Iritis following intravenous pamidronate.
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Biomedical subjects
Publications and source records attributed to D H Gutteridge.
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Potential determinants of bone mineral density (BMD) were studied cross-sectionally in 115 healthy, sexually mature Caucasian women aged 18 years. Bone mineral density (Hologic QDR1000W) of the lumbar spine, proximal femur (five sites), and distal tibia and fibula; fasting blood and urine calcium biochemistry; serum sex hormone levels (follicular phase); nutrient intakes; aerobic fitness; trunk muscle strength; and habitual activity levels were measured. The effects of heredity were considered by measuring the BMD of 107 of the subjects' mothers. Simple and stepwise regression analysis were used to identify significant determinants of BMD at each of the regions studied. The analysis indicated that significant bivariate correlations exist between BMD at all sites and body weight (r = 0.23-0.47, p < or = 0.01), lean body weight (r = 0.34-0.46), trunk strength (r = 0.27-0.47), physical activity score (r = 0.20-0.25), and aerobic fitness (r = 0.29-0.45). Dietary calcium intake correlated significantly with BMD at the trochanter site only (r = 0.19), and none of the biochemical or hormonal indices measured correlated consistently with BMD at any site. Significant correlations between the BMD of mothers and daughters ranged from r = 0.43 at lumbar spine to r = 0.34 at the intertrochanteric site. Paired t-tests showed the daughters had significantly (p < 0.03) lower BMD than their mothers at the lumbar spine (98 +/- 12% [mean +/- SD]) and significantly higher (p < 0.002) BMD at the femoral neck, trochanter, and total hip sites (110 +/- 16%, 108 +/- 17%, 103 +/- 14%, respectively). When stepwise regression analysis included weight-corrected strength of the trunk flexor muscles (Corr Flex), weight-corrected aerobic fitness (Corr VO2max), physical activity score, and body weight, body weight was the only significant determinant of BMD at all sites. Corr Flex made significant contributions at all sites except the femoral neck, while Corr VO2max made additional contribution at the femoral neck, trochanter, total hip, and shaft of femur sites. These variables accounted for 13-27% of the variance in BMD. The addition of mother's BMD to these independent variables, in stepwise regression analysis, improved the prediction to 18-31% of the variance.
Although women lose 30% of their skeletal mass after the menopause, the mechanism of this loss is uncertain. Clearly estrogen deficiency is important but whether this works only through direct effects on the skeleton is uncertain. To examine these mechanisms further we have evaluated calcium-related metabolic factors in 655 healthy women. Fasting blood samples were collected from all subjects who were up to 35 years past the menopause, and fasting urine and 24-h urine samples were collected in 365 women who were up to 25 years past the menopause. In the first 15 years postmenopause, there was a rise in total plasma calcium due to a rise in albumin. Bone resorption (hydroxyproline creatinine ratio), bone formation (alkaline phosphatase), and the urine calcium creatinine ratio all rose at menopause and remained elevated for the next 25 years. There was a transient further rise in bone resorption for the 10 years following menopause. Neither PTH nor the free calcitriol index changed for the first 10 years following menopause. Ten years past the menopause, although total calcitriol rose, the free calcitriol index fell due to a rise in vitamin D binding protein. PTH began to rise at 15 years past menopause. GFR fell gradually over the 25 years following menopause. Thus following menopause there is an increase in bone turnover and increased urine calcium loss independent of any effect of PTH or calcitriol, suggesting a direct effect of estrogen deficiency on bone and kidney.(ABSTRACT TRUNCATED AT 250 WORDS)
We report the prolonged biochemical changes that occurred in patients with Paget's disease when treated for 2-10 days with pamidronate disodium (3-amino-1-hydroxypropylidine-1,1-bisphosphonate, APD), by i.v. administration and observed for 6 months following therapy. In all 24 patients studied, bone resorption (measured by urinary hydroxyproline/creatinine ratio, OHP/Cr) fell sharply on treatment, from 0.12 +/- 0.02 (mean +/- SEM; above reference limits) to 0.04 +/- 0.008 (reference range 0.006-0.027 for females, 0.005-0.020 for males), remaining at this level for 6 months after therapy. A fall in serum ionized calcium (Ca2+) to just below the reference limits with treatment (1.11 +/- 0.02 mM; reference range 1.14-1.18 mM), followed by a rapid return to normal levels (1.14 +/- 0.02 mM, mean +/- SEM) within 8 days of treatment, was presumably due to the cessation of release of calcium from bone. This was followed by secondary hyperparathyroidism and a rise in serum 1,25-dihydroxyvitamin D [1,25(OH)2D]. The hormonal responses, however, were profound. Serum immunoreactive PTH (iPTH) rose to twice pretreatment values (86 +/- 11 pM, mean +/- SEM; reference range for iPTH, > 50 years, < 50 pM; < 50 years, < 40 pM), returning to normal 4-8 weeks after therapy. Serum 1,25-(OH)2D levels rose to three times pretreatment values (300 +/- 20 pM, mean +/- SEM; reference range 50-150 pM), remaining above reference limits 4-8 weeks after therapy (188 +/- 15 pM, mean +/- SEM) and returning to normal values only after 12 weeks.(ABSTRACT TRUNCATED AT 250 WORDS)
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Intravenous disodium 3-amino-1-hydroxypropylidene-1,1-bisphosphonate pentahydrate (pamidronate disodium) was used to treat 39 patients (22 males and 17 females, age range 48-85 years) with symptomatic Paget's disease. Patients were stratified into three groups based on the biochemical severity of the disease as assessed by fasting urinary hydroxyproline excretion (HypE, mumol/liter GF, glomerular filtrate): group I (n = 23), HypE < 5.0, treated with 120 mg total dose over 2 or 4 days; group II (n = 6), 5.0 < or = HypE < or = 10.0, 180 mg over 3 or 6 days; and group III (n = 10), HypE > 10.0, 240 mg over 4 or 8 days. Bone mineral density (BMD) was measured before and 3 and 6 months following treatment in the spine (L1-4) using dual-energy x-ray absorptiometry and in the forearm at an ultradistal and a shaft site using single-photon absorptiometry. When groups I-III were combined, nonpagetic and pagetic lumbar spinal BMD had both risen significantly at 3 months compared with the pretreatment values (p < 0.001). In each group, lumbar spinal BMD in pagetic vertebrae rose markedly by 3 months, with no further significant change at 6 months. The percentage rises in the three groups were not different from each other at 3 or 6 months. Nonpagetic lumbar spinal BMD followed a similar and significant trend but with a significantly smaller rise than for pagetic bone. (For the combined groups, nonpagetic BMD rose 5.1 +/- 1.1% SEM, above pretreatment at 6 months; pagetic BMD rose 17.8 +/- 1.6%: significance of comparison = p < 0.0001).(ABSTRACT TRUNCATED AT 250 WORDS)
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The future of sodium fluoride (NaF), the most potent osteoblast stimulator known to man, is in the balance. Of three recent randomized trials of continuous NaF only one found a significant in vertebral fractures in the NaF group. When data from the first year were excluded, two of the studies (those with the largest numbers) showed a significantly reduced risk of vertebral fracture on NaF. The effect of NaF on cortical bone is poorly documented. Two studies have shown reduced forearm cortical bone density with continuous NaF. A further two (histomorphometric) studies have shown the development of increased cortical porosity on continuous NaF treatment. In one, this was selectively at the external cortex and was linearly correlated with cancellous volume increase. Our pilot study using NaF administered cyclically has shown an encouraging (though non-significant) reduction in vertebral fracture rates (excluding year 1) and no fall in forearm cortical density. Another (US) cyclical study has shown no increase in cortical porosity. A current W. Australian randomized study of 50 patients is described where NaF dosage is varied proportional to the osteoblast response, and duration is dependent on densitometric and radiographic response. The future of NaF should involve cyclical administration, in cautious initial dosage (50-60 mg/day) of enteric-coated NaF, in conjunction with a potent inhibitor of resorption such as hormone replacement, bisphosphonates or calcitonin.
Lateral radiographs of the thoracic and lumbar spine were taken periodically in 49 patients with osteoporosis. Thirty patients were postmenopausal, and 19 nonmenopausal with osteoporosis due to steroids, male hypogonadism, alcoholism, thyrotoxicosis or unknown cause. Patients were studied before, during and after treatment with high calcium alone, or with combined calcium and sex steroids. Calcium was given as effervescent calcium lactate gluconate, and sex hormones as oestradiol valerate, testosterone oenanthate, or methenolone oenanthate. A total of 964 films covering 409 patient-years were available for measurement. On each vertebra, deformity due to loss of anterior height was measured and assigned to one of four grades. For the time interval between each consecutive pair of films, a patient's vertebral fracture rate score was calculated and expressed per thousand patient-years. In comparison with the corresponding pretreatment fracture rate score, both the postmenopausal and the nonmenopausal groups who had not received sex hormones previously, failed to show significant changes (p = 0.144; p = 0.017) on high calcium alone during mean periods of 4.3 and 2.8 years respectively. If the first 2 years on high calcium were excluded for the postmenopausal group, they still failed to show a reduction in fracture rate score (observed for a mean period of 5.0 years; p = 0.04). When treated with combined calcium and sex hormones, both postmenopausal and nonmenopausal groups showed a lower fracture rate score of 20 and 207 respectively when compared with the pretreatment levels of 1500 and 1697 (in mean treatment periods of 3.2 and 4.4 years; p less than 0.001 in each case). When given high-dose calcium alone, but after treatment with sex hormones as well, the postmenopausal group showed no change in fracture rate score from pretreatment (in a mean of 3.1 years; p = 0.069); however the nonmenopausal group still showed a significant reduction in fracture rate score from 1697 to 42 over a mean period of 2.3 years (p = 0.001). The postmenopausal group, after stopping all treatment, showed a higher fracture rate score of 1286 (in a mean of 2.6 years) than did those on combined calcium and sex hormones, in whom the fracture rate score was 20 (in a mean of 3.2 years; p = 0.008). A subgroup of 11 patients with osteoporosis of both the menopausal and nonmenopausal types, had data both before (in a mean of 5.5 years) and during (for a mean of 2.5 years) treatment with calcium alone; the fracture rate scores were 1473 and 918 (p = 0.247).(ABSTRACT TRUNCATED AT 400 WORDS)
The fractional absorption of calcium (FA-Ca) was measured using a dual non-radioactive Ca isotope technique in 26 control women, 49 women in the last trimester (36 weeks) of pregnancy and 31 of these women in established (20 weeks) lactation. The ratio of the two non-radioactive Ca isotopes was measured, by high precision thermal ionisation mass spectrometry, in urine 12-24 hours after administration and was used to calculate FA-Ca. This is the first study to clearly show that FA-Ca is significantly elevated in late pregnancy but not in established lactation, when compared with control women.
Intravenous 3-amino-1-hydroxypropylidene-1, 1-bisphosphonic acid (APD) was used to treat 26 patients with Paget's disease. Three daily dosages were studied; 20-30 mg/day in 20 patients, 45 mg/day in three patients and 60 mg/day in three patients, by daily 4-hour infusions for 2-10 days. The fasting urinary hydroxyproline excretion (HypE) declined exponentially, reaching 50% of pretreatment values at 1.92 +/- 0.16 (mean +/- SEM) days. This initial rapid decline was complete by 4 days following treatment to a mean of 28.0 +/- 3.4% of pretreatment values. Thereafter, there was no significant decline in HypE. The initial rate of decline of HypE was unchanged by increasing the daily dose of APD. Transient non-symptomatic hypocalcaemia with secondary hyperparathyroidism occurred in all patients. No adverse changes in the renal handling of calcium or phosphate, as seen with high-dose 1-hydroxyethylidene-1, 1-bisphosphonate (EHDP), were seen in any patient on any daily dose. Fever occurred in 73% of patients in the first 2 days of treatment. Overall, there was a significant fall in the lymphocyte count (P less than 0.005 febrile group, n = 19; P less than 0.02 non-febrile group, n = 7) and a fever-dependent rise in the neutrophil count (P less than 0.005 febrile group only). The occurrence of fever was associated with a more rapid decline in HypE, compared to the non-febrile group, so that HypE was significantly lower in the febrile group by day 5 (P less than 0.025). Seventy-two per cent of patients with bone and/or joint pain reported a reduction in pain.(ABSTRACT TRUNCATED AT 250 WORDS)
An oral calcium (Ca) tolerance test was used to compare the acute calcaemic, calciuric, parathyroid and bone turnover responses in 21 women at 36 weeks of pregnancy, 27 breast-feeding women studied 22 weeks postpartum and 27 control women. In all groups the oral Ca load increased plasma Ca and urinary calcium excretion (CaE), reduced intact PTH concentration (and consequently reduced renal phosphate and cyclic AMP excretion) and reduced hydroxyproline excretion (HypE, a biochemical index of bone resorption). There were no changes in the biochemical indices of bone formation, serum osteocalcin (elevated in the lactating group) and alkaline phosphatase, in any group. The pregnant women had the same fall in HypE and a greater calcaemic response than the controls. These results suggest that there is increased intestinal Ca absorption efficiency and a normal rate of bone resorption in late pregnancy. In contrast, the lactating women had a greater fall in HypE (from a baseline twice that of controls) and a significantly lower (p less than 0.001) rise in CaE, despite a calcaemic response similar to that of controls. Therefore, in lactation there is increased bone turnover and an increased capacity to reabsorb Ca in the renal tubule, compared to controls. An oral calcium supplement may benefit breast-feeding women, by reducing lactation-related elevated rate of bone resorption and consequent loss of trabecular bone.
Oral (44Ca: 0.13-0.20 mmol) and intravenous (42Ca: 0.02-0.037 mmol) isotopically enriched stable calcium (Ca) tracers were given together with an oral dose of 2.5 mmol of natural Ca to normal subjects. Blood and urine samples were collected up to 24 h after the tracer doses and atom fractions (AFs) of these tracers (relative to natural Ca) were measured by high-precision thermal ionization mass spectrometry (TIMS). The time-dependent fractional rate of oral dose absorbed and true fractional intestinal Ca absorption (alpha) were derived from the Afs by mathematical deconvolution. After 6 h, the ratio AF oral tracer/AF intravenous tracer in blood equalled that in urine and did not change thereafter. Reproducibility of the combination of chemical precipitation of Ca (from a urine standard) and subsequent TIMS measurements, in nine runs over 13 months, was 1.2% (coefficient of variation). This was in accord with the within-run reproducibility. An estimate of alpha derived from a single blood or urine measurement was 6-10% higher than the reference value obtained by deconvolution. This discrepancy could be explained by a correction factor depending, in part, on the elapsed time for peak Ca intestinal absorption rate. Instrumentally induced mass fractionation, as well as contributions from radiogenic Ca, had a significant effect on the accuracy and reproducibility of the ratio of AFs of tracers in blood and urine.
The calcium (Ca) metabolism of established human lactation was studied in 40 adult women (mean age 32.4 years) who had been breast-feeding for 6 months (Lac) and in 40 age-matched controls (Con) using fasting urine and blood biochemistry and forearm single-photon bone mineral densitometry (BMD). Serial studies were performed up to 6 months after weaning in Lac women and repeated once in Con women. During lactation the significant findings were (1) a selective reduction (7.1%, P less than 0.03) in BMD at the ultradistal site containing 60% trabecular bone, but not at two more proximal, chiefly cortical bone sites; (2) increased bone turnover affecting bone resorption [fasting hydroxyproline excretion, Lac 2.22 +/- 0.12 mumol/liter GF (mean +/- SEM), Con 1.19 +/- 0.04, P less than 0.001] and affecting bone formation (plasma alkaline phosphatase, Lac 81.9 +/- 2.5 IU/liter, Con 53.5 +/- 2.7, P less than 0.001, and serum osteocalcin, Lac 14.0 +/- 0.7 microgram/liter, Con 7.3 +/- 0.4, P less than 0.001); and (3) renal conservation in the fasting state of both Ca and inorganic phosphate (Pi) with a resultant moderate increase in plasma Pi but not in plasma Ca (total or ionized). There were no differences between the groups in serum parathyroid hormone (PTH, intact and midmolecule assays), 25-hydroxy- and 1,25-dihydroxyvitamin D, nephrogenous cyclic AMP production, or plasma creatinine.(ABSTRACT TRUNCATED AT 250 WORDS)
We report serum 25-hydroxyvitamin D (25-OHD), 24,25-dihydroxyvitamin D [24,25-(OH)2D], and 1,25-dihydroxyvitamin D [1,25-(OH)2D] levels in untreated Paget's disease and the effect of treatment with either calcitonin (CT) or etidronate (EHDP) on these levels. In untreated Paget's patients serum 25-OHD (73 +/- 29 nmol/liter, n = 36, mean +/- SD) and 24,25-(OH)2D (0.3-12.9 nmol/liter, median 2.2, n = 36) levels were significantly lower than in age-matched controls (94 +/- 30 nmol/liter, n = 32, p less than 0.005, and 1.3-16.4 nmol/liter, median 5.3; n = 32, p less than 0.001, respectively). Also, the 24,25-(OH)2D levels correlated with the 25-OHD levels in the untreated Paget's patients (r = 0.56, p less than 0.01) and in the controls (r = 0.39, p less than 0.05). The percentage molar ratio of 24,25-(OH)2D to 25-OHD in Paget's patients had a median value of 3.7% (range 0.4-14.3%), which was not significantly different from controls, who had a median value of 5.6% (range 2.2-18%). There was no difference between the 1,25-(OH)2D, and immunoreactive PTH (iPTH) levels of Paget's patients and control subjects. The percentage molar ratio of 1,25-(OH)2D to 25-OHD in untreated Paget's patients (0.157 +/- 0.09%) was not significantly different from controls (0.124 +/- 0.05%) despite lower 25-OHD levels in Paget's patients. There was a significant inverse correlation between the severity of Paget's disease as measured by plasma alkaline phosphatase (AP) levels and 25-OHD levels (r = 0.392, p less than 0.02); however, 24,25-(OH)2D and 1,25-(OH)2D levels were not correlated with AP.(ABSTRACT TRUNCATED AT 250 WORDS)
Spontaneous fractures were reported to be rare (less than 1%) in 1664 hospital admissions for hip fracture in the 1950s in Sweden. We report 11 fluoride-treated postmenopausal patients who developed spontaneous fractures of the femoral necks, all subcapital initially. In 7 patients who continued treatment there were later femoral neck or shaft fractures; in 6, these were bilateral (one followed a fall). In all there were 19 spontaneous fractures: 5 were asymptomatic, including 2 with deformity; 12 fractures required surgery. Five were incomplete (stress) fractures. All were treated with supplementary calcium 1 g daily; 10 had vitamin D supplementation. In all patients where the timing was known, the initial and subsequent fractures were preceded by, or associated with increased bone turnover as measured by plasma alkaline phosphatase (pAlP) (i.e., they were all "good responders"). Two had pretreatment hip fractures following falls. We compared these 11 (Group 1) and another identically treated group of 14 patients (Group 2), without spontaneous femoral fractures and not different in mean age, pretreatment vertebral fractures, years since menopause, fluoride dosage, and plasma creatinine. Group 1 had a lower (p less than 0.05) index of cortical bone in the femoral neck, as assessed by the ratio "calcar width/femoral neck minimum width." The 6 biopsied fluorotic patients from Group 1 had a higher (p less than 0.05) bone fluoride content than the 4 biopsied fluorotic patients from Group 2. Furthermore, histological cortical features of thinning, increased porosity, and advanced tunneling resorption characterized Group 1 posttreatment biopsies. There were no significant differences in peak pAlP responses in the two groups. Mild asymptomatic vitamin D excess may have been a contributing factor in three Group 1 patients. Two further treatment groups have been studied more recently by forearm single-photon absorptiometry (SPA) at two sites; a cyclic NaF group (Group 3) and a calcium +/- vitamin D group (Group 4). Neither showed significant changes in forearm cortical bone density on treatment for 2 and 1.5 years, respectively, but Group 3 showed a significant increase in density at an ultradistal (60% trabecular) site. The pAlP response in Group 3 was significantly less than in Group 1. Spontaneous femoral neck or shaft fractures did not occur in either Groups 3 or 4. Therefore, we recommend: (1) Avoidance of sodium fluoride (NaF) treatment if pretreatment femoral fracture or thin femoral neck cortices exist.(ABSTRACT TRUNCATED AT 400 WORDS)
The changes in three different indices of 1,25-dihydroxyvitamin D (1,25(OH)2D) biological activity were studied longitudinally in 35 women during late pregnancy and lactation and in 26 control women. Measurements were made of maternal serum total 1,25(OH)2D and free 1,25(OH)2D concentration (by centrifugal ultrafiltration) and the free 1,25(OH)2D index (the molar ratio of total 1,25(OH)2D and vitamin D binding protein (DBP]. During late pregnancy total 1,25(OH)2D concentrations were significantly elevated when compared to controls, as were free 1,25(OH)2D and DBP concentrations and the free 1,25(OH)2D index. Serum total 1,25(OH)2D, free 1,25(OH)2D and DBP concentrations all fell dramatically during the first 2 weeks of lactation with total 1,25(OH)2D and free 1,25(OH)2D concentrations falling to levels below those of controls. During the course of lactation both total 1,25(OH)2D and free 1,25(OH)2D levels rose significantly although they were not different from controls at 18 weeks of lactation. In contrast, the free 1,25(OH)2D index fell during the first 2 weeks of lactation, but remained at this level, significantly lower than controls. Neither urinary calcium excretion nor dietary calcium intake correlated with total or free 1,25(OH)2D, DBP, or the free 1,25(OH)2D index. The disagreement in the results of free 1,25(OH)2D concentration and free 1,25(OH)2D index demonstrates that these two approaches to measuring biologically active 1,25(OH)2D are not equivalent. In attempting to account for the increased calcium requirements of human reproduction we conclude that in pregnancy any of the 1,25(OH)2D measurements may be appropriate. In lactation, however, either 1,25(OH)2D is not a major factor or 1,25(OH)2D biological activity is inadequately represented by any of the currently available methods.
A case of a patient with pancreatitis and familial hypocalciuric hypercalcaemia is presented and the literature linking FHH and pancreatitis is reviewed. The case for a causal link between the two conditions is not proven and seems unlikely. In view of this we strongly challenge the recommendation of total parathyroidectomy in such cases.