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Biomedical subjects

O H Pescovitz

Publications and source records attributed to O H Pescovitz.

At least 19 recordsLinked to original sources

Bone mineral density during treatment of central precocious puberty.

Treatment of adults with gonadotropin releasing hormone analogs has resulted in rapid loss in bone mineral density (BMD). We measured lumbar and femoral neck BMD by dual-energy x-ray absorptiometry during 2 years of depot leuprolide therapy in 13 girls (mean age, 7.5 years; mean bone age, 10.9 years). At baseline, BMD was elevated for age and concordant with the advanced skeletal age. During therapy with gonadotropin releasing hormone analog, BMD values increased and BMD standard deviation scores for age and skeletal age did not change.

Absorptiometry, Photon

Growth hormone-releasing hormone-like messenger ribonucleic acid and immunoreactive peptide are present in human testis and placenta.

Although the sequence of human GH-releasing hormone (GHRH) has been determined, all of the information concerning gene expression has been based on pathological sources of ectopic GHRH, since the only established physiological source of GHRH in humans is the hypothalamus. We recently reported the presence of extrahypothalamic GHRH-like mRNA and immunoreactive material in rat testis and placenta. To determine if human testis and placenta also contain immunoreactive GHRH-like peptides, tissue extracts were analyzed using enzyme-linked immunosorbent assay methodology. Both tissues had detectable quantities of immunoreactive peptide recognized by a monoclonal antibody to synthetic human GHRH-(1-44) (testis, 2.4 ng/g tissue, 0.68 ng/mg protein; placenta, 2.6 ng/g tissue, 0.36 ng/mg protein). The origin of these peptides was confirmed by extracting total RNA from human testis and placenta, with analysis on Northern blots probed with riboprobes for rat hypothalamic GHRH cDNA and human pancreatic tumor GHRH cDNA. Human testis and placenta total RNA both contain an approximately 790-nucleotide RNA species similar in size to that reported in ectopic GHRH-producing human tumors. In addition, two larger hybridization signals were seen at 3000 and 4900 nucleotides. These data suggest that testis and placenta are extrahypothalamic sites of expression of the human GHRH gene. Normal expression of the GHRH gene in extrahypothalamic sites may include transcription of larger mRNA species than those observed in ectopic pathological sources of GHRH expression.

Animals

Growth failure and decreased levels of insulin-like growth factor I in obstructive jaundice are reversed by bile diversion.

Insulin-like growth factor I (IGF-I) is one of the principal stimuli of linear growth. Growth failure in children with chronic cholestatic jaundice may be related to decreased hepatic synthesis of IGF-I. It was hypothesized that (1) biliary obstruction would lead to growth retardation and decreased circulating IGF-I levels; and (2) surgical drainage of the obstructed biliary system would reverse these effects. To test this hypothesis, the following study of male Sprague-Dawley rats (135 g; 10 animals per group) was performed. Group I underwent common bile duct ligation (CDL); group II underwent choledochoduodenostomy 2 weeks following CDL; group III were sham-operated and fed with CDL rats; and group IV were sham-operated and fed ad libitum. Daily food intake and weekly body weight were recorded. Statistical analysis was by repeated-measures analysis of variance and individual comparisons were evaluated by Student's t test. Biliary obstruction results in decreased food intake, rate of weight gain, and IGF-I levels. A significant reduction in IGF-I levels was also noted in the pair-fed sham-operated rats (group III). Relief of obstructive jaundice by surgical drainage results in a reversal of these changes. It is concluded that the growth failure and decreased IGF-I levels associated with obstructive jaundice can be reversed by surgical drainage of the obstructed biliary system and, in part, are due to inadequate nutrition.

Analysis of Variance

Ontogeny of growth hormone releasing hormone and insulin-like growth factors-I and -II messenger RNA in rat placenta.

Hypothalamic growth hormone releasing hormone (GHRH) stimulates pituitary growth hormone secretion, which is essential for normal postnatal growth. Reports of an immunoreactive and biologically active GHRH-like peptide in placenta led us to investigate placental expression of GHRH mRNA. Placentas from d 19 gestation fetal rats were assayed for GHRH-like peptide by ELISA and for GHRH mRNA. Placenta GHRH-like peptide levels averaged 3.7 +/- 0.2 ng/g tissue. Dot-blot hybridization revealed the presence of GHRH mRNA in rat placenta in quantities greater than those of the message in rat hypothalamus. Northern gel analysis of poly-A enriched RNA was used to evaluate the specificity of GHRH mRNA hybridization and to determine the size of the placental mRNA. Placental and hypothalamic GHRH mRNA were of nearly identical size, although placental RNA had a broad band of hybridization that extended below that seen in hypothalamus. Further confirmation of homology between placental and hypothalamic GHRH mRNA was determined by an RNAse protection assay, in which a placental protected fragment was identical in size to that resulting from protection of the hypothalamic complementary RNA. The ontogeny of GHRH mRNA in rat placenta was determined by dot-blot hybridization. The message was detected at the earliest date examined, d 7, and increased more than 2-fold by d 14 and 5-fold by d 17. The ontogeny of IGF-I and IGF-II mRNA in placenta was also determined.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Interaction of growth hormone-releasing hormone with the insulin-like growth-factors during prenatal development in the rat.

The placenta is a chimeric organ that produces all the components of the hypothalamic-pituitary GH axis. We propose that placental GH-releasing hormone (GHRH) stimulates placental GH-like hormones which in turn stimulate production of the insulin-like growth factors (IGFs), IGF-I and IGF-II, and these placental IGFs are important for growth and development of the placenta as well as the fetus. To test this hypothesis, pregnant rats were given either GHRH antisera or preimmune sera ip from days 7-19 of gestation. Fetuses were killed on day 19, and IGF-I and IGF-II tissue and serum concentrations in the mother and fetus were measured by RIA. IGF-II receptor content was measured by Western analysis. IGF-I and IGF-II messenger (m) RNA levels were measured in the placentas as well as in the fetal livers. The GHRH antibody titer was highest at day 19 of gestation but continued to be present through day 20 of postnatal development. Although placental weights did not differ, antibody-treated animals had higher placental IGF-I and IGF-II levels (I, 108 +/- 6 (SD); II, 126 +/- 5 ng/g, respectively) vs. control animals (I, 88 +/- 2.5 (SD); II, 48 +/- 11 ng/g) in pooled specimens. The IGF-II receptor was also up-regulated in placentas from antibody-treated mothers. The fetuses of antibody-treated (A) mothers were larger than the controls (C) (A, 2.615 g; C, 2.49 g, P less than 0.05). Levels of both IGFs were significantly increased in livers of antibody treated fetuses (IGF-I: A, 15 +/- 1 (SD); C, 12 +/- 0.8 ng/g; and IGF-II: A, 295 +/- 10 (SD); C, 233 +/- 10 (SD) ng/g). In addition, the concentration of the IGF-II receptor in liver of antibody-treated fetuses was also increased. Further, pooled fetal sera from antibody-treated fetuses had higher levels of IGF-II than controls (A, 950 ng/ml; C, 700 ng/ml), and the circulating IGF-II receptor was increased as measured by Western analysis. In the liver, IGF-II mRNA levels of antibody-treated fetuses were increased to 117% of controls, whereas IGF-I mRNA levels were undetectable. The placenta showed no increase in placental lactogen or GH mRNA, whereas IGF-II and GHRH mRNA were slightly increased in antibody-treated animals. In conclusion, these data suggest that GHRH may interact with the IGFs in a different fashion during prenatal development then during postnatal development.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Effect of deslorelin dose in the treatment of central precocious puberty.

Central precocious puberty is effectively treated with long-acting LHRH analogs (LHRHas). Although at least six LHRHas have now been used in children, there have been no studies to determine the least effective dose of any of these analogs. We sought to determine the effect of decreasing an efficacious dose of deslorelin (D-Trp6-Pro9-NEt-LHRH) on basal and LHRH-stimulated gonadotropins, estradiol levels, and the rates of linear growth and skeletal maturation in subjects with central precocious puberty. Twenty-nine children with central precocious puberty were enrolled in a double blinded study. All subjects were treated for the initial 3 months with deslorelin at a dose (4 micrograms/kg.day, sc) known to suppress gonadotropins, linear growth velocity, and the rate of skeletal maturation. After 3 months, the subjects were randomly assigned to receive one of three daily sc doses of deslorelin: 4 micrograms/kg (n = 9), 2 micrograms/kg (n = 11), or 1 micrograms/kg (n = 9). They were treated at this dose in double blinded fashion for 15 months, after which time they resumed therapy at a dose of 4 micrograms/kg.day for an additional year. The children in the three groups did not differ in terms of chronological age, bone age, pretreatment growth rate, or Tanner stage at the onset of therapy. Similarly, there were no differences in the clinical and hormonal responses to the first 3 months of LHRHa therapy (4 micrograms/kg.day). During the 15-month period at the three different doses, the three dose groups could not be distinguished from each other in terms of pubertal stage, linear growth velocity, rate of skeletal maturation, sex steroid levels, mean LH or FSH levels, or peak FSH response to LHRH stimulation or to a dose of deslorelin. In contrast, the peak LH response to LHRH stimulation was highest in children treated with the lowest dose (1 micrograms/kg.day; P less than 0.025, by multiple analysis of variance). In addition, the peak LH response to a dose of deslorelin (the LHRHa test) was higher in children treated with 1 micrograms/kg.day than in those treated with 4 micrograms/kg.day (P less than 0.04). In summary, the LHRHa test is a sensitive means for detecting activation of the hypothalamic-pituitary-gonadal axis, and deslorelin at a dose of 1 micrograms/kg.day results in less gonadotropin suppression than a dose of 4 micrograms/kg.day.(ABSTRACT TRUNCATED AT 250 WORDS)

Child

Ontogeny and pituitary regulation of testicular growth hormone-releasing hormone-like messenger ribonucleic acid.

The testis is rich in central nervous system-type neuropeptides, including a GH-releasing hormone (GHRH)-like substance. We examined the ontogeny and pituitary regulation of testicular GHRH-like mRNA (t-GHRH mRNA) and compared this to expression of insulin-like growth factor-I (IGF-I) and IGF-II mRNA in developing testis. t-GHRH mRNA was measured by dot blot hybridization and quantitated using a hypothalamic GHRH cRNA standard. t-GHRH mRNA was not detectable in Northern blots in fetal testis on day 19 of gestation, but was present in low but detectable amounts in testicular dot blots on day 2 of life (0.44 pg/micrograms total RNA). Levels of the RNA increased beginning on day 21 (1.72 +/- 0.23 pg/micrograms total RNA) and reached adult levels by day 30 (4.96 +/- 0.84 pg/micrograms total RNA). The GHRH species on Northern analysis was about 1750 nucleotides at all ages examined; there was a larger species of about 3350 nucleotides seen on days 65 and 90. There was no correlation between the ontogeny of t-GHRH mRNA and either IGF-I or IGF-II mRNAs, which were maximally expressed in the testes of day 2 animals and decreased with age. To examine the influence of the pituitary gland on t-GHRH mRNA, levels of the mRNA were measured in the tests of hypophysectomized animals and age-matched controls. In animals hypophysectomized on day 21 and killed on day 42 and in animals hypophysectomized on day 42 and killed on day 63, there was marked diminution of t-GHRH mRNA (19 +/- 5% and 9 +/- 2% of age-matched controls, respectively). In contrast, in animals hypophysectomized on day 65 and killed on either day 80 or 90, there was a much smaller difference in levels of t-GHRH mRNA compared to values in control animals (73 +/- 20%). This was unlike the effect of hypophysectomy on testicular IGF-I mRNA, where uniform diminution was seen in all three groups. Because GH is important in the regulation of hypothalamic GHRH mRNA, we examined the effects of administration of recombinant human GH on the reinduction of t-GHRH mRNA after hypophysectomy and compared this to the reinduction of IGF-I mRNA. Neither t-GHRH mRNA nor testicular IGF-I mRNA increased in hypophysectomized animals treated with GH. Our results indicate that t-GHRH mRNA is developmentally regulated, and that the hypothalamic-pituitary axis is important in its expression.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Localization and growth hormone (GH)-releasing activity of rat testicular GH-releasing hormone-like peptide.

The testis contains many peptides originally described as originating in the central nervous system. The physiological function of these factors in the testis is generally unknown. We previously reported that the rat testis contains both a peptide with GH-releasing hormone-like immunoactivity (tGHRH-LI) and a mRNA species that cross-hybridizes with a hypothalamic cDNA for rat GHRH (rGHRH). The current study was designed to further characterize tGHRH-LI by determining its location within rat testis, and to evaluate whether tGHRH-LI and hypothalamic GHRH share similar biological and electrophoretic properties. Partially purified tGHRH is capable of stimulating GH secretion from cultured anterior pituitary cells in a dose-dependent manner. Testicular GHRH and rGHRH have different HPLC retention times and significantly different electrophoretic properties by Western gel analysis. The estimated size of tGHRH-LI is approximately 3.7 times that of synthetic rGHRH. Using immunohistochemistry, tGHRH-LI is localized to mature sperm forms in rat testis. We conclude that rat tGHRH-LI and rGHRH share some structural and functional properties and are probably related peptides. However, the difference in electrophoretic mobility and HPLC retention time indicates that they are not identical. The presence of tGHRH-LI in rat sperm, within the confines of the blood-testis barrier, which is generally impermeable to peptides, leads us to speculate that tGHRH serves a paracrine or autocrine role in testicular physiology.

Animals

Precocious puberty.

The child with premature sexual development requires a thorough history, physical, and appropriate laboratory evaluation. The physician and other medical staff should remain sensitive to the family's concerns and the child's emotional adaptation. Counseling and open discussion of the psychosocial and sexual issues may greatly assist both the child and family. Making the correct diagnosis is critical to the selection of the appropriate form of therapy. Fortunately, in most cases in which therapy is warranted, it is extremely effective. In the remaining conditions, promising new forms of therapy are being investigated.

Adolescent

Thyroid dysfunction following bone marrow transplantation: long-term follow-up of 80 pediatric patients.

Thyroid function was evaluated in children surviving disease-free for 2 years or more following bone marrow transplantation (BMT) for severe aplastic anemia (27 patients), acute non-lymphoblastic leukemia (28 patients), and acute lymphoblastic leukemia (25 patients). Pre-BMT conditioning consisted of high dose chemotherapy and total lymphoid irradiation with 750 cGy for patients with severe aplastic anemia, and for patients with leukemia, high dose chemotherapy and single dose total body irradiation with 750-850 cGy (33 patients) or fractionated total body irradiation with 1320 cGy (20 patients). Compensated hypothyroidism (elevated thyroid stimulating hormone (TSH) with a normal thyroxine index) occurred in 20/80 patients with a median time of onset of 12.3 months post-BMT (range 4-30). No patients developed primary hypothyroidism (elevated thyroid stimulating hormone with low thyroxine index). In seven patients, compensated hypothyroidism was transient with TSH returning to normal at a median of 60 months post-BMT (range 11-75). Six patients with compensated hypothyroidism received thyroid hormone replacement therapy. Time to development of compensated hypothyroidism was associated (p = 0.03) with underlying disease and radiation (11 of 27 patients with severe aplastic anemia + total lymphoid irradiation versus nine of 53 patients with leukemia + total body irradiation). In aplastic anemia patients, but not patients with leukemia, the incidence of thyroid hypofunction 5 years post-transplant was significantly higher (p less than 0.001) in those receiving methotrexate alone (82%) as prophylaxis for graft-versus-host disease compared with those receiving a regimen of methotrexate, antithymocyte globulin and prednisone (16%).

Adolescent

Treatment of familial male precocious puberty with spironolactone and testolactone.

Because the pubertal growth spurt in boys appears to be mediated by both androgens and estrogens, we hypothesized that blockade of both androgen action and estrogen synthesis would normalize the growth of boys with familial male precocious puberty. To test this hypothesis, we studied nine boys (age range, 3.3 to 7.7 years) during treatment with an antiandrogen (spironolactone) or an inhibitor of androgen-to-estrogen conversion (testolactone), followed by treatment with both agents. After six months of observation without treatment, the first four boys received spironolactone for six months, followed by spironolactone and testolactone. The next five boys received testolactone for six months, followed by spironolactone and testolactone. Neither spironolactone nor testolactone, given alone, was satisfactory as a treatment for this condition. However, a combination of spironolactone and testolactone, given for at least six months, restored both the growth rate and the rate of bone maturation to normal prepubertal levels and controlled acne, spontaneous erections, and aggressive behavior. The combined therapy was associated with a significantly lower growth rate than testolactone alone (P less than 0.05) and a significantly lower rate of bone maturation than spironolactone alone (P less than 0.05). No important adverse effects were observed during combined treatment. Six of the nine boys continued to receive the combined therapy for an additional 12 months and maintained normal prepubertal rates of growth and bone maturation. The mean predicted height (+/- SEM) increased progressively during the combined treatment although the difference between the pretreatment and post-treatment predictions was not significant (169.5 +/- 2.8 at the end of treatment vs. 166.2 +/- 4.5 cm before treatment; P = 0.29). We conclude that blockade of both androgen action and estrogen synthesis with the combination of spironolactone and testolactone is an effective short-term treatment for familial male precocious puberty. Further study will be required, however, to assess the long-term outcome in boys who receive this treatment.

Aggression

Effect of naloxone on the growth hormone response to clonidine in normal women during the mid-luteal phase.

We studied the effect of the opiate antagonist naloxone on the peripheral GH response to the alpha 2-receptor agonist clonidine in eight normally cycling women during the mid-luteal phase. In a randomized, double-blind, cross-over design, each subject received clonidine and naloxone on one occasion and clonidine and placebo on the other. In seven of eight subjects, an attenuation of the GH response was associated with naloxone administration. The maximal GH increment above baseline (delta GHMAX) of 7.8 +/- 2.0 micrograms/L (mean +/- SEM) with placebo was higher than the delta GHMAX of 4.2 +/- 0.9 micrograms/L with naloxone (p = 0.05). Likewise, the area above baseline under the GH level-time curve following clonidine (delta GHAREA) was higher with placebo compared to naloxone (477 +/- 175 micrograms/L x min vs. 228 +/- 62 micrograms/L x min), although this difference was not quite statistically significant (p = 0.09). As expected, with placebo the increase in GH following clonidine was statistically significant by repeated measures analysis of variance (p = 0.001). The smaller increase in GH levels when naloxone was given was not significant. Both delta GHMAX and delta GHAREA values were significantly positively correlated with estradiol levels when placebo was given, but not when naloxone was given. GHRH was not detectable following clonidine administration under either the placebo or the naloxone conditions. Our data support the hypothesis that estrogen enhances the response of GH to provocative stimuli in women, at least in part by increasing endogenous opioid tone in the hypothalamus.

Adult