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Biomedical subjects

A Grauer

Publications and source records attributed to A Grauer.

At least 37 records · Page 2Linked to original sources

Clinical significance of antibodies against calcitonin.

Calcitonin (CT) inhibits osteoclast-mediated bone resorption and is being used to treat Paget's disease of bone, hypercalcemia of malignancy and postmenopausal osteoporosis. The formation of antibodies against heterologuous calcitonins like salmon calcitonin (sCT) is common and occurs in 40-70% of the patients treated for more than 4 months. Not all of these patients, however, develop a secondary resistance to sCT, therefore the clinical significance of sCT antibodies is discussed controversially. In vivo and in vitro approaches demonstrate a neutralizing effect in 35 to 60% of the patient sera with antibodies against sCT. These neutralizing antibodies appear to explain most cases of clinically relevant secondary resistance to sCT treatment, which occurs in 25-45% of the patients after treatment periods of 6 months and longer. A positive treatment response to human CT after development of secondary resistance to sCT proves the diagnosis of antibody related resistance. Few cases develop secondary resistance in the absence of sCT binding antibodies, the mechanism of this phenomenon is unclear. Antibody related resistance is a significant problem in long term treatment with sCT. Especially in conditions like postmenopausal osteoporosis, where no readily accessable marker of treatment response is available, the development of sCT antibodies and their possible neutralizing effect has to be considered.

Animals↗

Evaluation of somatostatin as a plasma tumor marker in medullary thyroid carcinoma.

Somatostatin (SRIF) immunoreactivity has been frequently reported in tumor tissues of cell types, belonging to the APUD system, including medullary thyroid carcinoma (MTC). However, the value of SRIF as a plasma tumor marker for MTC is controversial. We have measured SRIF plasma levels in 35 patients with different stages of MTC to evaluate the use of SRIF as a plasma tumor marker compared to the current "gold standard" calcitonin (CT). The median SRIF value in healthy controls was 36.5 pg/mL, the upper limit of normal was defined at the controls. The median value was 28 pg/mL (p = 0.37, Mann-Whitney U test). Five patients in the control group and three in the MTC group had SRIF levels that exceed the 95th percentile. SRIF and CT levels correlated only weakly (0.38), as determined by the Spearman rank order correlation test. Pentagastrin stimulation led to a diagnostic increase in SRIF levels in only one of five MTC patients. During selective venous catheterization, diagnostic gradients for CT, allowing tumor localization, could be demonstrated, whereas measurement of SRIF levels did not aid in tumor detection. Although SRIF immunostaining may be valuable as an additional marker in the histochemical diagnosis of MTC, SRIF has no value as a plasma tumor marker in the diagnosis of this disease.

Adult↗

1,25-Dihydroxyvitamin D3 stimulates growth and inhibits calcitonin secretion in a human C cell carcinoma cell line.

1,25-Dihydroxyvitamin D3 (1,25D3), calcitonin (CT) and parathyroid hormone are the major calcium-regulating hormones. In addition, 1,25D3 has been reported to be a modulator of cell growth and differentiation in many tissues. Recently, a suppressive effect of 1,25D3 on CT secretion and synthesis in C cells was demonstrated in vivo and also in vitro, but there are no data about its effects on thyroid C cell growth. We investigated the effects of 1,25D3 on basal and stimulated CT secretion and on [3H]thymidine incorporation, using a human medullary thyroid carcinoma cell line (TT cells). After a 4-day exposure to 1,25D3, TT cells showed a dose-dependent inhibition of basal CT secretion (64% of the value for the control group at 100 nM 1,25D3). Calcium (3 mM) plus K+ (50 mM) greatly increased CT secretion in both the control and vitamin D-treated groups. However, in the cells preincubated with 1,25D3 the stimulated CT levels were less than observed in controls. A dose-dependent increase in [3H]thymidine incorporation (200% of the value for the control group at 100 nM 1,25D3) and in cell number (150% of the value for the control group at 100 nM 1,25D3 after 72 h) was observed in the groups treated with 1,25D3. 24,25D3 had no effect on CT secretion or cell growth compared to the control group. These data show that 1,25D3 decreased basal and Ca(2+)-stimulated CT secretion, a specialized function of these cells, and stimulated their growth. Hence, in contrast to its effects on other cell lines, 1,25D3 appears to induce a dedifferentiation on TT cells.

Calcitonin↗

[Neutralizing antibodies against salmon calcitonin. The cause of a treatment failure in Paget's disease].

A 72-year-old woman with Paget's disease of the femur (increasing curvature of the femur in the last 20 years, lately with ever more pain on walking) was at first treated with salmon calcitonin, daily 400 IU nasally, for 2 years. As a result, alkaline phosphatase (AP) concentration fell from initially 703 U/l, to 401 U/l after 7 months' treatment. An increase in AP concentration was first noted after 10 months of treatment, rising after 24 months to 688 U/l. The symptoms, initially having responded rather well to therapy, markedly progressed. In parallel, titres were recorded for binding (maximally 1:100) and neutralizing antibodies (neutralizing action maximally 75%) against salmon calcitonin. Because of the development of secondary resistance to salmon calcitonin the medication was changed to human calcitonin (100 IU daily, subcutaneously). This again resulted in a fall of the AP concentration (to 319 U/l), which remained essentially unchanged (401 U/l) over a period of 17 months on 100 IU human calcitonin three times weekly.

Aged↗

Differential effects of 1,25-dihydroxyvitamin D3 on cell proliferation and calcitonin gene expression.

1,25-Dihydroxyvitamin D3 (1,25D3) inhibits cell growth and induces differentiation in many cell systems by inhibition of c-myc gene expression. In the human medullary thyroid carcinoma cell line (TT), c-myc gene expression appears to be closely related to cell proliferation and differentiation. TT cells are also a well known target system for 1,25D3, which inhibits calcitonin (CT) gene expression in these cells. So far, no direct cis-acting vitamin D-responsive element could be identified in the promoter region of the CT gene. We, therefore, investigated potential indirect mechanisms of 1,25D3-mediated CT gene expression by examining the hormone's effects on proliferation. In contrast to its well established antiproliferative action in other cell systems, addition of 1,25D3 to TT cells led to a 2.3-fold stimulation of DNA synthesis, which was maximal after 48 h and was preceded by a 4.8-fold increase in c-myc gene expression. c-Myc antisense DNA oligomers abolished the proliferative effect of 1,25D3, but not the latter's inhibition of CT gene expression. Here we present evidence that activation of c-myc gene expression mediates 1,25D3-stimulated TT cell proliferation, but not the 1,25D3-induced inhibition of CT gene expression.

Base Sequence↗

Elevated thrombomodulin plasma levels as a result of endothelial involvement in plasmodium falciparum malaria.

We used thrombomodulin (TM) to assess the participation of the vascular endothelium in human Plasmodium falciparum (P.F.) malaria. Before therapy TM plasma levels were elevated in P.F. malaria and fell to normal values during therapy. Parasitemia, TNF alpha, elastase and TAT levels correlated directly with TM. Elevated TM levels can not be explained by increased synthesis, since incubating HUVEC with pretherapy serum of patients with P.F. malaria, but not reconvalescence serum, suppressed TM transcription. This was partially prevented by adding a TNF alpha neutralizing antibody to patient serum before incubation with HUVEC. However, TNF alpha does not release TM from cultured HUVEC in vitro. Coincubation of HUVEC with pretherapy serum together with neutrophils resulted in endothelial cell destruction, which could be partly prevented by a TNF alpha neutralizing antibody. Hence the increase of TM during P.F. malaria might reflect the concerted action of cytokines and neutrophils on HUVEC.

Antimalarials↗

Multiple endocrine neoplasia type 2. Clinical features and screening.

Prospective screening programs have changed the presenting clinical features of MEN 2, the association of medullary thyroid carcinoma, pheochromocytoma, and parathyroid disease. Currently, all manifestations of MEN 2 syndrome can be diagnosed at an early stage. Gene carrier status can be identified by characterization of specific mutations. Prospective screening for early medullary thyroid carcinoma by calcitonin testing and for pheochromocytoma by several techniques routinely permits identification of early manifestations.

Adrenal Gland Neoplasms↗

Development and validation of an assay to measure bioactivity of human calcitonin in vitro using T47D cell membranes.

We have developed a "test-tube" assay to determine the biological activity of synthetic preparations of human calcitonin (hCT). The method is based on the dose-dependent accumulation of cyclic AMP in cell membrane preparations on stimulation with CT. As an unlimited cell source, we used the clonal cell line T47D, which possesses functional CT receptor-adenylate cyclase complexes. Half-maximal stimulation was achieved with 40-200 nmol/liter hCT. The method was able to precisely quantify the relative potencies of various hCT preparations. The intraassay and interassay coefficients of variation were 3.0 and 5.6%, respectively. The analytical performance, as estimated by additional recovery and specificity studies, was better than or comparable to the established in vivo rat hypocalcemia assay. Results obtained with these two methods were closely correlated (r = 0.83, P < 0.01). However, the in vitro membrane system allowed a higher throughput of samples, less preparation time, and better standardization and transportability of the assay, as large-scale membrane preparations were stable for at least 12 months in liquid nitrogen. This new in vitro membrane bioassay provides a convenient alternative to the currently performed in vivo rat hypocalcemia bioassays.

Animals↗

Formation of neutralizing antibodies after treatment with human calcitonin.

PURPOSE: Calcitonin is used for the treatment of Paget's disease of bone, hypercalcemia, and postmenopausal osteoporosis. The formation of antibodies against heterologous calcitonins, such as salmon calcitonin (sCT), has been described frequently. Neutralizing effects of these antibodies have been demonstrated in many cases. As far as antibody formation against human calcitonin (hCT) is concerned, only a single case has been reported in the literature; however, investigations concerning the biologic activity of the antibodies were not performed. We have now assessed the sera of 33 patients treated with hCT for postmenopausal osteoporosis for a period of at least 12 months to evaluate the occurrence of hCT-binding and hCT-neutralizing antibodies. PATIENTS AND METHODS: Binding antibodies were detected by incubation of patient sera with 125I-labeled hCT; neutralizing activity was assessed in an in vitro bioassay that measured the impairment of the hCT-induced cyclic adenosine monophosphate (cAMP) formation in the human breast cancer cell line T47D. RESULTS: Prior to hCT treatment, none of the patients showed evidence of the presence of either binding or neutralizing antibodies. During the course of treatment, binding antibodies occurred in a single patient. These antibodies had a neutralizing activity characterized by 15% impairment of cAMP formation after 6 months and 27% impairment after 12 months of treatment compared with pretreatment control values. The neutralizing effect observed in this particular patient was comparatively mild compared with the effects seen after the formation of neutralizing antibodies against sCT, so major clinical sequelae were not expected in this patient. This may be due to the lower antigenicity of hCT as compared with sCT. CONCLUSION: Although antibody formation against hCT is a rare phenomenon, we nonetheless recommend monitoring of postmenopausal osteoporosis patients treated with sCT or hCT for neutralizing antibody formation in order to evaluate the therapeutic effect of treatment.

Aged↗

Neutralizing antibodies against calcitonin.

The use of calcitonin (CT) is established as a treatment of Paget's disease of bone and postmenopausal osteoporosis (PMO). Salmon calcitonin (sCT), which differs in 14 of the 32 amino acids from human calcitonin, has found a wider distribution world wide, although antibody formation against sCT has been reported in more than 70% of the patients on continuous sCT treatment. The clinical significance of these antibodies has been discussed controversially, because the occurrence of antibodies is not always associated with the development of secondary resistance. Using an in vitro bioassay, based on the CT-mediated increase of the cyclic AMP (cAMP) production of the human breast cancer cell line T 47 D we could identify a neutralizing activity against sCT in the serum of a subset of patients with formation of antibodies against sCT which was related to the development of secondary resistance. Antibody formation against human calcitonin (hCT) has been reported only once before. Binding and neutralizing antibodies were now observed in 1 of 33 patients with PMO treated with hCT. Due to a low neutralizing activity, clinical sequelae were not to be expected in this patient. The formation of neutralizing antibodies against calcitonin is common after treatment with salmon but a rare phenomenon after treatment with human calcitonin. We recommend monitoring of patients with postmenopausal osteoporosis and Paget's disease of bone on long term treatment with sCT or hCT for neutralizing antibody formation in order to evaluate the therapeutic effect of treatment.

Antibodies↗

Regulation of calcitonin gene expression by hypocalcemia, hypercalcemia, and vitamin D in the rat.

High calcium leads to the secretion of calcitonin, and the administration of 1,25-dihydroxyvitamin D3 leads to a decreased transcription of the calcitonin gene. We now report the effect of chronic hypercalcemia, hypocalcemia, and vitamin D deficiency on calcitonin gene expression in vivo in the rat. Hypercalcemia was created by calcium infusions for 6 h, a high-calcium diet given to weanling rats for 3 weeks, and the transplantation of the Walker carcinosarcoma 256 cell line. Despite serum calcium as high as 22 mg/dl, there was no difference in calcitonin mRNA levels among these rats. The control genes studied, actin and somatostatin, which is specific for C cells in the thyroparathyroid tissue, also did not differ among the different groups of rats. Injected 1,25-(OH)2D3 decreased calcitonin mRNA levels at 6 h, as previously reported. Hypocalcemia, created by feeding diets deficient in calcium and vitamin D to weanling rats for 3 weeks, had no effect on calcitonin mRNA levels, in contrast to the large increases in PTH mRNA levels. These results demonstrate that calcitonin gene expression in vivo in the rat is regulated by administered 1,25-(OH)2D3 but not by changes in serum calcium.

Actins↗

A new in vitro bioassay for human calcitonin: validation and comparison to the rat hypocalcemia bioassay.

The human breast cancer cell line T 47 D expresses calcitonin (CT) receptors that are coupled to adenylate cyclase and which reveal a dose-dependent cyclic AMP response to CT. We used this model to establish an in vitro bioassay for synthetic human CT (hCT) preparations to overcome some of the obstacles of the standard rat hypocalcemia in vivo bioassay. The detection limit of the in vitro bioassay was 1 x 10(-10) M hCT (EC 50: 8.7 pM +/- 26%) compared to 7.3 x 10(-9) M (EC 50: 7.2 microM +/- 32%) for the in vivo bioassay. The relative potencies of test preparations revealed a good correlation (r = 0.89) and several hCT-related substances produced comparable results when tested by the two methods. The standard deviations of precision and accuracy, however, were significantly smaller (P less than 0.05) for the in vitro bioassay. According to these data the T 47 D in vitro bioassay is more sensitive, superior in precision and accuracy, and comparable in specificity to the rat hypocalcemia bioassay.

Adenylyl Cyclases↗