Syrian) hamster in a laboratory setting by exposure of animals to different photoperiod regimens. The present study provides the first detailed quantitative analysis of the subcellular features of hamster Leydig cells during active and inactive phases of spermatogenesis and correlates these features with the endocrine activity of the same animals. Conventional stereological principles and accepted morphometric techniques were used to determine changes in a variety of subcellular constituents of Leydig cells at the extreme phases of gonadal activity produced by maintaining adult hamsters in a long photoperiod (16 h of light, 8 h of darkness) or by exposing them to a short photoperiod (6 h of light, 18 h of darkness) for 12-13 weeks. Compared with Leydig cells from gonadally active animals, Leydig cells obtained from the regressed testis showed a significant reduction in the absolute volume of nearly all of its organelles, including nucleolus (77.0%), mitochondria (50.0%), total endoplasmic reticulum (ER) (86.4%; cisternal ER, 87.0%; tubular ER, 85.5%), lipid (84.2%), peroxisomes (82.5%), multi-vesicular bodies (71.9%), filament-rich area (95.5%), and Golgi complex (69.4%). There was also a significant reduction in organelle surface area, namely outer (76.5%) and inner (72.7%) mitochondrial membrane, total ER (85.0%), cisternal (85.3%) and tubular (84.4%) forms of ER, and Golgi complex (70.0%). The surface areas of the plasma membrane and nuclear membrane were also decreased by 58.3% and 33.7%, respectively. These results demonstrate that the short photoperiod-induced cellular inactivity of Leydig cells is associated with an overall diminution in the volume and surface area of all major organelles, not only those specifically associated with steroid biosynthesis. Virtually every structural parameter of the Leydig cell was significantly and positively correlated with plasma LH levels and with both plasma and testicular concentrations of testosterone. The total content of LH receptors per testis and per Leydig cell was reduced, but the concentration of receptors per unit area of the Leydig cell surface remained unchanged. Correlation of changes in hormonal status with alterations of all Leydig cell organelles suggests a general shut-down of cellular activity in the gonadally regressed animals, rather than a specific effect of pituitary hormones on selected cellular constituents.

Animals↗

Duration of epididymal sperm transit in hamster: an autoradiographic study.

The time required for passage of spermatozoa through the epididymis has been determined in hamster employing quantitative light microscopic autoradiography with 3H-thymidine. The time required for spermatozoa to traverse the caput is 3 days; corpus, 2 days; proximal cauda, 2 days; distal cauda, 6 days. An additional 2 days are required for passage of spermatozoa through the proximal ductus deferens. The total duration of sperm transit through the ductus epididymis in sexually rested hamster has been estimated at about 15.0 days.

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The seasonal breeding hamster as a model to study structure-function relationships in the testis.

The present study was undertaken to document morphological changes in the testis of the seasonally breeding golden hamster, an animal model which has been studied extensively from an endocrine standpoint but for which morphological data is inadequate. Germ cells, Sertoli cells and Leydig cells were studied during active and regressed state of gonadal activity by exposing the animals to long (16L:8D) and short photoperiods (6L:18D), respectively. Testis of the hamster exposed to short photoperiods displayed more than a ten-fold reduction in weight and decreased seminiferous tubule diameter. The seminiferous tubules contained primarily Sertoli cell and spermatogonia but also occasional spermatocytes and round spermatids. Leydig cells were decreased in size, a change which appeared to be primarily due to a decrease in cytoplasmic volume. The Leydig cell endoplasmic reticulum which was atypically saccular displayed both rough and smooth components and was decreased during short photoperiods. Mitochondria generally appeared larger and showed considerable structural heterogeneity. Short photoperiod-induced changes in the Sertoli cells included a marked reduction in cell height and an apparent reduction in cell volume, absence of lateral processes, presence of small, almost spheroidal nuclei with inconspicuous nucleoli, an increase in the amount of lipid and decreases in the amount of smooth endoplasmic reticulum and glycogen. The striking differences in the testicular structure between the active and regressed state of gonadal activity follows photoperiod-induced changes in endocrine parameters and suggests that the hamster would be an ideal model to study structure-function relationships in the testis, and especially those related to the Sertoli cell.

Animals↗