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The influence of experimental hypo- and hyperthyroid states on acute and chronic inflammatory reactions: modified response to non-steroidal anti-inflammatory agents.

Hyperthyroid and hypothyroid states were induced in rats by administration of triiodothyronine or surgical thyroparathyroidectomy. The anti-inflammatory activity of Indomethacin, Oxametacine and Phenylbutazone was evaluated in these animals using paw oedema provoked by carrageenan granulomas induced by cotton pellets and polyarthritis induced by Freund complete adjuvant. Our results indicate that the hyperthyroid state leads to a significant inhibition of the acute inflammatory response to carrageenan, while hypothyroidism has no effect. There was a marked increase in the anti-inflammatory activity of Indomethacin and Phenylbutazone in hyperthyroid rats. By contrast, in thyroparathyroidectomised animals the anti-inflammatory effect of these drugs appeared less than in euthyroid rats. The hyperthyroid state slightly inhibited the development of the cotton pellet-induced granuloma, while hypothyroidism enhanced it. Treatment of hypothyroid animals with the anti-inflammatory drugs resulted in a significant decrease in the size of the granuloma. In the hyperthyroid state, the activity of the compounds appeared similar to that detected in euthyroid rats. Neither hyperthyroidism, nor hypothyroidism affected the inflammatory response to mycobacterial adjuvant, or the effect of anti-inflammatory drugs on the response. These results suggest that thyroid hormones may influence, to various degrees the development of acute inflammation due to carrageenan, and chronic inflammation due to implanted cotton pellets. Our results indicate also that hyper- and hypothyroid states can modify the response of the rat to some non-steroidal anti-inflammatory drugs.

Animals↗

The effects of changes in serum calcium and parathormone on plasma renin activity in intact mongrel dogs.

Studies were undertaken to extend previous observations of the interaction between calcium and parathormone on renin synthesis by the kidney. Intact normovolemic mongrel dogs between 15 and 25 kg were used for all studies. Plasma renin activity (PRA) was measured by radioimmunoassay. Hypocalcemia produced by thyroparathyroidectomy or chelation with EDTA resulted in an elevated PRA of 3.76 +/- .86 ng/ml/hr in 17 dogs compared to 1.5 +/- .29 ng/ml/hr in 14 controls (p less than .05). In 5 renovascular dogs calcium-channel blockade with nifedipine resulted in a higher PRA of 31.8 +/- 0.5 compared to 11.9 +/- 1.1 ng/ml/hr in 23 renovascular controls, p less than .001. The reactive hyperreninemia following angiotensin blockade was greater in 22 hypocalcemic (10.94 +/- 2.03 ng/ml/hr) dogs compared to 14 controls (1.32 +/- .34 ng/ml/hr), p less than .001. Results with calcium antagonism on PRA levels in renovascular dogs were found similar to those described with angiotensin blockade. We conclude from these studies that calcium-channel blockade or calcium reduction independent of a rise in parathormone was associated with an elevation of PRA in normal and renovascular hypertensive dogs. The rise in PRA could occur without changes in blood pressure or volume, consistent with an interruption of the short feedback loop control of renin synthesis by calcium antagonism. Finally, hypocalcemia and calcium-channel blockade resulted in reactive hyperreninemia greater than or equal to that seen after angiotensin blockade in both groups of dogs, again suggesting interference with the short feedback loop control of renin synthesis.

Animals↗

Regulation of renal calbindin-D28K: the role of calcitonin.

Infusion of calcitonin lowers circulating calcium, but in the distal tubule of the kidney, pharmacological doses of calcitonin increase the active calcium reabsorption. Calbindin-D28k plays a significant role in the calcium reabsorption in the distal convoluted tubule of the kidney. The effect of calcitonin on renal calbindin-D28k in relation to calcium metabolic changes was therefore examined. In study 1, thyroparathyroidectomy followed by autotransplantation of the parathyroid glands (TX) was compared with a sham operation in rats. TX reduced plasma calcitonin from 54 +/- 2 to 9 +/- 1 pg/ml (P < 0.001), whereas ionized calcium and parathyroid hormone were returned to the control value after an initial decrease, indicating a successful implantation of the parathyroid glands. No changes were seen in calbindin-D or plasma 1,25(OH)2D. In study 2, subcutaneous infusion of salmon calcitonin 2.5 U/kg/hour via osmotic pumps was compared with infusion of vehicle in rats. Ionized calcium was reduced from 1.37 +/- 0.01 to 1.33 +/- 0.02 mmol/liter (P < 0.05), whereas no changes were seen in renal or intestinal calbindin-D or in plasma 1,25(OH)2D. After TX, only calcitonin decreased whereas the other calcium metabolic parameters showed no change. This indicates that in rats, selective elimination of calcitonin does not influence other parameters of the calcium metabolism and that the effect of calcitonin on calcium transport in the distal tubule is not mediated via an increase in renal calbindin-D28k.

Animals↗

Tubular adaptation to Pi restriction in hypophysectomized rats.

The renal tubule adapts its tubular transport capacity for inorganic phosphate (Pi) in response to a reduction in the Pi supply. In order to assess whether growth hormone plays a critical role in this adaptive response we have studied the change in the tubular handling of Pi which follows Pi restriction in hypophysectomized (HPX) rats and compared it to that occurring in intact counterparts. HPX and intact rats were maintained either on a 1.2 g/100 g phosphorus diet or fed a 0.2 g/100 g phosphorus diet for 3, 6 or 12 days. HPX rats received ACTH and thyroxine in doses which normalize their low glomerular filtration rate (GFR). Then the maximal net Pi reabsorption per volume of glomerular filtrate (max. TRPi/ml GFR) were determined during acute Pi infusion by clearance technique. The results indicate that HPX rats responded to Pi restriction by raising their tubular capacity to reabsorb Pi. However, the rapidity and the magnitude of the adaptive response was significantly less in HPX than in intact rats. The adaptation to Pi restriction was also observed in HPX rats after thyroparathyroidectomy. It is concluded that growth hormone and other pituitary hormones do not play a key role in the adaptive response to Pi restriction. The reduced adaptive response observed in HPX rats with intact thyroparathyroid glands could be due to the decreased Pi demand consecutive to impaired growth.

Adrenocorticotropic Hormone↗

Phosphate uptake by superficial and deep nephron brush border membranes. Effect of the dietary phosphate and parathyroid hormone.

Dietary phosphate restriction and acute parathyroidectomy in rat are known to be associated with a selective increase in phosphate uptake by renal cortical brush border membranes (BBM). Conversely, phosphate loading and parathyroid hormone (PTH) administration result in a decrease of this uptake. In the present study, we investigated whether the response of the membrane to these various stimuli implies similar or different modifications of the kinetic properties of this membrane, whether these modifications affect one or both of the two systems of phosphate transport previously described, whether both superficial and deep nephron populations are involved, and whether the two stimuli: dietary phosphate, and parathyroid activity, are additive or not. Kinetic studies of phosphate (PO4) uptake by BBM vesicles were performed in seven groups of rats: control (N), acutely thyroparathyroidectomized (TPTX), PTH loaded (PTH), phosphate loaded (P+), phosphate depleted (P-), phosphate depleted with acute thyroparathyroidectomy (P-TPTX), and phosphate depleted-PTH loaded (P-PTH). In each of these experimental conditions, superficial and deep nephrons were investigated. Results indicated that 1. BBM from deep nephrons present a greater capacity for PO4 transport than those from superficial nephrons; 2. Whereas a dual system of PO4 uptake is observed in superficial BBM, deep BBM present only one single system; 3. Phosphate in the diet influences PO4 uptake by BBM to a greater extent in the deep than in the superficial nephrons; 4. PTH status on the contrary, equally influences both populations; 5. TPTX does not significantly enhance PO4 uptake in phosphate depleted rats; however, PTH loading curtails this uptake; 6.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Continuous in vivo measurement of plasma ionized calcium.

A new system for continuous in vivo measurement of ionized calcium in blood is presented. The system consists of a small chamber (400 microliter) which is thermostatized at 37 degrees C and contains a glass electrode for pH measurement and a calcium selective electrode. The chamber is mounted in an arteriovenous shunt between the femoral artery and femoral vein of heparinized (approximately 1IU/min.kg B.W.) rats. The perfusion of approximately 500 microliter/min is driven by blood pressure. The system is tested in rats undergoing acute thyroparathyroidectomy and phosphate infusion. Due to this procedure ionized calcium falls from 0.9 mmol/l (total calcium 2.0 mmol/l) to 0.35 mmol/l (total calcium 1.2 mmol/l) after 5 hours. Tetany then occurs in all animals. The system presented simplifies the measurement of ionized calcium and has the advantages of immediate and continuous recording. It is especially apt for small animals in which repeated measurements with standard techniques involve large blood losses.

Animals↗

Expression of calcium-binding protein regucalcin mRNA in the kidney cortex of rats: the stimulation by calcium administration.

The expression of calcium-binding protein regucalcin mRNA in the kidney cortex of rats was investigated. The change of regucalcin mRNA levels was analyzed by Northern blotting using liver regucalcin complementary DNA (0.9 kb of open-reading frame). Regucalcin mRNA was expressed in the kidney cortex, and this expression was clearly increased by a single intraperitoneal administration of calcium chloride solution (5-15 mg Ca/100 g body weight) in rats; this increase was remarkable at 60-120 min after the administration. Thyroparathyroidectomy (TPTX) caused a slight decrease of regucalcin mRNA levels in the kidney cortex. However, the administration of calcium (10 mg/100 g) in TPTX rats produced a clear increase of regucalcin mRNA levels in the kidney cortex. The subcutaneous administration of calcitonin (10-100 MRC mU/100 g) or parathyroid hormone [1-34] (1-10 U/100 g) in TPTX rats which received calcium (10 mg/100 g) administration did not cause an appreciable alteration of regucalcin mRNA levels in the kidney cortex, suggesting that the mRNA expression is not stimulated by calcium-regulating hormones. The administration of trifluoperazine (TFP; 5 mg/100 g), an inhibitor of Ca2+/calmodulin action, completely blocked the expression of regucalcin mRNA stimulated by calcium administration. Now, calcium content in the kidney cortex was significantly elevated by a single intraperitneal administration of calcium (10 mg/100 g) in rats. The present study clearly demonstrates that the expression of regucalcin mRNA in the kidney cortex is stimulated by calcium administration in rats. This expression may be mediated through Ca2+/calmodulin action in the kidney cortex.

Adrenal Glands↗

Expression of calcium-binding protein regucalcin mRNA in rat liver is stimulated by calcitonin: the hormonal effect is mediated through calcium.

The involvement of a hypocalcemic hormone calcitonin (CT) in the expression of hepatic Ca(2+)-binding protein regucalcin mRNA was investigated. The change of regucalcin mRNA levels was analyzed by Northern blotting using liver regucalcin complementary DNA (0.9 kb). A single oral administration of calcium chloride (100 mg Ca/100 g body weight) to rats induced a remarkable increase in the serum calcium concentration and a corresponding elevation of the liver calcium content during 120 min after the administration. Thyroparathyroidectomy (TPTX) did not cause a significant increase in the liver calcium content after calcium administration. Hepatic regucalcin mRNA level was markedly elevated by calcium administration; the level was about 180% of controls at 60 min after the administration. This increase was completely abolished by TPTX. A single subcutaneous administration of CT (synthetic eel CT; 25-100 MRC mU/100 g) to TPTX rats received oral administration of calcium (100 mg/100 g) produced a remarkable increase in hepatic regucalcin mRNA levels; the level was about 280% of controls with the dose of 25 MRC mU CT/100 g. The present finding suggests that the expression of hepatic mRNA is stimulated by CT, and that the hormonal effect is mediated through Ca2+ in rat liver.

Animals↗

Biliary calcium and bile acid secretion in intact and TPTX rats with varying plasma calcium concentration.

Investigations of the effects of plasma calcium concentration on the relationship between biliary secretion of bile acid and calcium were performed in normocalcemic, calcium gluconate-induced hypercalcemic, thyroparathyroidectomy-induced hypocalcemic (TPTX) rats, and TPTX rats that received calcium gluconate to maintain normocalcemia. Studies were done at normal bile flow and at sodium taurocholate-stimulated bile flow. The results showed that biliary calcium secretion, which could occur in the absence of parathyroid hormone and calcitonin, was dependent mainly on plasma calcium concentration and was only partly influenced by bile acid secretion. Concerning the route of biliary calcium secretion, 80% was by the transcellular pathway and 20% was by the paracellular pathway. During theophylline-stimulated bile-acid-independent bile flow, the increase in bile-acid-independent calcium was found to be secreted by both pathways.

Animals↗

The inflammatory response of hyperthyroid and hypothyroid rats. Role of adrenocortical steroids.

The capacity to respond to inflammatory stimuli was tested in hyperthyroid and hypothyroid rats when thyroid defects, induced by hormone administration or thyroparathyroidectomy, respectively, were fully established. Whereas hyperthyroid rats presented consistently depressed inflammatory responses, hypothyroid rats responded in a normal fashion. Decreased reactions to intracutaneously injected histamine and serotonin, inhibited swelling reaction to carrageenin, injected into one of the hind paws, and depressed primary and secondary reactions to adjuvant (heat-killed M. tuberculosis), only occurred in the hyperthyroid group. In addition, only in this group of animals enlargement of the adrenal glands, reduced content of adrenal ascorbic acid, and decreased number of circulating eosinophils, which characterize a circumstance of adrenal cortical hyperactivity, were observed. A spontaneous reversal of the acute inflammatory response of hyperthyroid animals to carrageenin occurred 3-4 days after interruption of hormone administration, and this was coincidental with the return to normal of the previously enlarged adrenal glands. Similarly, specific inhibition of adrenal cortical steroid biosynthesis in hyperthyroid rats with aminoglutethimide, restored the previously depressed response to carrageenin, without interference with the increased levels of seric thyroxin, thus suggesting that the inhibitory effects of thyroid hormones on inflammatory responses are likely to be indirect. It is concluded that an excess of circulating thyroid hormones, but not their deficiency, can impair the development of inflammatory reactions, and that this effect, at least partially, depends on an increased secretion of adrenal corticosteroids.

Adrenal Cortex Hormones↗

Bone mineralization and metabolism of 3H-25-hydroxyvitamin D3 in thyroparathyroidectomized rats treated with parathyroid extract.

Thyroparathyroidectomized rats fed a diet containing 1.2% calcium, 0.55% phosphorus maintain normal serum levels of these ions. Treatment of such rats with parathyroid extract (PTE; 20 U/100 g twice daily; 10 days) has no statistically significant effect on rates of bone formation, matrix apposition, or osteoid maturation. Significant decreases in osteoid width and mineralizing front width, as well as a 60% increase in the rate of initial mineralization were observed in the PTE-treated group. Conversion of 3H-25-hydroxyvitamin D3 to 3H-1,25-dihydroxyvitamin D3 was 4-fold higher in the PTE-treated group than in the untreated animals. Increased formation of 1,25-dihydroxyvitamin D3 in response to treatment with PTE may play a major role in correcting the mineralizing defect resulting from thyroparathyroidectomy.

Animals↗

Hypercalcemic effect of catecholamines and its prevention by thyrocalcitonin.

Earlier work by others has shown that the catecholamines, epinephrine and isoproterenol, can raise blood calcium levels in parathyroidectomized but not intact rats, and can restrict the hypocalcemic effect of injected thyrocalcitonin (TCT). The present findings support this earlier work, further showing that such catecholamines can produce hypercalcemia in rats after removal of the thyroid gland by acute thyroparathyroidectomy (TPTX) and indicating that these drugs may raise blood calcium by mobilizing calcium from bone. Rats were fasted overnight, subjected to TPTX and concurrently injected with adrenergic agonist or antagonist drugs alone or in combination. Epinephrine, isoproterenol, and the beta-2 adrenergic agonist, salbutamol, in doses greater than or equal to 1 mg/kg raised blood calcium from low normal levels (approximately 9-10 mg/100 ml) by 1.5 to 2 mg/100 ml (p less than 0.01). Hypercalcemia was apparent by 1 hour after injection and lasted for 1-4 hours. The extent of Ca elevation was dose-related. Pretreatment of rats with the alpha-adrenergic antagonist, phenoxybenzamine, enhanced the effect of epinephrine while pretreatment with the beta-antagonist, propranolol, reduced the effect of isoproterenol. The more selective beta-2 antagonist, butoxamine, but not the beta-1 antagonist, practolol, also reduced the hypercalcemic effect of isoproterenol in TPTX rats. These results suggest that catecholamine-induced hypercalcemia in TPTX rats is mediated by beta-2 adrenergic receptors. Related studies using rats prelabeled with 45Ca further suggest that the catecholamines, like parathyroid hormone, may act to raise blood calcium by mobilizing calcium from bone. The fact that these catecholamines could induce marked hypercalcemia in acutely TPTX rats but not in intact rats indicated that endogenous TCT protects the thyroid intact rat against hypercalcemia. The present findings support this idea in showing that isoproterenol and salbutamol raised levels of immunoreactive rat TCT in both thyroid venous and peripheral blood. Catecholamines apparently can promote TCT secretion, either directly or by a small transient increase in blood calcium. This, in turem, acts to combat hypercalcemia in thhroid-intact rats.

Albuterol↗

Osteoclast development in immobilized bone is suppressed by parathyroidectomy in mice.

We tested the hypothesis that signaling of parathyroid hormone (PTH) facilitates osteoclastogenesis in bone marrow cells after immobilization, thereby reducing trabecular bone volume. We performed histomorphometric analyses in immobilized limbs after right sciatic neurectomy (IM) and in the contralateral limbs after sham surgery (M). Mice underwent thyroparathyroidectomy (TPTX) and then 0.2 microg/body of thyroxine was given three times a week, or the mice were subjected to sham surgery (sham). Six-week-old male ddY mice were assigned to four groups, as follows, after acclimatization for 1 week: M + sham, IM + sham; M + TPTX, and IM + TPTX. Bilateral tibial samples were used for analysis. Trabecular bone volume (BV/TV) in the secondary spongiosa of the proximal tibias in IM + sham was significantly reduced compared to that in M + sham. Osteoclast surface (Oc.S/BS) and number (Oc.N/BS) in IM + sham transiently increased at 3 and 4 weeks after IM. In contrast, TPTX partially prevented the IM-related reduction of BV/TV and completely suppressed the transient increases of Oc.S/BS and Oc.N/BS. In the bone marrow cells, the mRNA expression of RANKL was elevated in IM + sham, but not in IM + TPTX, compared to that in M + sham. The percentage of Mac-1-positive bone marrow cells, osteoclast precursors, was not altered after IM. There were no significant differences in the concentrations of interleukin (IL)-1alpha in the tibial bone marrow cell culture medium between M + sham and IM + sham. Our data demonstrated that significant increases in osteoclast surface and number after IM were suppressed in TPTX mice, closely associated with a reduction in the high expression of RANKL mRNA in the tibial bone marrow cells. We speculate that enhanced osteoclastogenesis due to limb immobilization may be related to the elevation of RANKL expression by the facilitation of parathyroid hormone signaling in bone marrow cells.

Animals↗

Parathyroid hormone inhibition of phosphate transport in renal brush border vesicles from phosphate-depleted dogs.

Dietary phosphate (Pi) restriction increases renal Pi reabsorption and induces resistance to the phosphaturic action of parathyroid hormone. Na+-gradient-stimulated Pi transport in membrane vesicles isolated from the renal brush border of experimental animals has been shown to parallel changes in renal Pi reabsorption induced by dietary Pi restriction and in vivo administration of parathyroid hormone. Dietary Pi restriction has been shown to markedly inhibit the phosphaturic response to parathyroid hormone in rats and dogs. Parathyroid hormone has been reported not to decrease the Na+-gradient-stimulated transport of Pi in brush border membrane vesicles isolated from dietary Pi restricted rats unless the rats were administered an acute Pi load prior to killing, however, thyroparathyroidectomy of rats fed a low Pi diet has been reported to increase Na+-gradient-stimulated Pi transport. Using the dietary Pi restricted dog, we demonstrated no significant decrease in renal reabsorption of Pi in response to parathyroid hormone administration. However, significant decreases in Pi transport in brush border membrane vesicles isolated from the kidneys of dietary Pi restricted dogs were observed in response to in vivo parathyroid hormone administration. These data demonstrate that the resistance to the phosphaturic action of parathyroid hormone observed in vivo does not include resistance to the inhibitory effect of parathyroid hormone on Pi transport in brush border membrane vesicles. Thus, the data suggest that parathyroid hormone continues to alter Pi transport characteristics of the brush border membrane in states of Pi depletion despite the resistance to parathyroid hormone seen in vivo.

Animals↗

A rapid and sensitive in vitro assay of 25-hydroxyvitamin D3-1 alpha-hydroxylase and 24-hydroxylase using rat kidney homogenates.

A sensitive and rapid in vitro assay of 25-hydroxyvitamin D3 [25-(OH)D3]-1 alpha- and 24-hydroxylase activities was developed using rat kidney homogenates. A potent inhibitor of the enzymes in rat plasma was removed by thoroughly perfusing rats with saline. Kidney homogenates prepared from vitamin D-deficient rats preferentially produced tritiated 1 alpha,25-dihydroxyvitamin D3 [1 alpha,25(OH)2D3] from 25(OH) [3H]D3. Addition of 10 microliter or more of rat plasma to 3 ml of 10% kidney homogenates suppressed 1 alpha-hydroxylase activity dose-dependently. Thyroparathyroidectomy (TPTX) of vitamin D-deficient rats greatly abolished 1 alpha-hydroxylase activity. Administration of parathyroid hormone to the TPTX rats increased 1 alpha-hydroxylase activity and that of 1 alpha,25(OH)2D3 enhanced 24-hydroxylase markedly. Since this assay is technically simple, rapid and sensitive, it will be useful in studying the regulatory mechanism in the renal metabolism of 25(OH)D3 in mammals.

25-Hydroxyvitamin D3 1-alpha-Hydroxylase↗

Response of rat brain to calcitonin alteration.

Endogenous calcitonin was altered in rats by thyroparathyroidectomy, followed by supplementation with thyroxine and calcium. As a result, a reduction in the content of 5-hydroxytryptamine in the brain together with an increase in the concentration of tryptophan in the plasma were observed. The changes were accompanied by a diminution in the activity of both choline acetyltransferase and acetylcholinesterase in the cerebral hemispheres. The results are consistent with those produced by exogenous hormone and suggest that calcitonin probably plays a role in the regulation of 5-hydroxytryptamine levels in the brain.

Acetylcholinesterase↗

Calcium influxes into brain and cerebrospinal fluid are linearly related to plasma ionized calcium concentration.

Unidirectional Ca influxes into brain and cerebrospinal fluid (CSF) were measured at different plasma concentrations of ionized Ca ([Ca]i) in pentobarbital-anesthetized rats. Plasma [Ca]i was varied acutely from 0.6 to 3.0 mumol/ml by intravenous infusion of EGTA, NaCl or CaCl2 or by thyroparathyroidectomy. Ca influx was determined from the 15-min uptake of 45Ca after intravenous injection. There were significant regional differences in 45Ca uptake into the CNS, with a approximately 20-fold greater rate into ventricular CSF than into frontal cortex. Autoradiographs of 45Ca uptake demonstrated that uptake into frontal cortex reflects primarily transport across the cerebral capillaries, whereas uptake into ventricular CSF reflects transport across the choroid plexuses. At both sites, Ca influx was a linear function of plasma [Ca]i and extrapolated to zero at [Ca]i = 0. Infusion of EGTA or CaCl2 did not alter the integrity of the blood-brain barrier, as determined by the permeability to [14C]sucrose. These results indicate that Ca influx into the CNS is not regulated by a saturable mechanism that is sensitive to acute changes in plasma [Ca]i. The proportionality between influx and concentration is suggestive of passive diffusional transport. The brain is protected from acute changes in plasma [Ca]i by the low cerebrovascular permeability to Ca, approximately 5 X 10(-8) cm/s.

Animals↗

The importance of the stomach in mediating histamine-induced hypocalcemia in the rat.

The effect of histamine on serum calcium homeostasis was studied in the rat. After the intravenous administration of 0.5-1.0 mg histamine base to fasted Holtzman rats weighing 80-100 g, a significant lowering of serum calcium (Ca) level occurred 30 min after injection (decrease in Ca, 1.4-1.9 mg/100 ml), but normocalcemia returned at 60 min. Repeat intravenous injections of histamine 1.0 mg resulted in repeated lowering of the serum Ca level. Hypophosphatemia did not accompany the hypocalcemia. Thyroparathyroidectomy (TPTX) did not eliminate the calcium-lowering effect of histamine in acute TPTX animals but did so in more chronic TPTX animals in which the mean serum Ca was 7.6 mg/100 ml or less. Gastrectomy, however, completely eliminated the calcium-lowering effect of histamine given in doses of up to 2 mg/rat (20 mg/kg of body weight), despite the presence of an intact thyroid gland. These studies support the role of a gastric factor and not the thyroid secretion of calcitonin in mediating this response in the rat.

Animals↗