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Biomedical subjects

A Dusso

Publications and source records attributed to A Dusso.

27 records · Page 2Linked to original sources

Extrarenal production of calcitriol.

Under normal circumstances extrarenal sources of calcitriol probably constitutes a microendocrine system involved in cell differentiation and local intercellular communication with no influence on systemic calcium homeostasis. Under pathological conditions such as chronic renal failure, extrarenal sources have the potential to normalize serum calcitriol after adequate stimulation (such as, 25(OH)D administration). Extrarenal 1,25-(OH)2D3 synthesis is controlled by physiological levels of calcitriol. However, in sarcoidosis and other granulomatous diseases, 1,25-(OH)2D3 production by macrophages is deregulated, causing severe alterations in systemic calcium homeostasis.

Animals↗

1,25-(OH)2D receptors are decreased in parathyroid glands from chronically uremic dogs.

1,25-(OH)2D has been shown to suppress the synthesis and secretion of parathyroid hormone in vivo and in dispersed parathyroid cell cultures. Control of transcription by 1,25-(OH)2D is believed to be mediated by interaction of this hormone with a specific receptor within target cells. We have examined the 1,25-(OH)2D receptor in parathyroid glands from normal dogs and chronic renal failure dogs. The levels of receptor were fourfold lower in parathyroid extracts from these uremic dogs than in those from normal dogs (109 +/- 11 vs. 446 +/- 61 fmol/mg protein). No differences were observed in the binding affinity for 1,25-(OH)2D or in the sedimentation in sucrose density gradients. Since this receptor has been shown to be upregulated by 1,25-(OH)2D, our findings of lower levels of receptor could be attributed to decreased serum concentrations of 1,25-(OH)2D in chronically uremic animals. Regression analysis of log serum 1,25-(OH)2D versus log receptor content yielded a correlation coefficient of 0.62 with P less than 0.02. Decreased receptor content showed a negative correlation with serum N-terminal PTH (r = 0.71 and P less than 0.01). It is likely that this reduced 1,25-(OH)2D receptor number in the parathyroid glands of chronically uremic animals renders the glands less responsive to the inhibitory action of 1,25-(OH)2D on the synthesis and secretion of PTH, and may contribute to the hyperparathyroidism associated with chronic renal failure.

Animals↗

Metabolic clearance rate and production rate of calcitriol in uremia.

We have previously demonstrated that while both normal humans and dogs tightly control serum calcitriol levels after 25(OH)D administration, anephric humans and 5/6 nephrectomized dogs significantly increase circulating 1,25(OH)2D when supraphysiological concentrations of 25(OH)D are reached in serum. Plasma 1,25(OH)2D level is determined not only by its rate of production but also by its rate of degradation. To further characterize the mechanisms involved in the responses to 25(OH)D therapy in normal circumstances and in chronic uremia, we measured metabolic clearance rate (MCR) and production rate (PR) of 1,25(OH)2D in normal dogs and in dogs with moderate and severe renal failure, at normal and supraphysiological serum concentrations of 25(OH)D. Basal MCR in uremic dogs, either with moderate or with severe renal failure, did not differ significantly from normals (6.7 +/- 0.7, 6.8 +/- 0.4 and 6.8 +/- 0.3 ml/min, respectively). Oral 25(OH)D administration for two weeks did not affect MCR either in normal animals or in both groups of uremic dogs. 25(OH)D treatment did not affect production rates in normal dogs and in animals with moderate renal failure (with normal basal values of 1,25(OH)2D), but significantly increased 1,25(OH)2D production from 0.13 +/- 0.01 to 0.25 +/- 0.04 micrograms/day (P less than 0.05) in dogs with severe renal insufficiency. These data suggest that it is the basal level of 1,25(OH)2D which regulates the synthesis of 1,25(OH)2D in response to 25(OH)D administration in normal and uremic animals.

Animals↗

Parathyroid hormone suppression by intravenous 1,25-dihydroxyvitamin D. A role for increased sensitivity to calcium.

Numerous in vitro studies in experimental animals have demonstrated a direct suppressive effect of 1,25-dihydroxyvitamin D (1,25(OH)2D) on parathyroid hormone (PTH) synthesis. We therefore sought to determine whether such an effect could be demonstrated in uremic patients undergoing maneuvers designed to avoid changes in serum calcium concentrations. In addition, the response of the parathyroid gland in patients undergoing hypercalcemic suppression (protocol I) and hypocalcemic stimulation (protocol II) before and after 2 wk of intravenous 1,25(OH)2D was evaluated. In those enlisted in protocol I, PTH values fell from 375 +/- 66 to 294 +/- 50 pg (P less than 0.01) after 1,25(OH)2D administration. During hypercalcemic suppression, the "set point" (PTH max + PTH min/2) for PTH suppression by calcium fell from 5.24 +/- 0.14 to 5.06 +/- 0.15 mg/dl (P less than 0.05) with 1,25(OH)2D. A similar decline in PTH levels after giving intravenous 1,25(OH)2D was noted in protocol II patients. During hypocalcemic stimulation, the parathyroid response was attenuated by 1,25(OH)2D. We conclude that intravenous 1,25(OH)2D directly suppresses PTH secretion in uremic patients. This suppression, in part, appears to be due to increased sensitivity of the gland to ambient calcium levels.

Anuria↗

Extra-renal production of calcitriol in chronic renal failure.

Renal 1-alpha-hydroxylase activity is tightly regulated in normal humans and intact animals. No significant changes in serum 1,25(OH)2D levels occur in response to vitamin D challenge. However, conflicting reports have appeared in the literature with regard to stimulation of 1,25(OH)2D production after 25(OH)D administration in uremia. To provide further insight into this issue, 25(OH)D at a dose of 100 micrograms every other day for two weeks followed by 50 micrograms every other day for the next two weeks was given orally to seven uremic mongrel dogs. After two weeks of 25(OH)D therapy, 1,25(OH)2D levels increased from 16.4 +/- 0.9 to 28.0 +/- 1.9 pg/ml (P less than 0.001) in parallel with a fourfold increase in 25(OH)D concentrations from a basal of 50.1 +/- 6.5 to 203.2 +/- 18.1 ng/ml. No significant changes in serum i-PTH, ICa or P were observed. Linear regression analysis of the relationship between serum concentrations of 1,25(OH)2D versus 25(OH)D, for each dog during this period, showed highly significant correlation coefficients. To evaluate the possibility that extra-renal sites contribute to the described enhanced 1,25(OH)2D net synthesis after 25(OH)D treatment, similar studies were performed in four anephric patients undergoing hemodialysis. Basal serum 1,25(OH)2D levels were 5.5 +/- 2.4 pg/ml and increased to 19.6 +/- 5.0 pg/ml after 25(OH)D administration. A significant correlation was also found for the relationship between serum levels of 1,25(OH)2D and 25(OH)D in anephrics (r = 0.72, P less than 0.001). The same therapy in four normal volunteers showed no significant changes in serum 1,25(OH)2D concentrations.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Hypercalcemic hyperparathyroidism complicating oncogenic osteomalacia. Effect of successful tumor resection on mineral homeostasis.

Described herein is a case of oncogenic osteomalacia that ran a course of at least 16 years before curative resection of a mixed mesenchymal tumor. Hypercalcemic hyperparathyroidism developed in the patient, and review of the literature indicated that this occurs in about 10 percent of reported cases. Changes in serum parathyroid hormone levels with and without phosphate supplement therapy and before and after tumor resection suggested that both the high intake of phosphate and the effect of the neoplasm on vitamin D bioactivation engendered the parathyroid overactivity. Despite marked hyperparathyroidism, serum 1,25-dihydroxyvitamin D levels were subnormal preoperatively but showed a sevenfold increase within 48 hours of tumor resection. Thereafter, a gradual increase in the maximal tubular reabsorption of phosphate occurred during several months. Biopsy of the iliac crest confirmed that tumor removal was followed by resolution of osteomalacia, but there was no accompanying increase in vertebral mineral density as assessed by quantitative computed tomography or in total-body bone mineral as measured with dual-photon absorptiometry. The findings presented are consistent with secretion by the tumor of a factor with a short half-life that is potent enough to inhibit renal 25-hydroxyvitamin D-1 alpha-hydroxylase despite hyperparathyroidism. The resulting subnormal circulating 1,25-dihydroxyvitamin D levels may have secondarily contributed to decreased renal tubular reabsorption of phosphate.

Chronic Disease↗

Non uniform effect of estradiol on the rat skeleton.

Pharmacological doses of estradiol administered to rats increased the Ca mass of their femurs through a significant reduction in the rate of Ca resorption. On a body basis, the same animals showed increased rates of skeletal Ca deposition and resorption and no effect on the skeletal mass. The non uniform effect of estradiol on the skeleton, if confirmed in the human being, may limit the applicability of estrogenic treatment.

Animals↗