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Biomedical subjects

R Bouillon

Publications and source records attributed to R Bouillon.

At least 181 records · Page 10Linked to original sources

Prevention of type I diabetes in NOD mice by nonhypercalcemic doses of a new structural analog of 1,25-dihydroxyvitamin D3, KH1060.

Pharmacological amounts of 1,25-dihydroxyvitamin D3 [1,25-(OH)2D3] have potent immunoregulatory activity, but with marked effects on calcium and bone metabolism. In this study we demonstrate that nonhypercalcemia-inducing nondemineralizing doses of an analog of 1,25-(OH)2D3, 1 alpha,25-(OH)2-20-epi-22-oxa-24,26,27-trishomo-vitamin D (KH1060), can prevent type I diabetes. Female NOD mice received 1,25-(OH)2D3 (5 micrograms/kg), KH1060 (0.4 or 0.2 micrograms/kg), or the treatment vehicle ip every 2 days from 21-200 days of age. The incidence of diabetes in controls was 17 of 31 (55%), whereas 7 of 38 (18%) 1,25-(OH)2D3-treated mice, 3 of 27 (11%) KH1060 (0.4 micrograms/kg)-treated mice, and 6 of 27 (22%) KH1060 (0.2 micrograms/kg)-treated mice developed diabetes (P < 0.025 vs. controls). Protection was achieved with the low KH1060 dose without effects on calcium or bone metabolism, as evaluated by serum calcium (9.5 +/- 0.4 vs. 9.4 +/- 0.3 mg/dl in controls; P = NS), serum osteocalcin (82 +/- 17 vs. 83 +/- 20 ng/ml; P = NS), bone calcium content (6.8 +/- 0.7 vs. 6.4 +/- 0.5 mg/tibia; P = NS), urinary calcium (21 +/- 4 vs. 21 +/- 4 mg/dl; P = NS), pyridinoline excretion, and duodenal calbindin-D9K concentration. The proposed mechanism of action is a restoration of suppressor cell activity, as demonstrated in vitro (suppressor cell assay) and in vivo (cell transfer experiments). This study demonstrates that an analog of 1,25-(OH)2D3 prevents type I diabetes in NOD mice without significant effects on calcium or bone metabolism.

Animals↗

Influence of age, sex, and insulin on osteoblast function: osteoblast dysfunction in diabetes mellitus.

The osteoblast function was evaluated in normal and diabetic children and adults by measurements of the serum concentration of the carboxy-terminal extension peptide of procollagen (PICP), total and skeletal alkaline phosphatase (ALP), and osteocalcin. Moreover, the osteoblast-stimulating growth factor, insulin-like growth factor I (IGF-I), was measured in the same samples. In normal children (n = 420; age, 5-20 yr), a marked pubertal increase of serum IGF-I (peak values at age 14-16 yr in both sexes), osteocalcin, and total and skeletal ALP (peak values earlier in girls than in boys) and a small increase in PICP were observed. All osteoblast markers and IGF-I were markedly lower in normal adults (n = 229; age, 21-69 yr) than in children. All osteoblast parameters showed a high degree of correlation (P < 0.001) with each other. In adolescents (n = 104) treated for insulin-dependent diabetes mellitus (IDDM), serum IGF-I (-19%), osteocalcin (-28%), and skeletal ALP (-28%) were markedly decreased, whereas total ALP was significantly increased (29%), and serum PICP remained normal. In adult IDDM (n = 125), both serum IGF-I (-41%) and osteocalcin (-24%) were decreased, but skeletal ALP and PICP remained normal. A similar abnormality in serum IGF-I and osteocalcin was observed in white (n = 61) and Pima Indian (n = 16) non-IDDM patients. The concentration of skeletal ALP was highly significantly correlated (r > or = 0.9) with total ALP in both normal and diabetic subjects, but the slope of the regression was significantly different, indicating the presence of other, probably intestinal, ALP in all types of diabetes. In conclusion, the osteoblast function is significantly decreased in diabetic patients, which can best be characterized as a maturation defect, since the early osteoblast marker, PICP, remained normal in all types of diabetes, whereas a later marker, skeletal ALP, is frankly abnormal only in diabetic children. The most mature osteoblast marker, osteocalcin, is decreased in all types of diabetes irrespective of age.

Adolescent↗

[Rickets resistant to calcitropic hormones].

Resistance to vitamin D is known since a long time but was erroneously ascribed to phosphate deficiency (phosphate diabetes or deficiency in tubular phosphate reabsorption). True vitamin D resistance can either be due to lack of the receptor itself or to structural abnormality in the hormone -or DNA-binding site of the receptor whereas in a few cases post-receptor resistance has been documented. In view of the therapeutic consequences, diagnosis of vitamin D resistance is needed in every case of rickets not due to simple vitamin D deficiency. Such cases can be easily recognized by normal 25-hydroxyvitamin D concentration in the presence of biochemical, radiological or/and histological signs of rickets.

Drug Resistance↗

Rat diaphragm contractility and histopathology are affected differently by low dose treatment with methylprednisolone and deflazacort.

The extent to which treatment with low doses of the nonfluorinated steroid methylprednisolone affects diaphragm contractility and morphology is unknown. In the present study, we compared the effects of equipotent doses of methylprednisolone and deflazacort, an oxazoline derivate of prednisolone with less systemic side-effects on bone structure and carbohydrate metabolism. Twenty six male adult rats were randomized to receive daily saline (control), methylprednisolone 0.4 mg.kg-1 or deflazacort 0.5 mg.kg-1 i.m. Contractile properties and histopathology were measured after a 6 week treatment period. During treatment, body weight increased in control and methylprednisolone-treated animals, but decreased by 4.2 +/- 1.1% (mean +/- SD) in the deflazacort group. Similarly, diaphragm mass in the deflazacort group was decreased compared to control and methylprednisolone groups. Twitch tension and twitch characteristics of isolated diaphragm bundles were similar in the three groups. Maximal tetanic tension was decreased in the deflazacort group. The force-frequency curve of the deflazacort bundles shifted downwards compared to control. Fatigue occurring during this protocol was greatest in the methylprednisolone- and deflazacort-treated animals. Microscopic examination revealed no gross abnormalities in the three groups. Histochemical analysis after staining for myosin adenosine triphosphatase (ATP-ase) showed that in the deflazacort group cross-sectional area of type I, IIa and IIb fibres were decreased. We conclude that low doses of methylprednisolone caused subtle and negligible changes in rat diaphragm contractile properties without affecting fibre dimensions, while deflazacort at an equipotent dose induced generalized fibre atrophy and changes in diaphragm contractility.

Animals↗

[Immune modulation by vitamin D analogs in the prevention of autoimmune diseases].

Vitamin D has been discovered at the beginning of this century. 7-Dehydrocholesterol is converted to vitamin D3 in the skin and after several hydroxylations it is further converted to the active hormonal form, 1 alpha,25-(OH)2D3. Vitamin D stimulates the absorption of calcium and phosphate and is an essential link in bone resorption and formation and calcium metabolism. 1 alpha,25-(OH)2D3 acts through a vitamin D receptor. These receptors are not only present in clinical target organs (kidney, gut, liver) but can also be found in a wide variety of "non-classical" tissues (keratinocytes, cells belonging to the immune system). Moreover, numerous cells (keratinocytes, macrophages) can locally synthetize or can be induced to synthetize 1 alpha,25-(OH)2D3 and these cells are responsive to its action. When these data are combined, a possible paracrine function of 1 alpha,25-(OH)2D3 can be suspected. Via this paracrine function 1 alpha,25-(OH)2D3 can suppress the cellular and humoral immunity. Based on the discovery of these effects on immune cells in vitro it became clear that 1 alpha,25-(OH)2D3 might be an interesting molecule to prevent autoimmune diseases and organ transplantation. This has already been shown in several animal models (Heymann nephritis, diabetes mellitus, experimental allergic-encephalomyelitis, lupus). 1 alpha,25-(OH)2D3 demonstrates however some side-effects (hypercalciuria, hypercalcemia, bone resorption) and for this reason 1 alpha,25-(OH)2D3-analogs are developed with dissociated effects i.e. an activity profile that allows a specific action on non-classical tissues without calcemic effects. Some chemical modifications of the side chain, A and/or CD-ring results in "superanalogs" with 10 to 100-fold more activity on cell differentiation and the immune system then 1 alpha,25-(OH)2D3 but with less calcemic activity in vivo. These biological effects can be explained by differences in pharmacokinetics (low affinity for the plasma vitamin D-binding protein and short extracellular half-life) and increased intracellular activation and gen transactivation. Preclinical research must still be done to select the most potent superanalogs and to find the exact protocols for the prevention and treatment of autoimmune diseases and rejection of transplanted organs.

Animals↗

Effects of IGF-I, alone and in combination with 17 beta-oestradiol, on bone remodelling parameters in ovariectomised rats.

We studied the effects of recombinant human IGF-I (250 micrograms/day) and/or 17 beta-oestradiol (E2; 5 or 50 micrograms/kg/day), s.c., for 28 days, on plasma IGF-I and 1,25-(OH)2 vitamin D3 concentrations and on biochemical indices of bone remodelling (plasma osteocalcin, urinary pyridinolines) in 3 month-old rats that had been ovariectomised (OVX) 6 weeks before. Ten weeks after ovariectomy, plasma 1,25-(OH)2D3 was increased, but IGF-I and bone remodelling indices were within the normal range. RhIGF-I administration to OVX rats increased both IGF-I and 1,25-(OH)2D3 concentrations, as well as plasma osteocalcin and urinary pyridinoline excretion. By contrast, E2 decreased plasma IGF-I and 1,25-(OH)2D3 and the markers of bone remodelling. The combination of rhIGF-I and E2 resulted in intermediate effects. Multiple regression analysis showed that IGF-I correlated with plasma osteocalcin, and also with the urinary excretion of pyridinolines. The data shows that rhIGF-I stimulates bone remodelling in growing OVX rats, and that circulating IGF-I is a determinant of bone remodelling in vivo.

Amino Acids↗

Spontaneous reestablishment of self-tolerance in BB/Pfd rats.

We describe a substrain of BB rats, BB/Pfd, characterized by a loss of autoimmune potential soon after onset of diabetes. When fresh syngeneic (BB/Pfd) islets (6 islets/g body weight) were transplanted under the kidney capsule of diabetic BB/Pfd rats 1-2 weeks after diabetes onset (n = 14), no recurrence of diabetes occurred. When, however, islets were transplanted on the day of diabetes diagnosis (n = 16), 10 animals were able to destroy the transplant (P < 0.005 vs. previous group). Pancreatic biopsies taken at the moment of transplantation in both groups showed an almost complete disappearance of beta cells and also insulitis in the pancreata of the 1- to 2-week diabetic rats, while the acutely diabetic rats still conserved a certain amount of beta cells and a florid insulitis. The development of a general immune defect was not the cause of this nonrecurrence, since allogeneic islet grafts were easily rejected (7 of 8), nor was there a general defect in mounting immune memory, since second set skin grafts could be rejected in an accelerated manner (9.7 vs. 15.8 days). The development of suppressor mechanisms as cause for nonrecurrence could not be demonstrated, since transfer of lymphocytes taken from 1- to 2-week diabetic rats into acutely diabetic rats at the moment of syngeneic islet transplantation was unable to prevent recurrence of disease (6 recurrences in 10 animals). We conclude that in the BB/Pfd substrain, the autoimmune capacity wanes rapidly after the onset of diabetes. This loss of autoimmune potential is parallelled by a disappearance of insulitis in the native pancreas, but the exact mechanisms of the spontaneous reestablishment of self-tolerance remain unclear.

Animals↗

Calcitriol corrects deficient calcitonin secretion in the vitamin D-deficient elderly.

The thyroid calcitonin-producing C cells possess vitamin D receptors and synthesize the vitamin D-dependent calbindin D28K. The present study evaluates the possible direct or indirect influence of vitamin D on calcitonin secretion in the elderly. Serum calcitonin was measured before and after a short calcium infusion (1.5 mg/kg over 10 minutes) in nine normal young adults (30 +/- 4 years, mean +/- SEM) and eight elderly subjects (78 +/- 4 years). The test was repeated 48 h after the last of three intravenous injections of calcitriol (2 micrograms) given every other day. Basal serum calcium did not change, but basal calcitonin of the elderly increased from 7 +/- 1 to 10 +/- 1 pg/ml (p < 0.06), similar to basal values in young adults (11 +/- 1 pg/ml). The increase in calcitonin after calcium infusion increased from 8 +/- 1 to 14 +/- 1 pg/ml (p < 0.001) after calcitriol treatment and approached the increase in young adults (18 +/- 3 pg/ml). These data demonstrate that calcitriol can improve and nearly normalize the impaired calcitonin secretion of the mildly vitamin D-deficient elderly subjects without changes in serum calcium, whereas the inverse situation is observed for parathyroid hormone.

Adult↗

Brittle bones in spontaneously diabetic female rats cannot be predicted by bone mineral measurements: studies in diabetic and ovariectomized rats.

Spontaneously diabetic BB rats were sham operated (SO) or ovariectomized (OVX) within days after onset and studied after 4, 8, and 12 weeks. Analyses included histomorphometry of proximal tibial metaphyses, biochemical analyses of humeri, DXA analyses, and biomechanical testing of femora. In SO diabetic rats, no osteoblasts, osteoid tissue, or osteoclasts were present on the trabecular bone surface, but trabecular bone volume (TBV) remained normal compared with control BB rats. The concentration of IGF-I per dry weight of humerus was decreased after 12 weeks of diabetes, whereas the concentrations of calcium and osteocalcin did not change. DXA analysis showed normal bone mineral density (BMD) at both diaphyseal and metaphyseal femoral areas. On biomechanical testing, angular deformation, energy absorption, and torsional strength of the femora were decreased after 8-12 weeks of diabetes, but stiffness was normal. Ovariectomy in diabetic rats caused a decrease in femoral BMD especially at the metaphysis, and there was a trend toward decreased TBV in the tibial metaphysis; TBV loss was less marked than in control OVX rats, however. The increase in BMD at the femoral diaphysis, measured after 12 weeks of OVX in control rats, was absent in diabetic rats. Multiple-regression analysis indicated that the presence of diabetes but not ovariectomy, weight, and mineral content correlated with decreased energy absorption, angular deformation, and strength of the femora. The data infer that the (near) absence of unmineralized bone matrix in severely diabetic rats alters bone microarchitecture and ultimately results in brittle bones, which is not predicted by BMC or BMD measurements.

Absorptiometry, Photon↗

Prevention of autoimmune diabetes in NOD mice by 1,25 dihydroxyvitamin D3.

1,25 dihydroxyvitamin D3, the active form of vitamin D, has immunomodulatory properties in vitro and in vivo. We report that treatment with 1,25 dihydroxyvitamin D3 (5 micrograms/kg on alternate days) prevents the development of clinical diabetes in NOD mice, an animal model of human autoimmune diabetes. Diabetes incidence in female NOD mice at the age of 200 days was reduced to 8% in the 1,25 dihydroxyvitamin D treated group vs 56% in the control group (p < 0.0001). In parallel, treatment with 1,25 dihydroxy-vitamin D3 resulted in a complete normalisation of the capacity to induce suppressor mechanisms in an autologous MLR, which is severely depressed in control NOD mice. The existence of such suppressor cells was confirmed in transfer experiments, whereby cotransfer of splenocytes from 1,25 dihydroxyvitamin D3 treated NOD mice prevented diabetes transfer by splenocytes from diabetic NOD mice into irradiated, 6-8-week-old male NOD mice. Other known immune defects of the NOD mice, such as defective natural killer cell killing of YAC-1 targets and defective thymocyte activation by anti-CD3 were not corrected. The pharmacological doses of 1,25 dihydroxyvitamin D3 were universally well tolerated as reflected by a normal weight gain of the mice. Serum calcium was increased (2.5 +/- 0.2 vs 2.2 +/- 0.2 mmol/l in the control group, p < 0.005), whereas osteocalcin levels nearly doubled and bone calcium content was halved. These findings show that 1,25 dihydroxyvitamin D3 can prevent diabetes in NOD mice, probably through the correction of their defective suppressor function.

Animals↗

Association of particular HLA class II alleles, haplotypes and genotypes with susceptibility to IDDM in the Belgian population.

Using a highly discriminatory DNA typing technique, based on the polymerase chain reaction and reverse dot blot hybridization, more refined results were obtained on the association of particular HLA class II alleles, haplotypes and genotypes with insulin-dependent diabetes mellitus in the Belgian population. The previously reported predisposing effect for the DRB1*0301 encoded DR3 serologic specificity was confirmed and could be assigned to the DRB3*0200 encoded DR52b serologic specificity. A second high risk haplotype, DRB1*0401-DQB1*0302 encoding the DR4-DQ8 serologic specificity, accounted for increased susceptibility both in the total insulin-dependent diabetic population and among DR4-positive patients. Moreover, we found that these DR4 associated DRB1 and DQB1 alleles act as independent risk factors. A possible role for the DPB1 locus can be rejected since the observed predisposing effect for DPB1*0202 probably occurred due to linkage disequilibrium of this allele with DRB1*0301. Particular extended haplotypes accounted for the decreased relative risk observed for the DR2, DR11 and DR13 serologic specificities. The highest relative risk was observed for those DQA1/DQB1 genotypes, allowing for the formation of 4SS (DQ alpha Arg52+/DQ beta Asp57-) heterodimers.

Adolescent↗

Androgen resistance and deficiency have different effects on the growing skeleton of the rat.

Mature male, female, and androgen-resistant testicular feminized (Tfm) male rats of the same strain were sacrificed at the age of 120 days. Young male and Tfm rats were orchidectomized (orch) at 1 month of age and sacrificed at 120 days. The right femora were dissected, cleaned, defatted, and scanned with the Hologic QDR-1000. Orch and Tfm rats had similar body weights that were intermediate between body weights of their normal male and female littermates. Serum IGF-I concentrations were lowest in Tfm rats; IGF-1 concentrations in orch rats were not lower than in males. Dual-energy X-ray absorptiometry yielded the following results: Total femoral mass and area were lower in female, Tfm rats and in both orch groups compared with intact male rats. Femoral bone density was, however, only decreased in orch rats. Bone density measured in an area containing only cortical bone was not different between groups. However, the density was lower in orch rats in an area containing both cancellous and cortical bone. This finding is consistent with a +/- 50% decrease of cancellous bone volume in orch rats compared with all other groups at the proximal tibial metaphysis (an area containing mainly cancellous bone). These data show that Tfm rats, despite having lower IGF-I levels in serum, low body weight, and decreased femoral areas, manage--in contrast with orchidectomized rats--to maintain similar trabecular bone densities and volumes during growth. We conclude that trabecular bone densities can be preserved in androgen-resistant male rats independent of bone or body growth velocity or IGF-I secretion.(ABSTRACT TRUNCATED AT 250 WORDS)

Absorptiometry, Photon↗

The biological activity of 23-oxa-, 23-oxa-24-oxo-, and 23-thia-dihydroxyvitamin D3.

Three analogs of 1 alpha,25-(OH)2D3 with an oxygen or another heteroatom at position 23 were synthesized in search of separating the cell-differentiating from the calcemic effects of the vitamin D hormone. Their ability to induce superoxide production in human myeloid leukemia cells (HL-60) was 1 alpha,25-(OH)2D3 > 23-oxa-24-oxo-1 alpha,25-(OH)2D3 > 23-thia-1 alpha,25-(OH)2D3 > 23-oxa-1 alpha, 25-(OH)2D3. 23-oxa-24-oxo-1 alpha, 25(OH)2D3 was slightly more potent than 1 alpha,25-(OH)2D3 in inhibiting cell proliferation in MCF-7 cells and 23-thia- and 23-oxa-1 alpha,25(OH)2D3 were less potent. Their in vitro potency to produce osteocalcin in MG-63 cells was 1 alpha,25-(OH)2D3 > 23-oxa-24-oxo-1 alpha,25-(OH)2D3 > 23-thia-1 alpha,25-(OH)2D3 = 23-oxa-1 alpha,25-(OH)2D3. All three analogs had reduced receptor and DBP affinity compared to 1 alpha,25-(OH)2D3. When these analogs were injected in rachitic chicks, only little calcemic effects were observed. The introduction of a heteroatom in carbon 23 of 1 alpha,25-(OH)2D3 thus creates analogs with dissociated action on cell differentiation and calcium homeostasis.

Animals↗

Time-related increase of biochemical markers of bone turnover in androgen-deficient male rats.

Bone loss during androgen deficiency has been associated with accelerated bone turnover and imbalance between bone formation and resorption but the relative increase of both phenomena is not well described. Serum osteocalcin as marker of bone formation and urinary excretion of pyridinoline (PYD) and deoxypyridinoline (DPD) as markers of bone resorption were measured in both orchidectomized (ORCH, n = 8) and sham-operated (SHAM, n = 8) aged (12-month-old) male rats from 2 days before until 66 days after surgery. PYD and DPD were significantly higher in the ORCH group compared to the SHAM group starting from 21 days after surgery until the end of the experiment. Serum osteocalcin was only significantly increased in the ORCH group at 30 and 40 days. The maximal increase of serum osteocalcin was also smaller than the increase in PYD and DPD (30% versus 74% and 112%, respectively). The two markers of bone resorption were correlated with osteocalcin (r = 0.63 for PYD and r = 0.71 for DPD). Based on these results, we conclude that (1) bone resorption, as measured by PYD and DPD, increased during androgen deficiency; (2) moreover, the increase of bone resorption, as measured by DPD and PYD, was followed by a more moderate increase in bone formation as measured by serum osteocalcin, supporting the hypothesis that androgen deficiency causes accelerated bone turnover and imbalance between bone resorption and bone formation.

Amino Acids↗

1,25-Dihydroxyvitamin D3 and osteocalcin in maternal and fetal guinea pigs.

Maternal and fetal 1,25-dihydroxyvitamin D3 (1,25(OH)2D3) and osteocalcin were measured in guinea pigs, to examine their potential use as animal models for fetal bone development and calcium homeostasis. Measurements were performed on days 42, 57 and 63 of gestation. Maternal serum total 1,25(OH)2D3 concentrations were increased only at the end of gestation (day 63). However, because the vitamin D binding protein (DBP) and albumin levels were decreased by 35-50% from day 42 onwards, the unbound 1,25(OH)2D3, calculated as the 1,25(OH)2D3/DBP molar ratio, was increased before day 63. Osteocalcin concentrations during gestation were 50-54% of levels found in nongravid animals. Fetal serum total 1,25(OH)2D3 concentrations were 20% of those in maternal guinea pigs. Since DBP levels were only 9-15% of maternal levels, the unbound 1,25(OH)2D3 was consistently higher in fetuses, from day 42 onwards. There was a rise in total and unbound 1,25(OH)2D3 between days 57 and 63 of fetal life. Osteocalcin concentrations were higher in fetal than in adult guinea pigs, and reached peak values on day 57 (1023 micrograms/l, i.e. 4.2 times higher than in adult female guinea pigs). Fetuses of guinea pigs that had received a restricted food supply for 14 days (days 49-63) had normal 1,25(OH)2D3 concentrations, but decreased osteocalcin concentrations compared with normal fetuses. The data obtained in fetal guinea pigs are comparable with those found in human fetuses, and suggest that the guinea pig may be a suitable model for studies on fetal bone and mineral development.

Animals↗