PubMed Health⌕ Search

Biomedical subjects

C A Blake

Publications and source records attributed to C A Blake.

At least 19 recordsLinked to original sources

Recombinant human bone morphogenetic protein-2 accelerates healing in a rabbit ulnar osteotomy model.

BACKGROUND: Approximately 5% to 20% of fractures have delayed or impaired healing. Therefore, it is desirable to develop new therapies to enhance fracture-healing that can be used in conjunction with traditional treatment methods. The purpose of this study was to evaluate the ability of a single application of recombinant human bone morphogenetic protein-2 to accelerate fracture-healing in a rabbit ulnar osteotomy that heals spontaneously. METHODS: Bilateral mid-ulnar osteotomies (approximately 0.5 to 1.0 mm wide) were created in seventy-two skeletally mature male rabbits. The limbs were assigned to one of three groups: those treated with an absorbable collagen sponge containing recombinant human bone morphogenetic protein-2, those treated with an absorbable collagen sponge containing buffer, and those left untreated. In the first two groups, an 8 20-mm strip of absorbable collagen sponge containing either 40 g of recombinant human bone morphogenetic protein-2 or buffer only was wrapped around the osteotomy site. The rabbits were killed at two, three, four, or six weeks after surgery. In addition, twenty-four age-matched rabbits were used to provide data on the properties of intact limbs. The retention of recombinant human bone morphogenetic protein-2 at the osteotomy site was determined with scintigraphic imaging of (125)I-labeled recombinant human bone morphogenetic protein-2. After the rabbits were killed, the limbs were scanned with peripheral quantitative computed tomography to assess the area and mineral content of the mineralized callus. The limbs were then tested to failure in torsion, and undecalcified specimens were evaluated histologically. RESULTS: Gamma scintigraphy of (125)I-recombinant human bone morphogenetic protein-2 showed that 73% +/- 6% (mean and standard deviation) of the administered dose was initially retained at the fracture site. Approximately 37% +/- 10% of the initial dose remained at the site one week after surgery, and 8% +/- 7% remained after two weeks. The mineralized callus area was similar in all groups at two weeks, but it was 20% to 60% greater in the ulnae treated with recombinant human bone morphogenetic protein-2 than in either the ulnae treated with buffer or the untreated ulnae at three, four, and six weeks (p < 0.05). Biomechanical properties were similar in all groups at two weeks, but they were at least 80% greater in the ulnae treated with recombinant human bone morphogenetic protein-2 at three and four weeks than in either the ulnae treated with buffer (p < 0.005) or the untreated ulnae (p < 0.01). By four weeks, the biomechanical properties of the ulnae treated with recombinant human bone morphogenetic protein-2 were equivalent to those of the intact ulnae, whereas the biomechanical properties of both the ulnae treated with buffer and the untreated ulnae had reached only approximately 45% of those of the intact ulnae. At six weeks, the biomechanical properties were similar in all groups and were equivalent to those of the intact ulnae. The callus geometry and biomechanical properties of the ulnae treated with buffer were equivalent to those of the untreated ulnae at all time-points. CONCLUSIONS AND CLINICAL RELEVANCE: These findings indicate that treatment with an absorbable collagen sponge containing recombinant human bone morphogenetic protein-2 enhances healing of a long-bone osteotomy that heals spontaneously. Specifically, osteotomies treated with recombinant human bone morphogenetic protein-2 healed 33% faster than osteotomies left untreated. The results of this study provide a rationale for testing the ability of recombinant human bone morphogenetic protein-2 to accelerate healing in patients with fractures requiring open surgical management.

Animals↗

Toxic effects of octylphenol on cultured rat spermatogenic cells and Sertoli cells.

Alkylphenols, including the estrogenic 4-tert-octylphenol (OP), are environmental pollutants. Because administration of OP to adult male rats impairs spermatogenesis and OP has been shown to be toxic to aquatic animals and to mammalian splenocytes in vitro, we studied whether OP exerts direct toxic effects on cultured spermatogenic cells and Sertoli cells isolated from male rats. Cell viability was assessed with a Live/Dead Eukolight viability/cytotoxicity kit. Culture of mixed spermatogenic cells from adult rats with 10(-8) M OP or Sertoli cells from 19- to 21-day-old rats with 10(-12) M OP, but not with 0.08% EtOH (vehicle) or 10(-6) M 17beta-estradiol (E2) or dexamethasone (DEX), significantly decreased the percentage of viable cells after 24 h of treatment. None of the treatments significantly altered total cell number. Flow cytometric analyses of spermatogenic cells revealed that exposure to 10(-4) or 10(-6) M OP yielded abnormal relative ploidy classes. Four hours of treatment with 10(-6) M OP, but not with 10(-6) M E2 or DEX, caused significant chromatin condensation in Sertoli cells as observed with acridine orange staining. The decreased percentage of viable cells after 24 h of exposure to 10(-6) M OP remained when Sertoli cells were cultured in Ca2+-free medium. Sertoli cells contained nuclei of reduced size and labeled 3'-OH DNA ends as detected by microscopic analyses when the cells had been incubated for 24 h with 10(-6) M OP but not with vehicle or 10(-6) M E2 or DEX. The results demonstrate that OP, but not E2 or DEX, is directly toxic to cultured rat spermatogenic cells and Sertoli cells and suggest that this toxic effect in Sertoli cells is exerted through Ca2+-independent apoptosis.

Acridine Orange↗

Interactions between estrogen, tamoxifen, octylphenol, and two polychlorinated biphenyls in murine splenocytes.

Prior exposure of cultured murine splenocytes to 17beta-estradiol (E) protects them from the membrane disrupting effects of the xenoestrogen 4-tert-octylphenol (OP). Using splenocytes isolated from male Balb/c mice, we tested whether (a) the xenoestrogen, 2', 3', 4', 5'-tetrachloro-4-biphenylol (PCB-OH), or the polychlorinated biphenyl, 3, 3', 4, 4'-tetrachlorobiphenyl (PCB 77), which displays both estrogenic and anti-estrogenic actions, would compromise the membrane integrity of the cells and (b) E or tamoxifen (TX), another ligand for the E receptor, would protect the membranes of cells exposed to the agents. We also examined possible interactions between OP, PCB-OH, and PCB 77 on the cells. Splenocytes were cultured for 24 hr. Concentrations of OP (10(-5)-10(-9) M), PCB-OH (10(-6)-10(-16) M), or PCB 77 (10(-8)-10(-12) M) significantly compromised the membrane integrity of the cultured splenocytes in a dose response manner. Concentrations of E as high as 10(-5) M or TX as high as 10(-7) M were without effect. Incubation of splenocytes in medium containing E or TX at 10(-7) M for 2 hr prior to the subsequent addition of either OP, PCB-OH or PCB 77 (final concentrations of 10(-7), 10(-7), or 10(-8) M, respectively) blocked the membrane disrupting effects. Incubation of splenocytes in medium containing 10(-7) M E starting 2 hr after the addition of OP or PCB 77 or incubation of splenocytes in medium containing 10(-7) M TX starting 2 hr after the addition of OP or PCB-OH did not block the damaging effects of OP, PCB 77, or PCB-OH on the cell membranes. No interactions were observed when various combinations of OP, PCB-OH, or PCB 77 were used. These data suggest that: (a) TX acts like E in this system, (b) a prior response of splenocytes to E or TX can protect them from the potential cytotoxic effects of OP, PCB-OH, or PCB 77; and, (c) OP, PCB-OH, and PCB 77 were not additive in their actions.

Animals↗

Estrogen can protect splenocytes from the toxic effects of the environmental pollutant 4-tert-octylphenol.

Four-tert-octylphenol (OP), an environmental pollutant, exerts apoptotic effects on cultured mouse splenocytes. Although OP binds to estrogen receptors, these apoptotic effects are not exerted by 17 beta-estradiol (E). It remained possible that OP might bind to estrogen receptors and subsequently exert apoptotic effects not exerted by E after it binds to the same receptors. It also remained possible that E-primed splenocytes might respond to OP differently than splenocytes not exposed to E. Thus, we investigated OP and E interactions on the viability of mouse splenocytes in culture. The total number of splenocytes (cells stained and not stained with trypan blue) was not altered or altered slightly after incubation with any agent for 24 h. Incubation of splenocytes in medium containing 5 x 10(-5) or 5 x 10(-7) M OP decreased the percentage of viable cells by only approx 47% and 25%, respectively. The addition of 0.8 x 10(-5) to 0.8 x 10(-9) M E to cultures was without effect or decreased the percentage of viable cells by only approx 5%. The addition of these concentrations of E simultaneously with or at 2 h after the addition of 5 x 10(-5) M or 5 x 10(-7) M OP to cultures did not interfere with the OP-induced decreases in cell viability. By contrast, incubation of splenocytes in medium containing E for 2 h prior to the subsequent addition of either dose of OP blocked the OP-induced decreases in cell viability in a dose-response manner. There was a marked reduction in the percentage of viable cells (70%) when splenocytes were incubated with 0.5 x 10(-5) M dexamethasone. The addition of 0.8 x 10(-5) M E at 2 h prior to the addition of dexamethasone did not prevent the decreased cell viability. Incubation of cells in medium with 0.8 x 10(-5) M testosterone caused a small decrease in splenocyte viability similar to that observed with E. However, unlike E, the addition of testosterone at 2 h prior to the addition of 5 x 10(-5) M OP did not prevent the OP-induced decrease in cell viability. These data suggest the presence of estrogen receptors in some splenocytes. They also suggest that if OP binds to these estrogen receptors or other receptors in the absence or initial presence of E, the resulting effect is toxic to the cells. By contrast, exposure of splenocytes to E prior to their exposure to OP can prevent the toxicity of OP.

Animals↗

Chronic administration of the environmental pollutant 4-tert-octylphenol to adult male rats interferes with the secretion of luteinizing hormone, follicle-stimulating hormone, prolactin, and testosterone.

4-Tert-octylphenol (OP) is a prevalent environmental pollutant that has been shown to exert both toxic and estrogenic effects on mammalian cells. The effects of OP on the reproductive system of adult male vertebrates are virtually unknown. In the present study, we investigated the effects of chronic exposure to OP on reproductive hormone secretion in the adult male rat and compared the results qualitatively with those observed in other male rats treated chronically with estrogen. We injected corn oil vehicle or OP (20 or 80 mg) or estradiol valerate (EV; 0.8 or 8 microg) in oil s.c. into 2-mo-old male rats thrice weekly for either 1 or 2 mo. The 80-mg dosage of OP and one or both dosages of EV had the following effects: decreased anterior pituitary gland (APG) and serum LH and FSH concentrations; increased APG and serum prolactin (PRL) concentrations; increased APG/body weight ratios; decreased serum testosterone concentrations; decreased hematocrit; and decreased food consumption and body weight gain. To evaluate the response of the hypothalamus-APG to gonadal removal, we orchidectomized some of the rats after the end of treatment and decapitated them 3 wk later. In orchidectomized controls, serum LH and FSH concentrations rose markedly and serum PRL concentrations decreased. Similar changes were seen in orchidectomized rats treated previously with 20 or 80 mg OP. Moreover, there were no differences in mean serum LH, FSH, or PRL concentrations between controls and rats treated previously with either dosage of OP at 3 wk after orchidectomy. The results demonstrate that chronic administration of OP to adult male rats can adversely affect the secretion of reproductive hormones and strongly suggest that OP exerts these effects by acting like an estrogen. The opposite changes in LH, FSH, and PRL secretion observed after cessation of treatment with OP and orchidectomy suggest that chronic treatment with OP under the conditions of the present study did not result in any significant permanent deleterious effects on gonadotrophs or lactotrophs or the hypothalamic neurons controlling the secretion of the gonadotropins or PRL.

Animals↗

Chronic administration of 4-tert-octylphenol to adult male rats causes shrinkage of the testes and male accessory sex organs, disrupts spermatogenesis, and increases the incidence of sperm deformities.

The environmental toxicant 4-tert-octylphenol (OP) has been shown to exert estrogenic effects on mammalian cells in culture. Recent findings from our laboratories demonstrate clearly that OP administration disrupts reproductive hormone secretion in the adult male rat, quite likely as a result of estrogenic action. In the present study, we investigated the impact of these or other OP-induced changes on male reproductive tissues. Adult male rats were injected with OP (20 or 80 mg) or estradiol valerate (EV; 0.8 or 8 microg) s.c. in oil three times a week for either 1 or 2 mo. We found that an 80-mg dosage of OP for 2 mo or an 8-microg dosage of EV for 1 or 2 mo greatly reduced sperm numbers and adversely influenced the sizes, weights, and histological structures of the testes, epididymides, ventral prostate glands, seminal vesicles, and coagulating glands. The 80-mg dosage of OP for 1 mo reduced epididymal tubule size to a lesser extent than after 2 mo of treatment. Otherwise, treatment with 80 mg OP for 1 mo, 20 mg OP for 1 or 2 mo, or 0.8 microg EV for 1 mo had little or no effect on the histology of the tissues we examined. Additional evaluation of sperm morphology revealed marked increases in the proportions of head and tail abnormalities from animals that had received 80 mg of OP or 8 microg of EV for 1 mo and 20 mg of OP for 2 mo. The head abnormalities consisted mainly of pin heads, detached heads, and the absence of hooks, while tail abnormalities included mainly broken, coiled, and bent tails. Our results clearly demonstrate that OP can severely reduce the size and/or function of all of the male gametogenic and accessory reproductive organs studied. Moreover, the similarity of these cell and tissue changes between rats treated with OP and those treated with EV further suggests that OP may exert its action in an estrogenic-like manner.

Animals↗

Disruption of rat estrous cyclicity by the environmental estrogen 4-tert-octylphenol.

4-tert-Octylphenol (OP) is a prevalent environmental pollutant which binds to estrogen receptors and exerts estrogenic actions in vitro. The effects of OP in vivo on mammalian female reproduction are not known. We investigated whether (i) exposure of neonatal rats to OP interfered with the onset of vaginal opening or their ability to have regular estrous cycles as adults and (ii) exposure of adult rats to OP interfered with estrous cyclicity and ovulation. Injection of 1 mg OP in corn oil sc on the day after birth did not affect the day of vaginal opening. However, 9 of 11 OP-treated rats were in persistent vaginal estrus when examined at three months after birth compared with 0 of 9 corn oil-injected controls, which cycled regularly. Ten of eleven neonatal rats injected with 1.7 mg of the estrogenic pesticide methoxychlor also were in persistent estrus at 3 months after birth, and all 10 neonatal rats injected with 1 mg of 2,4,5-trichlorophenol, which is apparently nonestrogenic, cycled regularly. Injection of 20 or 40 mg OP in corn oil vehicle sc three times weekly into previously untreated adult cyclic rats caused persistent estrus in 2 of 6 and 16 of 21 rats, respectively. Injections were continued for three more weeks in 5 of the 16 rats rendered persistent estrus by the 40 mg OP treatment. These rats remained in persistent estrus for the additional 3-week period. The other 11 persistent estrous rats in the 40 mg treatment group started to cycle regularly within 5-7 days after the last injection. Unlike pentobarbital, injection of OP into cyclic rats during the afternoon of proestrus did not block ovulation. These results provide strong evidence that OP acts like estrogen in vivo in both neonatal and adult female rats to exert effects that block reproductive cyclicity.

Animals↗

Toxic effects of octylphenol on cultured rat and murine splenocytes.

Alkylphenol polyethoxylates and alkylphenols, such as 4-tertoctylphenol (OP), are environmental contaminants. Because these compounds are toxic to aquatic animals, we studied the effects of OP on splenocytes removed from male Fischer 344 rats or male Balb/c mice and cultured in vitro. Cell viability was assessed by trypan blue exclusion after 5 or 27 hr of culture. Culture with 0.08% ETOH (vehicle) or any dose of OP did not alter total cell number or the percentage of viable cells after 5 hr. Culture of cells with two different alkylphenol polyethoxylates for 5 hr resulted in the loss of all cells. The percentages of viable rat or mouse cells after 27 hr of culture were decreased significantly by 10(-12) M OP or greater concentrations. The actions of OP, dexamethasone (DEX), and 17 beta-estradiol on rat splenocytes were compared. Dexamethasone was more toxic than OP after 24 hr of culture; 17 beta-estradiol was not toxic. Dexamethasone and OP, but not 17 beta-estradiol, caused significant nuclear condensation after 3 hr of culture (acridine orange staining) or 4 hr of culture (propidium iodide staining). The toxicity of 10(-6) M OP, but not that of 10(-6) M DEX, was eliminated when mouse splenocytes were cultured in Ca2+ -free medium. Significantly more mouse splenocytes containing free 3'-OH DNA ends were detected by activated cell sorter analyses when the cells had been incubated for 4 hr with 10(-4) or 10(-6) M OP or 10(-6) M DEX. The results of these studies demonstrate that OP is toxic to cultured rat and mouse splenocytes and suggest that this toxic effect is exerted, at least partially, through Ca2+-dependent apoptosis.

Animals↗

Changes in percentages of adenohypophysial gonadotrophs associated with the sex-specific, selective increase in serum follicle-stimulating hormone concentration in the juvenile female hamster.

In normal hamsters, we investigated whether the sex-specific, selective increase in serum FSH concentration in the juvenile female was associated with sex-specific changes in the percentages of adenohypophysial gonadotrophs. Serum LH concentrations did not rise between Day 4 and Day 19 in either sex and did not differ significantly between the sexes on Days 4, 7, 12, 14, and 19 after birth. Serum FSH concentrations were about 2-fold higher on Days 7, 12, and 14 than on Days 4 or 19 in males. In females, serum FSH rose markedly between Days 4 and 7, declined slightly by Day 12, rose to peak levels by Day 14, and declined slightly by Day 19 to levels not different from those seen on Day 7. Body weights rose between Days 4 and 19 and were similar in both sexes. There were no sex differences in pituitary gland weights, which rose between Days 4 and 12 and did not increase significantly further by Day 19. On Day 0, the percentages of immunoreactive LH and FSH cells were about 6 and 1%, respectively, in both sexes. These percentages increased progressively between Days 0 and 7 and between Days 7 and 14. On Day 7, but not on Day 14, the percentages of LH and FSH cells were greater in females than in males. There were more LH than FSH cells in males on Days 0, 7 and 14, and in females on Day 0 but not on Day 7 or 14. Matching of 10 FSH cells per gland with LH cells in serial sections of each of 30 glands showed FSH immunoreactivity to occur only in cells staining for LH. In hypophysectomized-gonadectomized adult hamster hosts with allografts of neonatal pituitary glands beneath the renal capsule, we investigated whether these sex-specific changes in the percentage of cells might be predetermined by the time of birth or dependent on sex differences in the internal environment existing in the postnatal hamster. Groups consisted of male donors-male hosts, male donors-female hosts, female donors-female hosts, and female donors-male hosts. The percentages of LH cells in allografts in all four groups increased from Days 0 to 7 and from Days 7 to 14. Percentages of LH cells on Day 14 in all four groups were not different from those in age-matched male or female adenohypophyses in situ. In contrast, the mean percentages of FSH cells were low (about 1-3%) on Days 0, 7, and 14 in all four groups. In other males hosts, administration of a low dose of LHRH for 7 days did not alter the percentage of LH cells in male allografts but increased the percentage of FSH cells to approach that observed in age-matched male adenohypophyses in situ. Administration of a larger dose of LHRH for 7 days to other male hosts with male allografts increased the percentages of LH and FSH cells to percentages not different from those in age-matched female adenohypophyses in situ. Matching of 10 FSH cells/allograft with LH cells in serial sections of each of 58 allografts showed FSH immunoreactivity to occur only in cells staining for LH. The results of experiments conducted on normal hamsters demonstrate that more marked increases in the percentages of adenohypophysial LH cells and FSH cells occur in females than in males in association with the onset of the selective increase in serum FSH levels in females. The results of experiments employing allografts suggest that the greater increase in LH and FSH cells in females is due to sex differences in the internal environment existing in the postnatal hamster, which can be accounted for by differences in LHRH secretion, rather than to inherent differences between female and male adenohypophyses at the time of birth. We conclude that the greater increases in gonadotrophs observed in female hamster pups on Day 7 after birth and the accompanying sex-specific, selective elevation in serum FSH concentration are probably due to sex differences in LHRH secretion during the juvenile period.

Animals↗

Adenohypophysial allografts releasing prolactin decrease prolactin mRNA concentration in the host hamster's adenohypophysis in situ.

The inhibitory effects of pituitary allografts on the prolactin (PRL)-secretory system are presumed to be consequences of the unabated release of PRL by the allografts. In the present studies we used pituitary allografts in the Golden Syrian hamster to address the following questions: (a) Do allografts of adult adenohypophysial tissue which elevate serum PRL levels decrease the concentration of PRL mRNA in the host's adenohypophysis? (b) Is this effect shared by allografts of neonatal hypophysial tissue or neonatal muscle tissue which do not elevate serum PRL levels? (c) Do any of these types of allograft alter growth hormone mRNA in the host's adenohypophysis? Prolactin mRNA concentration, but not growth hormone mRNA concentration, was decreased in the adenohypophyses in situ in the hosts bearing adult adenohypophysial allografts in which serum PRL levels were elevated. In contrast, serum PRL in hosts with neonatal hypophysial or muscle allografts were not elevated and PRL mRNA levels in the adenohypophysis in situ were not decreased when compared to the levels measured in hamsters with sham transplants. Prolactin mRNA levels in hosts with neonatal muscle allografts were not different from levels in hosts with neonatal hypophysial allografts but were increased when compared to the levels measured in hamsters with sham transplants. There were no differences in PRL concentration in the adenohypophyses in situ between any of the groups. Also, PRL concentrations in neonatal hypophysial allografts were similar to those in adult adenohypophysial allografts. To our knowledge these observations are the first demonstrating that short-loop feed-back of PRL includes a decrease in PRL mRNA concentration. The observations also support the working hypothesis that PRL and not another pituitary factor exerts the negative feedback.

Animals↗

Induction of cellular follicle-stimulating hormone in the hamster adenohypophysis requires intermittent stimulation by luteinizing hormone releasing hormone.

We investigated the effectiveness of continuous vs intermittent LHRH stimulation of the neonatal female anterior pituitary gland on inducing cellular FSH immunoreactivity in the Golden Syrian hamster. Neonatal female pituitary glands were grafted beneath the right renal capsules of hypophysectomized-ovariectomized adult hosts with a catheter implanted in the external jugular vein. In experiment 1, vehicle or LHRH (6 ng/h) was infused continuously or LHRH was pulsed at 1 h (6 ng) or 12 h (72 ng) intervals through the catheters for 8 days. Hamsters were decapitated for collection of trunk blood shortly after the end of treatment, and grafts were prepared for immunocytochemical staining for LH and FSH. Anterior pituitary glands removed from neonatal (day 1) and day 9 female pups also were stained for LH and FSH. The mean percentage of adenohypophysial cells staining for LH increased from 11% in neonatal pups to mean percentages (24-28%) that were similar in day 9 pups and in all groups with grafts. The mean percentage of adenohypophysial cells staining for FSH increased from 1% in neonatal pups to percentages (16-21%) that were similar in day 9 pups and in grafts in hosts administered 6 or 72 ng LHRH pulses. By contrast, the mean percentage of FSH cells did not increase in grafts in hosts administered vehicle or LHRH by continuous infusion. Serum LH concentration was low in hosts given vehicle or LHRH by continuous infusion but elevated in hosts given 72 ng LHRH pulses and in all but one host given 6 ng LHRH pulses.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Neuropeptide Y and luteinizing hormone releasing hormone synergize to stimulate the development of cellular follicle-stimulating hormone in the hamster adenohypophysis.

Luteinizing hormone releasing hormone (LHRH) stimulates the development of cellular FSH immunoreactivity in the perinatal hamster adenohypophysis. Because neuropeptide Y (NPY) can act directly on rat adenohypophysial cells to stimulate FSH and LH release and potentiate the stimulatory effect of LHRH on FSH and LH release, we investigated the effects of NPY alone and in combination with a low, ineffective dose of LHRH on inducing cellular FSH immunoreactivity in the neonatal hamster adenohypophysis. Neonatal female pituitary glands were grafted beneath the right renal capsules of hypophysectomized-ovariectomized adult hamster hosts with a catheter implanted in the external jugular vein. After treatment, hosts were decapitated and graft tissue was stained for FSH and LH immunoreactivity. The mean percentage of adenohypophysial cells that stained for FSH was low (2.8%) in grafts in hosts infused continuously with heparinized saline vehicle for 7 days. In other hosts, peptides were pulsed through the catheter every 12 h for 7 days. The mean percentage of FSH cells also was low after pulsing 6 ng LHRH or 2 micrograms NPY but increased substantially when the two peptides were pulsed simultaneously. No differences in the mean percentage of LH cells existed between any of the groups. The results demonstrate that NPY and LHRH can synergize to induce cellular FSH immunoreactivity in the neonatal female hamster.

Animals↗

Immunocytochemical staining of neuropeptide Y (NPY) in the insular lobe of the monkey: a light microscopic study.

Neuropeptide Y (NPY) has been detected immunocytochemically in cerebral cortex and subcortical white matter of the primate frontal, parietal, temporal, and occipital lobes. Because little is known about NPY in the primate insular lobe and because peptides play an important role in normal neuronal functioning and alterations in brain peptides are associated with certain neurological diseases, we studied the presence, distribution, and structural characteristics of NPY-immunostained elements at the light microscopic level in the insula of Macaca fascicularis. We used free-floating sections, rabbit anti-porcine NPY serum, and the avidin and biotinylated peroxidase complex technique. Neuropeptide Y-immunostained neurons were demonstrated in layers II, III, and V/VI, and in the adjoining subcortical white matter. Immunostaining was localized to neuronal somata, neuronal processes, and a delicate plexus in the neuropil. The majority of NPY-immunostained neurons were non-pyramidal, had round somata 10-20 microns in major transverse diameter, and two or three neuronal processes. Computer-aided quantitative analysis of the length, breadth, and area of NPY-stained neurons was performed. Our findings are consistent with observations by others on the presence, laminar distribution, and structural characteristics of NPY-immunostained elements at the light microscopic level in other cerebral lobes of non-human primates.

Animals↗

Familial ovarian cancer. A report of 658 families from the Gilda Radner Familial Ovarian Cancer Registry 1981-1991.

BACKGROUND: Because of the small number of cases (five) reported between 1929 and 1969 and a significant increase reported in the decade of the 1970s, the Familial Ovarian Cancer Registry was established in 1981 to study the occurrence of familial ovarian cancer in the United States. METHODS: Any woman (with or without ovarian cancer herself) who contacted the Registry and demonstrated a familial history of ovarian cancer was added to the Registry as an index case. RESULTS: From 1981 through May 31, 1991, 658 families for a total of 1568 cases of familial ovarian cancer were accessioned into the Registry. Of the 219 mothers and 251 daughters with familial ovarian cancer, the mean (58.5 years) and median (57.0 years) age at diagnosis of the mothers was significantly older than the mean (49.8 years) and median (49.0 years) ages of their daughters with ovarian cancer. Significantly more index cases without ovarian cancer had used oral contraceptives as compared to index cases with ovarian cancer (P < 0.001). Significantly more index cases with ovarian cancer used other estrogens as compared to index cases without ovarian cancer (P < 0.001). The Registry cases exhibited a higher proportion of serous adenocarcinoma, poorly differentiated adenocarcinoma, borderline carcinoma, and gonadoblastoma as compared to the 1978 SEER data. Mother and a minimum of one daughter was the most common relationship and was represented in 49.5% of the families with familial ovarian cancer. Sister-sister relationships were the second most frequent and accounted for 38.5% of the 658 families. CONCLUSIONS: Familial ovarian cancer occurs most frequently in mother-daughter relationships followed by sister-sister and appears to be an autosomal dominant inheritance with variable penetrance.

Adult↗

Effects of injection of anti-luteinizing hormone (LH)-releasing hormone serum and anti-gonadotropin-releasing hormone-associated peptide serum into neonatal rats on LH and follicle-stimulating hormone cells.

Relatively little is known regarding the potential importance of LHRH and of gonadotropin-releasing hormone-associated peptide (GAP) on the postnatal development of gonadotrophs. We investigated the effects of administration of anti (A)-LHRH serum or A-GAP serum to neonatal rats on the development of LH and FSH immunoreactivity in anterior pituitary gland (APG) cells. Serum (sheep non-immune [NSS], sheep A-LHRH, sheep A-LHRH/GAP [which bound LHRH and GAP], rabbit non-immune [NRS], or rabbit A-GAP) was injected s.c. into neonatal female and male rats on Days 1 and 3 or Days 1, 3, 5, and 7 after birth. Pups were killed on Day 5 or 9, two days after the last injection. The percentages of APG cells immunoreactive for LH or FSH increased from Day 1 to Day 5 and did not change between Days 5 and 9 in female pups treated with NSS or NRS. There was a trend for the percentages of LH and FSH cells to increase from Day 1 to Days 5 and 9 in male pups treated with NSS or NRS, but the increases were not statistically significant. In both females and males, treatment with antisera that recognized LHRH reduced the percentage of FSH cells on Day 5 and the percentages of LH and FSH cells on Day 9. Treatment with A-GAP was without effect in both sexes. There were similar percentages of LH and FSH cells in females and a lower percentage of FSH than of LH cells in males in the Day 5 and 9 controls.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Estrogen alters the effects of neuropeptide-Y on luteinizing hormone and follicle-stimulating hormone release in female rats at the level of the anterior pituitary gland.

In recent years, several studies have shown that neuropeptide-Y (NPY) is involved in the control of LH secretion. We determined the effects of estrogen on NPY-induced LH and FSH release in the absence or presence of LH-releasing hormone (LHRH) at the level of the anterior pituitary gland (APG). Adult female rats were ovariectomized. Fifteen to 20 days later, they were given a blank or estrogen-filled capsule subdermally and killed 17-19 h later. APG cells were isolated and cultured for 3 days in medium containing 12.5% rat serum collected at death from the same rats used to make the respective APG cell pools. The cells were then challenged for 3 h with vehicle, NPY (10(-12)-10(-6) M), LHRH (10(-9)-10(-6) M), or combinations of NPY (10(-9)-10(-7) M) and LHRH (10(-9) M). LHRH stimulated LH and FSH release from nonestrogen and estrogen-primed cells. NPY at 6.7 x 10(-8)-10(-6) M increased (P < 0.05) LH release and at 10(-6) M increased (P < 0.05) FSH release from estrogen-primed cells, but was without effect on nonestrogen-primed cells. In contrast, NPY at 10(-9)-10(-7) M potentiated the action of LHRH (10(-9) M) to increase the release of LH and FSH from nonestrogen-primed cells, but was without potentiating effects in cultures of estrogen-primed cells. The results demonstrate that 1) NPY can release LH and FSH by a direct action on estrogen-primed APG cells; and 2) NPY can potentiate the action of LHRH to increase the release of LH and FSH by a direct action on nonestrogen-primed APG cells.

Animals↗

Intraperitoneal injection of chloral hydrate causes intra-abdominal adhesions and unilateral testicular atrophy in golden Syrian hamsters.

We investigated the reason for the high mortality we had observed in hypophysectomized-orchidectomized Golden Syrian hamsters that were anesthetized with intraperitoneal (i.p.) injections of chloral hydrate (CH). Intact male Golden Syrian hamsters were injected intraperitoneally with 0.1cc/100g BW of a 35% solution of CH, a 35% solution of sodium chloride, or double-distilled water. Equal numbers of hamsters in each group were injected on the right or left side of the abdomen. Within 10 days, 35% of the CH-injected hamsters were dead or had to be euthanized. Autopsy revealed severe peritonitis and adynamic ileus. CH-injected hamsters that survived gained weight at a rate similar to that of the controls. All surviving hamsters were killed 18 days after the injections. Among the surviving CH-injected hamsters, 84.6% had intra-abdominal adhesions, 61.5% had unilateral testicular atrophy, and 53.8% had a yellowish necrotic mass in the epididymal fat pad (EFP). All the lesions occurred on the side that was injected. The atrophied testes had been rendered cryptorchid due to involvement with intra-abdominal adhesions. In the water-treated controls, there were no abnormalities; whereas, in the saline controls, 75% had a mass in the EFP. Histology of the EFP mass was similar in hamsters injected with CH or hypertonic saline and suggested a diagnosis of fat necrosis. The results suggest that the mortality, the intra-abdominal adhesions, and the unilateral cryptorchidism were caused by a single i.p. injection of CH, but the fat necrosis in the EFP was probably caused by high concentrations of salt. The results further suggest that high concentrations of CH should not be injected intraperitoneally for anesthesia in chronic studies, particularly of the male reproductive system.

Adipose Tissue↗