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B Demiaux

Publications and source records attributed to B Demiaux.

7 recordsLinked to original sources

Measurement of serum osteocalcin with a human-specific two-site immunoradiometric assay.

We developed a sensitive and specific two-site radioimmunoassay (IRMA) for human osteocalcin using human osteocalcin as a standard and two monoclonal antibodies raised against human osteocalcin purified from human cortical bone, a solid-phase anti-25-37 region and a tracer anti-5-13 sequence of the molecule. A wide range of osteocalcin levels (up to 300 ng/ml) can be measured with a sensitivity of 0.4 ng/ml. The intra- and interassay coefficients of variation are less than 4 and 6%, respectively. The recovery of human osteocalcin from serum samples ranges from 96 to 103%. IRMA was linear for serial sample dilutions in a wide range of serum osteocalcin levels, even in patients with chronic renal failure on hemodialysis. Depletion of serum in intact osteocalcin demonstrated that IRMA detects, in addition to the intact peptide, a large N-terminal midregion fragment that represents about 50% of total osteocalcin levels in normals and patients with Paget's disease and up to 75% in patients with chronic renal failure. This large fragment, previously unrecognized because it cannot be distinguished from intact osteocalcin with gel filtration chromatography, is not generated in vitro by incubation of the serum up to 26 h. We measured osteocalcin in the serum of 309 healthy adults (180 men and 129 women, age range 20-95 years), 36 patients with Paget's disease, 12 patients with primary hyperparathyroidism, 70 patients with chronic renal failure on hemodialysis, and 10 patients on corticosteroid therapy, simultaneously with human IRMA and with a conventional radioimmunoassay (RIA) based on bovine reagents. A tight correlation (r = 0.889) was observed between the two assays in the normal population, but the values obtained with IRMA were about threefold higher (mean 23.3 +/- 10.5 versus 7.5 +/- 3.4 ng/ml) than those obtained with RIA. Reported as Z scores, that is, number of standard deviations from the predicted normal mean adjusted for sex and age, these two assays (IRMA and RIA) gave concordant results in patients with Paget's disease (4.05 +/- 6.21 versus 2.41 +/- 2.53), primary hyperparathyroidism (4.14 +/- 7.17 versus 2.13 +/- 2.28), chronic renal failure (25.32 +/- 24.49 versus 6.93 +/- 5.48), and glucocorticoid treatment (-1.48 +/- 0.78 versus -1.11 +/- 0.57). However, IRMA was more discriminant from controls for all these metabolic bone diseases because the absolute values of mean Z scores with IRMA were significantly higher than those obtained with the RIA (p < 0.05-0.0001).(ABSTRACT TRUNCATED AT 400 WORDS)

Adult↗

Serum osteocalcin is increased in patients with osteomalacia: correlations with biochemical and histomorphometric findings.

The synthesis of osteocalcin or bone gla protein by osteoblasts is markedly stimulated by 1,25-(OH)2D, a key hormone in the regulation of bone mineralization. The circulating levels of osteocalcin have been shown to reflect both the osteoid matrix production and the formation rate of mineralized bone in several metabolic bone diseases (osteoporosis, thyrotoxicosis, primary hyperparathyroidism) in which both mechanisms are tightly coupled because of the absence of mineralization defect. In this study, we measured in 12 patients (7 women, 5 men, 56 +/- 15 yr old) with untreated osteomalacia serum osteocalcin and vitamin D metabolites (25OHD and 1,25-(OH)2D). The results were correlated with biochemical and histomorphometric assessment of bone remodeling. Osteomalacia was due to vitamin D deficiency (5 cases), to vitamin D malabsorption (6 cases), and to hypophosphataemia in 1 case. When compared to control values, serum osteocalcin was increased in patients with osteomalacia (7.4 +/- 4 vs. 3.7 +/- 1.3 ng/mL; P less than 0.001) and was positively correlated with serum alkaline phosphatase (r = 0.65; P = 0.03) and negatively with 25 OHD (r = -0.61; P = 0.04). Serum osteocalcin was not correlated with 1,25-(OH)2D [r = -0.45; not significant (NS)] even after exclusion of the patient with hypophosphataemia. Serum osteocalcin was positively correlated with the osteoid volume and osteoid perimeter (r = 0.71 and 0.69 respectively; P less than 0.01) but not with any of the tetracycline-based parameter of bone mineralization at the tissue level (r ranging from -0.41 to +0.42, NS). Serum 25 OHD, but not 1,25-(OH)2D, was positively correlated with the mineralization rate (r = 0.59; P less than 0.05 and r = 0.54; NS). We conclude that in patients with osteomalacia, a condition which is characterized by an increased osteoid accumulation due to a decreased mineralization rate, the increased level of serum osteocalcin reflects the increased osteoid synthesis but not the mineralization defect. In this disease, serum osteocalcin is inversely correlated to the severity of vitamin D deficiency reflected by serum 25 OHD, but not to the serum levels of 1,25-(OH)2D.

Adult↗

[Giant thrombosed aneurysm of the left vertebral artery developing in the fourth ventricle].

A case of giant, thrombosed, non haemorrhagic aneurysm of the distal portion of the left vertebral artery is reported. The patient came to medical attention with an acute cervical pain after a minimal cervical traumatism and a diagnosis of torticollis from rheumatologic cause was made. In fact, a few weeks before, he had suffered three episodes of right homonymous hemianopsia. Subsequently, hiccup, vomiting, orthostatic dizziness with postural hypotension appeared, suggesting a medullary lesion. CT scan showed a round, heterogeneous high-density lesion near the fourth ventricle. Angiography was normal. MRI showed an oval mass in the fourth ventricle, between the medulla and the cerebellum. Surgery found an aneurysm of the end of the left vertebral artery.

Adult↗

[Osteocalcin (or bone gla-protein), a new biological marker for studying bone pathology].

Osteocalcin, also called bone gla-protein, is a bone matrix protein synthetized specifically by osteoblasts. It circulates in blood where it can be assayed by the radioimmune method. We measured osteocalcin serum levels in 169 adult controls and 161 patients with different disseminated or localized bone diseases. The normal concentration of 6.2 +/- 0.2 ng/ml increases significantly with age. Serum osteocalcin levels are considerably increased in renal osteodystrophy (114 +/- 23 ng/ml) and to a lesser degree in primary hyperparathyroidism (15.9 +/- 2.8 ng/ml) and Paget's disease (11.4 +/- 0.9 ng/ml), all diseases characterized by increased bone turnover. High levels are also encountered in osteomalacia (9.7 +/- 0.9 ng/ml). Conversely, serum osteocalcin levels are significantly decreased in patients under long-term corticosteroid therapy (4.3 +/- 0.5 ng/ml); they remain normal in patients with bone myeloma and bone metastases under treatment. Finally, osteocalcin is normal in patients with osteoporosis, but its level reflects that of bone turnover as evaluated by iliac bone biopsy. The circulating osteocalcin therefore is the first specific and sensitive marker for bone turnover. Serum osteocalcin measurements make it possible to evaluate the osteoblastic bone formation without biopsy and should provide information on the effectiveness of drugs acting on the bone-forming process.

Adrenal Cortex Hormones↗

Serum bone GLA-protein is not a sensitive marker of bone turnover in Paget's disease of bone.

Serum bone Gla-protein (sBGP) was measured in 32 patients with untreated Paget's disease of bone. Despite clinical and biological symptoms of active disease in all patients, sBGP was normal in 13/32 patients (41%). There was a striking discrepancy between the moderate increase of sBGP above normal values (11.4 +/- 4.5 vs 6.0 +/- 2.1 ng/ml) and the marked increase of both serum alkaline phosphatase (sAP) and urinary hydroxyproline (uOHP). sBGP was weakly correlated with sAP (r = 0.50, p less than 0.01), uOHP (r = 0.48, p less than 0.01) and with the extension of the disease (r = 0.48, p less than 0.01). We conclude that sBGP is not a sensitive marker of bone turnover in patients with Paget's disease of bone, and should be interpreted with caution in this condition.

Alkaline Phosphatase↗

Serum bone gamma carboxyglutamic acid-containing protein in primary hyperparathyroidism and in malignant hypercalcemia. Comparison with bone histomorphometry.

Serum bone gamma-carboxyglutamic acid-containing (Gla) protein (sBGP), a sensitive and specific marker of bone turnover, was measured in 25 patients with primary hyperparathyroidism and in 24 patients with bone metastases with or without hypercalcemia. Despite similar levels of hypercalcemia, sBGP was increased in primary hyperparathyroidism (14.2 +/- 9.6 ng/ml, P less than 0.001), was decreased in malignant hypercalcemia (3.1 +/- 2.8 ng/ml, P less than 0.001), and was normal in patients with bone metastases without hypercalcemia (6.6 +/- 2.7 ng/ml). In primary hyperparathyroidism, sBGP was correlated with serum immuno-reactive parathyroid hormone (r = 0.90), calcium (r = 0.73), and with the adenoma weight (r = 0.79). After parathyroidectomy, sBGP slowly returned to normal values within 2-6 mo, suggesting that sBGP reflects increased bone turnover rather than a direct effect of parathyroid hormone on BGP synthesis at the cell level. An iliac crest biopsy was performed in 11 patients with primary hyperparathyroidism and in 9 cancer patients in a noninvaded area. sBGP was significantly correlated with all parameters reflecting bone formation but not with bone resorption. Patients with bone metastases were analyzed according to the presence or the absence of hypercalcemia. In contrast to normocalcemic patients who had normal sBGP, hypercalcemic patients had decreased sBGP (P less than 0.001) and a lower bone formation at the cellular level (P less than 0.05). Thus, biochemical and histological data suggest that an unknown humoral factor might be responsible for this uncoupling between increased resorption and decreased formation. This uncoupling, rather than local release of calcium by the metastatic process, might be responsible for hypercalcemia in patients with bone metastases.

Adenocarcinoma↗