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Biomedical subjects

J K Critser

Publications and source records attributed to J K Critser.

At least 91 records · Page 5Linked to original sources

Pregnancy resulting from peritoneal ovum sperm transfer procedure.

This is the first reported transvaginal ultrasound-guided POST pregnancy in the United States. Advantages over the GIFT procedure include it being an office procedure done under local anesthesia and IV sedation, and decreased cost. Larger series are needed to compare pregnancy rates.

Adult↗

Seminal vesicles: a source of trophoblast lymphocyte cross-reactive antigen.

Maternal recognition of allotypic trophoblast lymphocyte cross-reactive (TLX) antigens is proposed to be involved in immunologic acceptance of the allogeneic fetus. The presence of TLX antigens in seminal plasma suggests that sensitization can occur before fertilization and implantation. In this study, the origin of TLX antigens within the male reproductive tract was investigated. Analysis of split ejaculates and immunohistological examinations of male accessory gland tissues showed the luminal epithelium of seminal vesicles as the source of seminal plasma TLX antigens. This finding suggests that seminal vesicles may play a role in the immunology of human reproduction.

Animals↗

An evaluation of the accuracy of screening antisperm antibodies using the combined GAM immunobead.

A simplified method of screening for antisperm antibodies has been previously described using rabbit antihuman immunoglobulin immunobeads (GAM beads). These reports have indicated a high correlation between the GAM bead and maximal individual isotype binding. However, preliminary data in our laboratory (using a 14% cut-off criterion) indicated a high frequency of samples with positive GAM bead, but negative individual isotype results. This study was conducted to evaluate more critically the use of the GAM bead for initial antisperm antibody screening. Immunobead binding tests were performed on 98 undiluted sera. The maximal binding of the individual isotype beads (IgG, IgA, or IgM) and the GAM beads were significantly correlated (r = 0.94, P = 0.0001). However, when results were categorized as positive or negative, there was a significantly lower frequency (P less than 0.05) of positive samples using the individual isotype (46.9%) than using the GAM approach (58.2%). These data support the hypothesis that, based on continuous percent binding, the GAM bead method produces results similar to individual isotype testing. However, when data are interpreted categorically, the results may differ significantly.

Acrylic Resins↗

The effect of photoperiod on diurnal rhythms of serum gonadotrophins, prolactin and melatonin in ovariectomized heifers.

Fourteen heifers, ovariectomized prepubertally, were used in two experiments to test the hypotheses that (1) there are diurnal patterns in circulating concentrations of luteinizing hormone (LH), follicle stimulating hormone (FSH), prolactin and melatonin and (2) that these diurnal patterns would be altered by changing photoperiod. In experiment 1 (Exp. 1) animals were randomly assigned to either increasing photoperiod (I) (n = 7) or decreasing photoperiod (D) (n = 7) for a period of 8 weeks. In the second experiment (Exp. 2) four heifers from each photoperiod group were assigned to the opposite treatment for another 4 weeks forming four subgroups; continued increasing photoperiod (II) (n = 3), increasing followed by decreasing photoperiod (ID) (n = 4), decreasing followed by increasing photoperiod (DI) (n = 4) and continued decreasing photoperiod (DD) (n = 3). At weeks 4, 8 (Exp. 1) and 12 (Exp. 2) the animals were cannulated and blood samples were taken hourly from 1030 hr to 0830 hr (23 samples). In Exp. 1, animals exposed to either I or D did not differ in circulating concentrations of LH, FSH, prolactin and melatonin. Concentrations of LH and melatonin but not FSH or prolactin were higher in animals during the scotophase than the photophase. In Exp. 2 LH, FSH and prolactin, but not melatonin concentrations were higher in animals exposed to I (II and ID) than D (DI and DD). Animals exposed to I had higher circulating concentrations of FSH and animals exposed to both I and D had higher concentrations of melatonin during the scotophase. Neither LH nor prolactin concentrations differed between scotophase and photophase. The abrupt switch from one photoperiod treatment to the other did not significantly affect LH, FSH or prolactin but did alter the patterns and concentrations of circulating melatonin. Animals that remained in the same photoperiod treatment had similar melatonin concentrations; but animals changed from I to D had higher serum melatonin concentrations than those changed from D to I. These data support the hypothesis that there are diurnal changes in circulating concentrations of melatonin in the prepubertal bovine female, with concentrations higher during scotophase than photophase. In addition, under certain photoperiodic conditions there were diurnal rhythms in gonadotropins. These data also support the hypothesis that changing photoperiod alters the diurnal pattern in circulating melatonin concentrations.

Animals↗

Factors affecting the cryosurvival of mouse two-cell embryos.

A series of 4 experiments was conducted to examine factors affecting the survival of frozen-thawed 2-cell mouse embryos. Rapid addition of 1.5 M-DMSO (20 min equilibration at 25 degrees C) and immediate, rapid removal using 0.5 M-sucrose did not alter the frequency (mean +/- s.e.m.) of blastocyst development in vitro when compared to untreated controls (90.5 +/- 2.7% vs 95.3 +/- 2.8%). There was an interaction between the temperature at which slow cooling was terminated and thawing rate. Termination of slow cooling (-0.3 degrees C/min) at -40 degrees C with subsequent rapid thawing (approximately 1500 degrees C/min) resulted in a lower frequency of blastocyst development than did termination of slow cooling at -80 degrees C with subsequent slow thawing (+8 degrees C/min) (36.8 +/- 5.6% vs 63.9 +/- 5.7%). When slow cooling was terminated between -40 and -60 degrees C, higher survival rates were achieved with rapid thawing. When slow cooling was terminated below -60 degrees C, higher survival rates were obtained with slow thawing rates. In these comparisons absolute survival rates were highest among embryos cooled below -60 degrees C and thawed slowly. However, when slow cooling was terminated at -32 degrees C, with subsequent rapid warming, survival rates were not different from those obtained when embryos were cooled to -80 degrees C and thawed slowly (52.4 +/- 9.5%, 59.5 +/- 8.6%). These results suggest that optimal cryosurvival rates may be obtained from 2-cell mouse embryos by a rapid or slow thawing procedure, as has been found for mouse preimplantation embryos at later stages.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Cryopreservation of human spermatozoa. III. The effect of cryoprotectants on motility.

A series of experiments was conducted to examine potential toxic effects of cryoprotectants on motility of human spermatozoa. The data indicated that exposure of spermatozoa to cryoprotectant medium for as little as 15 minutes at room temperature caused a reduction in motility. This reduction in motility was caused by glycerol. Lowering glycerol concentrations from 7.5% to 5.0% improved sperm motility at 24 hours post-thaw. Sperm motility was not affected by either slow or abrupt cooling rates above -5 degrees C. Motility was greater in cryopreserved sperm at 24 hours post-thaw when glycerol was added at -5 degrees C rather than at room temperature. These data suggest that avoiding glycerol toxicity either by reducing the concentration used or by adding glycerol at a lower temperature, or both, may improve human sperm cryosurvival rates.

Cryoprotective Agents↗

The effect of exogenous melatonin administration on gonadotropin and prolactin patterns in ovariectomized estradiol-treated heifers exposed to increasing photoperiod.

Eight nulliparous Angus and Angus crossbred heifers, which had been ovariectomized and treated with estradiol-17beta (E(2)) S.Q. implants for 6 months, were used to determine the effects of exogenous melatonin on serum gonadotropin and prolactin concentrations. Melatonin (15 mg) or corn oil (vehicle) was administered as a single i.m. injection at 1600 h daily for 12 weeks (March 19 to June 4, 1982). Blood samples taken weekly via jugular venipuncture at approximately 1100 h were assayed for luteinizing hormone (LH), follicle stimulating hormone (FSH), prolactin and E(2). At 4-week intervals, animals were fitted with indwelling jugular cannulae at 1100 h and samples were taken for 4 h at 15-min intervals. These samples were used to estimate pulsatile patterns of LH, FSH and prolactin. On the day of the first 15-min sampling, additional blood samples were collected at 30 min intervals from 1500 to 2200 h to determine the acute effect of melatonin injection on concentrations of LH, FSH and prolactin. Melatonin did not affect concentrations of FSH collected at weekly intervals (P=0.03) but tended to inhibit the decrease in concentrations of LH seen in the heifers treated with vehicle (P=0.12). There was a melatonin x time interaction for FSH (P=0.04) and a tendency for this interaction for LH (P=0.11). Circulating concentrations of prolactin were not different between treatment groups (P=0.83) nor was there a melatonin x time interaction (P=0.03). Estradiol was higher in the melatonin treated group (P=0.03) (15.58 +/- 4.17 versus 8.25 +/- 1.25 pg/ml) (X +/- SEM) and the melatonin x time interaction was significant (P=0.001). There was a tendency for a melatonin x time interaction for FSH pulse frequency (P=0.10). Prolactin pulse duration tended to decrease in response to melatonin treatment (P=0.14) (15.92 +/- 9.29 versus 11.04 +/- 4.57 min). These data do not support the hypothesis that melatonin decreases prolactin concentrations in cattle and indicates that other factors must mediate photoperiod regulation of this hormone. However, the interpretation of these data is less clear concerning the hypothesis that melatonin may maintain elevated concentrations of gonadotropins in the presence of increasing photoperiod. Concentrations of FSH appeared to be more affected by melatonin than LH; consistent with previous observations that FSH may be more affected than LH by changes in photoperiod (2). But neither LH or FSH concentrations were clearly shown to be consistantly elevated in the melatonin treatment group.

Journal Article↗

Cryopreservation of human spermatozoa. I. Effects of holding procedure and seeding on motility, fertilizability, and acrosome reaction.

Three experiments were conducted to evaluate effects of holding semen at +5.0 degrees C for 30 minutes or -5.0 degrees C for 10 minutes and ice crystal induction (seeding) on frozen-thawed human spermatozoa. In experiment 1, spermatozoa were frozen, and postthaw motility was evaluated immediately (0 hour) and 24 hours later. At both 0 and 24 hours, nonfrozen control samples had higher motility than all other treatment groups. At 0 hour postthaw, motility was higher in samples held at -5.0 degrees C for 10 minutes with no significant effect of seeding. At 24 hours, samples held at -5.0 degrees C for 10 minutes and seeded, but not samples held at -5.0 degrees C and not seeded, had higher motility than samples held at +5.0 degrees C. In experiment 2, semen samples were frozen, and fertilizability was evaluated in a zona-free hamster egg penetration assay. Seeded samples had a higher frequency of sperm penetration than either nonfrozen or nonseeded samples. In experiment 3, nonfrozen controls and frozen treatment groups were evaluated for the frequency of survival and acrosomal integrity. Seeded samples had higher frequencies of survival and loss of acrosomal integrity than nonseeded samples. All frozen-thawed samples had a lower frequency of survival and a higher frequency of loss of acrosomal integrity than nonfrozen controls. Although altered patterns of fertilizability and acrosomal integrity are induced, collectively these data suggest that incorporating a holding temperature of -5.0 degrees C for 10 minutes and seeding may result in a superior protocol for freezing human spermatozoa.

Acrosome↗

Cryopreservation of human spermatozoa. II. Postthaw chronology of motility and of zona-free hamster ova penetration.

Postthaw dynamics of motility maintenance and ability to penetrate zona-free hamster ova were examined with human sperm. Ten semen samples were each divided into two equal volumes; one was cryopreserved while the other half remained untreated. Frozen samples were thawed, and initial evaluations for motility and hamster egg penetration were made on both untreated and frozen-thawed samples. The time difference between the initial evaluations for the two treatment groups was approximately 30 minutes as a result of the time required to freeze and thaw aliquots. Subsequent evaluations were made 6, 12, 24, and 48 hours later. Over all times both the motility and fertilizability of cryopreserved spermatozoa were significantly reduced (P less than 0.05) when compared with those of untreated sperm. The pattern of motility loss over time was similar between untreated and frozen-thawed sperm (P greater than 0.10). Conversely, differences between untreated and frozen-thawed sperm in fertilizability patterns were dramatic (P less than 0.05). This was evidenced by penetration rates for cryopreserved sperm highest at 0 hour and decreasing over time, whereas penetration by untreated spermatozoa was lowest at 0 hour, increasing to a maximum at 24 hours. These observations may be important in the development of laboratory protocols for freezing and clinical protocols for using frozen-thawed sperm.

Animals↗

Effect of photoperiod on LH, FSH and prolactin patterns in ovariectomized oestradiol-treated heifers.

Angus and Angus crossbred heifers were ovariectomized, treated with oestradiol implants and randomly assigned to the natural photoperiod of fall to spring for 43 degrees N latitude or extra light simulating the photoperiod of spring to fall. Weekly blood samples were taken for 6 months (fall to spring equinox). All heifers were cannulated every 4 weeks and blood samples were taken for 4 h at 15-min intervals. Sera were assayed for LH, FSH, prolactin and oestradiol. In samples taken weekly, serum LH and FSH concentrations were higher while serum prolactin was lower in heifers exposed to natural photoperiod. There was a photoperiod X time interaction for both FSH and prolactin with concentrations diverging as photoperiod diverged. Circulating concentrations of oestradiol were not different between groups. In samples taken every 4 weeks at 15-min intervals, baseline concentrations of LH and FSH and LH pulse amplitude were higher while prolactin pulse frequency was lower in heifers exposed to natural photoperiod. There was a photoperiod X time interaction for each of these pulsatile characteristics. The correlation between LH and prolactin concentrations estimated from the 15-min samples differed between the two photoperiod treatment groups. The pooled correlation coefficient (r) was -0.12 under natural photoperiod and +0.50 under extra light. There was also a photoperiod X time interaction with negative correlations occurring when photoperiod was decreasing and positive correlations occurring when photoperiod was increasing. These results support the hypothesis that photoperiod alters serum concentrations of LH, FSH and prolactin in cattle.

Animals↗

Effect of photoperiod on LH, FSH, prolactin and melatonin patterns in ovariectomized prepubertal heifers.

Angus and Angus crossbred prepubertal heifers were ovariectomized and randomly assigned to either increasing light simulating the photoperiod of the vernal equinox to the summer solstice (I) or decreasing light simulating the photoperiod of the autumnal equinox to the winter solstice (D) for 43 degrees N latitude. Three blood samples were taken each week for 14 weeks, the first at 11:00 h and two others 2 days later, 1 h before lights on (dark), 1 h before lights off (light). At the end of 14 weeks 4 heifers from each treatment group were cannulated and samples were taken for 12 h at 15-min intervals, 6 h in the light and 6 h in the dark. All sera were assayed for LH, FSH and prolactin. In addition, the samples taken at 15-min intervals were assayed for melatonin. In samples taken weekly at 11:00 h circulating concentrations of LH and prolactin were higher among animals in Group I, while FSH concentrations were not different between Groups D and I. In samples collected weekly in the light or the dark, LH and prolactin concentrations were higher in Group I animals. However, prolactin concentrations were higher and LH concentrations tended to be higher in samples taken in the dark. FSH concentrations were not different between either D or I or dark and light. In samples taken at 15-min intervals the prolactin baseline was higher and pulse amplitude tended to be higher for Group I animals. Neither LH nor FSH pulse characteristics differed between I and D; however, LH baseline and LH pulse amplitude were higher in the dark. Melatonin pulse amplitude was higher among animals in Group D and higher in serum collected in the dark. These results suggest that photoperiod alters circulating concentrations of LH and prolactin and alters pulsatile release of LH, prolactin and melatonin in the prepubertal heifer.

Animals↗

Cryopreservation of hamster oocytes: effects of vitrification or freezing on human sperm penetration of zona-free hamster oocytes.

Three experiments were conducted for evaluation of the efficacy of conventional freezing or vitrification of hamster oocytes for use in a human sperm penetration assay (hSPA). In experiment 1, oocytes were cryopreserved and evaluated for survival on the basis of morphologic criteria. Survival of vitrified oocytes and that of frozen oocytes were not different, whereas all cryopreserved groups had lower survival than noncryopreserved controls. In experiment 2, oocytes were conventionally frozen or vitrified and evaluated in an hSPA. Vitrified oocytes had a lower frequency of sperm penetration than frozen oocytes, and all cryopreserved groups had lower penetration rates than untreated controls. In experiment 3, oocytes were exposed to the cryoprotectant used to vitrify (VS1) or freeze (DMSO) but not cooled prior to evaluation in an hSPA. Exposure to DMSO but not VS1 reduced hSPA values. It is concluded from these experiments that while all cryopreserved oocytes do not survive, at current stages of development conventionally frozen oocytes perform better than vitrified oocytes in the hSPA and losses associated with conventional freezing procedures may be related to cryoprotectant exposure, whereas vitrification losses are more probably due to events associated with rapid cooling and/or warming of the oocytes.

Animals↗

Changes of luteinizing hormone and progesterone for dairy cows after gonadotropin-releasing hormone at first postpartum breeding.

Gonadotropin-releasing hormone administered at breeding enhances fertility of dairy cows, so a study was designed to evaluate the mechanism for enhanced fertility following administration of gonadotropin-releasing hormone at first postpartum breeding. Twenty-four cows were assigned randomly to one of two treatments, 100 micrograms of gonadotropin-releasing hormone intramuscular or saline vehicle intramuscular at insemination. Blood samples for luteinizing hormone assay were taken at 2-h intervals prior to breeding and .5-h intervals for 3 h after insemination. Composite morning milk samples for progesterone assay were collected for 30 days after insemination or until next estrus. Cows given gonadotropin-releasing hormone had higher luteinizing hormone concentrations in blood serum following treatment than cows given saline, 13.2 versus 3.0 ng/ml. There was no relationship between luteinizing hormone and subsequent conception. Progesterone for cows that became pregnant was higher throughout sampling days. Mean progesterone concentrations were 4.6 versus 2.2 ng/ml in pregnant and nonpregnant cows during the first 4 days after insemination. Cows treated with gonadotropin-releasing hormone that conceived had higher progesterone than other cows, and that was evident at the first 4 days postbreeding.

Animals↗

Seasonal LH profile in ovariectomized cattle.

Two experiments were conducted to examine seasonal changes in circulating LH concentrations in ovariectomized heifers. In experiment 1, four Holstein heifers were ovariectomized in April 1977 during middiestrus. Blood samples were collected daily for 30 days surrounding each equinox and solstice for one year to examine changes in plasma LH levels at the time of seasonal photoperiod changes. The LH concentrations were highest during the winter solstice period and lowest during the summer solstice period. In addition, samples taken at two-week intervals indicated a distinct LH profile with maximal LH concentrations during November-April and minimal concentrations during May-October. In experiment 2, eight Holstein heifers were ovariectomized in June-July, 1979 and given an estradiol or a control implant in October. A distinct LH profile for the interval extending from January, 1980 to February, 1981 was found in the heifers that were not treated with estradiol. Concentrations were maximal during December-April and minimal during May-November. The LH profile followed a similar pattern in the estradiol-treated heifers; however, the overall profile was at a higher level. These data indicate that underlying seasonal reproductive mechanisms are present in cattle even though the species ovulates and breeds throughout the year.

Journal Article↗

Inhibition and subsequent rebound of FSH secretion following treatment with bovine follicular fluid in the ewe.

Plasma concentrations of gonadotropins were examined after treatment of ewes with bovine follicular fluid (FF) in four experiments. Mean concentrations of FSH were significantly decreased by FF treatment. The FSH depression appeared to continue throughout the length of treatment when the duration of treatment was 2-4 days. However, in an experiment in which the treatment period was 8 days, mean concentrations of FSH initially declined and then returned to control levels during the last 4 days of treatment. In all experiments, a rebound in FSH concentrations was found 24-36 h after cessation of FF treatment. The magnitude of this rebound appeared to be proportional to the degree of FSH suppression during FF treatment.

Journal Article↗