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Biomedical subjects

Z Bouizar

Publications and source records attributed to Z Bouizar.

At least 19 recordsLinked to original sources

Estrogen stimulates PTHrP but not PTH/PTHrP receptor gene expression in the kidney of ovariectomized rat.

The aim of the present study was to test the hypothesis that the decreased renal tubular reabsorption of calcium observed in estrogen deficiency is associated with a local regulation of either PTHrP or PTH/PTHrP receptor genes in the kidney. Rats were randomly sham-operated (S) or ovariectomized receiving either vehicle (OVX) or 4 microg E2/kg/day (OVX+E4) or 40 microg E2/kg/d (OVX+E40) during 14 days using alzet minipumps. Plasma PTH and calcium levels were lower in untreated OVX animals than in all other groups (P < 0.01). Plasma PTH was higher in OVX+E40 than in OVX+E4 (P < 0.05). PTHrP mRNA expression in the kidney was unaffected by ovariectomy but was increased in OVX+E40 (0.984 +/- 0.452 for PTHrP/GAPDH mRNAs expression vs. 0.213 +/- 0.078 in sham, P < 0.01). PTH/PTHrP receptor mRNA expression and the cAMP response of renal membranes to PTH were unaffected by ovariectomy and estrogen substitution. In conclusion, renal PTHrP and PTH/PTHrP receptor mRNAs are not modified by ovariectomy. However, 17beta-estradiol increases renal expression of PTHrP mRNA without evident changes in its receptor expression and function. This may help to explain the pharmacological action of estrogen in the kidney, especially how it prevents the renal leak of calcium in postmenopausal women.

Adenylyl Cyclases

Pamidronate corrects the down-regulation of the renal parathyroid hormone (PTH)/PTH-related peptide (PTHrP) receptor mRNA in rats bearing Walker tumors.

Human hypercalcemia of malignancy (HHM) is generally due to the release into the circulation of parathyroid hormone-related peptide (PTHrP). PTHrP stimulates osteoclastic bone resorption and renal calcium reabsorption through the activation of a receptor similar to that of PTH (PTH-R). However, there is scarce information about the PTH-R regulation in the setting of the hypercalcemia. In the present study, we assessed the molecular basis of renal PTH-R regulation in Walker tumor-bearing rats either treated or not by a bisphosphonate, pamidronate. Twenty-seven 6-week-old rats were randomly divided into three experimental groups: WC- APD- (9 control rats), WC+ APD- (9 Walker tumor-bearing rats), and WC+ APD+ (9 Walker tumor-bearing rats receiving 15 mg/kg/day of sodium pamidronate every day for seven days). Pamidronate induced a significant decrease in the mean tumor weight (9.3+/-0.8 vs 6.3+/-0.6 g). Seven days after the subcutaneous implantation of the Walker cells, plasma total calcium was 10.8+/-0.4, 16.8+/-0.6, and 12.9+/-0.6 mg/dl in WC- APD-, WC+ APD-, and WC+ APD+, respectively. Plasma PTHrP concentration was undetectable, 15.9+/-2.6, and 7.2+/-1.4 pmol/l, respectively. Bone histomorphometric results showed high resorption in WC+ APD-, which returned below the basal level of the WC- APD- with pamidronate treatment. Densitometric analysis of Northern blots revealed that the renal PTH-R mRNA expression in WC+ WPD- rats was a quarter of the levels in the WC- APD- and WC+ APD+ groups. WC+ APD- also had a decreased PTH-stimulated cAMP production in renal membranes. The PTH-R was expressed in the Walker tumor and it was not modified by pamidronate treatment. In conclusion, the expression of PTH-R receptor mRNA is significantly reduced in the kidney of rats bearing Walker carcinoma tumor. Its regulation is tissue-specific: pamidronate, which partially corrected the hypercalcemia and elevated circulating PTHrP, normalized the PTH-R mRNA expression in the kidney but not in the tumor.

Adenylyl Cyclases

Mitogenic and metabolic actions of epidermal growth factor on rat articular chondrocytes: modulation by fetal calf serum, transforming growth factor-beta, and tyrphostin.

The effects of human recombinant epidermal growth factor (EGF) on rat articular chondrocytes from humeral and femoral head cartilage of 21-day-old Wistar rats were analyzed. The cells were cultured under standard conditions as monolayers. Cell proliferation was studied by [3H]thymidine incorporation and determination of DNA content, proteoglycan synthesis by [35S]sulfate incorporation, and collagen synthesis by [3H]proline incorporation. The presence of specific receptors was confirmed by [125I]-EGF binding and that of EGF and EGF-receptor (EGF-R) mRNA by reverse transcription and the polymerase chain reaction. EGF (0.5-2.5 ng/ml) stimulated [3H]thymidine incorporation and increased DNA content of cultures. The effect was strongest when serum concentration was low (< or =1%) and was lost at high (> or =7.5%) serum concentrations. The EGF-induced effect on deoxynucleic acid synthesis was inhibited by transforming growth factor-beta and tyrphostin, a tyrosine kinase inhibitor that blocks the phosphorylation of tyrosine residues on EGF-R. Cultured rat articular chondrocytes possess a single class of high-affinity binding sites (Kd 0.18 nM). There were about 4.5 x 10(9) binding sites per microgram of DNA or about 37,800 binding sites per cell with 8.3 pg DNA per cell. Cultured cells contained EGF mRNA and EGF-R mRNA. Incubation of cells with EGF for 24 h decreased the EGF mRNA transcripts and increased the EGF-R mRNA levels. These findings suggest that EGF probably takes part in the regulation of chondrocyte activity under normal and presumably pathological conditions.

Animals

Parathyroid hormone-related protein in an esophageal squamous cell carcinoma with tumor-induced hypercalcemia.

Cancers from patients with tumor-induced hypercalcemia usually produce a circulating factor that mimics the parathyroid hormone activity, termed parathyroid hormone-related protein. Incidence of tumor-induced hypercalcemia appears to be high in patients with squamous cell carcinoma of the esophagus, and the presence of parathyroid hormone-related protein have been shown in some primary esophageal cancers. In the present study, we have investigated the presence of parathyroid hormone-related protein in a patient with metastasized squamous cell carcinoma of the esophagus complicated with tumor-induced hypercalcemia. Protein was searched by immunohistochemistry, and messenger RNA was investigated by reverse transcriptase-polymerase chain reaction and S1 nuclease assay. Both messenger RNA and protein were detected in hepatic metastases, whereas normal esophageal mucosa and primary cancer did not express detectable protein or messenger RNA using the S1 nuclease assay. Reverse transcriptase-polymerase chain reaction was positive in all these tissues, including normal esophageal mucosa. In conclusion, the present case suggests that tumor-induced hypercalcemia due to esophageal squamous cell carcinoma may be caused by parathyroid hormone-related protein mostly released by liver metastases.

Carcinoma, Squamous Cell

1,25 dihydroxyvitamin D and dexamethasone decrease in vivo Walker carcinoma growth, but not parathyroid hormone related protein secretion.

Parathyroid hormone related protein (PTHrP) is produced by several breast cancers. 1,25 dihydroxyvitamin D (1,25[OH]2D) and Dexamethasone (DEX) have been shown to decrease PTHrP mRNA expression in several cell lines. We therefore tested the in vivo effect of both steroids on PTHrP secretion and tumor development of the Walker carcinoma (WC). WC cells were injected subcutaneously in Fisher rats which were simultaneously treated with either vehicle, or 1,25(OH)2D (0.5 micrograms/kg/d) or DEX (2 mg/kg/d). After 7 days, tumor weight was significantly decreased in the 2 treated-groups as compared to the control group. Vehicle treated-rats developed hypercalcemia, which was also observed in rats treated with 1,25(OH)2D; by contrast, the plasma calcium was significantly decreased in the DEX-treated group compared to vehicle-treated rats. In a dose-effect experiment, this dose of 1,25(OH)2D induced marked hypercalcemia in rats not implanted with WC, but was required to decrease the tumor weight in implanted rats. In both 1,25(OH)2D and DEX-treated groups, plasma PTHrP levels were significantly decreased, but there was a similar correlation between PTHrP plasma level and tumor weight in the three groups. Indeed, the cytosolic PTHrP content/mg tumor was identical in the 3 groups. By contrast, the PTHrP/Actin mRNA in the tumor was significantly decreased in the 1,25(OH)2D group, comparatively to the vehicle and DEX groups. Our results show that Dexamethasone and 1,25(OH)2D decrease WC tumor development in vivo, but do not change the PTHrP secretion by the remaining tumor although steady state PTHrP mRNA content level is decreased by 1,25(OH)2D.

Animals

An isoform of the human calcitonin receptor is expressed in TT cells and in medullary carcinoma of the thyroid.

We amplified, using the polymerase chain reaction and calcitonin receptor (CTR) specific primers, RNA extracted from medullary thyroid carcinoma (MTC) and the derived TT cell line. Both secrete large amounts of calcitonin. Electrophoresis of amplification products revealed, in both cases, an ethidium bromide-stained band that hybridized to a CTR probe. Sequencing the band amplified from TT cells revealed an open reading frame identical to the sequence of H-CTR but lacking 16 amino acids in the first intracellular loop. This demonstrates the existence of an mRNA coding for a subtype of H-CTR which is expressed in TT cells and MTC.

Amino Acid Sequence

Polymerase chain reaction analysis of parathyroid hormone-related protein gene expression in breast cancer patients and occurrence of bone metastases.

Parathyroid hormone-related protein (PTHrP) is associated with the syndrome of humoral hypercalcemia of malignancy. A high incidence of positive staining for PTHrP is observed in breast cancer and positivity is more frequent in patients who develop bone metastases. We assessed the presence of PTHrP mRNA by using the polymerase chain reaction in 38 normocalcemic breast cancer patients with long-term follow-up (minimum, 5 years) selected for the presence or absence of later bone metastasis development. In all the patients except one, the PTHrP gene was expressed in the breast tumor. The level of amplified PTHrP complementary DNA was inversely related to age (P < 0.02) and positively related to the proportion of invaded nodes (P < 0.02) but was not related to the other usual prognostic factors. The level of PTHrP mRNA was not different between the group of patients without recurrence or metastases (n = 11) and the group of patients who later developed metastases in soft tissues (n = 10). By contrast, patients who subsequently developed bone metastases (n = 17) showed higher PTHrP gene expression than patients in the other two groups (P < 0.001). This study suggests that strong PTHrP gene expression in breast tumors is associated with the onset of bone metastases.

Adult

Transforming growth factor-beta enhances calcitonin-induced cyclic AMP production and the number of calcitonin receptors in long-term cultures of human umbilical cord blood monocytes in the presence of 1,25-dihydroxycholecalciferol.

Transforming growth factor-beta (TGF-beta) is a multifunctional polypeptide, abundant in bone, that regulates both proliferation and differentiation of a wide variety of cells, but its role in osteoclast differentiation remains controversial. We have recently shown that long-term cultures of human cord blood monocytes, in the presence of 1,25 dihydroxycholecalciferol (1,25-(OH)2D3), give rise to cells that express two markers of the osteoclast phenotype, namely, the vitronectin receptor (VNR) and the calcitonin receptor (CTR). TGF-beta enhanced the proportion of cells expressing the VNR. In the present study, we investigated the effect of TGF-beta on the expression of CTR in cord blood monocytes cultured during 3 weeks in the presence of 1,25-(OH)2D3. When added within the first 2 weeks of culture, TGF-beta (500 pg/ml) significantly decreased the cell protein content. TGF-beta alone did not stimulate basal cAMP production. The 10 nM-sCT-stimulated cAMP production was enhanced by increasing TGF-beta concentrations from 50 pg/ml to 1,000 pg/ml: for 500 pg/ml TGF-beta, it was 294 +/- 28% vs. 140 +/- 25% for control cultures (p less than 0.01). The sCT dose-response curves showed a higher cAMP production from 10(-9) M to 10(-7) M of sCT in the presence of 500 pg/ml TGF-beta than in control cultures. The increase was 325 +/- 36% in the presence of TGF-beta and 195 +/- 13% in the absence of TGF-beta, for 10(-7) M sCT (p less than 0.01). This effect of TGF-beta on cAMP production was not observed either when it was added to monocyte cultures the last day or 2 hours before the end of the culture or in MCF7, a human breast cancer cell line that expresses CTR. [125I]-sCT binding studies performed on confluent cells showed similar Kd in control and TGF-beta-treated cells. By contrast, the CTR number was significantly increased in the presence of TGF-beta: 6.1 +/- 2 x 10(4) receptors per cell in control cultures and 28.8 +/- 8.1 x 10(4) receptors per cell in TGF-beta-treated cultures (p less than 0.05). It is thus suggested that TGF-beta increases the number of CTR of these cells that have other features of preosteoclasts. The role of this cytokine on the process of osteoclast differentiation and in bone resorption is thus emphasized.

Autoradiography

Parathyroid hormone related protein (PTHrP) and breast cancer.

PTHrP, a newly characterized peptide is responsible for humoral hypercalcemia of malignancy in squamous cancers. It is also expressed by a variety of normal tissue and might have growth factor propriety. It is expressed by lactating breast and is frequently present in breast cancer. Although it is responsible for humoral hypercalcemia in an animal model of breast cancer its role in breast cancer hypercalcemia is still putative. The possibility that it might be one of the autocrine growth factors implicated in breast cancer cell proliferation has been suggested.

Animals

Increase in calcitonin mRNA levels in rats at high risk of C cell tumours is genetically determined.

C-cells tumours are frequent (50%) in old WAG/Rij rats. In comparison to the original Wistar strain, three month old WAG/Rij rats are characterized by higher calcitonin synthesis and secretion, in addition to a genetically transmitted loss of calcitonin binding sites in the outer renal medulla. In order to determine if the increase of calcitonin gene expression is also of genetic origin, we quantified calcitonin and its specific messenger in the thyroid glands of second generation (Wistar x WAG/Rij) hybrids. These parameters ranged from low Wistar like to higher WAG/Rij like values. The amount of calcitonin messenger in the thyroid was highly correlated to the release of the hormone in plasma elicited by a calcium challenge and inversely correlated with the number of its binding sites in the kidney. Our results suggest that an enhanced expression of the calcitonin gene is genetically transmitted, probably as a consequence of the mutation involved in the loss of renal calcitonin binding sites. It may represent the first event leading to malignancy.

Animals

Loss of calcitonin receptors: a genetically transmitted defect in rats with high incidence of C-cell tumors.

C-cell tumors (medullary thyroid carcinoma) occur in humans and several other mammalian species. This tumor develops spontaneously with a high incidence (50%) in old Wag/Rij (Wistar-derived strain) rats. We have recently shown that calcitonin binding sites, which are present in the Wistar rats, are lost from renal medulla of the Wag/Rij rats before they reach the age of 1 month. In the present work, we investigated the distribution of calcitonin binding sites in the kidneys of first and second generation hybrids of Wistar x Wag/Rij rats. The absence of calcitonin binding sites from the renal medullas of 25% of F2 hybrids indicates that the deficiency is inherited in a Mendelian fashion and opens the way to establishing inbred strains lacking renal medullary calcitonin binding sites.

Aging

Distribution of renal calcitonin binding sites in mammalian and nonmammalian vertebrates.

Calcitonin (CT), the hypocalcemic hypophosphatemic hormone, is present in many vertebrate species. The principal target organs for CT are, in mammals, kidney and bone, and in fish, bone and gill. We have investigated the presence of renal calcitonin binding sites in a fish (Salmo gairdneri), two amphibians (Bufo bufo and Rana esculenta), two reptiles (Pseudemys scripta and Gekko gecko), and two birds (Gallus domesticus and Cothurnix japonica). We compared their distribution to a mammal, the rat (Wistar strain), using quantitative autoradiography methods. Moreover, CT binding sites were also characterized in the chicken kidney by a membrane assay. No renal 125I-sCT binding sites were detected in the fish, the amphibians, and the reptiles studied. In the rat, binding sites were present in the outer medulla and in the cortex. In the chicken and in the quail, scattered binding sites were also observed in the medulla and in the cortex, whose pattern seemed to follow the distribution of the glomeruli and/or the collecting tubules. Chicken kidney membranes were also purified by sucrose gradient centrifugation. Scatchard analysis of the binding data revealed the presence of one type of 125I-sCT binding site with an apparent dissociation constant of 4.3 nM and a number of sites of 73 fmol/mg/protein. The present results suggest that calcitonin renal receptors appeared late in evolution and thus that a regulation of renal function by calcitonin was only effective in birds.

Animals

Early calcitonin hypersecretion and C cell hyperplasia in rats with high incidence of C cell tumors (Wag/Rij).

Wag/Rij rats, a Wistar-derived strain, develop on aging a spontaneous medullary thyroid carcinoma which shows many morphological similarities to the human neoplasm. Using biochemical and histological methods, we studied calcitonin secretion and C cell distribution in young and adult Wag/Rij rats, to characterize possible modifications in calcitonin synthesis and secretion as compared to the original Wistar strain. During the period investigated, the mean basal circulating levels of calcitonin of both sexes were not significantly different between the two strains, although the Wag/Rij rats tended to have higher values. After a calcium challenge, the circulating calcitonin levels increased normally in the Wag/Rij strain as compared to Wistar rats of the same ages. Histological observations of their thyroids revealed a significant C cell hyperplasia, along with a weak immunostaining in some of the cells, due to a lack of secretory granules. Thus, in addition to the ability of developing C cell tumours on aging, the Wag/Rij strain is characterized by an early C cell hyperplasia leading to an increase of calcitonin secretion after a provocative secretion test.

Aging

[Parathyroid hormone and calcitonin receptors].

Parathyroid hormone and calcitonin are involved in the regulation of calcium metabolism via specific receptors in target organs principally bone and kidney. The pertinent findings in this rapidly evolving area of research are briefly summarized. The receptors for these two hormones have been extensively localised, the transduction of their signal studied, the structure and the proteins composing the receptors characterised by covalent linking and purified by affinity chromatography or specific immunoprecipitation. The sequence of the receptors will be established in a near future using genetic engineering.

Adenylyl Cyclases

Influence of blood calcium on calcitonin receptors in isolated chick osteoclasts.

Isolated osteoclasts obtained from young chickens fed a normal (+Ca) or deficient (-Ca) calcium and vitamin D diet for 3 weeks, were studied for their ability to bind salmon calcitonin (sCT). Osteoclasts obtained from -Ca chickens, when incubated with 0.1 mumol sCT/l, doubled cyclic (c)AMP production and retracted from a glass support, as observed by scanning electron microscopy. The presence of receptors was also demonstrated by autoradiography and competition analysis of 125I-labelled sCT binding. The number of receptors per cell was 0.9 +/- 0.1 x 10(4). In contrast, osteoclasts obtained from +Ca chickens did not increase cAMP production and did not retract in the presence of 0.1 mumol sCT/l. No specific binding of 125I-labelled sCT could be demonstrated on these osteoclasts. Plasma levels of calcium and calcitonin were measured in +Ca and -Ca chickens. The plasma concentration of calcium was markedly lower at 3 weeks in -Ca than in +Ca chickens. The plasma concentration of calcitonin was decreased in -Ca chickens compared with +Ca chickens at the first week and kept decreasing during the 3 weeks. These results strongly support the hypothesis that calcium and vitamin D intake regulate plasma calcitonin levels in chickens, and that calcitonin receptors can be detected on chicken osteoclasts only when blood calcium is decreased by a diet deficient in calcium and vitamin D.

Animals

Early spontaneous deficiency of calcitonin renal binding sites in rats with a high incidence of calcitonin-secreting tumors (WAG/Rij).

Old rats of the WAG/Rij strain have a high incidence (50%) of medullary thyroid carcinoma, a calcitonin (CT)-secreting tumor. We have characterized and quantified the topographical distribution of [125I]salmon calcitonin (sCT) binding sites in the kidneys of this strain, as compared to Wistar CF rats (2% incidence of spontaneous medullary thyroid carcinoma). We report here that, up to 15 days of postnatal development, the distribution of CT-binding sites in the kidney of the WAG/Rij strain was quite similar to that found in developing and adult Wistar CF rats. However, from the age of 1 month, sCT-binding sites were dramatically reduced in both the medulla and the inner part of the kidney cortex, though plasma CT levels were not significantly different in both strains. Adult WAG/Rij rats bearing a transplanted tumor for 12 weeks had a high level of plasma calcitonin and exhibited an even greater reduction of both medullary and cortical sCT-binding sites. These results suggest that the modification in the CT-binding sites in WAG/Rij rats is not a consequence of a possible down regulation due to elevated circulating hormonal level but could be inherited and possibly associated with the later development of the tumor in this strain.

Aging

Down-regulation of rat kidney calcitonin receptors by salmon calcitonin infusion evidenced by autoradiography.

In treating age-related osteoporosis and Paget disease of bone, it is of major importance to avoid an escape phenomenon that would reduce effectiveness of the treatment. The factors involved in the loss of therapeutic efficacy with administration of large pharmacological doses of the hormone require special consideration. Down-regulation of the hormone receptors could account for the escape phenomenon. Specific binding sites for salmon calcitonin (sCT) were characterized and localized by autoradiography on rat kidney sections incubated with 125I-labeled sCT. Autoradiograms demonstrated a heterogenous distribution of 125I-labeled sCT binding sites in the kidney, with high densities in both the superficial layer of the cortex and the outer medulla. Infusion of different doses of unlabeled sCT by means of Alzet minipumps for 7 days produced rapid changes in plasma calcium, phosphate, and magnesium levels, which were no longer observed after 2 or 6 days of treatment. Besides, infusion of high doses of sCT induced down-regulation of renal sCT binding sites located mainly in the medulla, where calcitonin (CT) has been shown to exert its physiological effects on water and ion reabsorption. These data suggest that the resistance to high doses of sCT often observed during long-term treatment of patients may be the consequence of not only bone-cell desensitization but also down-regulation of CT-sensitive kidney receptor sites.

Animals

Purification and characterization of calcitonin receptors in rat kidney membranes by covalent cross-linking techniques.

We have characterized the binding parameters of renal receptors (Scatchard analysis revealed the presence of two binding sites: site I, Ka1 = 1.29 X 10(9) M-1, number of binding sites = 9.9 X 10(6)/micrograms protein; site II, Ka2 = 0.93 X 10(8) M-1, number of binding sites = 4.27 X 10(8)/micrograms protein) and studied the effect of solubilization. The high-affinity sites are preserved during affinity chromatography and the process results in a 6080-fold purification of those sites. The lower-affinity sites are also preserved but the overall purification factor is about 40% lower than that obtained using molecular sieving. The purification of the renal calcitonin receptor by molecular sieving (Sephacryl S-200) is accompanied by total loss of the high-affinity site; however, the low-affinity site is enriched over 1642-fold. Binding parameters were obtained for the purified fractions. Synthetic salmon calcitonin was also bound to renal membranes using the bifunctional reagent disuccinimidyl suberate and photo-affinity cross-linking using hydroxysuccinimidyl azidobenzonate reagent. Cross-linked receptor eluted in the same volume as solubilized membranes specifically binding salmon calcitonin (S-200 chromatography). Sodium dodecyl sulfate polyacrylamide gel electrophoresis analysis of purified fractions showed several protein bands with apparent molecular masses ranging from 18 000 Da to 100 000 Da in the presence or absence of a reducing agent (2-mercaptoethanol). Autoradiography of polyacrylamide gels of cross-linked calcitonin receptor showed only three protein bands specifically binding salmon calcitonin. Their molecular masses were 70 000 Da, 40 000 Da and 33 000 Da respectively. The 40 000-Da molecule represents a major band (47% total binding species). This suggests that these three proteins are the principal components of the calcitonin receptor and that S-S bonds are not involved in the assembly of the receptor subunits.

Animals