Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0020438 (hypercalciuria)
2,502 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Hypercalcaemia would seem to be rare during immobilisation, whilst osteoporosis and hypercalciuria are constant. In fact, it often goes unnoticed. The case presented here confirms its predominance in the adolescent male. The reason for immobilisation seems to be irrelevant. The clinical symptoms are very variable: polydipsia, nausea, headache, apathy, anorexia. Blood calcium levels are raised, up to 14 mg%. This hypercalcaemia is due to very marked bone loss in adolescents, secondary to hyper-resorption and a temporary stoppage in osseous formation. The differential diagnosis from primary hyperparathyroidism is sometimes difficult but is aided by laboratory and histological findings. The essential is to consider the possibility of immobilisation hypercalcaemia in the presence of any suggestive symptoms in an immobilised adolescent. Treatment includes a return to weight bearing, adequate water intake and the administration of phosphorus, calcitonin, furosemide, and corticosteroids.
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PMID:[Immobilisation hypercalcaemia (author's transl)]. 59 68

Four patients having high-level quadriplegia developed elevated serum calcium concentrations (11 to 15.8 mg/100 ml) within three months of injury. All were young males (ages 15 to 19 years) and quadriplegic (C4-C7). Presenting symptoms were nausea, vomiting, polydipsia, polyuria and lethargy. In two patients severe muscle wasting and cachexia with clinical symptoms developed and persisted for several months. Laboratory studies in all patients showed negative calcium balance with hypercalciuria. Reduced renal function was seen in all patients but returned to normal with return of normal serum calcium. Alkaline phosphatase level was normal in three and elevated in one. Serum parathormone levels were normal. Roentgenograms revealed diffuse demineralization. Nephrocalcinosis and soft tissue calcifications developed in one patient. Primary treatment included reduced calcium intake, correction of dehydration, sodium infusion and remobilization. Corticosteroids, oral phosphates, furosemide and mithramycin were used with varying success to control prologned symptoms and severe hypercalcemia.
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PMID:Immobilization hypercalcemia in spinal cord injury. 83 59

Carbetimer (carboxyimamidate) is a low molecular weight derivative of ethylene/maleic anhydride polymer. This compound has demonstrated antitumor activity against several animal models with a daily x 5 schedule appearing most effective. A phase I clinical study of the daily x 5 schedule repeated every 28 days was therefore performed. Forty-one evaluable patients received 66 evaluable cycles of Carbetimer at daily doses ranging from 100-11,000 mg/m2. Hypercalcemia was the dose limiting toxicity with both patients at the 11,000 mg/m2 daily dose level and one patient who received 6 cycles of drug at the 4200 mg/m2 dose level developing severe hypercalcemia not explained by the underlying malignancy. Mild nausea, concentration and rate dependent arm pain at the site of infusion, proteinuria, and coagulopathy were also seen. Calcium balance studies revealed hypercalciuria, suggesting increased mobilization of calcium rather than renal retention. In vitro coagulation studies revealed concentration dependent prolongation of the partial thromboplastin time and thrombin time. No complete or partial responses were seen. However mixed response or biochemical response (reduction in serum lactic dehydrogenase) were seen in 5 patients with melanoma or renal cancer. Due to unacceptable toxicity at the 11,000 mg/m2 daily dose level, Carbetimer 8500 mg/m2 is the recommended dose for a 5-day treatment schedule every 28 days. Special attention should be directed toward possible activity against melanoma and renal cancer.
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PMID:Phase I trial of a 5-day course of carbetimer. 238 16

Treatment of postmenopausal osteoporosis (PMO) is based primarily on antiresorptive agents, including hormone replacement therapy (HT). To evaluate whether anabolic therapy together with HT provides additional benefits in the treatment of PMO, we evaluated the effects of parathyroid hormone (PTH) 1-84 in postmenopausal women with low bone mineral density (BMD) who were receiving chronic (> or =6 months) HT. Subjects were randomized to receive 100 microg PTH(1-84) or placebo injections daily for 24 months (n = 90/group). The primary efficacy outcome was change from baseline in lumbar spine BMD. Secondary end points included changes in hip and distal radius BMD, bone turnover markers, and fracture incidence. The study was terminated early following recommendations regarding HT for PMO. At 18 months, the mean increase in lumbar spine BMD was 7.9% for PTH(1-84) subjects vs. 1.5% for those receiving HT alone; between-group differences were significant at 6 months and persisted throughout the study. Lumbar spine BMD increased in 94% of women receiving PTH(1-84) compared to 59% for HT alone. Femoral neck BMD and bone turnover markers were significantly higher in PTH(1-84)-treated subjects, but the changes in total hip and distal radius BMD were not significant. PTH(1-84) treatment was generally well-tolerated, with hypercalciuria, hypercalcemia, nausea, vomiting, and dizziness reported more frequently in the HT + PTH(1-84) group. In conclusion, addition of PTH(1-84) to stable HT produced marked increases in lumbar spine BMD and may represent an additional approach to the treatment of PMO women receiving HT.
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PMID:Parathyroid hormone(1-84) treatment of postmenopausal women with low bone mass receiving hormone replacement therapy. 1862 66

Because no comparative studies exist, no clear pronouncements can be made about the potential differences in effectiveness and safety between PTH 1-34 and PTH 1-84. As regards the efficacy, a convincing reduction of vertebral fractures was shown in both cases [Neer, R.M., Arnaud, C.D., Zanchetta, J.R., Prince, R., Gaich, G.A., Reginster, J.Y., Hodsman, A.B., Eriksen, E.F., Ish-Shalom, S., Genant, H.K., Wang, O., Mitlak, B.H., 2001. Effect of parathyroid hormone (1-34) on fractures and bone mineral density in postmenopausal women with osteoporosis. N. Engl. J. Med. 344, 1434-1441; Greenspan, S.L., Bone, H.G., Ettinger, M.P., Hanley, D.A., Lindsay, R., Zanchetta, J.R., Blosch, C.M., Mathisen, A.L., Morris, S.A., Marriott, T.B., Treatment of Osteoporosis with Parathyroid Hormone Study Group, 2007. Effect of recombinant human parathyroid hormone (1-84) on vertebral fracture and bone mineral density in postmenopausal women with osteoporosis: a randomized trial. Ann. Intern. Med. 146, 326-339]. A reduction of non-vertebral fractures was shown in the case of PTH 1-34 only. Another significant resemblance is that both medicines have a strong anabolic action; this mechanism of action is essentially different from the bisphosphonates and strontium ranelate. Both medicines constitute a welcome addition to the therapeutic arsenal for patients with severe osteoporosis. More data from literature (including information on follow-up data and use in men) are available for PTH 1-34 because it has been available for longer. As regards the side effect profile, PTH 1-84 appears to have a higher incidence of hypercalcemia, hypercalciuria and nausea than teriparatide. Here, too, no comparative study exists: the differences may therefore be based on an actual difference in side effects, or it may be ascribed to differences in definitions and/or patient populations.
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PMID:PTH-analogs: comparable or different? 1912 66

A 24-year-old female patient with parathyroid carcinoma, the rarest endocrine malignancy, had two pregnancies. In the first pregnancy, she had severe nausea and fatigue. Hypercalcemia and hyperparathyroidism were diagnosed in the postpartum period. Hyperemesis gravidarum masked a diagnosis of hypercalcemia. Neck ultrasound and Tc-99m sestamibi found an enlarged lower right parathyroid gland. The gland was surgically removed, and an initial pathology report described atypical adenoma. Shortly afterward, she became pregnant again. During the second pregnancy, her calcium level was frequently controlled but was always in the normal range. Normocalcemia is explained by the specific physiology of pregnancy accompanied by hemodilution, hypoalbuminemia and maternal hypercalciuria (mediated by increased glomerular filtration). During lactation, calcium levels rose, and a new neck ultrasound showed a solitary mass in the area of prior surgery and an enlarged pretracheal lymph node. Fine needle aspiration of the solitary mass and node showed parathyroid carcinoma cells. The tumor mass was resected en bloc with the contiguous tissues and surrounding lymph nodes (pathology report; parathyroid carcinoma with metastases). Over the next five years, four consecutive surgeries were performed to remove malignant parathyroid tissue, lymph nodes and local metastases. Following the surgical procedures, no hypocalcemia was observed. More serious hypercalcemia recurred; the calcium level was difficult to control with a combination of pamidronate, cinacalcet and loop diuretic. No elements of multiple endocrine neoplasia were present.
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PMID:Parathyroid carcinoma in pregnancy. 2486 16