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D B Endres

Publications and source records attributed to D B Endres.

At least 19 recordsLinked to original sources

Hypercalcemia and parathyroid disorders.

Primary hyperparathyroidism and malignancy are responsible for the majority of reported cases of hypercalcemia. Suspected hypercalcemia should be documented on more than one occasion, preferably with the measurement of ionized calcium. Determination of intact parathyroid hormone with a modern two-site immunoassay is the single most important laboratory analysis in the differential diagnosis of hypercalcemia. Intact parathyroid hormone is increased or inappropriately high in primary hyperparathyroidism and suppressed or low normal in hypercalcemia of malignancy. Midregion and carboxylterminal radioimmunoassays are less effective in separating parathyroid and nonparathyroid hypercalcemia. In malignancy, hypercalcemia may result from local osteolysis or humoral factors. Although ectopic parathyroid hormone is produced rarely and certain lymphomas secrete 1,25-dihydroxyvitamin D, parathyroid hormone-related protein is elevated in the majority of patients with humoral hypercalcemia of malignancy. Recent developments in the measurement of parathyroid hormone-related protein should help to define the physiologic function of parathyroid hormone-related protein and its role in the differential diagnosis and therapy of hypercalcemia.

Humans↗

Effect of experimental human magnesium depletion on parathyroid hormone secretion and 1,25-dihydroxyvitamin D metabolism.

Magnesium (Mg) deficiency in man may result in hypocalcemia, impaired PTH secretion, and low serum concentrations of 1,25-dihydroxyvitamin D [1,25-(OH)2D]. To determine whether these changes are due to selective Mg depletion, we studied 26 normal subjects before and after a 3-week low Mg (less than 1 meq/day) diet. This diet induced Mg deficiency, as demonstrated by a fall in pre- to postdiet serum Mg levels from 0.80 +/- 0.01 to 0.61 +/- 0.02 mmol/L (P less than 0.001), an increase in Mg retention from 11 +/- 4% to 62 +/- 4% (P less than 0.001), and a fall in red blood cell free Mg2+ from 205 +/- 10 to 162 +/- 7 microM (P less than 0.001). Serum calcium (Ca) fell significantly from 2.36 +/- 0.02 to 2.31 +/- 0.03 mmol/L (P less than 0.05), and serum 1,25-(OH)2D fell from 55 +/- 4 to 43 +/- 3 pmol/L (P less than 0.05). PTH secretion was impaired, as demonstrated by a fall or no change in serum PTH in 20 of 26 subjects despite a fall in the serum Ca and Mg. In addition, an iv injection of Mg in eight subjects after the diet resulted in a significant rise in PTH from 15 +/- 2 to 19 +/- 2 ng/L (P less than 0.01), whereas a similar injection given to six of the subjects before the diet resulted in a significant fall from 28 +/- 5 to 13 +/- 3 ng/L (P less than 0.001). The fall in serum 1,25-(OH)2D may be due to both the decrease in PTH secretion and a renal resistance to PTH. PTH resistance was suggested, as no increase in serum 1,25-(OH)2D was observed in the six subjects in which the PTH concentration rose by mean of 68% after the diet. Also, the rise in serum 1,25-(OH)2D after a 6-h human PTH-(1-34) infusion was significantly less after Mg deprivation. The results demonstrate that mild Mg depletion can impair mineral homeostasis and may be implicated as risk factor for osteoporosis in disorders such as chronic alcoholism and diabetes mellitus, in which Mg deficiency and osteoporosis are both common.

Adult↗

Immunochemiluminometric and immunoradiometric determinations of intact and total immunoreactive parathyrin: performance in the differential diagnosis of hypercalcemia and hypoparathyroidism.

Parathyrin (parathyroid hormone; PTH) was measured with three immunoassays: a two-site immunochemiluminometric (ICMA) and a two-site immunoradiometric (IRMA) method for intact PTH, and a sensitive radioimmunoassay for mid-region or "total" PTH, measuring both intact hormone and inactive fragments. Single specimens from normal subjects and from individuals with primary hyperparathyroidism, hypercalcemia associated with malignancy, and hypoparathyroidism were analyzed with all three methods. All individuals with primary hyperparathyroidism showed absolutely above-normal concentrations with the mid-region RIA, 28 of 29 did with the ICMA, and 21 of 29 did with the IRMA. PTH concentrations in primary hyperparathyroidism were most increased relative to normal subjects with the mid-region assay (10.4 times), less so with the intact assays (ICMA 5.5 times; IRMA 5.3 times). Concentrations of intact PTH were suppressed below normal in nearly all patients with hypercalcemia associated with malignancy, as measured with the ICMA (26 of 30) and the IRMA (28 of 30) assays. In marked contrast, results for mid-region PTH were normal or slightly above normal, consistent with studies suggesting that the parathyroids secrete both intact hormone and inactive fragments, the former being more sensitive to suppression by hypercalcemia. In hypoparathyroidism PTH concentrations were detectable but below normal in all patients by the intact assays and in all but one patient by the mid-region assay. These low concentrations are probably due to a nonspecific serum effect that could be resolved with selection of a more appropriate standard matrix. Although all three assays are useful in the differential diagnosis of hypercalcemia, two-site intact assays are more convenient and more specific in patients with compromised renal function.

Diagnosis, Differential↗

Ketoconazole decreases the serum 1,25-dihydroxyvitamin D and calcium concentration in sarcoidosis-associated hypercalcemia.

Ketoconazole is an antifungal agent capable of inhibiting human steroid hormone synthesis, including renal 1,25-dihydroxyvitamin D [1,25-(OH)2D] synthesis. The ability of this drug to inhibit the extrarenal production of 1,25-(OH)2D, as occurs in human granuloma-forming disease states, including sarcoidosis, has not been evaluated. We examined the effect of ketoconazole on the 1,25-(OH)2D-calcium homeostatic mechanism in a hypercalcemic patient with sarcoidosis and on the synthesis of 1,25-(OH)2D3 in vitro by cultured pulmonary alveolar macrophages (PAM) from this and another host. Oral ketoconazole therapy (800 mg/day) decreased the serum 1,25-(OH)2D concentration 73% within 4 days; this was associated with a 15% decrease in the serum calcium concentration and a 57% decrease in the fractional urinary calcium excretion rate. In vitro, ketoconazole had a rapid onset, concentration-dependent inhibitory effect on sarcoid PAM 1,25-(OH)2D3 synthesis (ED50 = 0.1 mumol/L) that was not reversible by exposure to leukotriene C4, a potent stimulator of PAM 1,25-(OH)2D3 synthesis. Kinetic analysis of ketoconazole's action on the macrophage 1 alpha-hydroxylation reaction was examined at concentrations achieved in vivo when the drug is given orally. The velocity of the 1 alpha-hydroxylation reaction at ketoconazole concentrations of 0.01-1.0 mumol/L increased as the concentration of substrate 25-hydroxyvitamin D3 increased from 12-2000 nmol/L.

Adult↗

Effect of long-distance running on bone mass in women.

The effect of long-distance running on bone mass was assessed in 10 premenopausal and 9 estrogen-deprived postmenopausal women and compared to that in closely matched sedentary control women. Vertebral trabecular bone density (VBD) was determined by computed tomography and radial cortical bone density (CBD) by single-photon absorptiometry. Physical fitness was assessed by determining maximal oxygen consumption (VO2max) on a treadmill run to exhaustion. VBD was 183 +/- 7 mg/cm3 and VO2max was 48 +/- 1 ml/kg per minute in young women runners and 163 +/- 8 mg/cm3 and 32 +/- 2 ml/kg per minute in sedentary young women. A positive correlation was noted between VBD and VO2max in these groups (r = 0.509, p less than 0.03). Despite a significantly higher VO2max in postmenopausal women runners compared with sedentary controls (37 +/- 2 versus 24 +/- 2 ml/kg per minute), VBD was identical (112 +/- 5 versus 111 +/- 5 mg/cm3) and no correlation was seen between VBD and VO2max (r = 0.187, p = 0.457). Radial cortical bone density was not different between the runners or sedentary groups in young women (0.738 +/- 0.01 versus 0.732 +/- 0.1 g/cm2) or postmenopausal women (0.617 +/- 0.3 versus 0.665 +/- 0.4 g/cm2). These results suggest that although physical fitness enhances vertebral bone density in premenopausal women, it does not appear to prevent age- and/or sex steroid deficiency-induced bone loss in postmenopausal women.

Adult↗

Absence of hyperparathyroidism in severe liver disease.

Elevated serum levels of intact parathyroid hormone (PTH) have been reported in severe versus mild biliary cirrhosis. The aim of this study was to determine whether hyperparathyroidism was present in severe liver disease on the basis of the inability of the liver to catabolize the hormone. Because biologic activity resides in the amino terminal, and amino terminal PTH determinations have not been routinely made in liver disease, it is possible that hyperparathyroidism was previously missed in these patients. Accordingly, we obtained fasting blood from 11 patients with severe liver disease and 8 age-matched controls. We measured intact, amino terminal, and mid-region PTH, vitamin D metabolites, bone gamma carboxyglutamic acid protein (BGP), ionized calcium, phosphorus, magnesium, and liver function tests. Serum levels of PTH were normal with all assays and 1,25(OH)2D levels were not elevated. These findings argue against the possibility that hyperparathyroidism plays a role in the pathogenesis of hepatic osteodystrophy.

Adult↗

Plasma insulin-like growth factors and bone formation in uremic hyperparathyroidism.

Bone formation in uremia is considered to be regulated in part by parathyroid hormone (PTH). However, while low levels of immunoreactive PTH are usually associated with low rates of bone formation in uremia, elevated PTH levels do not always correlate with increased bone formation. In an attempt to identify other factors that may regulate bone formation in uremic patients, we measured plasma immunoreactive insulin-like growth factors (IGF-I and IGF-II) in 15 patients who did not have aluminum-associated reductions in bone formation. Plasma levels of IGF-I but not PTH, were significantly higher in patients with high rates of bone formation when compared to patients with low or normal bone formation (P less than 0.02). While the bone formation rate at the tissue level correlated significantly with plasma PTH (r = 0.53, P less than 0.05) and IGF-I (r = 0.67, P less than 0.01), only for plasma IGF-I were there significant correlations with bone apposition (r = 0.57, P less than 0.05) and bone formation rate at the BMU level (r = 0.62, P less than 0.02), parameters which reflect mineralization activity at the cellular level. Among the static histologic parameters, osteoblastic osteoid correlated only with plasma PTH (r = 0.76, P less than 0.001), while osteoclast number correlated with both PTH (r = 0.56, P less than 0.05) and IGF-I (r = 0.67, P less than 0.01). There were no correlations between IGF-II levels and bone histology. From these data we suggest that IGF-I may promote bone formation in uremic patients with hyperparathyroidism.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Measurement of parathyroid hormone.

Interpretation of serum immunoreactive PTH measurements requires an understanding of the secretion, metabolism, and heterogeneity of circulating immunoreactive PTH. Both intact hormone and biologically inactive carboxyl fragments containing the middle and C-terminal regions are secreted by the parathyroid glands. Inactive fragments also are produced peripherally by metabolism of intact hormone by liver and kidney. Inactive fragments represent 75 to 95% of the total immunoreactivity in serum, a consequence of their long half-life in vivo as compared with intact hormone. Immunoassays for PTH can be divided into those measuring intact hormone (N-terminal, intact) and those measuring both inactive fragments and intact hormone (mid-region, C-terminal, polyvalent). The latter principally measures inactive fragments because of their greater concentration as compared with intact hormone in peripheral serum. The clinical utility of PTH assays varies considerably because of differences in their specificity and sensitivity. Serum PTH levels have been more often observed to be elevated in individuals with primary hyperparathyroidism with the use of research quality radioimmunoassays that recognize both inactive fragments and intact hormone than with conventional N-terminal or intact assays. Homologous mid-region assays have provided exceptional clinical sensitivity in confirming primary hyperparathyroidism. Comparison of a sensitive mid-region radioimmunoassay with a recently developed two-site, noncompetitive chemiluminescent immunoassay for intact PTH indicated that both methods were highly useful in the differential diagnosis of hypercalcemia. The mid-region assay provided the best diagnostic sensitivity in primary hyperparathyroidism with more elevated levels of PTH. The sensitivity of the intact assay was good, a significant improvement over conventional N-terminal and intact assays. The specificity of the intact assay was clearly superior, with measured PTH levels found to be suppressed to below normal in most subjects with hypercalcemia associated with malignancy. In contrast, measured levels were primarily normal with the mid-region assay. The higher levels of immunoreactive PTH observed in nonparathyroid hypercalcemia with the mid-region assay are in agreement with the measurement of biologically inactive carboxyl fragments, which continue to be secreted in hypercalcemia.

Amino Acid Sequence↗

Vitamin D metabolite-mediated hypercalcemia and hypercalciuria patients with AIDS- and non-AIDS-associated lymphoma.

Fifteen patients with lymphoma and hypercalcemia (greater than or equal to 11.0 mg/dL) were identified by screening the serum chemistry profile obtained from patients upon admission to the Los Angeles County/USC Medical Center. Seven of the 15 (47%) possessed a frankly elevated serum concentration of 1,25-dihydroxyvitamin D [1,25-(OH)2-D]. An additional patient with severe hypercalcemia (16.2 mg/dL) had a serum 1,25-(OH)2-D concentration in the midnormal range, not a suppressed value. To examine the potential existence of hypercalciuria in absence of overt hypercalcemia, prospective screening of 23 normocalcemic patients with lymphoma was undertaken. Four of the 23 patients (17%) had increased fractional urinary calcium excretion rates (0.35 +/- 0.3 mg calcium/100 mL glomerular filtrate [GF], mean +/- SE; normal, less than 0.16 mg/100 mL GF); two of the hypercalciuric patients had a frankly elevated serum 1,25-(OH)2-D concentration. Of the 19 hypercalcemic/hypercalciuric lymphoma patients identified, none had an elevated serum immunoreactive parathyroid hormone concentration. Fourteen of the 19 hypercalcemic/hypercalciuric patients (74%) suffered from B-cell neoplasms, three had Hodgkin's lymphoma, and two had adult T-cell leukemia/lymphoma. All hypercalcemic/hypercalciuric patients had widespread disease (stage III or IV). Six patients, four with hypercalcemia and two with hypercalciuria, had acquired immunodeficiency syndrome (AIDS). These data suggest that the deregulated synthesis of a 1,25-(OH)2-D-like metabolite is a common cause of hypercalcemia and hypercalciuria in patients with lymphoma including patients with AIDS-associated tumors.

Adult↗

Bone histomorphometry of renal osteodystrophy in diabetic patients.

Bone biopsies and plasma parathyroid hormone (PTH) from 27 diabetic dialysis patients were compared to biopsies and PTH levels from matched patients without diabetes to determine if PTH has a role in preserving bone mass in diabetic renal osteodystrophy. Significantly lower values were present in the diabetic group for mineralized bone area (p less than 0.003), osteoblastic osteoid (p less than 0.01), resorptive surface (p less than 0.001), fibrosis (p less than 0.005), bone apposition rate (p less than 0.01), bone formation rate (BMU level) (p less than 0.04), and plasma PTH (p less than 0.05). Bone-surface aluminum was higher in the diabetic group (44 +/- 5% vs. 20 +/- 5%, p less than 0.005). Linear regression analysis revealed significant positive correlations of mineralized bone area with time on dialysis, bone formation rate, bone resorption, and PTH only in the group without diabetes. While both groups had significant positive correlations of PTH with osteoblastic osteoid and bone resorption, only in the nondiabetic group was there a positive correlation of PTH with bone apposition and bone formation rate (BMU level), observations suggesting that the lower bone formation in the diabetic patients may have arisen in part from a failure of PTH to promote bone mineralization. We conclude that relatively low PTH levels and high bone aluminum in diabetic patients with chronic renal failure may be responsible in part for low bone mass when compared to uremic patients without diabetes.

Adult↗

Bone histologic response to deferoxamine in aluminum-related bone disease.

We have examined the changes in bone histology in 28 uremic patients after long-term treatment with the aluminum chelator, deferoxamine. Marked declines in stainable bone-surface aluminum were associated with increases in bone formation rate and osteoblastic osteoid following deferoxamine. The increased bone formation resulted from increases in bone apposition and length of double-tetracycline labels, the latter being highly correlated with the increase in osteoblastic osteoid (r = 0.85). While bone surface aluminum was highly correlated with bone formation rate (r = .69, p less than .001), bone aluminum content did not correlate with bone formation (r = 0.13) and was often elevated after treatment despite an improvement in bone histology. Patients who had undergone prior parathyroidectomy were less likely to have improved bone histology than those with intact parathyroid glands. We conclude that aluminum chelation therapy with deferoxamine is effective in ameliorating the bone histology of patients with chronic renal failure and bone aluminum accumulation, and that the change in stainable bone-surface aluminum is a more sensitive indicator than the change in bone aluminum content in assessing adequacy of chelation therapy. Patients who need deferoxamine treatment but have undergone a prior parathyroidectomy will probably require a more intensive treatment schedule than those who have intact parathyroid glands.

Aluminum↗

Osteomalacia and aplastic bone disease in aluminum-related osteodystrophy.

The bone histology in patients with chronic renal failure and aluminum-related bone disease does not always show the excess accumulation of unmineralized osteoid (matrix) characteristic of osteomalacia. Frequently, bone aluminum accumulation is associated with normal or reduced amounts of unmineralized osteoid and low bone formation and is referred to as aplastic bone disease. In this study, we compared static and dynamic bone histomorphometric parameters and plasma PTH and aluminum levels in 12 patients with osteomalacia and 18 patients with aplastic bone disease who had been receiving dialysis for the same duration to determine if the difference in osteoid accumulation in these 2 lesions might be explained by differences in aluminum accumulation or PTH levels. The stainable bone surface aluminum level was significantly higher in the patients with osteomalacia compared to that in the group with aplastic bone [61 +/- 5% (+/- SEM) vs. 43 +/- 4%; P less than 0.02]. The rates of bone apposition and bone formation were lower in the group with osteomalacia (P less than 0.01). Plasma amino-terminal PTH was not significantly different in the 2 groups. The increment in plasma aluminum levels after a single infusion of deferoxamine was higher in the osteomalacic group than in the aplastic group, suggesting that the patients with osteomalacia accumulated more total body chelatable aluminum than did those with aplastic bone disease during a comparable length of time on dialysis. We conclude that the excess unmineralized osteoid in aluminum-related osteomalacia results from the high rate of total body aluminum accumulation, which directly causes uncoupling of matrix mineralization and matrix production, independent of PTH levels. Patients with aplastic bone disease who have accumulated lesser amounts of total body aluminum fail to develop excess unmineralized osteoid because production and mineralization of matrix are more closely coupled than in the osteomalacic lesion, despite a decline in osteoblast numbers.

Adult↗

Age-related changes in serum immunoreactive parathyroid hormone and its biological action in healthy men and women.

Circulating levels of PTH and related parameters of calcium and phosphate metabolism were measured in healthy free-living elderly and young subjects residing in the Southwest to determine if parathyroid function changes with aging. Serum immunoreactive PTH (iPTH) was measured with two well characterized antisera; an amino (N)-terminal antiserum which cross-reacts with the biologically active domain (1-34) and recognizes intact hormone, and a midregion (44-68) antiserum which cross-reacts with intact hormone and biologically inactive midregion/C-terminal fragments. Serum iPTH in both RIAs was significantly increased in the elderly population. An age-related increase was also found for total urinary cAMP and serum alkaline phosphatase, whereas the tubular reabsorptive maximum for phosphate (TmP/GFR) decreased with age. No difference was found between men and women of the same age group for serum iPTH, urinary cAMP, or serum alkaline phosphatase. TmP/GFR declined with age in men, but not women. Correspondingly, serum phosphate was significantly lower in elderly men than in elderly women. Urinary calcium excretion was higher in elderly women than in men of the same age group. Neither serum total or ionized calcium decreased with age. In conclusion, the age-related increase in N-terminal PTH and alterations in associated parameters of phosphate and calcium metabolism are consistent with increased parathyroid function as men and women age. Factors other than PTH are responsible for the sex-related differences observed in TmP/GFR, calcium excretion, and serum phosphate. The cause of the increased circulating levels of apparently biologically active PTH is unclear, but extends beyond the age-related decrease in renal function.

Adult↗

Aluminum-associated bone disease in chronic renal failure: high prevalence in a long-term dialysis population.

Twenty-seven asymptomatic patients treated with hemodialysis longer than 8 years (mean 12.9 +/- 3.1 years) underwent bone biopsy to determine the prevalence of aluminum-associated bone disease. None had excess aluminum exposure from the dialysate. Ten patients (37%) had aluminum-associated bone disease as defined by a bone formation rate (BFR) below normal in the presence of stainable bone aluminum that covered more than 25% of the trabecular surface. The predominant type of bone histology in this group was the aplastic lesion characterized by low bone turnover, a decreased number of osteoblasts, and lack of excess unmineralized osteoid. Osteoblastic osteoid was highly correlated with stainable surface bone aluminum (r = -.82, p less than .001). Among the dynamic bone parameters, the double-tetracycline labeled surface was a more sensitive indicator of impaired bone function than was the bone apposition rate (BAR), since half of the patients with aluminum-associated bone disease had a normal BAR. In all of the biopsies the extent of double-labeled surfaces was inversely proportional to the amount of stainable aluminum on the bone surface (r = -.71, p less than .001), whereas stainable bone aluminum did not correlate with BAR. In seven of the patients with aluminum-associated bone disease, amino-terminal PTH levels were in the normal range while only one patient had a normal plasma mid-region PTH. PTH correlated directly with osteoblastic osteoid, BFR, and double-labeled surfaces. These results indicate that long-term oral aluminum intake in hemodialysis patients results in a high prevalence of aluminum-associated bone disease.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

1,25-Dihydroxyvitamin D maintains bone cell activity, and parathyroid hormone modulates bone cell number in dogs.

The singular and combined effects of 1,25-dihydroxyvitamin D [1,25-(OH)2D] and PTH on bone were evaluated in a long term in vivo study in dogs. Dogs were rendered deficient in 1,25-(OH)2D and PTH by five sixths nephrectomy and parathyroidectomy. A control group was sham operated. Various combinations in status of 1,25-(OH)2D and PTH were produced by daily sc injections of 1,25-(OH)2D (1.25) and/or continuous infusion of 1-34 bovine PTH. These were 1.25+/PTH+, 1.25-/PTH-, 1.25+/PTH-, 1.25-/PTH+. Serum calcium levels were kept in the normal range by the administration of one or two of the hormones or by oral supplementation of calcium lactate. Histomorphometric evaluation of static and dynamic parameters of bone after 8 months of experimental observation revealed that deficiency in 1,25-(OH)2D and PTH resulted in decreased number and activity of bone-forming and resorbing cells. Administration of 1,25-(OH)2D increased the activity but not the number of bone cells. In contrast, administration of PTH increased the number but not the activity of bone cells. Tissue level activity was decreased when one or both hormones were deficient, and normal tissue level activity was found only when both hormones were given. These data are relevant for understanding and management of diseases with perturbations in vitamin D and/or PTH.

Animals↗

Comparison of parathyroid hormone assays with bone histomorphometry in renal osteodystrophy.

Bone biopsies were studied in 67 dialysis patients to determine if a PTH RIA specific for intact plasma PTH is a better predictor of osteitis fibrosa than a RIA that measures inactive carboxy-terminal/midregion plasma PTH fragments. An amino-terminal-specific antiserum that cross-reacts with intact PTH, but not midregion or carboxy-terminal fragments, and an antiserum that cross-reacts with the 44-68 region of the PTH molecule and measures both intact and midregion/carboxy-terminal PTH fragments were used in the comparisons. Plasma PTH concentrations measured by both assays correlated positively with bone formation rate, bone apposition rate, osteoblastic osteoid, osteoclast number, and marrow fibrosis. The optimum predictive value of the amino-terminal PTH assay for osteitis fibrosa was 88%, compared to 74% for the midregion PTH assay. This difference in predictive value could be attributed to the highly significant correlation of marrow fibrosis with plasma amino-terminal PTH. In conclusion, these data suggest that a PTH RIA that uses an amino-terminal-specific antiserum may be a better predictor of osteitis fibrosa in patients undergoing maintenance hemodialysis.

Bone and Bones↗

Biochemical indicators of disordered vitamin D and calcium homeostasis in sarcoidosis.

In an attempt to identify factors that may indicate which patients with sarcoidosis are likely to manifest a clinical abnormality in calcium homeostasis, we measured serum concentrations of calcium, angiotensin converting enzyme activity (ACE), 25-hydroxyvitamin D (25-OH-D), 1,25-dihydroxyvitamin D (1,25-(OH)2-D), and immunoreactive parathyroid hormone (iPTH) in 19 patients with biopsy proven sarcoidosis, seven of whom were either frankly hypercalcemic or hypercalciuric. These data were compared to the ability of cultured pulmonary alveolar macrophages (PAM) from the same patients to metabolize [3H]25-OH-D3 to [3H]1,25-(OH)2-D in vitro. All seven hypercalcemic/hypercalciuric patients with sarcoidosis had a serum ACE level greater than 40 IU/L (normal less than 35 IU/L). All five patients with hypercalcemia (Ca greater than or equal to 10.5 mg/dl) had a serum 1,25-(OH)2-D concentration above the normal range (greater than 60 pg/ml), and in all 19 patients the serum calcium was positively correlated to the serum 1,25-(OH)2-D concentration (r = 0.55, p less than 0.01). The capacity of PAM to synthesize [3H]1,25-(OH)2-D3 in vitro was. with one exception, greater in cells from patients with diffuse infiltrative pulmonary disease (roentgenographic stage II or III) and positively correlated to the serum calcium concentration (r = 0.72, p less than 0.001) and serum ACE (r = 0.43, p less than 0.05). Cultured PAM from the five hypercalcemic patients, all of whom demonstrated diffuse pulmonary disease on chest x-ray, showed a [3H]1,25-(OH)2-D3 synthetic capacity in vitro 2.5-fold greater than that for group as a whole and 6-fold greater than in cells from nonhypercalcemic patients with sarcoidosis.

Calcifediol↗