Search PubMed⌕ Search

Biomedical subjects

R B Jaffe

Publications and source records attributed to R B Jaffe.

At least 55 records · Page 3Linked to original sources

Balloon dilation of congenital and acquired stenosis of the trachea and bronchi.

PURPOSE: To document the results of balloon dilation of the trachea and bronchi in infants and children with congenital and acquired stenosis. MATERIALS AND METHODS: Balloon dilation of congenital and acquired tracheal and bronchial stenosis was performed in six patients aged 5 weeks to 2 years 8 months (mean, 12.5 months). Bronchography with nonionic water-soluble contrast medium was performed initially through an endotracheal or tracheostomy tube with the patient sedated or under general anesthesia. Balloon size (2-8 mm) was determined on the basis of diameter of the airway lumen distal to the stenosis measured at bronchoscopy. Twenty-three incremental balloon dilation procedures were performed in these six patients at time intervals from 3 days to 2 years. Usually, three balloon insufflations were performed for 20-45 seconds at 4-6 atm during each procedure. RESULTS: Symptomatic improvement or increased lumen diameter occurred in four of six patients after balloon dilation. No improvement was seen in two patients: One had unrecognized vascular compression of the proximal left bronchus and distal trachea, and the other, of the left upper lobe bronchus. There were no complications. CONCLUSION: Balloon dilation was a safe and effective palliative procedure for treatment of congenital and acquired stenosis of the trachea and bronchi. Symptomatic improvement and increased lumen diameter occurred but may be temporary. Performance of serial dilation procedures was necessary to effect a long-term cure.

Bronchi↗

Developmental and functional biology of the primate fetal adrenal cortex.

The unique characteristics of the primate (particularly human) fetal adrenal were first realized in the early 1900s when its morphology was examined in detail and compared with that of other species. The unusual architecture of the human fetal adrenal cortex, with its unique and disproportionately enlarged fetal zone, its compact definitive zone, and its dramatic remodeling soon after birth captured the interest of developmental anatomists. Many detailed anatomical studies describing the morphology of the developing human fetal adrenal were reported between 1920 and 1960, and these morphological descriptions have not changed significantly. More recently, it has become clear that fetal adrenal cortical growth involves cellular hypertrophy, hyperplasia, apoptosis, and migration and is best described by the migration theory, i.e. cells proliferate in the periphery, migrate centripetally, differentiate during their migration to form the functional cortical zones, and then likely undergo apoptosis in the center of the cortex. Consistent with this model, cells of intermediate phenotype, arranged in columnar cords typical of migration, have been identified between the definitive and fetal zones. This cortical area has been referred to as the transitional zone and, based on the expression of steroidogenic enzymes, we consider it to be a functionally distinct cortical zone. Elegant experiments during the 1950s and 1960s demonstrated the central role of the primate fetal adrenal cortex in establishing the estrogenic milieu of pregnancy. Those findings were among the first indications of the function and physiological role of the human fetal adrenal cortex and led Diczfalusy and co-workers to propose the concept of the feto-placental unit, in which DHEA-S produced by the fetal adrenal cortex is used by the placenta for estrogen synthesis. Tissue and cell culture techniques, together with improved steroid assays, revealed that the fetal zone is the primary source of DHEA-S, and that its steroidogenic activity is regulated by ACTH. In recent years, function of the human and rhesus monkey fetal adrenal cortical zones has been reexamined by assessing the localization and ontogeny of steroidogenic enzyme expression. The primate fetal adrenal cortex is composed of three functionally distinct zones: 1) the fetal zone, which throughout gestation does not express 3 beta HSD but does express P450scc and P450c17 required for DHEA-S synthesis; 2) the transitional zone, which early in gestation is functionally identical to the fetal zone but late in gestation (after 25-30 weeks) expresses 3 beta HSD, P450scc, and P450c17, and therefore is the likely site of glucocorticoid synthesis, and 3) the definitive zone, which lacks P450c17 throughout gestation but late in gestation (after 22-24 weeks) expresses 3 beta HSD and P450scc, and therefore is the likely site of mineralocorticoid synthesis. Indirect evidence, based on effects of P450c21 deficiency and maternal estriol concentrations, indicate that the fetal adrenal cortex produces cortisol and DHEA-S early in gestation (6-12 weeks). However, controversy exists as to whether cortisol is produced de novo or derived from the metabolism of progesterone, as data regarding the expression of 3 beta HSD in the fetal adrenal cortex early in gestation are conflicting. During the 1960s, Liggins and colleagues demonstrated that in the sheep, cortisol secreted by the fetal adrenal cortex late in gestation regulates maturation of the fetus and initiates the cascade of events leading to parturition. Those pioneering discoveries provided insight into the mechanism underlying the timing of parturition and therefore were of particular interest to obstetricians and perinatologists confronted with the problems of preterm labor. However, although cortisol emanating from the fetal adrenal cortex promotes fetal maturation in primates as it does in sheep, its role in the regulation of primate parturition, unlike that in sheep

Adrenal Cortex↗

Tissue distribution of estrogen receptors alpha (ER-alpha) and beta (ER-beta) mRNA in the midgestational human fetus.

We compared the expression profiles of the mRNAs of both estrogen receptors, ER-alpha and the recently cloned ER-beta, in the midgestational human fetus by semiquantitative RT-PCR. ER-alpha was most abundant in the uterus, and smaller quantities were detected in the ovary, testis, skin and gut. High amounts of ER-beta mRNA were present in fetal ovaries, testes, adrenals and spleen. In these tissues, the levels of ER-beta mRNA were higher than ER-alpha. In the uterus, however, ER-alpha mRNA was more abundant, and ER-beta mRNA was expressed only moderately. ER-beta mRNA was present at moderate to low levels in the thymus, pituitary gland, skin, lung, kidney and brain cortex. In the course of our work, using the ER-beta primers on genomic DNA, an intron of 2468 bp in length, located between nt 222 and 223 in the A/B domain of ER-beta cDNA, was detected, cloned and sequenced. The study shows that the expression profile of the two ERs is different, and ER-beta is expressed in a variety of tissues during human fetal development, suggesting different, organ-specific roles for the two receptors.

Cloning, Molecular↗

Insulin-like growth factors augment steroid production and expression of steroidogenic enzymes in human fetal adrenal cortical cells: implications for adrenal androgen regulation.

The fetal zone is a unique adrenal cortical compartment that exists only during fetal life in humans and higher primates and produces large amounts of the adrenal androgen dehydroepiandrosterone sulfate (DHEA-S). Growth of the fetal zone is primarily regulated by ACTH, the actions of which are mediated in part by locally produced autocrine/paracrine growth factors. We previously demonstrated that one of these growth factors, insulin-like growth factor II (IGF-II), is mitogenic for cultured fetal zone cells and is produced in high abundance by these cells in response to ACTH. In the present study, we determined whether IGF-II also modulates the differentiated function of fetal zone cells. We examined the effects of recombinant human IGF-II and the closely related peptide, IGF-I, on 1) basal and agonist-stimulated [ACTH-(1-24), forskolin, or 8-bromo-cAMP] cortisol and DHEA-S production, 2) basal and ACTH-stimulated steady state abundance of messenger ribonucleic acids (mRNAs) encoding the steroidogenic enzymes cytochrome P450 side-chain cleavage (P450scc) and cytochrome P450 17alpha-hydroxylase/17,20-lyase (P450c17), and 3) basal and ACTH-stimulated steady state abundance of mRNA encoding the ACTH receptor. Basal cortisol (23.93 +/- 1.20 pmol/10(5) cells x 24 h) and DHEA-S (548.87 +/- 43.17 pmol/10(5) cells x 24 h) productions were significantly (P < 0.05) increased by IGF-I (2.3- and 1.8-fold, respectively) and IGF-II (2.8- and 1.8-fold, respectively). As expected, ACTH, forskolin, and cAMP markedly increased the production of cortisol by 26-, 10-, and 13-fold, respectively, and that of DHEA-S by 5.4-, 4.6-, and 5.5-fold, respectively, compared with basal levels. IGF-II (100 ng/mL) significantly (P < 0.001) increased ACTH-, forskolin-, and cAMP-stimulated production of cortisol by 2.4-, 4.3-, and 3.2-fold, respectively, and that of DHEA-S by 1.4, 1.6-, and 1.4-fold, respectively. IGF-I (100 ng/mL) had similar effects as IGF-II and significantly (P < 0.001) increased ACTH-, forskolin-, and cAMP-stimulated production of cortisol by 2.8-, 3.9-, and 3.1-fold, respectively, and that of DHEA-S by 1.3-, 1.6-, and 1.4-fold, respectively. The similar potencies of IGF-I and IGF-II suggest that the actions of these factors were mediated via a common receptor, most likely the type I IGF receptor. The effects of IGF-II on ACTH-stimulated steroid production were dose-dependent (EC50, 0.5-1.0 nmol/L), and IGF-II markedly increased the steroidogenic responsiveness of fetal zone cells to ACTH. With respect to cortisol production, IGF-II shifted the ACTH dose-response curve to the left by 1 log10 order of magnitude. IGF-II also increased ACTH-stimulated abundance of mRNA encoding P450scc (1.9-fold) and P450c17 (2.2-fold). Basal expression of P450scc was not affected by IGF-II. In contrast, basal expression of P450c17 was increased 2.2-fold by IGF-II and IGF-I in a dose-responsive fashion. Neither IGF-I nor IGF-II affected basal or ACTH-stimulated abundance of mRNA encoding the ACTH receptor, suggesting that the increase in ACTH responsiveness was not mediated by an increase in ACTH-binding capacity. Taken together, these data indicate that activation of the type I IGF receptor increases ACTH responsiveness in fetal zone cells by modulating ACTH signal transduction at some point distal to ACTH receptor activation. These data also indicate that locally produced IGF-II modulates fetal adrenal cortical cell function by increasing responsiveness to ACTH and possibly (based on its direct stimulation of P450c17 expression) augmenting the potential for adrenal androgen synthesis. Thus, activation of the type I IGF receptor on adrenal cortical cells may play a pivotal role in adrenal androgen production, both physiologically in utero and at adrenarche, and in pathophysiological conditions ofhyperandrogenemia, such as the polycystic ovary syndrome.

Adrenal Cortex↗

Clinical uses of antiestrogens.

An antiestrogen is a compound that blocks the action of estrogen. Most synthetic antiestrogens have agonistic or antagonistic activity depending on the tissue and the endogenous estrogen mileu. The triphenylethylene derivatives, clomiphene and tamoxifen, are the antiestrogens in greatest clinical use. Their biologic effects, clinical indications, and risks are reviewed. Novel antiestrogens which are beginning to be studied clinically include the benzothiophene derivative, raloxifene and the "pure" antiestrogens such as ICI 182,780. New clinical indications for existing compounds as well as the development of novel antiestrogens may lead to better treatment options for endocrine-dependent conditions.

Breast Neoplasms↗

Apoptosis in the human female reproductive tract.

Throughout fetal and adult life, the balance of cell proliferation and cell death determines the size of cell populations in tissues throughout the body. Apoptosis, or programmed cell death, is the physiologic process of cell deletion. Cell death is critical in morphogenesis in the embryo and fetus as well as in maintaining tissue homeostasis in the adult. Throughout the menstrual cycle, cell death and renewal occur in the female reproductive tract in a highly regulated sequence. The process of follicular atresia and the cyclic shedding of the endometrium involve the process of apoptosis. In pathologic states, resistance to cell death by apoptosis may play a fundamental role in tumorigenesis. Because apoptosis is such a fundamental biologic process in a variety of physiologic and pathologic states, many unique to the female reproductive tract, it is imperative that clinicians be conversant with the rapidly expanding information in this area. Although apoptotic cell death has been recognized histologically for over 20 years (1), the molecular mechanisms that regulate apoptosis have only recently begun to be elucidated. The identification of some of these regulators, such as the p53 gene, has improved our understanding of the mechanisms of tumor response to chemotherapy. This review will summarize our current knowledge of the mechanisms of apoptosis in the ovary and endometrium, and in the normal development and malignant transformation of the breast.

Adult↗

Functional maturation of the primate fetal adrenal in vivo: I. Role of insulin-like growth factors (IGFs), IGF-I receptor, and IGF binding proteins in growth regulation.

The rapid growth of the primate fetal adrenal from midgestation until term is regulated by ACTH secreted by the fetal pituitary. Previous studies suggest that the trophic actions of ACTH are mediated by insulin-like growth factor II (IGF-II) synthesized by fetal adrenal cortical cells. To characterize further the role of IGF-II in the regulation of fetal adrenal growth, we investigated the expression of the messenger RNAs (mRNAs) encoding IGF-I, IGF-II, IGF-I receptor (IGF-IR) and IGF binding protein (IGFBP) 1-6 in the fetal rhesus monkey adrenal in vivo from 109 days of gestation until term (165 +/- 5 days) using in situ hybridization. To assess the role of ACTH in the regulation of expression of the IGF system in vivo, we administered metyrapone (3-7 days) to late gestation fetal rhesus monkeys (n = 4) in utero to increase fetal pituitary ACTH secretion. IGF-II mRNA was abundant in the definitive, transitional and fetal zones of the adrenal cortex from 109 days until term. IGF-IR mRNA was expressed in the definitive, transitional and fetal zones and decreased to nondetectable levels at term. IGFBP-2 and IGFBP-6 mRNAs were expressed in the definitive, transitional, and fetal zones, whereas IGFBP-1, -3, -4, and -5 were not detected in adrenal cells. The effects of increasing ACTH secretion on the growth of the specific zones of the adrenal were determined using morphometric techniques. Metyrapone treatment approximately doubled adrenal weight, which was due to an increase in the area of the definitive, transitional, and fetal zones with decreased cell density of the definitive, transitional, and fetal zones compared with controls and not due to a change in total cell number. Therefore, the increase in adrenal weight after metyrapone treatment was due to hypertrophy of the three cortical zones; there was no effect on adrenal medullary growth. The relative abundance of the mRNAs encoding IGF-II and the IGF-IR was increased after metyrapone treatment, whereas the localization and relative abundance of IGFBP 1-6 mRNAs were not altered by metyrapone treatment. We conclude that the ontogenetic increase in adrenal growth may be regulated, at least in part, by locally synthesized IGF-II, and the cessation of adrenal growth that occurs at term may be mediated by the decrease in the IGF-IR. The adrenal cortical expression of IGFBP-2 and IGFBP-6 suggests that these IGFBPs may modulate the IGF-IGF-IR interaction. Metyrapone treatment, which likely increased fetal pituitary ACTH secretion, causes a coordinated increase in expression of IGF-II and IGF-IR in fetal adrenal cortical cells, which may be an important mechanism of regulation of fetal adrenal cortical growth.

Adrenal Glands↗

Functional maturation of the primate fetal adrenal in vivo. II. Ontogeny of corticosteroid synthesis is dependent upon specific zonal expression of 3 beta-hydroxysteroid dehydrogenase/isomerase.

Cortisol, produced by the primate fetal adrenal, regulates the maturation of organ systems necessary for extrauterine life. During most of primate pregnancy, however, the fetal adrenal lacks the enzyme 3 beta-hydroxysteroid dehydrogenase/isomerase (3 beta HSD), which is essential for cortisol synthesis. Therefore, we used immunohistochemistry and in situ hybridization techniques to investigate the developmental expression of 3 beta HSD in the fetal rhesus monkey adrenal from 109 days' gestation until term (165 +/- 5 days) and assessed the role of ACTH in the induction of its expression and localization. We also examined whether ACTH regulates the expression of two other steroidogenic enzymes, cytochrome P450 cholesterol side-chain cleavage (P450scc) and P450 17 alpha-hydroxylase, 17/20-lyase (P450c17), in the fetal rhesus monkey adrenal. To stimulate ACTH secretion from the fetal pituitary in vivo, we administered metyrapone to late gestation fetal rhesus monkeys for 3-7 days. Adrenals were collected from untreated fetuses at 109-125 days (n = 5), 130-148 days (n = 7), 155-172 days (n = 4), and after metyrapone treatment at 135-137 days (n = 4). The cortical width and total amount of 3 beta HSD staining were measured using an image analysis system. 3 beta HSD was localized primarily in the definitive zone cells of the adrenal from fetuses between 109-148 days, whereas at term (155-172 days), 3 beta HSD was localized in both definitive and transitional zone cells. The cortical width and total amount of 3 beta HSD staining in the adrenal increased significantly (P < 0.05) between 148 days (137 +/- 14 microns and 3,689 +/- 522 grains) and 155 days (315 +/- 61 microns and 7,321 +/- 2,008 grains). Interestingly, in metyrapone-treated fetuses at 135-137 days, 3 beta HSD messenger RNA (mRNA) and protein were localized extensively in both the definitive and transitional zones, a pattern seen only in term fetal adrenals in untreated animals. In addition, metyrapone treatment significantly (P < 0.05) increased cortical width (386 +/- 95 microns) and total 3 beta HSD immunostaining (29,063 +/- 13,692 grains) compared with age-matched controls. In contrast to 3 beta HSD, P450scc mRNA was detected in the definitive, transitional, and fetal zones, and its expression was not altered after metyrapone treatment. P450c17 mRNA was detected in the transitional and fetal zones, and the relative abundance was greater in the transitional zone. The relative abundance of P450c17 mRNA was increased in the fetal zone after metyrapone treatment. In summary, at term or after metyrapone treatment, expression of 3 beta HSD is induced in the transitional zone of the fetal rhesus monkey adrenal gland, an indication of functional maturation of the primate adrenal cortex. These data suggest that the ontogenetic increase in fetal pituitary ACTH secretion plays an important role in the induction of 3 beta HSD expression in the transitional zone.

Adrenal Cortex Hormones↗

Localization and regulation of corticotropin receptor expression in the midgestation human fetal adrenal cortex: implications for in utero homeostasis.

Developmental changes in the responsiveness of the fetal adrenals to corticotropin (ACTH) play an important role in the regulation of the fetal hypothalamic-pituitary-adrenal axis. Responsiveness of adrenal cortical cells to ACTH is dependent on the extent of ACTH receptor expression. Therefore, we examined the localization and regulation of ACTH receptor expression in the midgestation (16-24 weeks) human fetal adrenal cortex. In situ hybridization analysis was used to localize messenger RNA (mRNA) encoding the ACTH receptor in sections of human fetal adrenal glands. Messenger RNA encoding the ACTH receptor was localized in cells from all cortical zones; abundance was higher in definitive zone than in fetal zone cells and was least abundant in the more central portions of the cortex. Regulation of ACTH receptor expression was studied using Northern blot analysis of total RNA extracted from primary cultures of fetal and definitive zone cells. Two major (1.5 and 3.5 kilobases) and, upon stimulation with ACTH, 3 minor (4.0, 6.0 and 10.0 kb) ACTH receptor mRNA transcripts were detected in RNA from fetal and definitive zone cells. In both cell types, ACTH-(1-24) increased the abundance of mRNA encoding the ACTH receptor 10- to 20-fold compared with untreated cells. The effects of ACTH-(1-24) on ACTH receptor expression in fetal zone cells were time- and dose-dependent. The ED50 for the stimulation of ACTH receptor expression by ACTH-(1-24) was 1-10 pM, and maximal response to 0.1 nm ACTH-(1-24) was detected after 12-16 h. Eight-bromoadenosine cAMP and forskolin also stimulated ACTH receptor expression in fetal zone cells and closely mimicked the effects of ACTH-(1-24). In contrast, stimulation of protein kinase C with 12-O-tetradecanoyl phorbol 13-acetate had no effect on ACTH receptor expression. Changes in ACTH receptor expression in response to ACTH-(1-24), cAMP and forskolin were paralleled by changes in expression of the P450 cholesterol side chain cleavage (P450scc) enzyme. These data demonstrate that expression of the ACTH receptor by the human fetal adrenal cortex is up-regulated by its own ligand and that this effect is mediated by a cAMP-dependent mechanism. In addition, the coordinate stimulation of ACTH receptor and P450scc expression by ACTH indicates that the gene for the ACTH receptor is one of a specific cohort of genes regulated by ACTH that are required to facilitate fetal adrenal cortical response to ACTH. ACTH regulation of its own receptor may represent a mechanism by which fetal adrenal responsiveness to ACTH is maintained and possibly enhanced during fetal development.

Adrenal Cortex↗

Vascular endothelial growth factor localization in human ovary and fallopian tubes: possible role in reproductive function and ovarian cyst formation.

Vascular endothelial growth factor (VEGF) is a potent angiogenic factor that also increases vascular permeability. We hypothesized that VEGF plays a role in the regulation of cyclic ovarian angiogenesis in women, and that its ability to increase vascular permeability may be an important factor in the production of fallopian tube effluent and fluid formation in ovarian cysts. To examine these hypotheses, we assessed VEGF expression in ovaries and fallopian tubes from premenopausal (n = 10) and postmenopausal (n = 4) women. Immunohistochemical analysis for VEGF was performed using a rabbit polyclonal antibody directed against human VEGF. In normal ovaries from premenopausal women, VEGF within healthy follicles was localized to the thecal cell layer, with minimal VEGF peptide detected in the granulosa cell layer. VEGF was not expressed in atretic follicles or a degenerating corpus luteum. However, intense VEGF immunostaining was observed within the highly vascularized corpora lutea in all specimens examined. In normal ovaries from postmenopausal women, VEGF was detected only in epithelial inclusion cysts and a serous cystadenoma. In specimens from both pre- and postmenopausal women, the luminal epithelium of the fallopian tube as well as smooth muscle cells and pericytes lining small and large blood vessels within the tube and hilum of the ovary exhibited specific staining for VEGF. Based on these data, we suggest that during reproductive life, VEGF plays a role in the growth and maintenance of the ovarian follicle and corpus luteum by mediating angiogenesis. In addition, VEGF within the fallopian tube luminal epithelium may increase vascular permeability and modulate tubal luminal secretions. Similarly, VEGF in the epithelial lining of benign ovarian neoplasms may contribute to fluid formation in ovarian cysts.

Adult↗

Transsphenoidal pituitary resection for preoperative diagnosis of prolactin-secreting pituitary adenoma in women: long term follow-up.

The long term efficacy and safety of transsphenoidal resection for preoperative diagnosis of PRL-secreting pituitary adenomas in a large series of women have not been described. Four hundred and nine consecutive women at this university tertiary referral center undergoing transsphenoidal resection for preoperative diagnosis of PRL-secreting pituitary adenoma were followed for a minimum of 4 yr. The objective was to determine the efficacy and morbidity of this procedure and to identify features correlating with the resolution of hyperprolactinemia. Outcome measures included referral, preoperative, surgical, postoperative hospitalization, and long-term follow-up information, including recent PRL concentration. Follow-up was ascertained in 83% of patients who were followed for a mean of 9.2 yr. Recurrence of hyperprolactinemia occurred in 47% of total patients, but in only 16% with a single surgical procedure, histological diagnosis of prolactinoma, and postoperative PRL concentration of 5 ng/mL or less. The best single predictor of cure was postoperative day 1 PRL concentration of 5 ng/mL or less. Eighty-eight percent of women desiring conception conceived within 1 yr. Glucocorticoid-dependent hypopituitarism occurred in 23% of patients undergoing postoperative radiotherapy. There was no operative mortality. Operative morbidity was low. Our experience demonstrates that women undergoing transsphenoidal surgery for diagnosis of PRL-secreting adenoma form a heterogeneous patient population. The best long term results are achieved in the pure prolactinoma group, for whom transsphenoidal resection is generally safe and effective.

Adolescent↗

Ovarian steroid regulation of vascular endothelial growth factor in the human endometrium: implications for angiogenesis during the menstrual cycle and in the pathogenesis of endometriosis.

The human endometrium undergoes a complex process of vascular and glandular proliferation, differentiation, and regeneration with each menstrual cycle in preparation for implantation. Vascular endothelial growth factor (VEGF) is an endothelial cell-specific angiogenic protein that appears to play an important role in both physiological and pathological neovascularization. To investigate whether VEGF may regulate human endometrial angiogenesis, we examined VEGF messenger ribonucleic acid (mRNA) and protein throughout the menstrual cycle and studied the regulation of VEGF by reproductive steroids in isolated human endometrial cells. By ribonuclease protection analysis, VEGF mRNA increased relative to early proliferative phase expression by 1.6-,2.0-, and 3.6-fold in midproliferative, late proliferative, and secretory endometrium, respectively. In histological sections, VEGF mRNA and protein were localized focally in glandular epithelial cells and more diffusely in surrounding stroma, with greatest VEGF expression in secretory endometrium. Consistent with these in vivo results, the treatment of isolated human endometrial cells with estradiol (E2), medroxyprogesterone acetate (MPA), or E2 plus MPA significantly increased VEGF mRNA expression over the control value by 3.1-, 2.8-, and 4.7-fold, respectively. The VEGF response to E2 was rapid, with steady state levels of VEGF mRNA reaching 85% maximum 1 h after the addition of steroid. E2 also caused a 46% increase in secreted VEGF protein, and the combination of E2 and MPA caused an 18% increase. VEGF expression in endometriosis, an angiogenesis-dependent, estrogen-sensitive disease was similar to that seen in eutopic endometrium. Peritoneal fluid concentrations of VEGF were significantly higher in women with moderate to severe endometriosis than in women with minimal to mild endometriosis or no disease. VEGF, therefore, may be important in both physiological and pathological angiogenesis of human endometrium, as it is an estrogen-responsive angiogenic factor that varies throughout the menstrual cycle and is elevated in women with endometriosis.

Cells, Cultured↗

Suppression of follicular phase pituitary-gonadal function by a potent new gonadotropin-releasing hormone antagonist with reduced histamine-releasing properties (ganirelix).

OBJECTIVE: To determine if daily subcutaneous doses of ganirelix will suppress and maintain E2 < or = 30 pg/mL (conversion factor to SI unit, 3.671), the serum profiles of LH and FSH during and after cessation of treatment, the time-course of the resumption of normal ovarian function after ganirelix cessation, and to identify side effects of daily treatment. DESIGN: Open-label nonrandomized clinical study. SETTING: Normal human volunteers in an academic research center. PATIENTS: Women 21 to 45 years of age, with documented ovulatory menstrual cycles. INTERVENTIONS: Ganirelix was administered subcutaneously daily for 8 days. Blood samples were obtained during dosing as well as before and after cessation of dosing. MAIN OUTCOME MEASURES: Changes in serum E2, LH, FSH, P, and ganirelix. RESULTS: Ganirelix treatment rapidly decreased serum levels of gonadotropins and E2 after both 1 and 2 mg administration. Twenty-four hours after the first dose of ganirelix, E2 decreased from a mean +/- SEM of 50 +/- 8 and 67 +/- 11 pg/mL at baseline to 25 +/- 4 and 20 +/- 3 in the 1 mg and 2 mg groups, respectively. Estradiol remained suppressed (mean levels < 26 pg/mL) on all subsequent 7 days of ganirelix dosing in both groups. After the final dose of ganirelix, there was a rapid return of ovarian function in all volunteers. All women had P levels indicative of ovulation in the subsequent cycle, and the mean number of days from the final ganirelix dose to the next menses was 25.8 +/- 2.1 and 27.3 +/- 1.6 in the 1 and 2 mg groups, respectively. CONCLUSIONS: Daily ganirelix administration is effective in suppressing the pituitary-gonadal axis and has a side effect profile that should be well tolerated.

Adult↗

Endogenous catecholamines suppress thyrotropin secretion during the early follicular phase of the menstrual cycle.

The physiological role of hypothalamic catecholamines in the regulation of TSH secretion in humans has not been studied extensively. We administered the catecholamine synthesis inhibitor alpha-methyl-p-tyrosine (AMPT) to five women in the early follicular phase (one of menstrual cycle days 2-5) of the menstrual cycle and compared TSH secretion patterns to those in five women at the same time in the cycle who did not receive AMPT. From 0800-1600 h, volunteers had an i.v. line placed, through which blood was withdrawn every 15 min for TSH and PRL determinations. AMPT (500 mg) was administered to the study group at 0800 h and again at 1000 h. Baseline TSH concentrations at 0800 h were not significantly different between the control and treatment groups. In keeping with its characteristic circadian secretion pattern, TSH in the control group was 1.72 +/- 0.23 mIU/L at 0800 h, declined to 1.02 +/- 0.11 mIU/L by 1600 h, and was significantly less than the 0800 h value at all time points beyond 1115 h. The decline in TSH was observed in all five controls. By contrast, TSH in the AMPT group rose from an 0800 h value of 1.99 +/- 0.09 mIU/L to a peak of 3.30 +/- 0.86 IU/L by 1245 h, and was significantly higher than that at 0800 h in the treated group from 1130-1315 h. The increase in TSH was observed in all five women who received AMPT. There were significant differences between the mean TSH concentrations in the AMPT-treated (2.51 +/- 0.09 mIU/L) vs. the control group (1.28 +/- 0.09 mIU/L; P < 0.0001) for the entire study. The effectiveness of AMPT was demonstrated by an elevation of mean PRL concentrations from a baseline of 16.67 +/- 2.55 micrograms/L to a peak of 138.7 +/- 21.6 micrograms/L. We conclude that endogenous catecholamines tonically inhibit TSH secretion in the early follicular phase. These data suggest modulation of TRH by tuberoinfundibular dopamine at the hypothalamic and/or pituitary level.

Adult↗

Pulsatile release patterns of luteinizing hormone and progesterone in relation to symptom onset in women with premenstrual syndrome.

OBJECTIVE: To explore the pulsatile-release characteristics of LH and P in women with premenstrual syndrome (PMS) compared with age-matched phase-matched controls. DESIGN: Prospective, repeated measures, two-group study. SETTING: Human volunteers in an academic research environment. PARTICIPANTS: Six women with rigorously defined prospectively determined PMS; six age-matched phase-matched controls. MAIN OUTCOME MEASURES: Frequency, amplitude, concentration, and coincident pulsatile release characteristics of LH and P at three symptom-related points of the luteal phase. RESULTS: No significant between-group differences in frequency, amplitude, or concentration were found. In pooled data, significant coincident pulsing between LH and P was demonstrated. The length of time between LH and P pulses systematically increased across the luteal phase, a finding not previously reported. In the PMS group only, significant coincident pulsing occurred at an unexpected zero time lag on the symptom-onset sampling day. CONCLUSION: A progressively increasing coupling interval may reflect the gradual decline of the corpus luteum. Presence of a zero time lag between LH and P at symptom onset in women with PMS may indicate an aberrance in corpus luteum response to LH stimulation.

Female↗