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J J Body

Publications and source records attributed to J J Body.

At least 127 records · Page 7Linked to original sources

A subpopulation of immunoglobulin G in man selectively interacts with the hormone-binding sites of estrogen receptors.

Since the binding sites of hormone receptors may be similar to those of antihormone antibodies, we wondered whether the former might not be recognized by the idiotypic network. To test this hypothesis we investigated the interaction of plasma immunoglobulin G (IgG) with the binding sites of estrogen receptors (ER) from uterine or mammary tissue. Using ER isolated from uterine cytosol we found that IgG from normal subjects shifted the position of purified receptor in sucrose gradients and displaced [3H]estradiol (E2) from its receptor-binding sites. Equilibrium studies revealed competitive inhibition by IgG of E2 binding to the ER. IgG isolated by adsorption on a rat uterine cytosol-Blue B matrix gel column also bound to the ER, and this binding was inhibited by an excess of E2. After an 18-h exposure of MCF-7 mammary carcinoma cells in monolayer culture to IgG (2 mg/ml), Scatchard analysis of [3H]E2 binding revealed a reproducible decrease in the available receptor sites from 2.52 +/- 0.56 (+/- SEM) to 0.68 +/- 0.48 fmol/microgram DNA (n = 10). This effect was selective, since enriched anti-ER IgG obtained by adsorption on purified receptor was 20 times more potent than total IgG, whereas IgG identically prepared but not retained by affinity chromatography had no activity. Exposure of the cells to the IgG for 45 min also revealed, as with isolated ER, specific competition of the IgG with E2 for the E2-binding sites; the Kd increased from 10.5 +/- 1.6 to 27.5 +/- 7.2 X 10(-11) M (n = 7). Enriched antireceptor IgG was a 20 times more effective competitor, and the IgG not retained by affinity chromatography had no activity. In conclusion, our observations indicate the presence of ER on the cell surface, interaction of ER with IgG from plasma of normal subjects, and competitive antagonism of these IgG with E2 uptake leading to a decrease in effective ER concentrations.

Binding, Competitive↗

Secretion and metabolism of monomeric human calcitonin: effects of age, sex, and thyroid damage.

Some data suggest that human calcitonin (CT) secretion is lower in women than in men, decreases with age and the menopause, and is absent in thyroidectomized persons. To further explore CT secretory physiology, we have studied basal and calcium-stimulated plasma immunoreactive CT (iCT) and silica-extractable monomeric CT concentrations in 148 healthy volunteers and 33 patients with a history of thyroid damage (total or subtotal thyroidectomy, radioiodine treatment for thyrotoxicosis). Both whole-plasma iCT and extractable CT levels were lower basally and after calcium infusion in women than in men, basal levels being reduced about 50% and calcium-stimulated values about 75% from those of male subjects. There were no significant changes in basal iCT or extractable CT concentrations with age, and CT secretory capacity (CT response to calcium infusion) likewise did not change with age. Infusion of monomeric CT to constant concentration in 27 persons permitted estimates of CT metabolic clearance rates (MCRs) and secretion rates (SRs). Calculated MCRs of about 9 ml/min.kg-1 (persons aged 21-30 yr) and 6 ml/min.kg-1 (persons aged 54-70 yr) were in good agreement with published data, and did not differ between the sexes. SRs were dependent upon the assay method used to estimate basal plasma CT concentrations, being highest when whole-plasma iCT values were used. Based on estimates of plasma monomeric CT from the silica extraction procedure, the SR of CT was 59 +/- 6 (SE) ng/d.kg-1 in men, and 22 +/- 3 ng/d.kg-1 in women. Thyroid damage reduced, but did not abolish, apparent CT immunoreactivity, even in silica extracts of plasma. However, all subsets of thyroid-damaged patients had absent-to-markedly-impaired CT secretion in response to calcium infusion. We conclude that CT secretion is substantially lower both basally and after stimulation in women than in men, and that this difference in CT immunoreactivity probably reflects differences in circulating CT bioactivity. The sex difference in plasma CT concentrations probably results from lower rates of CT secretion in women, not increased MCR. There is no age-related decrease of plasma CT concentrations (or CT secretory reserve), calling into question the concept that a progressive deficiency of CT is partly responsible for age-related ("senile") osteoporosis. Surgical or radiation damage to the thyroid gland commonly abolishes C-cell response to calcium; such CT-deficient patients form a population suitable for determining whether or not reduced CT secretion can impair skeletal homeostasis.

Adolescent↗

Serum osteocalcin (BGP) in tumor-associated hypercalcemia.

Serum osteocalcin (BGP) is a new marker of bone turnover that reportedly evaluates bone formation. Thus, its measurement could assess the bone formation rate in tumor-associated hypercalcemia. We measured concentrations of BGP and other parameters of bone metabolism in 54 untreated hypercalcemic cancer patients as compared to 109 healthy subjects. Primary tumor sites were breast (19), lung (11), head and neck (6), multiple myeloma (3), kidney (2), and various (11) or multiple (2). Mean BGP levels were higher in the hypercalcemic subjects, 4.6 +/- 0.4 (SEM) ng/ml, than in the normal subjects, 3.6 +/- 0.1 ng/ml (p less than .05), and were normalized in the 22 patients who could be reevaluated after successful treatment of hypercalcemia with intravenous aminohydroxypropylidene diphosphonate (APD). There was no correlation of BGP levels with age, sex, or renal function. Compared with the Gaussian distribution in the normal subjects, there was a considerable scatter of the data in hypercalcemic patients, suggesting the existence of defined subgroups with abnormally low or abnormally high values. However, we found no significant relationship of BGP concentrations with tumor site or histology or with bone metastatic involvement. We found also no significant correlation between concentrations of serum BGP and total or ionized calcium, alkaline phosphatase, parameters of bone resorption, and indices of parathyroid function. In summary, serum BGP levels were slightly elevated in tumor-associated hypercalcemia and were normalized after successful treatment of hypercalcemia. More importantly, BGP concentrations varied widely even in the subgroups of patients with hypercalcemia accompanying massive bone metastatic involvement or in the patients without detectable skeletal metastases.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

Treatment of malignancy-associated hypercalcemia with intravenous aminohydroxypropylidene diphosphonate.

Treatment of malignancy-associated hypercalcemia remains unsatisfactory. We have prospectively treated 26 consecutive hypercalcemic cancer patients with intravenous (IV) aminohydroxypropylidene diphosphonate (APD). The drug was administered daily as a 15-mg two-hour IV infusion until both serum and urinary calcium had been normalized for 48 hours. Twenty-four patients were fully evaluable (eight head and neck tumors, seven breast cancers, three epidermoid tumors of the lung, and six miscellaneous neoplasms). Whereas rehydration had only inconsistent effects, APD normalized serum calcium in all patients after a mean of three daily doses: serum calcium decreased from 13.3 +/- 0.4 mg/dL (mean +/- SEM) before APD to 8.0 +/- 0.1 mg/dL at the end of treatment. Ionized calcium declined in parallel to total calcium. APD was as effective in hypercalcemia due to bone metastases as in paraneoplastic hypercalcemia. The drug was tolerated without toxicity and had a prolonged effect: serum calcium remained normal during 3+ weeks (1 + to 8 +) in 17 patients who did not receive or did not respond to antitumoral treatment. APD normalized serum calcium by inhibiting bone resorption, as evidenced by the dramatic decrease in urinary excretion of calcium and hydroxyproline. Inhibition of bone resorption was probably also responsible for the decrease in serum phosphorus from 2.9 +/- 0.2 to 2.0 +/- 0.1 mg/dL. In summary, IV APD constitutes a major advance in the treatment of malignancy-associated hypercalcemia: it is very effective, well tolerated, and has a prolonged efficacy.

Adult↗

Calcitonin deficiency in primary hypothyroidism.

The relative lack of sensitivity and specificity of current assays for plasma calcitonin (CT) have made it difficult to study possible CT deficiency conditions. Using a new extraction method that considerably improves the sensitivity of the assay for CT monomer, CT levels were measured before and after a short calcium (Ca) stimulation test (2 mg Ca/kg over 5 min) to determine C-cell secretory reserve in women with autoimmune primary hypothyroidism and normal women. Mean basal plasma CT concentrations were lower in the hypothyroid women [0.9 +/- 0.1 (+/- SEM) pg/ml] than in the normal women (1.5 +/- 0.2 pg/ml; P less than 0.01). Serum Ca increased similarly in both groups, but postinfusion CT levels were lower in the women with primary hypothyroidism (3.8 +/- 1.3 pg/ml) than in normal women (15.9 +/- 3.0 pg/ml; P less than 0.001). The functional thyroid status at the time of the study did not influence CT levels; both hypothyroid patients (n = 10) and patients who were euthyroid during T4 treatment (n = 11) were CT deficient to the same extent. Unlike that in primary hypothyroidism, CT secretion was normal in four patients with hypothyroidism of pituitary origin. We conclude that the process that causes hypothyroidism in patients with autoimmune thyroid disease can also cause marked CT deficiency. This first demonstration of spontaneous CT deficiency in adults should contribute to the understanding of CT physiology; it also suggests that bone metabolism should be closely monitored during the treatment of primary hypothyroidism.

Calcitonin↗

Plasma calcitonin in primary hyperparathyroidism: failure of C-cell response to sustained hypercalcemia.

An acute increase in serum calcium stimulates calcitonin (CT) secretion, but the effects of chronic hypercalcemia are controversial. Histopathological studies have shown C-cell hyperplasia in primary hyperparathyroidism (1 degree HPT), although circulating levels of CT have been variously reported to be normal, elevated, or depressed. We reexamined this relationship using CT RIA in conjunction with a silica extraction technique that conveys improved sensitivity and specificity for monomeric CT. Nine men and seven women with surgically documented 1 degree HPT were studied preoperatively before and after a short calcium infusion (2 mg Ca/kg, for 5 min), as were 72 normal men and 76 normal women. Basal whole plasma immunoreactive CT and silica-extractable CT concentrations in 1 degree HPT were indistinguishable from normal, regardless of sex. In addition, the whole plasma and silica-extractable CT responses to calcium stimulation were normal or blunted in patients with 1 degree HPT. We conclude that hypercalcemia resulting from 1 degree HPT is not associated with augmented CT secretion in response to an iv calcium infusion.

Adult↗

Calcitonin secretion in postmenopausal osteoporosis.

Calcitonin deficiency has been implicated in the pathogenesis of accelerated bone loss, especially in postmenopausal osteoporosis. To investigate this issue, we studied 25 patients with untreated postmenopausal osteoporosis, 14 age-matched and sex-matched healthy controls (spinal bone mineral density greater than or equal to age-specific and sex-specific mean), and 5 women who had undergone total thyroidectomy. Each subject received an intravenous infusion of 2 mg of elemental calcium per kilogram of body weight over 5 minutes, to test the C-cell secretory reserve. We measured calcitonin by radioimmunoassay in whole plasma and in silica-cartridge extracts of plasma, the latter method providing greatly improved sensitivity and specificity for monomeric calcitonin. Basal immunoreactive calcitonin concentrations, whether measured in whole plasma or in extracts, were significantly higher in the subjects with osteoporosis (P less than 0.01) than in the healthy controls. The calcitonin secretory reserve, as assessed by calcium stimulation, was normal in the osteoporotic group but virtually absent in the thyroidectomy group. We conclude that postmenopausal osteoporosis is not associated with and does not result from calcitonin deficiency. On the contrary, excessive skeletal calcium release may stimulate calcitonin secretion in patients with the disorder.

Adult↗

Human chorionic gonadotropin-like substance in plasma of normal nonpregnant subjects and women with breast cancer.

To understand ectopic hormone secretion in cancer we compared the plasma concentrations of the hCG-like substance in normal nonpregnant subjects and in women with breast cancer. In 45 normal men the plasma concentrations did not vary with age (median, 5 pg/ml; range, less than 3-169) whereas in 45 normal women they increased after menopause (median, 48 pg/ml; range, less than 5 -569, n = 20, P less than 0.0001). In 56 women with breast cancer the plasma concentrations of the hCG-like substance after menopause were much higher than in normal women (median, 202 pg/ml; range, 14-1561; n = 35; P less than 0.001), with no abnormally high pituitary gonadotropin values and no relationship with the tumor burden (same median after mastectomy, 198 pg/ml; n = 21). This hCG-like substance was glycosylated and similar to standard hCG according to molecular size, ionic strength, and immunoreactivity. Our data are compatible with the following conclusions: 1) the plasma concentration of the hCG-like substance is normally very low but dependent on gonadal function in women. Its source might be the pituitary gland or peripheral tissues. 2) Its concentration is much increased in postmenopausal women with breast carcinoma. This increase is found with normal pituitary gonadotropin values and is independent of the tumor burden, suggesting it is of extrapituitary and nontumoral origin.

Breast Neoplasms↗

"Nonspecific" increases in plasma immunoreactive calcitonin in healthy individuals: discrimination from medullary thyroid carcinoma by a new extraction technique.

Occasional seemingly healthy individuals have above-normal concentrations of calcitonin-like immunoreactivity in their plasma, which can lead to mistaken diagnosis of thyroidal or other cancer. We measured immunoreactive calcitonin (CT) before and after extracting the plasma on columns of silica (to improve sensitivity and specificity of the assay for monomeric calcitonin) in five "healthy high-CT" men (I), five patients with known medullary thyroid carcinoma (II), and 30 normal controls (III). Median (and range) values (pg/mL = ng/L) for whole-plasma immunoreactive CT in these groups were, respectively, 379 (157-526), 429 (174-563), and 33 (less than 25-92). Dose-dilution curves for plasma samples from group I did not parallel the standard curve, in contrast to samples from the other two groups. Values for extractable CT from plasma from groups I and III, however, were indistinguishable, but remained significantly increased in group II. Infusions of Ca, 2 mg/kg body wt. in 5 min, produced the expected (normal) increases in extractable CT in group I. The occasional factor (or factors) in plasma of healthy persons that interferes in assays for CT is eliminated by the silica extraction method, and in this way such cases can be distinguished from cases of medullary thyroid carcinoma.

Adult↗

Radioimmunoassay of calcitonin in normal human plasma: problems, perspectives and prospects.

Radioimmunoassay of calcitonin in normal human plasma is hindered by immunochemical heterogeneity in plasma, variable susceptibility of antisera to non-specific factors, limited assay sensitivity, and other problems. Many controversial points in the literature arise from these difficulties. Measurement of calcitonin after various extraction procedures yields greater consistency of results. Recent advances in calcitonin assay technology offer the promise of measuring calcitonin monomer with sufficient sensitivity to permit studies of normal calcitonin physiology and of the hormone's role in human disease.

Animals↗