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Biomedical subjects

A Klibanski

Publications and source records attributed to A Klibanski.

At least 127 records · Page 7Linked to original sources

Gonadotropin and alpha-subunit responses to chronic gonadotropin-releasing hormone analog administration in patients with glycoprotein hormone-secreting pituitary tumors.

Pituitary tumors secreting intact glycoprotein hormones (LH, FSH, and TSH) and/or alpha-subunit are being increasingly recognized. Because chronic administration of GnRH analogs decreases gonadotropin secretion in normal subjects, we investigated gonadotropin and alpha-subunit responses to chronic GnRH analog administration in five men with glycoprotein hormone-secreting pituitary tumors. Two patients (patients A and B) received the GnRH agonist analog (D-Trp6-Pro9-NEt-LHRH) for 4 weeks as a daily sc dose (8 micrograms/kg.day). In both, secretion of LH and/or alpha-subunit increased markedly. Subsequently, three patients received a higher analog dose (32 micrograms/kg.day) for a longer duration (8 weeks). One patient with a LH- and FSH-secreting tumor (patient C) had a highly significant (P less than 0.001) fall in serum LH and FSH concentrations; however, alpha-subunit secretion increased. During a subsequent study, when this patient received a lower dose (8 micrograms/kg.day) for 8 weeks, gonadotropin suppression also occurred. In two additional patients who received this dose (32 micrograms/kg.day), it had a persistent agonist effect on FSH beta (patient D) and alpha-subunit secretion (patient E). A marked increase in alpha-subunit secretion occurred in all five patients, regardless of whether basal serum alpha-subunit concentrations were elevated. These patients received the GnRH analog at doses 2-8 times greater than those that suppress gonadotropin secretion in normal men. Serum LH and FSH concentrations decreased in only one patient with a gonadotropin-secreting adenoma. The serum LH and FSH responses to acute GnRH stimulation did not predict the gonadotropin responses to chronic GnRH analog administration. Thus, gonadotropin and alpha-subunit production by most pituitary adenomas is augmented during chronic GnRH analog administration, consistent with defective GnRH desensitization in the adenomatous tissue. Despite the heterogeneous gonadotropin responses to the GnRH analog in these patients, serum alpha-subunit levels increased in all patients, indicating dissociation in the secretion of intact gonadotropins and alpha-subunit.

Adenoma↗

Mechanisms of osteoporosis in adult and adolescent women with anorexia nervosa.

Osteoporosis is a known consequence of anorexia nervosa (AN) in adults, but the mechanism of bone loss is not established, and there have been no studies of bone mass in women developing AN before attaining peak bone mass. To investigate the causes of bone loss in AN and to determine the consequences of developing AN during adolescence on bone mass, we compared the effects of AN on cortical and trabecular bone in 26 women with AN (19 adults, 18-42 yr old, and 7 adolescents, 14.9-17.0 yr old) using direct radial photon absorptiometry and both single and dual energy spinal computed tomography. The adult AN patients had marked spinal osteopenia [mean bone density, 120 +/- 28 (+/- SD) mg K2HPO4/cm3] compared with age-matched normal women (mean, 176 +/- 26 mg K2HPO4/cm3; P = 0.0001), which was severe (greater than 2 SD below the normal mean) in 50% of patients. Adult AN patients with the onset of amenorrhea before age 18 yr had significantly (P = 0.04) lower spinal bone density than those developing amenorrhea later (mean, 103 +/- 25 vs. 129 +/- 25 mg K2HPO4/cm3) independent of other variables correlated with bone density (duration of amenorrhea or urinary cortisol excretion). We found a negative correlation between spinal bone density and duration of amenorrhea (P = 0.006; r = -0.53). To determine the contribution of endogenous cortisol excess to the pathogenesis of the osteoporosis, urinary cortisol was measured. Urinary cortisol/creatinine clearance was significantly (P = 0.001) higher in AN patients than in normal women (mean, 2.7 +/- 1.2 vs. 1.0 +/- 0.3 nmol/L) and was negatively correlated (P = 0.03; r = -0.43) with bone mass. We conclude that AN affects trabecular bone and that both the onset of AN before attainment of peak bone mass and prolonged duration of amenorrhea result in more severe osteopenia. In addition to the significant contribution of hypogonadism, the cortisol excess that occurs in AN patients may contribute to the development of osteoporosis in these patients.

Adolescent↗

Pulsatile gonadotropin secretion after discontinuation of long term gonadotropin-releasing hormone (GnRH) administration in a subset of GnRH-deficient men.

Normal pituitary and gonadal function can be maintained with long term pulsatile GnRH administration in men with idiopathic hypogonadotropic hypogonadism (IHH), and both pituitary and gonadal priming occur during the process of GnRH-induced sexual maturation. Still, the long term effects of discontinuing GnRH therapy in IHH men have not been examined. Therefore, we evaluated the patterns of gonadotropin and alpha-subunit secretion before and after a prolonged period of pulsatile GnRH administration in 10 IHH men. Before exogenous GnRH stimulation, no patient had any detectable LH pulsations. In 6 of these men, who were typical of most of our IHH patients (group I), no LH pulsations were detectable after cessation of GnRH administration. However, in the other 4 men (group II), LH pulsations were easily detectable despite cessation of exogenous GnRH stimulation, and the amplitude (9.3 +/- 3.5 IU/L) and frequency (13.8 +/- 1.7 pulses/day) of these LH pulses were similar to those in 20 normal men (10.6 +/- 0.7 IU/L and 11.0 +/- 0.7 pulses/day). Three of these 4 men in group II maintained normal serum testosterone levels after discontinuation of GnRH delivery. To determine if there were any characteristics that might be useful in predicting which IHH men could maintain normal pituitary-gonadal function after long term GnRH administration, we evaluated various clinical and hormonal parameters at the time of initial presentation. Mean alpha-subunit levels (P less than 0.01) and alpha-subunit pulse amplitude (P less than 0.02) were significantly higher in the group II than the group I men, suggesting that the group II patients had partial, rather than complete, deficiency of endogenous GnRH secretion. None of the other parameters that were assessed distinguished the two groups. We conclude that gonadotropin and sex steroid levels return to their pretreatment state in the majority of IHH men when long term GnRH administration is discontinued. Normal pituitary-gonadal function can be maintained after discontinuation of long term GnRH administration in a rare subset of IHH men who present with higher levels of alpha-subunit. We hypothesize that these latter IHH men have an incomplete GnRH deficiency and that long term exogenous GnRH administration induces pituitary and gonadal priming, which subsequently enables them to sustain normal pituitary and gonadal function in response to their own enfeebled GnRH secretion.

Adult↗

Increases in bone density during treatment of men with idiopathic hypogonadotropic hypogonadism.

To assess the effects of gonadal steroid replacement on bone density in men with osteoporosis due to severe hypogonadism, we measured cortical bone density in the distal radius by 125I photon absorptiometry and trabecular bone density in the lumbar spine by quantitative computed tomography in 21 men with isolated GnRH deficiency while serum testosterone levels were maintained in the normal adult male range for 12-31 months (mean +/- SE, 23.7 +/- 1.1). In men who initially had fused epiphyses (n = 15), cortical bone density increased from 0.71 +/- 0.02 to 0.74 +/- 0.01 g/cm2 (P less than 0.01), while trabecular bone density did not change (116 +/- 9 compared with 119 +/- 7 mg/cm3). In men who initially had open epiphyses (n = 6), cortical bone density increased from 0.62 +/- 0.01 to 0.70 +/- 0.03 g/cm2 (P less than 0.01), while trabecular bone density increased from 96 +/- 13 to 109 +/- 12 mg/cm3 (P less than 0.01). Cortical bone density increased 0.03 +/- 0.01 g/cm2 in men with fused epiphyses and 0.08 +/- 0.02 g/cm2 in men with open epiphyses (P less than 0.05). Despite these increases, neither cortical nor trabecular bone density returned to normal levels. Histomorphometric analyses of iliac crest bone biopsies demonstrated that most of the men had low turnover osteoporosis, although some men had normal to high turnover osteoporosis. We conclude that bone density increases during gonadal steroid replacement of GnRH-deficient men, particularly in men who are skeletally immature.

Adult↗

Medical therapy of glycoprotein hormone-secreting pituitary tumors.

Glycoprotein hormone adenomas represent approximately 25% of all pituitary adenomas. Although surgery and radiation are the primary therapeutic modalities, there is an important need for the development of adjunctive medical therapy for these tumors. Investigations have focused on the suppression of GPH synthesis and secretion by hypothalamic regulatory factors in an attempt to decrease tumor mass. Although GnRH agonist analogues have not produced consistent GPH suppression, they may be valuable tools to investigate the regulation of intact GPH and subunit secretion in these tumors. Preliminary reports have shown that analogues of dopamine and somatostatin may be therapeutically useful. However, careful in vivo and in vitro characterization of tumors within this very heterogeneous group and correlation with their response to treatment are needed to establish guidelines for effective medical therapy.

Glycoproteins↗

Effect of dexamethasone on cortisol and prolactin responses to meals in bulimic and normal women.

In normal individuals, serum cortisol and prolactin concentrations have been shown to rise following a mid-day meal. To determine whether abnormalities of the hypothalamo-pituitary-adrenal axis in bulimics lead to a disrupted hormonal response to eating, cortisol and prolactin responses to meals (600 kcal, 30% protein, 30% fat, 40% carbohydrate) were studied on two consecutive days in six normal weight bulimics and six normal volunteers. Dexamethasone (1 mg orally) was administered at 2330 h after baseline sampling. During baseline sampling, cortisol concentrations were significantly higher in the bulimics (18.2 +/- 0.9 micrograms/dl, mean +/- SEM) than in the normals (12.1 +/- 0.4 micrograms/dl) (p less than 0.001). Post-dexamethasone cortisol concentrations also were higher in the bulimics (5.7 +/- 0.3 micrograms/dl) than in the normals (1.2 +/- 0.2 micrograms/dl) (p less than 0.001). The three bulimics with a major depressive disorder had higher peak post-dexamethasone cortisol concentrations than the nondepressed bulimics. Dexamethasone significantly enhanced the prolactin response to meals among both bulimics (at 90 min post onset of eating) and normals (at 60, 75 and 90 min post onset of eating). This enhancement of the prolactin response to meals by dexamethasone is opposite to the inhibitory effect of dexamethasone on stress-induced prolactin release and suggesting that stress-induced and meal-induced prolactin release involve different neuroendocrine mechanisms.

Adult↗

Endocrine function following high dose proton therapy for tumors of the upper clivus.

The endocrine status of patients receiving proton radiation for tumors of the upper clivus was reviewed to evaluate the effect of high dose treatment on the pituitary gland. The fourteen patients had chordomas or low grade chondrosarcomas and were all treated by the same techniques. The median tumor dose was 69.7 Cobalt Gray Equivalent (CGE) with a range from 66.6 to 74.4 CGE. (CGE is used because modulated protons have an RBE of 1.1 compared to 60Co). The daily fraction size was 1.8-2.1 CGE. The median follow-up time is 48 months, ranging from 30 to 68 months. All treatments were planned using a computerized multi-dimensional system with the position of the pituitary outlined on the planning CT scan. Review of the dose distribution indicated that the dose to the pituitary ranged from 60.5 to 72.3 CGE, with a median of 67.6 CGE. One female patient had decreased thyroid and gonadotropin function at the time of diagnosis and has been on hormone replacement since that time. The other three females were all pre-menopausal at the time of radiotherapy. At this time four patients (3 males and 1 female) have developed endocrine abnormalities 14 to 45 months after irradiation. All four had evidence of hypothyroidism and two have also developed corticotropin deficiency. The three males had decreased testosterone levels; the female patient developed amenorrhea and hyperprolactinemia. All four are asymptomatic with ongoing hormone replacement.

Adolescent↗

Dopaminergic regulation of alpha-subunit secretion and messenger ribonucleic acid levels in alpha-secreting pituitary tumors.

Glycoprotein hormone and/or subunit secretion has been increasingly recognized in patients with pituitary nonsecretory adenomas and alpha-subunit secretion has been reported to occur in 5-10% of all pituitary tumors. We investigated the dopaminergic regulation of alpha-subunit secretion in four patients with alpha-subunit secreting pituitary adenomas documented by serum and immunocytochemical studies. In three of the four patients there was a significant decrease in serum alpha-subunit concentrations during 6 weeks of bromocriptine administration. Tumor size decreased in two patients. In pituitary tumor cells from one patient cultured in vitro, dopamine caused a highly significant decrease in media alpha-subunit concentrations. To investigate whether dopaminergic regulation of alpha-subunit secretion occurs at a pre- or posttranslational level, messenger RNA (mRNA) from cultured tumor cells from one patient was analyzed by Northern blot techniques. A decrease in alpha-subunit mRNA occurred in cells incubated with 10(-10), 10(-8), and 10(-6) M dopamine. We conclude that dopamine suppressed pituitary tumor alpha-subunit secretion and mRNA levels. Dopamine agonists may be of benefit in the therapy of patients with such tumors.

Adenoma↗

Effects of prolactin and estrogen deficiency in amenorrheic bone loss.

To determine whether hyperprolactinemic women with menses are at risk for the development of osteopenia and to define the effects of PRL excess and estrogen deficiency on bone mass in amenorrheic women, spinal and radial bone densities were measured in 25 hyperprolactinemic women (13 with amenorrhea and 12 with regular menstrual periods) and 11 women with hypothalamic amenorrhea. The degree of hyperprolactinemia was comparable in the hyperprolactinemic women with and without menstrual periods [mean, 55 +/- 18 (+/- SD) and 57 +/- 16 micrograms/L, respectively]. The mean spinal bone density in the hyperprolactinemic amenorrheic women (148 +/- 26 mg/K2HPO4.cm3) was significantly lower (P less than 0.01) than that in 19 normal women (178 +/- 21 mg/K2HPO4.cm3), and 6 of the former group had values greater than 2 SD below normal. However, the mean spinal bone density in the eumenorrheic hyperprolactinemic women (171 +/- 22 mg/K2HPO4.cm3) was similar to that in the normal women and was significantly greater (P less than 0.05) than that in the hyperprolactinemic amenorrheic women. The mean spinal bone density in the women with hypothalamic amenorrhea (128 +/- 24 mg/K2HPO4.cm3) and normal PRL levels was also significantly (P less than 0.001) lower than that in normal women or hyperprolactinemic euenorrheic women. Six of the women with hypothalamic amenorrhea had bone density measurements greater than 2 SD below normal. The spinal bone density values were similar in the amenorrheic women with or without hyperprolactinemia. The mean radial bone density in the hyperprolactinemic women with amenorrhea (0.69 +/- 0.03 g/cm2) was comparable to that in the women with hypothalamic amenorrhea (0.69 +/- 0.05 g/cm2), and both groups had significantly (P less than 0.05) lower values than normal women (0.72 +/- 0.03 g/cm2). Radial bone density was normal in the hyperprolactinemic eumenorrheic women. The mean serum estradiol level in the hyperprolactinemic amenorrheic women (120 +/- 90 pmol/L) was significantly (P less than 0.05) lower than that in the hyperprolactinemic eumenorrheic women measured during the follicular phase of their cycles (240 +/- 180 pmol/L) and was comparable to that in the women with hypothalamic amenorrhea (80 +/- 40 pmol/L). Multiple comparisons of clinical variables, serum hormone concentrations, and bone mass demonstrated a significant correlation (P = 0.0125) between bone density and serum dehydroepiandrosterone sulfate levels, which suggests a role for endogenous androgens in the maintenance of premenopausal bone mass.(ABSTRACT TRUNCATED AT 400 WORDS)

Absorptiometry, Photon↗

Glycoprotein hormone genes are expressed in clinically nonfunctioning pituitary adenomas.

Approximately 25% of patients with pituitary adenomas have no clinical or biochemical evidence for excess hormone secretion and are classified as having null cell or nonfunctioning adenomas. To characterize the cell type of these tumors, we analyzed pituitary hormone gene expression in clinically nonfunctioning pituitary adenomas using specific oligonucleotide probes for the messenger (m)RNAs encoding growth hormone, prolactin, ACTH, and the glycoprotein hormone subunits, alpha, luteinizing hormone (LH)beta, follicle-stimulating hormone (FSH)beta, and thyroid-stimulating hormone (TSH)beta. Expression of one or more of the anterior pituitary hormone genes was found in 12/14 (86%) of the patients with clinically classified nonfunctioning adenomas. Expression of one or more of the glycoprotein hormone genes (alpha, LH beta, FSH beta, TSH beta) was identified most commonly (79%) with expression of multiple beta-subunit genes in many cases. Expression of alpha-subunit mRNA was found in each of the adenomas from patients expressing one of the beta-subunit mRNAs and in three patients with no detectable beta-subunit mRNA. Although FSH beta and LH beta mRNAs were found with similar frequencies in nonfunctioning adenomas, expression of FSH beta mRNA was generally much more abundant. TSH beta mRNA was detected in only one adenoma. The levels of glycoprotein hormone subunit mRNAs were variable in different adenomas, but the lengths of the mRNAs and transcriptional start sites for the alpha- and beta-subunit genes were the same in the pituitary adenomas and in normal pituitary. Growth hormone and prolactin gene expression were not observed in the nonfunctioning adenomas, but ACTH mRNA was found in a single case. Immunohistochemistry of the adenomas confirmed production of one or more pituitary hormones in 13/14 (93%) nonfunctioning tumors, with a distribution of hormone production similar to that of the hormone mRNAs. These data indicate that pituitary adenomas originating from cells producing glycoprotein hormones are common, but are difficult to recognize clinically because of the absence of characteristic endocrine syndromes and defective hormone biosynthesis and secretion.

Adenoma↗

Luteinizing hormone-secreting pituitary tumor: biosynthetic characterization and clinical studies.

Although gonadotropin-secreting pituitary adenomas are increasingly recognized, tumors secreting only LH are rare. Since gonadotropin production by pituitary adenomas may reflect imbalanced glycoprotein biosynthesis, we studied tumor LH and subunit biosynthesis and secretion in a patient with a LH- and alpha-subunit-producing pituitary tumor. Northern blot analysis of RNA from the tumor revealed the presence of mRNAs encoding both alpha- and beta-subunits of LH with a marked excess of the mRNA encoding LH beta. Analysis of tumor extracts by gel filtration chromatography confirmed an excess of free LH beta relative to free alpha-subunit. Clinical studies demonstrated that the secretion of LH and alpha-subunit by the tumor increased in response to the acute administration of LHRH (100 micrograms, iv) and decreased during a 4-h dopamine infusion (4 micrograms/kg X min). During a 4-week course of LHRH analog (D-Trp6-Pro9-NEt-LHRH) administration, given as a daily sc dose (8 micrograms/kg X day), serum LH and alpha-subunit concentrations increased 7- and 3-fold, respectively, consistent with a chronic agonist effect. Chronic administration of bromocriptine resulted in reduction of serum LH and alpha-subunit levels to normal.

Adenoma↗

Lymphocytic adenohypophysitis of pregnancy with complete recovery.

A case of lymphocytic adenohypophysitis in a postpartum woman who became symptomatic during her 8th month of pregnancy is presented. The clinical presentation, endocrine findings, pathological findings, and operative management are discussed. Transient hypopituitarism is documented. Unlike most previously published cases, this woman had complete recovery of anterior pituitary function.

Adult↗

Hormone production in clinically nonfunctioning pituitary adenomas.

Pituitary tumors in which no excess hormone secretion can be identified clinically have been considered as nonfunctioning or null-cell adenomas. Immunocytochemical data presented here suggest that many of these tumors contain subunits of the glycoprotein hormones. Of 160 patients referred for pituitary surgery, 37 (23%) had no evidence of excess hormone secretion on preoperative endocrine evaluation. Immunocytochemical staining of these tumors was carried out using antibodies specific for prolactin, growth hormone, adrenocorticotropic hormone, the beta subunits of luteinizing hormone (beta-LH), follicle-stimulating hormone (beta-FSH), and thyroid-stimulating hormone (beta-TSH), and the alpha subunit. One or more of these pituitary hormones were detected in 73% of cases. The alpha and beta subunits were detected most frequently, being found in 68% of cases; 27% had staining for one or more beta subunits and 37.9% had staining for both alpha and beta subunits. The incidence was: beta-FSH in 58%, beta-LH in 47%, beta-TSH in 33%, and the alpha subunit in 42%. Staining for multiple glycoprotein hormones was common (52%), and mixed glycoprotein hormones and prolactin cell types were found in 16% of cases. These data suggest that most apparently nonfunctioning pituitary tumors contain immunoreactive hormones and the majority of these are subunits of the glycoprotein hormones. Since the glycoprotein hormone beta subunits must combine with the alpha subunit to produce biologically active hormones, the production of the subunits alone may not have endocrine manifestations.

Adenoma↗

Clinically silent hypersecretion of growth hormone in patients with pituitary tumors.

Hypersecretion of growth hormone (GH) was found in three women aged 25 to 35 years old, with somatotroph adenomas without clinical stigmata of acromegaly. The patients had previously been diagnosed as having nonfunctioning pituitary macroadenomas, with extrasellar extension. Concentrations of GH were elevated preoperatively in all subjects and could not be suppressed during oral glucose tolerance testing. Somatomedin-C concentrations were elevated in two patients. Immunocytochemical studies of surgically obtained tumor tissue demonstrated sparse positive staining for GH in all subjects. Gel-chromatographic analysis of serum and tumor tissue samples demonstrated that the immunoactive GH was authentic GH. On pathological examination, the tumor was cellular in all cases, consisting of partly acidophilic and partly chromophobic cells. Electron microscopic analysis of one tumor showed a cell composition not previously described. These studies further characterize GH hypersecretion in a subset of patients with clinically nonfunctioning pituitary macroadenomas.

Adenoma↗

Osteoporosis in men with idiopathic hypogonadotropic hypogonadism.

To assess the effect of testosterone deficiency on skeletal integrity in men, we determined bone density in 23 hypogonadal men with isolated gonadotropin-releasing hormone deficiency and compared those values with ones from controls. Cortical bone density, as assessed by single-photon absorptiometry of the nondominant radius, ranged from 0.57 to 0.86 g/cm2 (mean +/- SE, 0.71 +/- 0.02) in patients with fused epiphyses and from 0.57 to 0.67 g/cm2 (mean, 0.61 +/- 0.01) in patients with open epiphyses, both of which were significantly (p less than 0.001) lower than normal. Spinal trabecular bone density, as assessed by computed tomography, was similarly decreased (p less than 0.0001) and ranged from 42 to 177 mg K2HPO4/cm3 (mean, 112 +/- 7). Cortical bone density was at least 2 SD below normal in 16 of 23 men, and 8 men had spinal bone densities below the fracture threshold of 80 to 100 mg K2HPO4/cm3. Osteopenia was equally severe in men with immature and mature bone ages, suggesting that abnormal bone development plays an important role in the osteopenia of men with idiopathic hypogonadotropic hypogonadism.

Adult↗

Nonsecreting pituitary tumors.

Nonfunctioning pituitary adenomas represent approximately 25 per cent of all clinically apparent pituitary tumors. The tumors are usually macroadenomas and present with symptoms caused by mass effect or hypopituitarism. In addition to structural studies and assessment of pituitary hormone function, all patients with clinically nonfunctioning tumors should have an alpha-subunit determination. High normal or elevated gonadotropins in this setting are suspicious for an underlying gonadotroph adenoma. Alpha subunit, LH-beta, and FSH-beta can be measured in the serum of some patients with nonfunctioning adenomas. Other groups of patients may have tumors in which defects in hormone biosynthesis or processing prevent detectable hormone hypersecretion, or no hormones are produced. The majority of nonfunctioning adenomas have evidence of gonadotropin or glycoprotein hormone subunit production when studied in vitro. An additional tumor group has evidence of ACTH production without biochemical hypercortisolism. Transsphenoidal decompression is the treatment of choice for patients with nonfunctioning adenomas. Pituitary function may improve following surgery in a subset of patients. Postoperative conventional radiotherapy is recommended when there is evidence of residual tumor and/or extensive extrasellar extension preoperatively.

Adenoma↗

Increase in bone mass after treatment of hyperprolactinemic amenorrhea.

Hyperprolactinemia occurs in 25 to 30 percent of young women with amenorrhea, and this condition is known to be associated with osteopenia. To determine whether the osteopenia is affected by treatment of hyperprolactinemia, we studied 32 women with hyperprolactinemic amenorrhea prospectively for 12 to 72 months to investigate the effects of sustained hyperprolactinemia or return of gonadal function on bone mass. We studied 18 patients using direct photon absorptiometry before and after normalization of serum prolactin levels. Initial bone densities ranged from 0.55 to 0.77 g per square centimeter (mean +/- 1 SD, 0.64 +/- 0.05)--densities significantly lower (P less than 0.001) than those of controls (0.71 +/- 0.04 g per square centimeter). After therapy, bone density increased significantly (P less than 0.001), to 0.67 +/- 0.05 g per square centimeter, but remained lower (P less than 0.05) than normal. Fourteen patients were followed without therapy. Their initial bone densities ranged from 0.62 to 0.75 g per square centimeter (mean, 0.67 +/- 0.04)--values significantly lower (P less than 0.02) than those in controls. There was a significant decrease (P less than 0.002) in bone density over time in this group. We conclude that (1) treatment of hyperprolactinemia increases bone mass in most amenorrheic women with osteopenia, (2) normalization of serum prolactin levels in such women is associated with prevention of bone loss, and (3) a subset of untreated women with hyperprolactinemia have progressive osteopenia, which could have adverse long-term health consequences.

Adult↗