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Enhancement of experimental fracture-healing by systemic administration of recombinant human parathyroid hormone (PTH 1-34).

BACKGROUND: Recombinant human parathyroid hormone (PTH [1-34]; teriparatide) is a new treatment for postmenopausal osteoporosis that can be systemically administered for the primary purpose of increasing bone formation. Because several studies have described the enhancement of fracture-healing and osteointegration in animals after use of PTH, we sought to critically analyze this skeletal effect. METHODS: Two hundred and seventy male Sprague-Dawley rats underwent standard, closed femoral fractures and were divided into three groups that were administered daily subcutaneous injections of 5 or 30 mug/kg of PTH (1-34) or vehicle (control). The dosing was administered for up to thirty-five days. Groups were further divided into three subgroups and were killed on day 21, 35, or 84 after the fracture. The bones were subjected to mechanical torsion testing, histomorphometric analysis, or microquantitative computed tomography. RESULTS: By day 21, calluses from the group treated with 30 mug of PTH showed significant increases over the controls with respect to torsional strength, stiffness, bone mineral content, bone mineral density, and cartilage volume. By day 35, both groups treated with PTH showed significant increases in bone mineral content and density and total osseous tissue volume, and they demonstrated significant decreases in void space and cartilage volume (p < 0.05). Torsional strength was significantly increased at this time-point in the group treated with 30 mug of PTH (p < 0.05). While dosing was discontinued on day 35, analyses performed after eighty-four days in the group treated with 30 mug of PTH showed sustained increases over the controls with respect to torsional strength and bone mineral density. No change was noted in osteoclast density at the time-points measured, suggesting that treatment with PTH enhanced bone formation but did not induce bone resorption. CONCLUSIONS: These data show that daily systemic administration of PTH (1-34) enhances fracture-healing by increasing bone mineral content and density and strength, and it produces a sustained anabolic effect throughout the remodeling phase of fracture-healing.

Anabolic Agents↗

Parathyroid carcinoma: location of pelvic metastases by parathyroid hormone assay.

A metastasis from a functioning parathyroid carcinoma was located by PTH radioimmunoassay and selective venous catheterization. The site of the metastasis, verified at autopsy, was in the right side of the pelvis. This is the most distant reported location for metastatic parathyroid carcinoma. The patient's plasma immunoreactive PTH rose more than twofold in response to induced hypocalcemia. This suggests that relative hypocalcemia, induced therapeutically in such patients, may result in a higher chronic level of PTH secretion.

Aged↗

Synthesis, purification, and chemical characterization of the amino-terminal 1-34 fragment of bovine parathyroid hormone synthesized by the solid-phase procedure.

Peptides prepared by solid-phase synthesis during a systematic study of structure-activity relations in parathyroid hormone have been subjected, after sequential purifications, to rigorous analysis of purity by a variety of analytical techniques including sequence analysis by the Edman procedure. The present paper undertakes a critical appraisal of the utility of different tests of peptide purity and the use of the procedures in guiding and monitoring optimal synthesis strategies. Sequence analysis of a peptide representing the amino-terminal 34 residues of bovine parathyroid hormone (bPTH-(1-34)) revealed the presence of at least 30% of contaminating error peptides which were undetected by other analytical procedures. The major contaminant was identified as a peptid in which glutamine at position 29 was deleted. A repeat synthesis using fluorescamine rather than ninhydrin to monitor the coupling reaction resulted in a preparation that lacked the contaminant resulting from deletion. These findings demonstrate the particular value of sequence analysis in the evaluation of purity of peptides synthesized by the solid-phase technique.

Adenylyl Cyclases↗

Synthesis of human parathyroid-hormone-related protein(1-141) in Saccharomyces cerevisiae. A correct amino-terminal processing vital for the hormone's biological activity is obtained by an ubiquitin fusion protein approach.

Gene fusions have been widely used in heterologous expression systems as a technique to stabilize the recombinant product against proteolysis, increase the translational initiation efficiency or to serve as an affinity handle for the purification of the protein. A further advantage is the potential to generate an authentic amino terminus of the foreign protein when this is vital for its biological activity, such as for the ability of human parathyroid-hormone-related protein (hPTHrP) to mediate activation of adenylate cyclase. We report here the construction and utility of a ubiquitin fusion protein system for production of the otherwise short-lived hPTHrP(1-141) as a carboxyl extension to ubiquitin in yeast. A hybrid gene containing the hPTHrP(1-141) cDNA coding region fused in-frame to the 3' end of the yeast ubiquitin cDNA was constructed and expressed under the control of the regulatable yeast metallothionein promoter. The recombinant protein was purified to homogeneity and finally characterized by N-terminal amino acid sequencing and amino acid composition analysis, demonstrating that the fusion protein was cleaved correctly and quantitatively in vivo by an ubiquitin-specific yeast endoprotease to generate authentic hPTHrP(1-141). hPTHrP(1-141) stimulated adenylate cyclase in rat osteosarcoma cell membranes to the same extent as equimolar amounts of recombinant human parathyroid hormone(1-84) and [Tyr34]hPTHrP(1-34)amide. Thus, this expression cloning strategy permits the production of authentic, biologically active recombinant hPTHrP(1-141), and the procedure can easily be adapted to make PTHrP analogues for further studies of its domain-specific activities and biological roles.

Adenylyl Cyclases↗

The cytochemical bioassay of parathyroid hormone: further experience.

The procedure for the cytochemical bioassay of parathyroid hormone has been examined to improve the reliability and robustness of the assay. It has been shown that the control of the pH, at all stages of the assay, is essential. The use of the assay confirmed that the circulating level of the biologically active form of this hormone is less than one tenth of the values found by the more recent immunoassays, and is in good agreement with previously calculated values. The assay clearly distinguished between normal, hypoparathyroid and hyperparathyroid levels and allowed relative potencies to be ascribed to preparations of the hormone obtained from human, bovine and porcine sources.

Animals↗

Growth of rat osteoblast-like cells in a lipid-enriched culture medium and regulation of function by parathyroid hormone and 1,25-dihydroxyvitamin D.

To examine the role of lipid metabolism in the growth and function of osteoblast-like cells, we studied ROS 17/2.8 osteosarcoma cells and primary cultures of rat calvarial osteoblasts during growth in a serum-free medium supplemented by purified human lipoproteins or by liposomes. Increase in ROS cell number was measured in sparse (1-5 X 10(3)/cm2) cultures over 6-8 days. Liposomes (0-300 micrograms/ml) and high (HDL), low (LDL), and very low density (VLDL) lipoprotein fractions (0-300 micrograms apoprotein) markedly stimulated cell growth. Cells plated at 5 X 10(3)/cm2 achieved growth rates in the presence of LDL or HDL comparable to 10% fetal bovine serum. Serum-free culture with exogenous lipid maintained the response of cell cyclic AMP accumulation to parathyroid hormone. Cyclic AMP response to parathyroid hormone was enhanced by glucocorticosteroid, and was attenuated by 1,25-dihydroxyvitamin D (1,25(OH)2D) with an EC50 (10(-10) M) comparable to that previously observed in serum-cultured cells (J. Biol. Chem. 258:736, 1985). 1,25(OH)2D also increased the alkaline phosphatase activity in ROS cells cultured in lipid-supplemented serum-free culture. Lipoproteins or liposomes also markedly enhanced the proliferative response of sparse cultures of normal rat osteoblasts to polypeptide mitogens.

Animals↗

Characterization of the rabbit renal receptor for native parathyroid hormone employing a radioligand purified by reversed-phase liquid chromatography.

Iodinated native bovine parathyroid hormone (bPTH(1-84)) was separated from uniodinated hormone by reversed-phase liquid chromatography techniques after lactoperoxidase labeling. Analysis of iodinated residues after enzymatic digestion indicated that the major labeled product was largely monoiodinated on the sole tyrosine residue. This material retained full bioactivity in an in vitro renal adenylate cyclase assay. Binding of 125I-bPTH(1-84) to rabbit renal membranes at 4 degrees C was proportional to membrane protein concentration and was saturable and dissociable. Radioligand binding was inhibited by concentrations of unlabeled bPTH(1-84) required to stimulate adenylate cyclase in the same membrane preparation but was not inhibited by non-PTH peptides other than adrenocorticotropin at high concentrations (greater than 10 microM). Synthetic NH2-terminal analogues of bPTH(1-84) all elicited approximately equivalent inhibition of radioligand binding which was, however, less potent than unlabeled bPTH(1-84), suggesting a role for the carboxyl region of the molecule in the interaction of bPTH(1-84) with its receptor. Activity of the NH2-terminal agonists was similar to bPTH(1-84) in stimulating adenylate cyclase. Although substitution in sequence position one, of serine in human PTH(1-34) for alanine in bPTH(1-34), reduced activity in the adenylate cyclase assay, inhibition of 125I-bPTH(1-84) binding by both peptides and by an analogue of bPTH(3-34) was equivalent, consistent with a minimal contribution of the first 2 residues for receptor binding of the NH2-terminal region of PTH. The results illustrate the utility of the radiolabeled preparation of native bPTH we have developed and emphasize the importance of probing the PTH receptor with an intact hormone to maximize information concerning the mechanism of PTH action.

Animals↗

Parathyroid hormone metabolism and its potential as a uremic toxin.

Secondary hyperparathyroidism is a universal complication of chronic renal failure. It has been proposed that the markedly elevated levels of immunoreactive parathyroid hormone (i-PTH) in uremia may represent a "uremic toxin" responsible for many of the abnormalities of the uremic state. Plasma i-PTH consists of a mixture of intact hormone, a single-chain polypeptide of 84 amino acids, and smaller molecular weight hormonal fragments from both the carboxy- and amino-terminal portion of the PTH molecule. The hormonal fragments arise from metabolism of intact PTH by peripheral organs as well as from secretion of fragments from the parathyroid glands. The structural requirements for the known biological actions of PTH reside in the amino-terminal portion of the PTH molecule. Carboxy-terminal fragments, biologically inactive at least in terms of adenylate cyclase activation, hypercalcemia, or phosphaturia, depend on the kidney for their removal from plasma, and thus accumulate in the circulation in chronic renal failure. It is unknown at the present time if other biological effects of these carboxy-terminal fragments may contribute to some of the biochemical alterations observed in uremia. The most significant consequence of increased PTH levels in uremia is the development of bone disease characterized by osteitis fibrosa. In addition, it would appear that PTH plays an important role in some of the abnormal electroencephalographic patterns observed in uremia. This may be due to a potential role of PTH in increasing calcium content of brain. Parathyroid hormone also has been implicated as a pathogenetic factor in many other alterations present in uremia, i.e., peripheral neuropathy, carbohydrate intolerance, hyperlipidemia, and other alterations. Unfortunately, outstanding clinical research is lacking in this field and conclusive experimental data are practically nonexistent. Further studies are necessary if one is to accept the concept of PTH being a significant "uremic toxin."

Animals↗

[Intraoperative parathyroid hormone monitoring in neck exploration for renal hyperparathyroidism?].

INTRODUCTION: In operations for renal hyperparathyroidism the value of intraoperative parathormone monitoring was investigated. PATIENTS AND METHODS: Intraoperative intact parathyroid hormone levels were determined (PTH Quick assay) in 40 patients undergoing first cervical exploration and in two patients with graft-dependent recurrence of renal hyperparathyroidism. RESULTS: In 33 patients, total parathyroidectomy with autotransplantation was carried out. The median parathormone levels decreased from 652 pg/ml to 120 pg/ml (19% of initial level) 5 min after total parathyroidectomy. In seven patients, fewer than 4 parathyroid glands each were identified during cervical exploration and "total parathyroidectomy (?)" without autotransplantation was performed. Intraoperatively median parathormone level decreased from 1193 pg/ml to 116 pg/ml (10% of initial level). In one of these seven patients, hyperparathyroidism persisted due to an ectopic fourth gland within the carotid sheath. In two of these patients, hypoparathyroidism occurred and a delayed autotransplantation of cryopreserved parathyroid tissue was carried out. On the first day after total parathyroidectomy with autotransplantation and "total parathyroidectomy (?)", median levels of intact parathyroid hormone were 1.9 pg/ml and 82.5 pg/ml, respectively. CONCLUSION: Intraoperative monitoring is not useful in first cervical exploration for renal hyperparathyroidism because it cannot predict complete resection of parathyroid tissue. The parathormone level on the first postoperative day allows precise evaluation of the efficacy of the surgical procedure.

Chronic Kidney Disease-Mineral and Bone Disorder↗

The metabolism of labeled parathyroid hormone. V. Collected biological studies.

Biologically active 125I-labeled parathyroid hormone (125I-PTH) was used in a series of studies in dogs and chickens designed to confirm and augment earlier studies in rats. As in rats, a three exponential equation was required to describe disappearance of 125I-PTH from the blood in the dog. The first two "half-lives" (1.8 and 7 min) accounted for the bulk of the dose. Also as in rats, deposition of apparently intact hormone took place rapidly in kidney, liver and bone in both the dog and the chicken. Degradation occurred very rapidly in all three target organs. Three labeled hormones of different biological activities were compared in the rat. Inactive, oxidized hormone was rejected by the liver but showed markedly increased deposition in kidney and the higher the purity of the hormone the higher was its uptake by liver. Exploration of a wide range of dosages revealed few effects on distribution (smaller deposition in liver and kidney at highest dosages, 65 mug/rat). Fresh sera did not degrade hormone rapidly or extensively. There was no deposition of hormone in intestinal mucosa, marrow, and red cells. Nephrectomy increased deposition in liver and bone. Finally, the perfused liver was capable of extensive degradation of the hormone.

Animals↗

Postnatal changes in calcium-regulating hormones in very-low-birth-weight infants. Effect of early neonatal hypocalcemia and intravenous calcium infusion on serum parathyroid hormone and calcitonin homeostasis.

In very-low-birth-weight (VLBW) infants, we studied the hypotheses that in early neonatal hypocalcemia the serum parathyroid hormone (PTH) concentration would rise; the serum calcitonin (CT) concentration would decline; and, in response to intravenous (IV) calcium (Ca) infusion, the serum PTH concentration would be lowered; and the serum CT concentration would rise. Fifteen infants appropriate for gestational age (age, less than 32 weeks; birth weight, less than 1,500 g) were enrolled in the study. In eight infants in whom the serum Ca level declined to less than 6.0 mg/dL, changes in serum magnesium, phosphorus, PTH, CT, and whole blood ionized calcium (iCa) were evaluated on entry into the study, when serum Ca declined to less than 6.0 mg/dL, immediately after infusion of 18 mg/kg of elemental calcium as calcium gluconate, and at eight hours post-Ca infusion (+ 8 hr). The serum Ca concentration declined from 7.9 +/- 0.6 baseline (mean +/- SE) to 5.2 +/- 0.2 mg/dL pre-Ca infusion and rose to 9.17 +/- 0.74 mg/dL post-Ca infusion and 7.1 +/- 0.5 mg/dL at +8 hr post-Ca infusion. Whole blood iCa declined from 4.82 +/- 0.24 to 3.72 +/- 0.19 mg/dL pre-Ca infusion, rose to 6.68 +/- 0.32 mg/dL post-Ca infusion, and was 4.12 +/- 0.21 mg/dL at + 8 hr post-Ca infusion. The serum P concentration did not change significantly. The serum PTH concentration rose from 116 +/- 17 to 204 +/- 34 pmole/L pre-Ca infusion, declined to 149 +/- 22 pmole/L post-Ca infusion, and was 187 +/- 28 pmole/L at + 8 hr post-Ca infusion. The serum CT concentration was elevated and did not change significantly. Thus, in infants less than 32 weeks' gestation, the serum PTH level rises in early neonatal hypocalcemia and is suppressed by IV Ca infusion; the serum CT level is markedly elevated and is not altered in early neonatal hypocalcemia and does not rise further in response to IV Ca infusion in VLBW infants. We suggest that hypercalcitoninemia occurs in VLBW infants and that serum CT concentrations are unresponsive to changes in serum Ca.

Calcitonin↗

Serum calcium does not influence the extraction of 125I-bovine parathyroid hormone by the dog liver in vivo.

To gain information regarding the possible influence of serum calcium on the hepatic extraction and early metabolism of the complete molecule of parathyroid hormone (PTH(1-84)) in vivo, we have studied the role of serum calcium on the fractional extraction and clearance of 125iodinated bovine parathyroid hormone, 125I-bPTH(1-84), by the dog liver in vivo. Dog serum calcium was increased by calcium chloride or decreased by sodium EDTA infusions. Hepatic blood flow, fractional hepatic extraction and hepatic clearance were calculated from dilution curves obtained by sampling the hepatic vein after injection of 125I-bPTH(1-84) and reference substances in the portal vein of anesthetized dogs. The gel chromatography profile of the 125I-radioactive substance injected and recovered was also analyzed to confirm results. Each dog was first studied in the basal state and then again after its serum calcium level was modified. Increasing or decreasing the serum calcium by 1.5 and 3 mg/dl in groups of at least five dogs had no effect on the hepatic blood flow, fractional hepatic extraction or hepatic clearance of 125I-bPTH(1-84). A negative correlation was found to exist between hepatic blood flow (ordinate) and fractional hepatic extraction (abscissa) of 125I-bPTH(1-84), both in the basal state (r = -.483, p less than .05, n = 24) and after having modified serum calcium (r = -.548, p less than .01, n = 24). The intercepts on the Y axis and the slopes of these correlations were statistically identical, again indicating that serum calcium had no effect on hepatic blood flow or fractional hepatic extraction.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Parathyroid hormone secretion: effect of beta-adrenergic blockade before and after surgery for primary hyperparathyroidism.

Serum immunoreactive parathyroid hormone (iPTH) response to beta-adrenergic blockade by propranolol infusion was determined in 11 normal subjects and 6 patients with primary hyperparathyroidism (PHPT) before and again after the surgical removal of abnormal parathyroid tissue. Propranolol infusion in PHPT patients before surgery resulted in no significant decrease in serum iPTH except at 2 h, when the mean value was 83 +/- 4.4% of baseline. After surgery and achieving a euparathyroid state, the same patients showed a significant propranolol-induced decrease in serum iPTH from baseline at all time periods tested, reaching the nadir value of 57 +/- 7.5% of baseline at 2 h after the start of the propranolol infusion. This response in PHPT patients after surgery was very similar to the response seen in normal subjects. Therefore, this impaired suppressibility of serum iPTH in PHPT is corrected after removal of the abnormal parathyroid tissue. The studies indicate that abnormal parathyroid tissue (either per se or via a metabolic state induced by it) is responsible for the impaired response to beta-adrenergic blockade. It therefore appears unlikely that the impaired beta-adrenergic responsiveness is involved in the pathogenesis of PHPT.

Adenoma↗

Lack of relation between serum parathyroid hormone levels and erythrocyte osmotic fragility in pediatric patients on peritoneal dialysis.

Secondary hyperparathyroidism and anemia are the hallmarks in uremic patients. It is suggested that parathyroid hormone increases erythrocyte osmotic fragility and induces hemolysis. The present study was undertaken to examine the possible relationship between erythrocyte osmotic fragility and secondary hyperparathyroidism in 20 pediatric patients on maintenance peritoneal dialysis. We found that erythrocyte osmotic fragility in these patients was normal. No correlation between erythrocyte osmotic fragility and hematochemical changes associated with secondary hyperparathyroidism was found. We conclude that erythrocyte osmotic fragility was normal in pediatric patients on peritoneal dialysis and excess parathyroid hormone levels do not affect erythrocyte osmotic fragility and do not cause anemia.

Adolescent↗

Persistent parathyroid hormone elevation following curative parathyroidectomy for primary hyperparathyroidism.

BACKGROUND: Persistent elevation of parathyroid hormone (PTH) levels following parathyroidectomy may indicate residual abnormal parathyroid tissue. OBJECTIVE: To determine the clinical significance and risk factors for persistent PTH elevation following curative parathyroidectomy. METHODS: A prospective study of consecutive patients with primary hyperparathyroidism who had resolution of hypercalcemia following parathyroidectomy. Patients with low or normal serum calcium and increased PTH levels postoperatively were identified, and serial calcium and PTH levels and clinical course were monitored. A multivariate analysis was performed to identify features associated with an elevated postoperative PTH level. RESULTS: Of 85 patients with resolution of hypercalcemia following parathyroidectomy, postoperative PTH levels were elevated in 23 (27%) (mean, 99 pg/mL; range, 70-194 pg/mL) and normal in 62 (mean, 30 pg/mL; range, 3-65 pg/mL) (P<.001). No significant differences in preoperative or postoperative calcium or preoperative PTH levels were found between groups. Among patients with persistent PTH elevation, 18 had adenoma and 5 had multiglandular disease, compared with 52 with adenoma and 10 with multiglandular disease in patients with normal postoperative PTH levels (P>.05). Multivariate analysis demonstrated that black race and musculoskeletal symptoms were associated with an elevated postoperative PTH level (P =.01. After an average 16-month follow-up, PTH levels normalized in 13 patients, decreased in 5, and were unchanged in 2. Three patients were lost to follow-up. CONCLUSIONS: Persistent PTH elevation occurs in 27% of patients following curative parathyroidectomy and is usually a transient phenomenon more common in patients with musculoskeletal symptoms and of the black race. It is not a manifestation of persistent disease but is most likely a secondary response to bone remineralization.

Adult↗

Evaluation of a radioimmunoassay for the measurement of amphibian parathyroid hormone.

A commercial mid-region to carboxyl-region parathyroid hormone (PTH) radioimmunoassay (RIA) for measurement of PTH concentration in serum of humans was evaluated for its ability to detect amphibian PTH. The recovery of known amounts of human PTH added to aliquots of pooled frog serum demonstrated that frog serum does not interfere with the RIA system. The mean intraassay coefficient of variation was 0.11. During the spring and summer removal of the parathyroid glands from frogs resulted in significant decreases in serum calcium levels which the RIA revealed were associated with significant decreases in PTH levels. In the winter the parathyroid glands of frogs showed histological changes associated with inactivity. Also, parathyroidectomy of winter frogs did not affect serum calcium concentrations, and PTH levels of experimental and control animals were below or near the level of detection.

Animals↗

Skeletal resistance to parathyroid hormone as a background abnormality in uremia.

Skeletal resistance to parathyroid hormone (PTH) is a background abnormality underlying uremic bone disease. This abnormality exists even with high PTH. By the suppression of PTH, it has become uncovered, presenting as adynamic bone disease. Since patients with adynamic bone disease have higher risk of hypercalcemia or lumber fracture, mechanisms of this skeletal resistance to PTH need to be elucidated for the optimal management of bone turnover and parathyroid function in chronic dialysis patients.

Animals↗

Rapid intraoperative immunoassay of parathyroid hormone and other hormones: a new paradigm for point-of-care testing.

BACKGROUND: The first description of the use of a rapid assay for the measurement of intact parathyroid hormone (PTH) in patients undergoing parathyroidectomy for hyperparathyroidism was reported in 1988. Subsequent improvements in the analytical performance of the rapid intraoperative PTH assay allowed the establishment of its clinical utility in the surgical management of hyperparathyroidism. These modifications also allowed the assay to be performed in or near the operating suite. METHODS: We searched MEDLINE, using the following key words: intraoperative, rapid, quick, parathyroid hormone, hormone, and immunoassay. Relevant articles that focused on the analytical aspects and clinical utility of rapid intraoperative hormone immunoassays were selected for this review. CONTENT: On the basis of the positive impact that the rapid intraoperative PTH test has had on both patient outcomes and cost savings, other rapid intraoperative hormone immunoassays for the diagnosis and/or treatment of other endocrine-hormone-secreting tumors have been developed. These hormones share certain characteristics that make them suitable for use as rapid intraoperative tests, i.e., short analyte half-life and/or large analyte concentration gradient, rapid analysis time, and positive clinical utility. Initial studies with cortisol, gastrin, insulin, adrenocorticotropic hormone, and testosterone have shown promising results in preoperative localization studies and/or for assessing the effectiveness of tumor resection during surgery. CONCLUSION: The emergence of these rapid intraoperative immunoassays indicates that this test format is likely to provide future opportunities to improve patient care by advances in clinical laboratory testing.

Clinical Laboratory Techniques↗