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Hypercalcemia and neoplasia. Biologic, biochemical, and ultrastructural studies of a hypercalcemia-producing Leydig cell tumor of the rat.

A localized, transplantable testicular tumor of the Fischer rat regularly produces hypercalcemia and increased phosphorus clearance in host animals. Light and electron microscopic examinations of the tumor indicate that it is of Leydig origin. There is no evidence that the tumor secretes any biologically active sex steroids, judges by weights of target tissues, when the tumor is grown in castrated or spayed rats. No radioactive steroid hormone formation in vitro was detected using 1-14C-acetate as a precursor although 14C was incorporated into the "C27" sterol fraction. Mass (micrograms) amounts of sex steroids were not detected after purifying large amounts of tumor extracts. The phytosterols, beta-sitosterol, stigmasterol, campesterol, were tentatively identified in tumor extracts but were also found in other tissues and in tumors not associated with hypercalcemia. Administered in vivo, human chorionic gonadotropin caused an acute rise in serum calcium in 3 to 5 hours in tumor-bearing hypercalcemic rats. Only trophic hormones with luteinizing hormone activity were found to compete with 125I-human chorionic gonadotropin for binding to the tumor homogenate in vitro indicating the tumor possessed luteinizing hormone receptors. When the tumor was transplanted intrasplenically, hypercalcemia did not occur unless adhesions formed, suggesting that the tumor hormone was rapidly metabolized by the liver and was probably of small molecular weight. Secretory granules, usually thought to be associated with peptide hormone secretion, were not detected at the ultrastructure level. Cortisol, conjugated estrogen, and an inhibitor of sterol biosynthesis (AY-9944) were effective in lowering the elevated serum calcium. Definitive identification of the agent causing lethal hypercalcemia has not been accomplished. The available data suggest it is not parathyroid hormone or vitamin D. The Leydig cell origin of the tumor, its response to human chorionic gonadotropin in vivo, the lack of secretory granules at the ultrastructural level, and biologic characteristics, all lead to the speculation that the secretory product of the tumor is a new hormonal substance, possibly a steroid precursor or related substance not previously described or is a known substance of small molecular weight whose calcium-mobilizing properties have not been fully characterized. This transplantable tumor may represent a model for one form of neoplastic hypercalcemia occurring in man and may have important implications in the general area of calcium and phosphorus homeostasis.

Animals

Hypercalcemia and parathyroid function after renal transplantation.

Hypercalcemia after renal transplantation (post-T hypercalcemia) has been detected in 29 (16.7%) of 174 long-term survivors. The mean time of onset of hypercalcemia was 69 days after renal transplantation (range 3-210). In 18 patients the hypercalcemia was mild and resolved spontaneously (transient) from 2-65 months (mean 19) after onset. In 4 patients serum calcium normalized concurrently with rejection episodes. In 7 patients the hypercalcemia was more pronounced (permanent), being terminated by subtotal parathyroidectomy in 5 and persisting in 2 recipients. The hypercalcemia was asymptomatic except in one patient, who developed calculi in the graft and a fall in graft function, all of which disappeared after parathyroidectomy. At operation the parathyroid glands showed hyperplasia, except in one case with an adenoma in one of the hyperplastic glands. Serum phosphorus was markedly decreased, to the same extent in transiently and permanently hypercalcemic recipients. Serum parathyroid hormone (S-PTH) was increased in all of 5 patients with permanent and in 3 of 8 with transient post-T hypercalcemia. In normocalcemic and in transiently hypercalcemic recipients the mean S-PTH was identical, but significantly lower than in the permanently hypercalcemic recipients. S-PTH was suppressed to the same extent during an i.v. calcium infusion in patients with post-T hypercalcemia and with primary hyperparathyroidism.

Adolescent

Fulminating hypercalcemia and markedly increased nephrogenous cyclic AMP in a patient with transitional cell carcinoma of the bladder.

Refractory hypercalcemia developed suddenly in a patient who had undergone a radical cystectomy for an anaplastic transitional cell carcinoma of the bladder. A normal serum parathyroid hormone (PTH) value was obtained by immunoassay while the patient had hypercalcemia and unimpaired renal function. This normal PTH value in the presence of hypercalcemia was consistent with his hypercalcemia being secondary to excessive amounts of circulating PTH. The finding of increased nephrogenous cyclic AMP, however, provided the definitive diagnosis of hyyperparathyroidism. Since autopsy revealed that there was no residual tumor in the bladder area, only evidence of metastatic disease, and since the parathyroid glands were not hyperplastic or adenomatous, we attributed this patient's hypercalcemia to hyperparathyroidism due to the ectopic production of PTH by a metastasis from the transitional cell carcinoma of the bladder.

Carcinoma, Transitional Cell

Urinary cyclic AMP analyzed as a function of the serum calcium and parathyroid hormone in the idfferential diagnosis of hypercalcemia.

Urinary cyclic AMP (UcAMP) appropriate for the serum calcium concentration was determined in normal subjects during the base-line state and during alteration in their serum calcium concentrations by saline and calcium infusions. This was compared to the UcAMP in 76 patients with hypercalcemia and 5 patients with hypocalcemia. In 54 of 56 patients with primary hyperparathyroidism, the UcAMP was inappropriately high for their serum calcium concentration, the 2 exceptions having renal failure. In four patients with vitamin D intoxication, sarcoidosis, milkalkali syndrome, and thiazide-induced hypercalcemia and in five patients with hypocalcemia due to hypoparathyroidism, the UcAMP was appropriately low for their serum calcium concentration. In 16 patients with nonparathyroid neoplasms, 10 had UcAMP levels that were inappropriately high suggesting ectopic parathyroid hormone (PTH)-mediated hypercalcemia and 6 had UcAMP levels that were appropriately low suggesting that their hypercalcemia was due to osteolytic factors other than PTH. Correlations between UcAMP, serum calcium concentration, and carboxyl-terminal immunoreactive PTH suggest that random UcAMP is a sensitive accurate reflection of circulating biologically active PTH. If there is adequate renal function (serum creatinine concentration less than 2.0 mg/dl), a random UcAMP expressed as mumol/g creatinine and analyzed as a function of the serum calcium concentration completely separates patients with PTH and non-PTH-mediated hypercalcemia.

Adult

Selective calcification of pancreatic islets of Langerhans. An unusual association with hypercalcemia and diabetes mellitus.

An unusual and extensive calcification of islets of Langerhans was found at autopsy in a man, 58 years old, who developed myeloma and, subsequently, hypercalcemia and diabetes. Although the islet cell calcification appears to be related to the hypercalcemia, the pathogenesis of the calcification is not clear, as primary metastatic calcification of pancreatic islets due to hypercalcemia does not occur. In support of this, a retrospective study of pancreatic tissue from 52 hypercalcemic patients with parathyroid adenoma and 34 patients with multiple myeloma, who frequently have hypercalcemia, did not reveal islet calcification. The islet calcification is ascribed to primary islet cell degeneration and necrosis, with hypercalcemia playing an augmenting but crucial role. It is considered that the combination of islet degeneration and calcification resulted in the diabetic state.

Calcinosis

Hypercalcemia and cancer: an update.

Hypercalcemia is a not infrequent complication of cancer that every physician should be aware of. It is a significant factor in the morbidity and mortality of cancer patients. Almost invariably hypercalcemia is associated with accelerated resorption of bone, which is thought to be mediated by humoral or metabolic factors. Three such factors, parathyroid hormone, E2 prostaglandins and osteoclast activating factor, have been strongly implicated in the pathogenesis of hypercalcemia in cancer patients. Other mechanisms for the hypercalcemia may exist. Accurate diagnosis of the disorder is important in therapy, and current research into the various mechanisms for hypercalcemia in cancer patients may well lead to new modes of therapy that are more specific and perhaps less toxic.

Bone Resorption

Hypercalcemia in small cell (oat cell) carcinoma of the lung. Coincident parathyroid adenoma in one case.

Hypercalcemia is very uncommon in small cell (oat cell) carcinoma of the lung. Two cases of this neoplasm associated with symptomatic hypercalcemia are described. Despite normal skeletal roentgenograms, metastatic bone disease was demonstrated by abnormal bone scans and bone biopsies in both patients. The combination of conventional antihypercalcemia therapy, cytotoxic cancer chemotherapy, and synthetic salmon calcitonin corrected the hypercalcemia despite progression of the small cell carcinoma. One patient with elevated serum immunoreactive parathyroid hormone (PTH) had a parathyroid adenoma at autopsy. This association emphasizes that in cases of bronchogenic small cell carcinoma with hypercalcemia, conincidental primary hyperparathyroidism should be considered.

Adenoma

Pancreatic islet cell carcinoma with hypercalcemia and hypergastrinemia: response to streptozotocin.

A patient with metastatic islet cell carcinoma of the pancreas, recurrent peptic ulcer disease, and hypergastrinemia (Zollinger-Ellison syndrome) developed symptomatic hypercalcemia and renal insufficiency; she was treated with streptozotocin after parathyroidectomy failed to control her hypercalcemia. Shortly after somewhat less than the usual recommended dose of streptozotocin was administered, the serum calcium concentration fell to near normal with complete resolution of symptoms. Seven months after therapy, mild hypocalcemia, consistent with her degree of renal impairment was noted. However, mild hypercalcemia recurred 13 months after therapy. Shortly after streptozotocin therapy, the mean serum gastrin concentration fell to near normal with radiographic disappearance of the anastomotic ulcer. At 7 and 13 months after therapy, serum gastrin levels were normal. Streptozotocin therapy was accomplished without major complications; specifically, without a detrimental effect on the creatinine clearance. Thus, although hypercalcemia in patients with pancreatic islet cell tumors is often due to associated primary hyperparathyroidism, in some patients it may be due to secretion of a hypercalcemic substance from the tumor and may respond to streptozotocin. Similarly, hypergastrinemia in patients with islet cell tumors may also respond to streptozotocin.

Calcium

Prostaglandin-mediated hypercalcemia: a paraneoplastic syndrome.

Evidence has been presented for prostaglandin-mediated hypercalcemia and bone resorption in malignancies of both, experimental animals and man. Occurence of hypercalcemia in cancer patients is known for a long time, but its pathogenesis has been poorly understood so far. Besides ectopic parathyroid hormone secretion by tumors, an osteoclast-activating factor released from leukocytes and direct bone destruction by tumor cells, prostaglandins of the E series have to be considered as one of the candicates involved in the pathomechanism of hypercalcemia and osteoclastic osteolysis in cancer patients. This new concept on the pathophysiology of cancer-associated hypercalcemia has implications for the diagnosis and management of this common complication of neoplastic disease.

Animals

Prostaglandin E and hypercalcemia in breast carcinoma: only a tumor marker? A need for perspective.

Prostaglandin E concentrations were measured in a patiet with breast carcinoma, hypercalcemia, undetectable parathyroid hormone (PTH) and no evidence of bone metastases. Catheterization of the drainage bed of her tumor documented production of E series prostaglandins. Treatment with the largest recommended doses of indomethacin for 10 days failed to lower her plasma prostaglandin E (PGE) concentrations or to correct the hypercalcemia, but it normalized urinary excretion of PGE. Subsequent chemotherapy reduced prostaglandin concentrations toward normal values concomitant with a reduction of clinically estimated tumor burden. During this period of time, serum calcium concentrations had no consistent relationship to the plasma PGE levels. We suggest that PGE merely reflected the tumor burden of this patient and did not directly contribute to the genesis of her hypercalcemia. The pertinent literature relating PGE and hypercalcemia is reviewed.

Antineoplastic Agents

Blau syndrome initially presenting with hypercalcemia: a case report and literature review.

Blau syndrome is a rare granulomatous autoinflammatory disease typically characterized by a triad of polyarthritis, uveitis, and dermatitis. It is caused by either an inherited autosomal dominant pathogenic variant or a de novo pathogenic variant in NOD2. In this report, we present an 11-month-old boy with Blau syndrome who initially presented with calcitriol-mediated hypercalcemia. Severe hypercalcemia was controlled with intravenous fluids, diuretics, calcitonin, and a short course of corticosteroids. Following resolution of the hypercalcemic episode, the patient gradually developed the full clinical spectrum of Blau syndrome, including the classic triad, along with hepatosplenomegaly, lymphadenopathy, and bone marrow involvement. Trio genome sequencing identified a de novo heterozygous pathogenic variant in NOD2. Following the genetic diagnosis, corticosteroids and methotrexate were initiated to control the disease. This is the first reported case of Blau syndrome presenting with hypercalcemia as an initial manifestation, preceding the development of the classic triad. This case underscores the importance of considering Blau syndrome in the differential diagnosis of early-onset hypercalcemia of unknown etiology. Molecular genetic testing should be pursued in such cases to facilitate an accurate and timely diagnosis and appropriate management.

Autoinflammatory disease

[Paraneoplastic hypercalcemia in primary bronchial cancer].

Paraneoplastic hypercalcemia is frequently observed in squamous cell carcinoma of the bronchus. Clinically, apart from the general symptoms which are always very marked, neurological signs are the most common. This hypercalcemia, accompanied by hypophosphatemia, is of sudden onset and immediately very high. Metabolic alkalosis, with hypokalemia and hypochloremia, differentiates it from true hyperparathyroidism. Symptomatic treatment is only transiently effective. However, the obvious effect of mitramycin may be useful before surgical operation, which alone produces a lasting normalisation of serum calcium. Inappropriate secretion of a parathormone substance by the tumour may be demonstrated by radio-immunoassay, and this explains a large number of cases of hypercalcemia but this does not exclude other possible factors in the etiology. Finally, hypercalcemia originally attributed to bony lysis, may be explained in some cases by a paraneoplastic process.

Acidosis

Renal function in hypercalcemia after renal transplantation.

A case of transient hypercalcemia in a 53-year-old female, who received a necro-kidney transplant, has been examined. The hypercalcemia was caused by vitamin D intoxication on three separate occasions. Each period of even moderate hypercalcemia produced a rapid fall in renal function. The effect was reversible. These findings are discussed in the light of earlier reports on stable renal function in post-transplant hypercalcemia.

Chronic Disease

Hypercalcemia complicating childhood malignancies: a report of seven cases with some pathophysiological considerations.

A group of seven children with different malignant processes presenting with hypercalcemia was studied. Bone destruction, diffuse metabolic abnormalities, abnormal acid-base homeostasis and recurrent hypercalcemia characterized these patients. A different mechanism leading to the production of hypercalcemia and/or bone destruction by cancer cells is considered. The results of this report suggest that parathyroid hormone production (P.T.H.) by the parathyroid glands is normal and that ectopic secretion of PTH or PTH-like material is negligible in these cases.

Acid-Base Imbalance

Hypercalcemia with suppressed parathyroid hormone in Burkitt's lymphoma.

Two patients with Burkitt's lymphoma presented with severe hypercalcemia, a previously unreported complication of this tumor. Roentgenograms and radionuclide scans showed multiple osteolytic lesions in both patients. Plasma parathyroid hormone (PTH) was undetectable during the hypercalcemia phase. Chemotherapy was followed by rapid tumor lysis, hyperphosphatemia, phosphaturia and hypocalcemia. The hypocalcemic phase persisted for two weeks despite rapid normalization of serum phosphorus and renal function. Measurement of urinary cyclic AMP, an index of PTH action, indicated that parathyroid function had been suppressed by the hypercalcemia and remained suppressed for almost one week despite marked hypocalcemia.

Adult

Circulating parathyroid hormone activity: familial hypocalciuric hypercalcemia versus typical primary hyperparathyroidism.

Three indices of circulating parathyroid hormone (PTH) activity were compared between two groups: the first a group of 23 patients from three large kindreds with autosomal dominant hypercalcemia without hypercalciuria [familial hypocalciuric hypercalcemia (FHH)] and the second a group of 64 patients with typical primary hyperparathyroidism (1HPT) manifesting comparable hypercalcemia. The group with 1HPT differed from normal with respect to plasma PTH 1HPT concentration (normal, less 0.2 ng/ml), urinary cAMP excretion per 100 ml glomerular filtrate (U cAMP/GF) (normal, 2.3 x/divided by 0.6 nmol/100 ml glomerular filtrate; mean, x/divided 1 SD), and renal tubular maximum of phosphate transport corrected for glomerular filtration rate (TMP/GFR; normal, 3.4 +/- 0.4 mg/dl; mean, +/- 1 SD). The group with 1HPT also diverged significantly from the group with FHH for all three indices: for PTH, 0.37 x/divided by .48 vs. 0.25 x/divided .46 (P less than 0.05); for UcAMP/GF, 4.3 x/divided by .53 vs. 2.6 x/divided .60 (P less than 0.0005); and for TMP/GFR, 2.0 +/- 0.6 vs. 2.6 +/- 0.7 (P less than 0.01). The between-group differences for all three indices were also significant after adjustment for their variation with serum calcium. However, only the difference in TMP/GFR remained significant after adjustment for covariance attributable to serum calcium concentration, age, and creatinine clearance. The group with FHH differed from normal for TMP/GFR but not for UcAMP/GF. However, analysis of changes in UcAMP/GF and serum calcium concentration around the time of parathyroidectomy in three patients with FHH suggested that the parathyroid glands contributed to the abnormalities of mineral homeostasis in at least one. It was concluded that higher serum concentrations of PTH do not account for the lower renal clearance of calcium and magnesium in FHH calcium concentration, the group with FHH showed indices suggesting lower circulating PTH activity than the group with 1HPT.

Calcium