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Biomedical subjects

L M Sanford

Publications and source records attributed to L M Sanford.

At least 19 recordsLinked to original sources

Role of FSH, numbers of FSH receptors and testosterone in the regulation of inhibin secretion during the seasonal testicular cycle of adult rams.

The regulation of inhibin secretion has not been elucidated fully in male ruminants. The aim of this study was to determine the relative importance of FSH and testosterone concentrations, and FSH receptors, in the control of secretion of immunoactive inhibin in rams. In Expt 1, temporal changes in hormone concentrations and testicular FSH binding were determined for two groups of rams (n = 4) kept under opposite, alternating 4 month periods of long (16 h light:8 h dark) and short (8 h light:16 h dark) days. Testicular biopsies (1-2 g) were collected when the testes were regressed, redeveloping, redeveloped and regressing. In Expt 2, separate groups of rams (n = 4) kept under natural photoperiod (latitude 45 degrees 48 minutes N) were designated as controls or passively immunized (for 3 weeks) with sufficient oestradiol antiserum to increase testosterone secretion without altering LH and FSH; this was done when the testes were regressed (non-breeding season) and redeveloped (breeding season). In both groups of rams (Expt 1), 'seasonal' increases in FSH concentrations began a few weeks earlier than did increases in inhibin concentrations. FSH reached maximum concentrations during testicular recrudescence, whereas numbers of FSH receptors in the testis and circulatory inhibin concentrations did not reach peak values until the testes were fully developed. Numbers of FSH receptors per testis, but not FSH concentration, were positively correlated (r = 0.65) with inhibin concentrations across the four stages of the testicular cycle. Near the end of testicular recrudescence early in the breeding season (Expt 2), relatively high FSH concentration was associated with increased abundance of FSH receptor mRNA (90%) and number of receptors (45%) in the testis and increased inhibin concentrations (50%), compared with when the testes were regressed. Moderate, physiological increases in testosterone secretion in immunized rams did not affect inhibin in either season. These results indicate that: (i) FSH stimulation of immunoactive inhibin secretion by Sertoli cells as testes recrudesce is via increases in secretion (early) and cognate receptors (late); (ii) FSH upregulates the synthesis of its own receptor late in recrudescence; and (iii) the positive correlation (r = 0.70) observed between circulatory testosterone and immunoactive inhibin does not reflect a causal relationship.

Analysis of Variance↗

Sexual maturational changes circulatory inhibin concentration in relation to FSH concentration and testicular size in Suffolk and DLS rams.

Developmental patterns in immunoactive inhibin and FSH concentrations in peripheral blood were determined for Suffolk and DLS (Dorset x Leicester x Suffolk) rams born in January Blood samples were taken every 3 to 4 wk when testes were developing during puberty (5 to 44 wk of age) and redeveloping in early adulthood (17 to 23 months of age). Suffolk lambs had a greater average daily gain (195 vs. 143 g/day, P<0.01), and they developed larger testes (P<0.01) than DLS lambs. Inhibin and FSH concentrations peaked at about the same pubertal (8 wk) and early adult (19 or 20 months) ages in both breeds. Elevations in FSH were greater (P< 0.05) in Suffolk than DLS rams at each stage of development. The pubertal inhibin peak was nearly 70% larger (P<0.01) in DLS than Suffolk rams, and the early adult peak was comparable in rams of both breeds, but much smaller (P<0.01) than the pubertal peak. Nonetheless, inhibin was positively correlated (r=0.48 to 0.57) with FSH in both breeds during each developmental stage. Inhibin and testicular size were negatively correlated in Suffolk (r=-0.74) and DLS (r=-0.86) rams during puberty, and positively correlated in DLS rams (r=0.46) in early adulthood. We conclude that 1) inhibin concentrations are higher in juvenile rams at the time Sertoli cell numbers are being established than in adult rams during testicular recrudescence and 2) rises in FSH concentration participate in regulating corresponding rises in inhibin concentration in both stages of testicular development.

Age Factors↗

Influence of season and low-level oestradiol immunoneutralization on episodic LH and testosterone secretion and testicular steroidogenic enzymes and steroidogenic acute regulatory protein in the adult ram.

The regulation of LH-dependent and -independent increases in testosterone secretion by key proteins in the testes of adult rams was investigated. Serial blood samples were collected from groups of four control and passively immunized (oestradiol antiserum for 3 weeks) rams and the animals were gonadectomized in either the non-breeding season (April) or the breeding season (September). LH pulse frequency and basal (interpulse) concentrations were several times greater (P < 0.01) in the breeding season than in the non-breeding season. Neither of these parameters nor LH pulse amplitude were affected by oestradiol immunization. Parameters of testosterone episodic secretion and response to an injection (i.v.) of 15 micrograms NIH-LH-S25 were also greater (P < 0.05) in the breeding season and, with the exception of pulse frequency, in immunized rams versus controls. Substrate utilization established that testosterone biosynthesis was predominantly via the 5-ene pathway. Increases in blood testosterone concentration in the breeding season were associated with a fivefold higher (P < 0.01) activity of cytochrome P450 17alpha-hydroxylase/C-17,20 lyase (P450(17alpha)) and a 65% higher (P < 0.05) relative amount of mRNA for cytochrome P450 cholesterol side-chain cleavage enzyme complex (P450scc) in the testis. Of the steroidogenic enzyme activities examined, only that for 17beta-hydroxysteroid dehydrogenase (17beta-HSD) tended to be increased by oestradiol immunization. Blood concentrations of cholesterol lipoproteins and expression of the testicular low density lipoprotein receptor were not affected by season or immunization. The amount of steroidogenic acute regulatory protein (StAR) mRNA was 65% higher (P < 0.01) in the breeding season and 20% higher (P < 0.01) in immunized rams versus controls. These results indicate that greater LH stimulation may increase testosterone biosynthesis in the breeding season by increasing StAR mRNA (and presumably delivery of cholesterol to P450scc) and the activity of P450(17alpha), and possibly that of P450scc (activity not measured). More moderate increases in StAR mRNA and 17beta-HSD activity may explain, in part, the increases in testosterone secretion with oestradiol immunization.

17-Hydroxysteroid Dehydrogenases↗

Pubertal development of ram lambs: Physical and endocrinological traits in combination as indices of postpubertal reproductive function.

The feasibility of using combinations of prepubertal measurements of body weight (BW), testicular size, and blood hormone concentrations (LH, FSH, PRL and testosterone) as indices of postpubertal reproductive function of rams was investigated. Data obtained on a group of 14 Suffolk rams born in March was analyzed by step-wise regression. Between the ages of 30 and 190 d, BW and testicular diameter (TD) were measured every 10 d, and a series of blood samples were collected (20-min intervals for 6 h) from the jugular vein every 20 d. Assessments and blood collections were repeated at about 13 and 17 mo. Additionally, daily sperm output (DSO, sperm voided in urine) or total sperm per ejaculate (TSPE), and ejaculation frequency (EF) were determined at about 6, 13 and 17 mo of age. Juvenile data, singly and in combinations of up to 4 traits, were related to individual reproductive traits at each of the 3 postpubertal ages. Mean testosterone concentration (150 d) and TD (170 d) at the ages indicated were the traits most consistently related to testicular size and sperm output in the postpubertal period. At the other juvenile ages, multi-variable models involving combinations of testicular and endocrine measurements were usually more indicative of reproductive functions postpubertally. Even though TD or testosterone measurement near the time of puberty onset provided the best long-range prediction of adult reproductive function, multi-trait models were generally more reliable for a specific age. We believe the multi-variable approach should be considered further.

Journal Article↗

Usefulness of synthetic Mimetic ligands in establishing an affinity chromatography procedure for purifying estradiol antibody in sheep serum: potential application in regulating fertility of the ram.

Recently developed synthetic Mimetic affinity ligands were screened for their ability to purify estradiol antibody from sheep serum. One of these ligands (color coded Yellow 1) effectively separated immunoglobulin from other serum protein by negative affinity. When 1 ml antiserum diluted 70% (protein content approximately 25 mg) was passed through 1 ml gel with Yellow 1 ligand, estradiol antibody-binding activity (% binding of E2 tracer) peaked in the effluent (62%) and decreased progressively in the subsequent three 4-ml fractions of the wash (34%, 6% and 2%, respectively). As long as the total amount of serum protein applied remained below the saturable-binding capacity of the ligand (determined to be approximately 28 mg), the relative purity of estradiol antibody in the effluent (E2 binding per unit protein) remained very high with only 3% (0.78 mg) of applied protein appearing in the effluent. Purity of antibody in the effluent was confirmed by electrophoresis carried out on SDS polyacrylamide gel. Flow rate of serum diluted 42% (1 ml, protein content approximately 48 mg) was constant and acceptable (0.37 ml/min) and uncoupling of nonimmunoglobulin serum protein from the ligand was complete by the time the column was reequilibrated. We conclude that of the different Mimetic ligands evaluated Yellow 1 has properties that would be useful in a large-scale affinity chromatography procedure for purifying immunoglobulin from sheep serum.

Animals↗

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↗

Moderate increases in peripheral blood estradiol concentration in the adult ram do not directly inhibit testosterone secretion.

Two experiments were conducted in July with adult Dorset x Leicester x Suffolk rams to determine whether increases of 150 or 300% in estradiol (E2) concentration in peripheral blood (from 6.3 +/- 0.8 pg/mL in control rams) would affect testosterone secretion directly as well as indirectly via the hypothalamic-pituitary axis. After 4 days of estradiol treatment (experiment 1) provided with subcutaneous polydimethylsiloxane implants filled with crystalline estradiol, luteinizing hormone (LH) and testosterone secretions were reduced by 50% (p < 0.05) in both groups of rams because of subtle decreases in pulse frequencies and amplitudes. Estradiol treatments were also associated with decreases in mean follicle-stimulating hormone (FSH) concentration (30-50% in both groups, p < 0.05) and increases in mean prolactin concentration (35% in low-E2 group; 105% in high-E2 group, p < 0.05), but testicular responsiveness to an LH challenge (single intravenous dose, 10 micrograms NIH-LH-S25) remained normal. When along with estradiol treatment, 10-micrograms doses LH were given every 80 min (experiment 2), testosterone secretion increased by 265% (p < 0.05) in both treated and control rams. Relative to day -1, secretion on day 4 was characterized by higher (p < 0.05) pulse frequencies and baseline concentrations and lower (p < 0.05) pulse amplitudes; values for all characteristics were similar to those for Dorset x Leicester x Suffolk rams in the breeding season. Interestingly, the decreases in mean FSH concentration brought about by estradiol and (or) LH treatments were not any greater than in experiment 1, and estradiol's ability to elevate mean prolactin concentration was blocked completely.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Plasma thyrotropin concentration in the male pig: profile from birth to puberty and the effect of season and social environment in the young adult.

Plasma thyrotropin (TSH) secretion was studied in crossbred (Landrace x Large White) immature and young adult Landrace male pigs. Levels of TSH were low over the first 9 wk post-natally and were maximal at 12 wk of age. Thereafter, hormone levels declined and by 16 wk returned to values similar to those at 7 wk. In addition, a transient increase in TSH was noted at 22 wk. A second experiment involved 2 groups of young adult boars housed either in a socially non-restrictive environment (adjacent to estrual females) or a socially restrictive environment (not in direct physical contact with females). TRH stimulated secretion of TSH and the magnitude of this response was affected by month; minimum and maximum responses were found in May and August respectively. There was an effect of social environment on TRH-induced TSH secretion; during February and August, the magnitude of the TSH response to TRH was lower in socially restricted than in socially non-restricted boars.

Aging↗

Interaction of season and estradiol in the regulation of gonadotropin secretion in the adult ram.

The effects of season and estradiol on the secretion of gonadotropic hormones in adult Dorset X Leicester X Suffolk rams were studied. Control groups of intact and castrate rams, and castrate rams given estradiol replacement (approximately 11.5 pg/mL) via polydimethylsiloxane capsules (sc) were assessed for 1 year, beginning in August. Mean concentrations of luteinizing hormone (LH), follicle-stimulating hormone (FSH), and prolactin (PRL) were determined every 2 weeks for all three groups of rams and measurements of testosterone concentration and scrotal circumference were taken on the intact rams. Pulsatile LH release and the LH response to a 2-micrograms dose (iv) of gonadotropin-releasing hormone (GnRH) were assessed for all rams when the testes of intact rams were redeveloped (late October), regressed (early February, late April), and redeveloping (early August). Season directly affected LH-pulse amplitude, which increased only in the control castrate rams between February and April. In October, LH-pulse frequency was the same in both groups of castrate rams, while in April, frequency in the estradiol-treated castrate rams was suppressed to intact ram values. Pituitary responsiveness to exogenous GnRH did not change throughout the year in either of the castrate groups, but along with LH-pulse amplitude, it was increased in August in the intact rams. Although FSH secretion was 14-fold higher in the control castrate rams than in the intact rams, seasonal-directional changes in mean concentration were similar. FSH concentration in the estradiol-treated castrate rams was stable throughout the year. PRL secretion never differed between the control castrate and intact rams but was enhanced in the estradiol-treated castrate rams, particularly during long days.

Animals↗

Enhanced testosterone secretion in adult rams after establishment of a high-frequency, low-amplitude pattern of LH pulses in the nonbreeding season occurs without changes in the number or binding affinity of testicular LH receptors.

When the LH signal in the ram is changed from one of large and infrequent pulses to one of small and frequent pulses, the testes quickly become more responsive to LH and testosterone secretion is elevated, perhaps because the number and (or) binding affinity of testicular LH receptors have increased. An experiment was undertaken in the nonbreeding season (July) with 10 adult Dorset x Leicester x Suffolk rams that were about 3.5 years of age and 69 +/- 2 kg in body weight. Rams were given injections into the jugular vein of either 5 micrograms NIH-LH-S24 (in 1 ml saline) or vehicle every 80 min for 6 days. LH treatment produced a series of LH pulses that occurred three times more frequently and were 70% less in amplitude than pulses in the control rams, without causing mean LH concentration to increase. Endogenously produced LH pulses were not evident in the treated rams after LH injection began. The modified LH-pulse pattern elevated mean testosterone concentration by 150% (assessed on days 2 and 5), and caused the cumulative testosterone response to LH pulses, estimated by multiplying testosterone-pulse amplitude by frequency per 6 h, to increase progressively by 180% (days -2 through 5). Enhanced testicular steroidogenic activity, presumably due to greater enzymatic activity and cholesterol availability within Leydig cells, was not associated with increases in either the concentration or affinity of LH-binding sites in the testis (assessed on days 3 and 6).

Animals↗

Pubertal changes in the secretion of gonadotropic hormones, testicular gonadotropic receptors and testicular function in the ram.

Developmental changes in pituitary content and secretory patterns of luteinizing hormone (LH), follicle-stimulating hormone (FSH) and prolactin (PRL), testicular size and steroidogenic function, testicular LH- and FSH-binding activity, and growth of the accessory sex organs were examined for 24 Dorset X Leicester X Suffolk rams (born in March) every 30 days from 30 to 150 days of age, and again at 200 days. Pituitary LH and FSH contents increased between 30 and 60 days of age and remained constant until 150 days, when contents were somewhat greater than on either 120 or 200 days. LH-pulse amplitude and frequency, and mean FSH concentration, were highest at 60 and (or) 90 days of age. Testicular growth increased dramatically between 90 and 150 days of age in association with increases in the number of LH- (100-fold) and FSH- (33-fold) binding sites in the testis and a small increase in blood testosterone concentration (1 ng/ml). During the same period, pituitary content and blood concentration of PRL increased to maximal values, epididymal, vesicular gland and bulbourethral gland weights increased 6-fold, and body weight doubled. Between 150 and 200 days of age, testosterone concentration increased considerably (8 ng/ml), as did LH-pulse frequency and the amount of LH- and FSH- binding in the testis; the reproductive organs continued to grow at a rate faster than that of the body as a whole. Testicular development of ram lambs was accompanied by increases in the secretion of all three pituitary hormones with gonadotropic properties, and in the number of LH and FSH receptors.

Animals↗

Increases in testosterone secretion in adult rams with immunoneutralization of endogenous estradiol occur in the absence of increases in pulsatile LH release or testicular LH receptors.

The testes of the ram become more responsive to LH stimulation following immunoneutralization of endogenous estradiol. The possibility that testosterone secretion is facilitated by increased LH-binding activity in the testes was investigated in the present study conducted with adult Dorset X Leicester X Suffolk rams during the time of testicular recrudescence. Patterns of episodic LH release and testosterone secretion (days--5, 10 and 24) and LH-binding activity in testicular biopsy samples (days--1, 14 and 28) were assessed on the days indicated relative to the onset of passive immunization and the establishment of relatively low titres (approximately 1:200) of estradiol antiserum. During the experimental period, mean serum testosterone concentration increased by approximately 150% for the immunized rams as basal concentration and pulse amplitude increased, while all characteristics of testosterone secretion remained unchanged for the nonimmunized rams. Characteristics of LH release and the concentration of LH-binding sites in the testes, however, were always similar for both groups of rams. Further, group differences in FSH and PRL secretion and in the concentration of testicular FSH-binding sites did not occur. These results provide evidence for an estradiol direct (gonadotropin independent) negative-feedback component in the regulation of Leydig cell function in the ram.

Animals↗

Conformational restrictions of the sheep testicular receptor discriminates pituitary lutropin and placental gonadotropins.

A membrane preparation from the testis of maturing Dorset-Leicester-Suffolk sheep, capable of discriminating pituitary LH (lutropin) from placental gonadotropins human choriogonadotropin (hCG) and equine choriogonadotropin is described. Maximum binding of 125I-oLH (ovine lutropin) to the testicular receptors occurred at 4 degrees C in a rapid manner, attaining equilibrium in 12-16 h. Under such optimal conditions, only unlabeled ovine LH or the structurally identical bovine LH effectively competed for receptor occupation. Other highly purified pituitary LH preparations from rat and human pituitaries were weakly (4-10%) active in displacement assays. Purified hCG or equine choriogonadotropin, which were highly potent in rat testicular LH receptor assays, could not compete with 125I-oLH for binding to the sheep LH receptor at 4 degrees C. Thus, the sheep testicular LH receptor was highly specific in recognizing pituitary LH conformation. The presence of an ovine/bovine LH alpha- or beta-subunit in recombinants with hCG subunit counterparts was required to generate an effective conformation capable of receptor recognition. Chemically deglycosylated hCG, containing 75% less carbohydrate and which showed greater binding to other LH receptors, failed to recognize sheep LH receptor, suggesting that excess carbohydrate in hCG was not a factor in hindering binding of the native placental hormone. Scatchard analysis using 125I-hCG/125I-oLH revealed that there were separate sites with similar affinities but vastly different capacities. The hCG binding sites, which could also be effectively occupied by oLH, were less than 10% of oLH binding sites. Thus, the Dorset-Leicester-Suffolk sheep testicular receptor provides an important and unique in vitro test system to distinguish pituitary LH from placental LH-like hormones. We infer that temperature-dependent conformational restrictions of the sheep testicular LH receptor are involved in recognizing differences in these highly similar and structurally homologous hormones.

Animals↗

Sheep testicular gonadotropin binding sites: characterization and changes with surgical shortening of the scrotum.

Gonadotropin receptors in previously frozen (-70 degrees C) sheep testicular tissue were characterized, and methods of assessment of receptor binding activity were established and applied to an investigation of testicular function in the short scrotum ram. Binding of 125I-labelled ovine luteinizing hormone (125I-oLH) and 125I-labelled ovine follicle-stimulating hormone (125I-oFSH) to testicular membranes was highly specific and saturable. Uptake of labelled gonadotropins was proportional to the amount of membrane protein, with 125I-oFSH showing greater specific binding. Initial association of 125I-oLH with binding sites was comparable at 4, 25, and 34 degrees C; with prolonged incubation, maximal binding occurred at 4 degrees C. Equilibrium was achieved in 8 h at 34 degrees C and in 16 h at 25 and 4 degrees C. In contrast, the temperature-dependent association of LH with rat testicular membranes was greater at 25 than at 4 degrees C. The rate of association of 125I-oFSH to binding sites was proportional to incubation temperature, with equilibrium being achieved in 2 h at 34 degrees C and in 16 h at 25 degrees C; binding at 4 degrees C; was slow and still increasing by 48 h. Binding of radioactive and nonradioactive oLH and oFSH was hormone specific and increased in a dose-dependent manner until saturation occurred. Shortening the scrotum of adult rams led to reductions (p less than 0.05) in testicular weight (60%) and in the number of LH (55%) and FSH (90%) binding sites per testis, with no apparent change in serum testosterone concentration.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Influence of season and social environment on basal and thyrotropin releasing hormone-induced prolactin secretion in the adult domestic boar.

Basal and TRH-induced PRL secretions were investigated for adult Landrace boars housed in two social environments. Socially nonrestricted boars (N = 4) were individually penned adjacent to ovariectomized gilts that were hormonally induced into estrus every 3 weeks, while socially restricted boars (N = 4) were individually kept in pens with solid walls. In February, May and August all boars were fitted with jugular catheters for serial blood sampling which took place 2 h prior to and 4 h following in iv injection of TRH (1 microgram/kg). Mean pre-injection serum PRL concentration was not influenced by either month or social environment. The PRL response to TRH injection, however, was influenced by both factors. The magnitude of the PRL response (peak delta value) increased (month, P less than 0.01) progressively in both groups of boars from February through August and was greater (P less than 0.05) in the nonrestricted versus the restricted boars in August. The total amount of PRL secreted was also maximal and greater in the socially nonrestricted boars in August (month x social group, P less than 0.05). These results indicate that TRH-induced and not basal PRL secretion is influenced by both season and social interaction of boars.

Animals↗

Luteinizing hormone release in intact and castrate rams is altered with immunoneutralization of endogenous estradiol.

Changes in the dynamics of luteinizing hormone (LH) release in the adult ram following immunoneutralization of endogenous estradiol were investigated. Castrate rams were actively immunized against estradiol-6-bovine serum albumin for 7 months and then their patterns of episodic LH release and LH response to multiple injections of gonadotropin-releasing hormone (GnRH, two 5-micrograms doses given iv 2 h apart) were assessed (April). In comparison with control rams immunized against rabbit gamma globulin, estradiol-immunized rams (antibody titre approximately 1:5000) exhibited more frequent LH releases (11.7 +/- 0.3 vs. 9.3 +/- 0.8 pulses/8 h, P less than 0.05) and a greater LH response to the first GnRH injection (peak delta value 190 +/- 8 vs. 130 +/- 25 ng/mL, P less than 0.01). Estradiol antiserum collected from the castrate rams was used in the passive immunization of intact rams (antibody titre approximately 1:200) for 1 month (beginning mid-July). Although episodic LH release was always similar for control and immunized rams, testosterone levels in the latter group increased approximately 150%. In contrast with the castrate ram response, GnRH treatment (two 5-micrograms doses given iv 80 min apart) produced a "self-priming" effect on LH release in the intact rams, an effect that was dampened with estradiol immunoneutralization. Consequently, peak 2:peak 1 ratios for delta value and 80-min mean incremental increase were much smaller (P less than 0.01) for the immunized rams (approximately 2:1 vs. 4:1 for the control rams).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Season and social environment influence the membrane integrity of ejaculated boar spermatozoa as assessed by ouabain sensitivity.

Eight adult Landrace boars were housed for 12 months in one of two social environments. Socially nonrestricted boars were penned near estrual females and socially restricted boars were penned behind solid walls to eliminate visual and physical contact with other pigs. All animals were subjected to natural changes in day length. The sensitivity of ejaculated spermatozoa to ouabain (in inhibitor of Na+-K+ ATPase) was determined on 4 consecutive weeks in November, March-April, and July-August. Semen was diluted in Tyrode's solution (pH 7.4) with and without 10(-3) M ouabain. Duplicate samples of control and ouabain-treated spermatozoa were incubated at 37 degrees C for 4 h, and percent motile sperm, motility type, and motility index (combination of percent and type) were determined at hourly intervals. Ouabain-induced decreases in most motility parameters varied with season (season X treatment, P less than 0.05). At hour 4, induced decreases in percent motile sperm were more pronounced in November and July-August than in March-April for socially nonrestricted boars. Decreases in motility type were greater (P less than 0.05) in November and July-August than in March-April for socially nonrestricted boars and were greater (P less than 0.01) in November than in July-August for restricted boars. In March-April motility type decreased (P less than 0.01) to a greater extent for socially restricted vs. nonrestricted boars. Similar season and social environment differences were observed for motility index values. Given the interrelationships between ouabain sensitivity, the functional integrity of sperm cells, and fertilizing capacity, season and social environment differences in ouabain-induced motility depression probably reflect qualitative changes in boar spermatozoa.

Animals↗

Effect of season and social environment on testis size and semen quality of the adult Landrace boar.

Eight adult Landrace boars were housed for 12 mo in one of two social environments. Socially nonrestricted boars were penned adjacent to and allowed minimal physical contact with ovariectomized gilts hormonally induced into estrus every 2 wk. Socially restricted boars were penned behind solid walls to eliminate visual and physical contact with other pigs. All animals were subjected to natural changes in daylength. Semen was collected weekly; gel-free volume, gel weight, sperm concentration and number per ejaculate, sperm motility (percent and type) and semen pH were determined. Total protein, citric acid contents and alkaline phosphatase activity were measured in seminal plasma. Testis length and width and various body temperature measurements were recorded monthly. Except for percent motile sperm and alkaline phosphatase activity, all semen characteristics varied (P less than .05) with month. The pattern of seasonal change in semen volume was modified by social environment (group X month, P less than .05). Sperm numbers were highest in winter and lowest in spring and summer. Ejaculate protein and citric acid contents were highest in fall and winter; decreases in spring were associated with moderate ambient temperatures and increases in daylength (r = -.80, P less than .05). Testicular length for socially nonrestricted boars was maximum in November through January and minimum in April through July, and did not vary as extensively for socially restricted boars. Scrotal temperature was elevated during periods of high ambient temperature, but not to values detrimental to spermatogenic function.(ABSTRACT TRUNCATED AT 250 WORDS)

Alkaline Phosphatase↗