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Biomedical subjects

L C Krey

Publications and source records attributed to L C Krey.

At least 19 recordsLinked to original sources

Effects of photoperiod on brain corticosteroid receptors and the stress response in the golden hamster (Mesocricetus auratus).

Following exposure to short daylengths, in golden hamsters, changes in basal adrenal glucocorticoid secretion are associated with a significant increase in Type I receptor binding, and are preceded by alterations in the stress-induced release of glucocorticoids, which is one of the major modes of operation of the hypothalamo-pituitary-adrenocortical axis (HPA). These results lend support to the hypothesis that corticosteroid receptors, and in particular the Type I receptor subtype, play a central role in the regulation of circadian and circannual rhythms of the HPA.

Adrenalectomy

Simultaneous assessment of sperm chromatin condensation and morphology before and after separation procedures: effect on the clinical outcome after in vitro fertilization.

OBJECTIVE: To look for correlations between acridine orange (AO) staining and semen parameters before and after sperm separation procedures and to assess whether the AO test predicts fertilization or pregnancy outcomes after standard IVF and intracytoplasmic sperm injection. DESIGN: Prospective study that simultaneously assesses sperm morphology and nuclear protein maturity on a cell-by-cell basis before and after preparative procedures. SETTING: University teaching hospital. PATIENT(S): Men (n = 140) undergoing diagnostic semen analysis. MAIN OUTCOME MEASURE(S): Acridine orange fluorescence of sperm nuclei, semen parameters, IVF outcome. RESULT(S): In unprocessed samples, 90% of sperm with normal heads displayed green fluorescence (mature nuclear protein); significantly lower percentages of green fluorescence were observed in sperm with abnormal heads. The percentage of mature normal sperm in the specimen correlated with motility. Sperm maturity after swim-up or Percoll gradient was significantly improved for sperm with normal or abnormal heads. The percentage of mature normal sperm correlated with motility after either Percoll or swim-up. Neither the percentages of mature nuclei nor mature normal nuclei correlated with fertilization or pregnancy outcome. CONCLUSION(S): Nuclear protein maturation correlates with sperm motility and morphology. Because morphologically normal and motile sperm are more mature, separation procedures should generate a population of sperm with the highest fertilization capacity. Acridine orange staining, however, did not predict fertilization efficiency or pregnancy outcome in IVF cycles.

Acridine Orange

Preimplantation genetic diagnosis of human embryos for Marfan's syndrome.

PURPOSE: Single-cell nested polymerase chain reaction (PCR) and Ddel endonuclease digestion were used to detect the presence of a Marfan's syndrome mutation in human preimplantation embryos derived from in vitro fertilization (IVF). These procedures were conducted to eliminate the possibility of transmission of the affected allele from the father to his offspring. The mutation on chromosome 15 is transmitted as an autosomal dominant trait, and the chance of having a child affected with the disease is 50%. METHODS: A couple presented to the Program for In Vitro Fertilization, Reproductive Surgery and Infertility for preimplantation genetic diagnosis. IVF was performed and embryo biopsy was done on day 3 embryos. Single blastomeres were removed from embryos and subjected to nested PCR analysis and endonuclease digestion to detect a Marfan's syndrome mutation located on chromosome 15 inherited from the father. RESULTS: Thirteen oocytes were injected with spermatozoa using intracytoplasmic sperm injection, and nine fertilized normally. Following embryo biopsy and polymerase chain reaction amplification-Ddel endonuclease digestion, five embryos were detected that were positive for the mutation. The four non-affected embryos were transferred to the uterus, resulting in a healthy and normal ongoing pregnancy.

Adult

Successful outcome with day 4 embryo transfer after preimplantation diagnosis for genetically transmitted diseases.

Preimplantation genetic diagnosis was performed in 61 day 3 embryos obtained by in-vitro fertilization from seven patient carriers of haemophilia, Marfan's syndrome, Bloch-Sulzemberg syndrome (incontinentia pigmentosa) or X chromosome-linked immune deficiency, retinitis pigmentosa, and FG syndrome, which is characterized by mental retardation and hypotonia. After multiplex polymerase chain reaction, 16 embryos were diagnosed as being unaffected, and these were transferred to the uterus on the following day (day 4). Of these embryos, six (37.5%) implanted, resulting in the delivery of a singleton and a twin pregnancy, a late second trimester miscarriage (twins at week 20) and a first trimester miscarriage at week 8. All the diagnoses were confirmed by amniocentesis. We report for the first time a late day 4 transfer of biopsied human embryos undergoing preimplantation genetic diagnosis. This transfer schedule allows an extra day to perform genetic analyses on single blastomeres and to monitor any adverse effect of the biopsy procedure.

Adult

Alpha 1 adrenergic regulation of estrogen-induced increases in luteinizing hormone-releasing hormone mRNA levels and release.

Prazosin, an alpha 1 adrenergic antagonist, was used to examine the relationship between adrenergic inputs and the stimulatory effects of estrogen on LHRH mRNA and release. Bilateral cannulae were implanted just dorsal to the preoptic area (POA). Estrous cycles were monitored daily by vaginal smears. On the morning of diestrus, each rat was ovariectomized and assigned to one of three treatment groups: Control--injected with sesame oil (n = 5); Surge--injected with estradiol benzoate (EB, 10 micrograms) to produce an LH surge (n = 5); or, Surge+Prazosin--injected with EB and a prazosin-filled inner cannula was put into the POA (n = 6). Between 4-6 pm of the following day, rats were anesthetized, decapitated, trunk blood collected, and brains were stored in liquid nitrogen. In situ hybridization was performed using a 32P end-labelled 59-mer complementary to LHRH mRNA. Reduced silver grains, proportional to LHRH mRNA content, were quantified. Treatment with estrogen alone resulted in an LH surge and a 50% increase (P < 0.05) in numbers of cells expressing LHRH. This estrogen-induced increase and the LH surge were completely blocked (P < 0.01) by prazosin. Prazosin also decreased (P < 0.01) the median number of grains per cell from 81 (Surge) to 65 grains per cell (Surge+Prazosin). When the number of grains in LHRH-expressing neurons were totalled, EB increased (P < 0.05) LHRH gene expression by 53%, and local administration of prazosin completely blocked (P < 0.01) this increase.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Progesterone modulation of gonadotropin secretion by dispersed rat pituitary cells in culture. IV. Follicle-stimulating hormone synthesis and release.

Estradiol-treated, rat pituitary cells were studied to examine the effects of progesterone (P) on follicle-stimulating hormone (FSH) synthesis and secretion. Progesterone was administered prior to or concurrent with 3 h secretory challenges with either gonadotropin-releasing hormone (GnRH), the iontophore A23187, the protein kinase C activator phorbol 12,13-myristate (PMA), or no secretagogue. Medium FSH levels and cell FSH stores were quantified by radioimmunoassay and bioassay. Acute (< 6 h) exposures to P increased medium levels of immunoreactive and bioactive FSH following GnRH challenge without influencing total (cell + medium) values whereas chronic (9-24 h) treatments increased both parameters. Chronic P elevated total FSH levels even when no secretagogue was present. Studies with antiprogestins, 5 alpha-dihydroprogesterone and 5 alpha-reductase inhibitors revealed that this direct action of P depended on progestin receptor occupation but not on 5 alpha-reduction. These studies indicate that P selectively increases bioactive and immunoactive FSH levels, presumably by increasing FSH synthesis, and characterize the time course and cellular mechanisms of this response. To accommodate for P modulation of total FSH levels, FSH secretion was standardized as the percentage of cellular stores available for release. Progesterone modulation of GnRH-stimulated FSH secretion was multiphasic, i.e. increased at 0-6 h, unchanged at 9 h and suppressed at 24 h. Acute and chronic exposures to P similarly modulated A23187-stimulated FSH release, whereas both P treatments increased PMA-stimulated FSH secretion. In these experiments P modulated luteinizing hormone secretion in parallel fashion, suggesting that common cellular mechanisms underlie peptidergic and steroidal regulation of the secretion of both gonadotropins.

Animals

Immunocytochemical study of GnRH and GnRH-associated peptide in male Syrian hamsters as a function of photoperiod and gonadal alterations.

Hypothalamic luteinizing-hormone-releasing hormone (GnRH) and gonadotropin-releasing-hormone-associated peptide (GAP) biosynthesis and storage were estimated by immunocytochemistry in male golden hamsters maintained in different photoperiods. Intact or castrated male hamsters with subcutaneously inserted testosterone implants were exposed to long-day (14:10) or short-day photoperiods (10:14) for 4-8 weeks. Exposure to short photoperiod for 4 weeks, an interval characterized by a suppression of gonadotropin secretion but not gonadal regression, was associated with an increase in the number of GnRH- and GAP-immunoreactive cells in the diagonal band of Broca/medial septum. Furthermore, morphometric analysis revealed that these animals displayed significantly more GnRH but not GAP immunoreactivity in the median eminence as opposed to hamsters exposed to long-day photoperiods. In additional studies, gonadally regressed hamsters exposed to short day lengths for 8 weeks had equal numbers of GnRH cells as did the long-day controls. These patterns suggest that reproductive quiescence in golden hamsters is not the result of depletions of neuronal GnRH stores available for secretion.

Animals

Steady state analysis of hypothalamic GnRH mRNA levels in male Syrian hamsters: influences of photoperiod and androgen.

An in situ hybridization assay, utilizing a free floating technique was used to estimate the steady state levels of hypothalamic luteinizing hormone-releasing hormone (GnRH) mRNA levels in the brains of male golden hamsters maintained in different photoperiods. In situ histochemistry was performed using a 32P-labelled 66-nucleotide long oligomer complementary to the sequence of the human GnRH mRNA coding region. The oligonucleotide hybridized specifically to mRNA encoding the GnRH precursor as suggested by the distribution of labelled neurons and as shown by an RNAse protection assay on septal and preoptic-hypothalamic mRNA from gonadally regressed hamsters. To test the hypothesis that short-day photoperiods reduce GnRH synthesis, intact male hamsters or castrated males bearing subcutaneously inserted testosterone implants were exposed to long-day (14 h light:10 h dark) or short-day (10 h light 14 h dark) photoperiods for 4 weeks. Exposure to short day lengths never caused a decrease in GnRH expressing neurons and actually was associated with an increase in the number of radiolabelled cells specifically in the diagonal band of Broca/medial septum in the gonadally intact group. The mean number of grains per labelled cell for the short day animals similarly was not reduced from that seen in long day animals. The results are consistent with previous studies on photoperiod and GnRH content in the same brain regions and support the notion that the suppression of the synthesis of GnRH does not accompany the low levels of LH secretion observed during the early stages of reproductive quiescence in this species.

Animals

Testosterone processing by pituitary cells in culture: an examination of the role of 5 alpha-reduction in androgen action on the gonadotroph.

Dispersed rat pituitary cells were exposed to [1,2,6,7-3H]testosterone ([3H]T, 10(-8) M) to assess the role of 5 alpha-reduction in T regulation of gonadotroph secretion. After 4 to 48 hours of exposure, [3H]T metabolites isolated by thin-layer chromatography were characterized in medium and cell homogenates as well as bound to androgen receptors salt-extracted from purified nuclear pellets. Receptor-bound 5 alpha-[3H]dihydrotestosterone ([3H]DHT)/total [3H]androgens rose progressively from 16% at 4 hours to more than 50% at 48 hours. Coincubation with 4-MA (10- to 1,000-fold molar excess) or testosterone-17 beta-carboxylic acid (TCA; 1,000-fold excess) reduced receptor-bound [3H]DHT/[3H]androgen to less than 10% and 20%, respectively, but elevated [3H]T-receptor levels. Despite inhibiting 5 alpha-reductase activity, TCA and 4-MA had no effect on T suppression of gonadotropin-releasing hormone-stimulated luteinizing hormone secretion or T enhancement of total (cell + secreted) follicle-stimulating hormone levels. The results suggest that 5 alpha-reduction to DHT is not essential for the expression of the direct influences of T on gonadotropin synthesis and secretion in rat gonadotrophs.

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

Progesterone modulation of gonadotropin secretion by dispersed rat pituitary cells in culture. III. A23187, cAMP, phorbol ester and DiC8-stimulated luteinizing hormone release.

Dispersed estradiol-treated rat pituitary cells were used to characterize progesterone (P) modulation of luteinizing hormone (LH) secretion in response to a variety of pharmacologic secretagogues which influence cell biochemistry. Acute (less than 3 h) and chronic (24 h) exposures to P prior to secretagogue challenge respectively enhanced and inhibited Ca2+ ionophore (A23187)-stimulated and gonadotropin-releasing hormone (GnRH)-stimulated LH release in similar quantitative fashion without any effect on concurrent prolactin release. Similar responses were also noted with cholera toxin-stimulated secretion. However, when protein kinase C activators such as phorbol esters and dioctanoylglycerol were used to trigger LH release, chronic exposure to P did not inhibit, but rather enhanced, LH release. Again, P had no effect on prolactin release. 'Washout' studies indicated that chronic treatments with P would suppress LH secretion stimulated by these compounds, but only when the steroid was cleared from the cells 4 h beforehand. These studies provide further evidence that P specifically modulates gonadotroph secretory function via mechanisms which bypass GnRH receptors. Moreover, they suggest that P exerts many different actions within the gonadotroph and question the role of protein kinase C in GnRH action.

Animals

Progesterone modulation of gonadotropin secretion by dispersed rat pituitary cells in culture. I. Basal and gonadotropin-releasing hormone-stimulated luteinizing hormone release.

Dispersed, estradiol-treated, rat pituitary cells were cultured to characterize the influences of a physiologic concentration of progesterone (P, 10(-7) M) on gonadotroph responsiveness to gonadotropin-releasing hormone (GnRH). Acute (less than 6 h) P treatment enhanced and chronic (greater than 12 h) treatment suppressed both basal and GnRH-stimulated luteinizing hormone (LH) release. This modulation took place without any change in intracellular LH stores, indicating that the secretory changes are not attributable to changes in LH synthesis, and were not accompanied by similar alterations in basal or thyrotropin-releasing hormone-stimulated prolactin secretion. Moreover, the timing of these responses was fixed since a 10-fold lower P concentration produced only smaller and briefer alterations in LH release. Analyses of the temporal characteristics of effective P stimuli indicated that a brief 6 h exposure to P inhibited GnRH-stimulated LH secretion 18 h later. In contrast, P's acute actions rapidly dissipated following removal of the steroid from the culture medium. Finally, P-induced enhancement and suppression of GnRH-stimulated LH release could be blocked by appropriately timed treatments with protein synthesis inhibitors. Our findings are consistent with the hypothesis that P influences gonadotroph secretory function via the production of specific proteins.

Animals

Progesterone modulation of gonadotropin secretion by dispersed rat pituitary cells in culture. II. Intracellular metabolism and progestin receptors.

Dispersed, estradiol (E2)-treated, rat pituitary cell cultures were used to examine the intracellular processing of progesterone (P) associated with its modulation of gonadotropin-releasing hormone (GnRH)-stimulated luteinizing hormone (LH) secretion. Enhancement and suppression of LH release was only observed with acute and chronic exposures to P or other naturally occurring and synthetic progestins avidly bound by pituitary progestin receptors; such responses were inhibited by cotreatment with the antiprogestin RU486 but not with the antiandrogen flutamide, illustrating the importance of the P + receptor interactions. However, cotreatment with a 100-fold molar excess of the 5 alpha-reductase inhibitor 17 beta-N,N-diethyl-carbamoyl-4-methyl-4-aza-5 alpha-androstan-3-one (4-MA) had no effect on the expression of P's modulatory actions. Additional studies using different E2 pretreatments revealed that P enhanced LH release when progestin receptor levels were elevated. Moreover, the magnitude and duration of P's influences on LH release increased in cells with higher receptor levels. However, there were several instances in which progestin receptor level and P modulation of LH release did not correlate. In several instances E2-induced progestin receptor levels stabilized at a maximal level whereas P enhancement of LH secretion continued to increase in size and duration. These findings underscore the importance of progestin receptors for P-induced modulation of LH secretion and illustrate that 5 alpha-reduction and further metabolism of P is not obligatory for the expression of these responses. In addition, our data demonstrate that the important cellular mechanisms underlying E2 priming of gonadotroph responsiveness to P entail the induction of progestin receptor levels and other as yet unidentified cellular processes.

Androgen Antagonists

Time-courses of the appearance/disappearance of nuclear androgen + receptor complexes in the brain and adenohypophysis following testosterone administration/withdrawal to castrated male rats: relationships with gonadotropin secretion.

We characterized the temporal dynamics of brain and pituitary cell nuclear androgen receptor binding and serum androgen and gonadotropin levels associated with the implantation and removal of testosterone (T)-filled Silastic capsules into performed s.c. flank pouches of castrated, awake male rats. These capsules produced serum T levels in the physiologic range. The number of cell nuclear androgen + receptor complexes, as measured in an exchange assay using [3H]R1881, increased 15-fold at 0.5 h after capsule insertion in the HPAS (combined hypothalamus, preoptic area, amygdala and septum) and anterior pituitary gland, but then showed a second progressive rise within the next 8 h. This pattern suggests that T exerts an initial action in the tissues to alter the affinity and/or number of available androgen receptors. There was a lag time of 2-4 h to the first indication of negative feedback suppression of LH secretion. Serum LH levels declined only slightly at 4 h after capsule insertion but continued to fall thereafter, reaching undetectable values by 24 h. In contrast, serum FSH levels declined only slightly after 24 h of T exposure. After removal of the T capsules, serum T levels declined to castrate values within 2 h at which time the level of androgen + receptor complexes had fallen to 60% in the brain and pituitary. Serum LH and FSH concentrations were unchanged at 2 h after capsule removal, but rose significantly within the next 2 h. The data indicate that the occupation of androgen receptors rapidly changes in response to variations in circulating T in a fashion that implicates their involvement in the expression of this steroid's negative feedback actions on gonadotropin secretion.

Androgens

Estradiol processing by pituitary cells in culture: an examination of the influences of various exposures to progesterone.

Dispersed, estradiol (E2)-treated pituitary cells were used to examine the cellular mechanisms underlying progesterone (P) suppression of GnRH-stimulated LH and FSH secretion. When cells were exposed to 10(-9) M E2 for 48 h prior to GnRH challenge, P (10(-7) M) treatment for the last 24 h suppressed gonadotroph responsiveness to GnRH for both LH and FSH secretion (gonadotropin released/intracellular stores of gonadotropin available for release). To determine if P acts by blocking E2 processing and/or uptake, we exposed cells to 2,4,6,7-3H-E2 +/- P and monitored the level and distribution of 3H-estrogens bound to estrogen receptors salt-extracted from nuclear pellets purified by sucrose density centrifugation. At 1, 4 and 24 h, P had no effect on the level of 3H-estrogen+receptor complexes or on the distribution of receptor-bound 3H-E2, 3H-estrone and 3H-estriol. The results indicate that chronic influences of P to suppress the responsiveness of E2-treated gonadotrophs to GnRH cannot be explained by alterations in estrogen receptor occupation as is the case in reproductive tract tissues.

Animals

Cobalt-protoporphyrin suppresses testosterone secretion by multiple interactions within the brain-pituitary-testicular axis.

Administration of large doses of cobalt-protoporphyrin (CoPP), a synthetic heme analogue, to adult male rats leads to a rapid decline in serum concentrations of testosterone and luteinizing hormone (LH). Hypothalamic luteinizing hormone-releasing hormone (LHRH) contents are not affected by CoPP. The pituitary LH response to exogenous LHRH is attenuated by CoPP both in vivo and in vitro in pituitary cultures. Additionally, CoPP directly inhibits synthesis or release of testosterone by the testes. These effects are specific to CoPP and not shared by heme, inorganic cobalt or tin-protoporphyrin. Castration of CoPP-treated rats leads to a normal rise in LH concentrations, but this can be abolished by using testosterone implants to elevate serum testosterone concentrations to the low levels (approximately 0.4 ng/ml) typical of CoPP-treated intact rats. Thus, CoPP appears to be a pharmacological model for testing the mechanisms which underlie an enhanced negative feedback efficacy of testosterone on pituitary LH release.

Animals

Effects of daylength on androgen metabolism and pulsatile luteinizing hormone secretion in male golden hamsters.

In an effort to understand the potential neuroendocrine mechanisms underlying photoperiodic control of fertility in seasonally breeding species, we monitored the intracellular processing and nuclear uptake of [1 alpha, 2 alpha-3H]testosterone (3H-T) within the brain-pituitary complex as well as the patterns of episodic luteinizing hormone (LH) secretion in male golden hamsters exposed to long day (14 h light:10 h dark) and short day (10 h light:14 h dark) photoperiods. Target tissue specific patterns of nuclear 3H-androgens and estrogens were observed in castrated, T-replaced hamsters exposed to long and short days for 7 weeks or longer. Significantly, 3H-T metabolism or receptor-mediated nuclear uptake in the hamsters in short days was not influenced in any manner that would explain their increased responsiveness to androgen feedback suppression of LH release. Comparable patterns of episodic LH secretion were observed in acutely catheterized hamsters castrated for 7 weeks prior to exposure to 8 weeks of long or short days. Similar patterns were also observed in animals maintained in long days and castrated 1 or 2 weeks prior to blood collection. However, such a pattern was not seen in acutely castrated hamsters maintained in the short-day photoperiod. The data suggest that steroid-independent mechanisms play an important role in suppressing gonadotropin release in short days in this species. However, such mechanisms appear to be most effective when the animals are or have recently been exposed to circulating androgens.

Androgens

Influences of photoperiod on nuclear androgen receptor occupancy in neuroendocrine tissues of the golden hamster.

Day length regulates the negative feedback potency of gonadal steroids upon luteinizing hormone (LH) in seasonal breeders such as the golden hamster. We have used an exchange assay employing 3H-R1881 to determine whether nuclear androgen plus receptor levels in the preoptic area, medial basal hypothalamus, or anterior pituitary differ between male hamsters maintained in long or short days. Cell nuclear androgen plus receptor levels in brain and anterior pituitary were significantly lower in intact males maintained in short days; these differences reflected significant decreases in testis size and serum testosterone (T levels upon exposure to inhibitory photoperiods. In castrated males in which serum T levels were 'clamped' by the insertion of T-filled Silastic capsules, exposure to short days was not correlated with an increase in preoptic area, medial basal hypothalamus, or anterior pituitary receptor occupancy even though T's negative feedback actions upon LH were clearly enhanced. In contrast, there were instances in which androgen receptor occupation was elevated in males exposed to long days. Our results suggest that in the male golden hamster, the well-documented increase in the ability of T to suppress LH secretion in short photoperiods cannot be attributed to an increase in receptor-mediated uptake and nuclear accumulation of androgen in target cells in the brain and anterior pituitary gland.

Animals

Stress-induced suppression of luteinizing hormone concentrations in wild baboons: role of opiates.

Numerous stressors disrupt male reproductive physiology; previous studies of a population of wild baboons, living freely in a national park in East Africa, indicated that the stress of anesthetization by phencyclidine darting decreased both LH secretion and testicular sensitivity to LH. This study was undertaken to determine the mechanism(s) of the decreased LH secretion in these animals. Neither stress-induced glucocorticoid nor catecholamine release was responsible, since neither blockade of glucocorticoid secretion with the adrenal steroidogenesis inhibitor metyrapone nor blockade of catecholamine secretion with the sympathetic ganglionic blocking drug chlorisondamine prevented the stress-induced decline in serum LH concentrations. Administration of the opiate receptor antagonist naloxone (0.5 mg/kg BW), however, not only prevented the decline, but also transiently elevated serum LH concentrations, suggesting that opiates play a role in tonic as well as stress-induced decreases in LH secretion. Administration of a small dose of naloxone (0.03 mg/kg BW) commensurate with occupancy of only mu-opiate receptors slowed the stress-induced decline in LH concentrations, as did administration of the kappa-receptor antagonist MR 1452. These data suggest that opiates inhibit LH release via the combined occupancy of both mu- and kappa-receptors.

Animals