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R D Chapurlat

Publications and source records attributed to R D Chapurlat.

17 recordsLinked to original sources

Effectiveness of instant vertebral assessment to detect prevalent vertebral fracture.

INTRODUCTION: Vertebral fracture is currently underdiagnosed, despite its common severity and its value to predict further osteoporotic fracture. Morphometry using dual X-ray absorptiometry (DXA) [vertebral fracture assessment (VFA)] is a new technique that may facilitate detection of many vertebral fractures, as images are obtained at the same time as bone mineral density (BMD) measurement, and would also allow avoiding spine radiographs. METHODS: We conducted a cross-sectional study to assess the diagnostic value of Instant Vertebral Assessment (IVA), which is a morphometry scan using the Hologic Delphi densitometer, to detect prevalent vertebral fracture in postmenopausal women. Interobserver precision was assessed, then IVA scans were compared with lateral spine radiographs, considered the gold standard, to test diagnostic agreement between the two techniques. Sensitivity, specificity and predictive values were calculated, as well as the likelihood ratio of the positive test, using sensitivity and specificity at each vertebral level. RESULTS: Among 85 patients of whom 50% had at least one vertebral fracture identified with radiographs, we found that interobserver precision was moderate, with frequent difficulties in discerning upper thoracic vertebrae. On a per-vertebra basis, sensitivity was around 70% from L4 to T11 and lower above T11 whereas specificity was above 90% for all vertebrae, and the negative predictive value remained above 80% from L4 to T7 and decreased above T7. On a per-patient basis, sensitivity was 0.69, specificity 0.74, positive predictive value equalled 0.72 and negative predictive value 0.71. When only grades 2 and 3 fractures were considered, results were comparable, with slightly improved specificity. Then, with the likelihood ratios calculated in our sample, we obtained posttest probabilities using the prevalence of vertebral fracture at lumbar and thoracic levels in a large sample of postmenopausal women with osteopenia and osteoporosis with and without vertebral fracture [baseline data in women of the Multiple Outcomes on Raloxifene Evaluation (MORE) trial]. At levels where fractures were most common, likelihood ratios of the positive test were good or excellent, associated with sizeable posttest probabilities. CONCLUSION: IVA allowed diagnosis of vertebral fracture at levels where vertebral fracture were most common, i.e., the lumbar and mid and lower thoracic levels, but its value was weaker at the upper thoracic levels.

Absorptiometry, Photon↗

Assessment of vertebral fracture using densitometric morphometry.

Diagnosis of vertebral fracture is critical for management of osteoporosis, as existence of such deformities substantially increases the risk of subsequent fracture. Thus, accurate and precise techniques allowing detection of such deformities are essential to clinicians. So far, this detection has been performed by spinal lateral X-rays. More advanced techniques have recently been developed, based on dual energy X-ray absorptiometry (DXA). This review describes these different techniques and discusses the effectiveness of the DXA technique to assess vertebral deformities compared to X-ray. The use of DXA detection of vertebral fracture for clinical practice and clinical trials is discussed. Specifically, vertebral morphometry using DXA provides an excellent specificity, with moderate sensitivity. The major limitation of the DXA vertebral assessment is the poor quality of images of thoracic vertebrae. The clinical utility of vertebral morphometry using densitometry may help screening patients with vertebral fracture, but technological improvements are necessary to improve image quality.

Absorptiometry, Photon↗

Risk of fracture among women who lose bone density during treatment with alendronate. The Fracture Intervention Trial.

It is commonly believed that the response to treatment in patients on alendronate is proportional to the increase in bone mineral density (BMD), and that those who lose BMD during treatment might not respond to treatment. In the Fracture Intervention Trial 6,459 women were randomly assigned to treatment with alendronate or placebo; BMD was measured annually, and new spine fractures were assessed by lateral spine films, taken at baseline and end of follow-up. Among subjects who took at least 70% of the study drug (5,220 women), we compared reductions in risk of spine fractures at end of follow-up (3 or 4 years) within various levels of change in total hip and spine BMD after 1 and 2 years of treatment, after adjustment for differences in characteristics between the treatment and control groups. Women "losing" BMD at the lumbar spine (0% to 4%) while on alendronate had a reduction of 60% in vertebral fracture risk [OR = 0.40 (0.16, 0.99)] compared to their counterparts in the placebo group. The few women that lost more than 4% did not have a significant benefit [OR = 0.15 (0.02, 1.29)]. Those who "gained" BMD (0% to 4%) during treatment had a reduction in risk of 51% [OR = 0.49 (0.30, 0.78)]. Similarly, women who "lost" total hip BMD (0% to 4%) during the first year on alendronate had a 53% decreased risk of vertebral fracture compared to their controls taking placebo [OR = 0.47 (0.27, 0.81)], whereas those "gaining" BMD (0% to 4%) had a comparable risk reduction [OR = 0.49 (0.34, 0.71)]. This was not observed for the few women who lost more than 4% [OR = 0.61 (0.11, 3.45)]. Patients who lost BMD at both the hip and spine were not protected by alendronate. Among patients who adhere to treatment with alendronate, even those who lose BMD benefit from a substantial reduction in risk of vertebral fracture. So, the reduction in bone turnover induced by alendronate might be more important than BMD changes. The few women who lose the most BMD (more than 4% per year) might not benefit from the treatment.

Absorptiometry, Photon↗

Treatment of fibrous dysplasia of bone with intravenous pamidronate: long-term effectiveness and evaluation of predictors of response to treatment.

Fibrous dysplasia (FD) of bone is a rare but potentially severe bone disease that often entails fractures, deformities, and bone pain. An activating mutation of the alpha subunit of Gs proteins leads to differentiation abnormalities of the osteoblastic lineage, which are responsible for development of fibrous tissue in the medulla and increased osteoclastic activity. This increased bone resorption has been the rationale to use bisphosphonates in our center since 1988. So, we have analyzed the largest series, so far, of patients treated with the bisphosphonate pamidronate and sought predictors of response to treatment. We have treated 58 patients (41 adults and 17 under 18 years of age) with FD in an open study, using intravenous (IV) pamidronate 180 mg every 6 months and calcium and vitamin D supplements, in combination with oral phosphate and calcitriol in patients with FD who also had renal phosphate wasting. Patients were followed up with biannual visits, for an average 50 months, with pain assessment, annual radiographs of affected bones, measurement of biochemical markers of bone turnover, and annual bone mineral density measurements in the case of affected hips. We found that pain intensity significantly decreased with treatment in the 44 patients who had bone pain at baseline, biochemical markers of bone turnover were significantly reduced, and about 50% of patients had improvement of bone lesions on radiographs, evidenced by filling of osteolytic lesions and/or cortex thickening. Bone mineral density was substantially increased in the 12 patients who had hip FD. There was no significant clinical or biological predictor of positive radiographic response to pamidronate treatment. Long-term treatment with pamidronate was safe, in particular among the 12 patients who were followed up for more than 8 years. Despite the lack of a control group, our results suggest that intravenous pamidronate improves radiological aspect in half of the patients with FD, decreases bone turnover, and may decrease pain intensity.

Administration, Oral↗

Incidence and risk factors for a second hip fracture in elderly women. The Study of Osteoporotic Fractures.

Women with hip fracture have an increased risk of second hip fracture but other risk factors for a second hip fracture have not been established. We sought to determine the incidence and risk factors for second hip fracture, in a prospective cohort study of community-dwelling postmenopausal women over 65 years: the Study of Osteoporotic Fractures. From a cohort of 9,704 women, 632 women with a documented first hip fracture during the study were followed up until a second hip fracture or the end of follow-up. Clinical risk factors and bone mineral density were assessed at the beginning of the study. Fifty-three second hip fractures were validated by radiographs. Women with hip fracture had a 2.3% per year risk of second hip fracture. Women who walked for exercise at baseline were less likely to sustain a second hip fracture with a relative risk (RR) of 0.5 [0.3-0.9], as were those who had normal depth perception (RR=0.5 [0.3-0.9]). Women who lost weight since age 25 years had an increased risk of second incident hip fracture (RR = 2.7 [1.6-4.6]), as did those who had a low calcaneal bone mineral density (RR=1.5 [1.1-2.0] per standard deviation decrease in bone mineral density). Current use of estrogen replacement therapy at baseline was protective (RR=0.5 [0.3-0.9]) up to 2 years of follow-up. We conclude that community-dwelling women with a first hip fracture have a high risk of second hip fracture, and risk factors for this second fracture are similar to those of first hip fracture.

Aged↗

Changes in biochemical markers of bone turnover in women treated with raloxifene: influence of regression to the mean.

Measures with extreme magnitude are most likely to be the result of measurement variability. Repeated measurements genuinely lessen such variability, leading to a phenomenon known as regression to the mean (RTM), which may affect biochemical markers of bone turnover. We therefore studied four markers of bone turnover in the Multiple Outcomes of Raloxifene Evaluation (MORE) trial--serum procollagen type I C-propeptide (PICP), osteocalcin (OC), bone-specific alkaline phosphatase (BAP) and urinary type I collagen breakdown product (CTX)--among the 1704 women treated with raloxifene who had marker measurements and were at least 70% adherent, and among 915 control group patients. We examined the existence of RTM, and applied a method of adjustment for RTM of both baseline and follow-up results. We found that women who had the most extreme values tended to go in the opposite direction with the subsequent measurement, i.e., exhibited a pattern of RTM. For example, among women whose urinary CTX decreased at least 60% in the first 6 months, 61% had an increase in the next 6 months; and among those who had an increase in the first 6 months, 81% had a decrease in the next 6 months. We found a similar pattern for each of the four markers. When adjusting for RTM we obtained estimated true values of both baseline values and change in markers. These estimated true values were substantially different from the observed value when the latter was further from the mean. For example, for a 10% increase in urinary CTX in the first 6 months, after accounting for RTM we estimate that there was in fact a 3% decrease (80% confidence interval: -38% to 53%). We conclude that the few initial extreme marker responses observed in women treated with raloxifene represent RTM, and that one practical consequence is that patients with an increase in markers during the first 6 months should be continued on raloxifene therapy, because the values usually decrease later on.

Aged↗

Association between endogenous hormones and sex hormone-binding globulin and bone turnover in older women: study of osteoporotic fractures.

Estrogen therapy decreases bone remodeling, but the association between endogenous estradiol (E2), estrone (E1), testosterone (T), and bone turnover in older women is not clear. To test the association of serum E2, E1, free T, and sex hormone-binding globulin (SHBG) with bone turnover, we analyzed cross-sectional relationships among E2, E1, T, SHBG, and biochemical markers of bone turnover serum osteocalcin [OC], serum bone-specific alkaline phosphatase [bAP], and serum breakdown products of C telopeptide of type I collagen [CTx] in 704 women enrolled in the Study of Osteoporotic Fractures. Women with lower estradiol levels tended to have higher levels of bone turnover, but the association was weak (R(2) = 0.01 for the association E2-OC, p = 0.03; and R(2) = 0.024 for E2-CTx, p = 0.001). Relationships between SHBG and turnover were also weak (R(2) for the association SHBG-OC was 0.07, p < 0.001, and 0.03 for SHBG-sCTx, p = 0.03), or not significant (R(2) < 0.01 for the association SHBG-bAP). Associations of E1 and T with these markers were of the same magnitude. These results were not modified after adjustment for age, weight, and smoking status. We conclude that older women with low endogenous hormones have somewhat higher bone turnover, but these associations are weak. Bone turnover is determined mainly by factors other than endogenous concentrations of sex hormones.

Aged↗

Influence of smoking on the antiosteoporotic efficacy of raloxifene.

The efficacy of estrogen therapy may be modified in women who smoke because of increased catabolism of estrogen and the interaction of tobacco products with the estradiol receptor. We examined whether the efficacy of raloxifene differed in smoking vs. nonsmoking women. We compared change in bone mineral density and biochemical markers of bone turnover, and incidence of new vertebral fracture in postmenopausal women of the Multiple Outcomes on Raloxifene Efficacy trial, who were randomized to either raloxifene (60 or 120 mg/d) or placebo. In the 17% of women who were current smokers, we found, compared with nonsmokers, lowered baseline trochanter bone mineral density (0.540 vs. 0.557 g/cm(2); P < 0.001) and serum osteocalcin (24.8 vs. 26.6 ng/liter; P < 0.001). Baseline urinary type I collagen breakdown products was increased among smokers (291.8 vs. 276.9 micromol/liter; P = 0.04). Body mass index was also lower in smokers (24.3 vs. 25.4; P < 0.001). After 6 months of treatment, there was no significant difference in reduction of bone turnover between smokers and nonsmokers. After 4 yr of treatment, the smoking-treatment interaction was not significant between smokers and nonsmokers for the percent increase in femoral neck bone mineral density (P = 0.25), trochanter bone mineral density (P = 0.24), and spine bone mineral density (P = 0.37). The smoking-treatment interaction for reduction in vertebral fracture risk was not significant either [odds ratio for fracture, 0.67 (0.45-0.98) for smokers and 0.56 (0.47-0.68) for nonsmokers; P = 0.44]. These results were not modified after stratification by tertiles of body mass index or when comparing heavy smokers vs. light smokers. We conclude that smoking does not influence the antiosteoporotic effect of raloxifene. This may represent an advantage over estrogen replacement therapy.

Biomarkers↗

Risedronate: clinical usage.

Risedronate is a new bisphosphonate--a family of drugs that inhibit bone resorption--and thus can be used in various bone conditions involving increased levels of bone resorption, such as postmenopausal osteoporosis, glucocorticoid-induced bone loss, and Paget's disease of bone. In placebo-controlled clinical trials, risedronate has been shown to prevent bone loss in postmenopausal women, to decrease the incidence of vertebral and non vertebral (including hip) fractures in postmenopausal women with osteoporosis, and to prevent bone loss in men and women treated with moderate to high doses of glucocorticoids. Risedronate has also been shown substantially to decrease the severity of bone pain and the level of bone turnover in Paget's disease of bone, and to improve the radiographic lesions of this disease. Risedronate is safe and well tolerated. Thus, risedronate is a new option for the management of postmenopausal osteoporosis, Paget's disease of bone and corticosteroid-induced bone loss.

Bone Density↗

Longitudinal study of bone loss in pre- and perimenopausal women: evidence for bone loss in perimenopausal women.

Bone loss before and around the time of menopause is not well characterized by longitudinal studies. We measured bone mineral density at various skeletal sites--total body, femoral neck, trochanter, anteroposterior (AP) and lateral spine, and forearm--with dual-energy X-ray absorptiometry in a large prospective cohort of 272 untreated pre- and perimenopausal women aged 31-59 years, at 1 year intervals for 3 years. Sex steroids and the following markers of bone remodeling were measured: serum osteocalcin (OC), procollagen I carboxyterminal extension peptide, bone alkaline phosphatase (BAP) and urinary crosslinks (CTX and NTX). Seventy-six women were classified as perimenopausal and 196 as premenopausal. Over the 3 years, premenopausal women had no significant bone loss at any site and a small but significant increase in bone mineral density at the trochanter, total hip, AP spine and radius. Perimenopausal women significantly lost bone from cancellous and cortical sites, i.e., the femoral neck, trochanter and lumbar spine. In perimenopausal women with increased follicle stimulating hormone, the rate of bone loss at the femoral neck correlated negatively with OC and BAP. In perimenopausal women, serum estradiol levels decreased during the 3 years of follow-up and bone loss from the trochanter and the AP spine was correlated with serum estradiol after 3 years. In conclusion, among premenopausal women there is no bone loss. In contrast, there is a rapid and diffuse bone loss in perimenopausal women, related to decreased estrogen secretion. Bone markers may be useful to identify these women losing bone.

Absorptiometry, Photon↗

Serum type I collagen breakdown product (serum CTX) predicts hip fracture risk in elderly women: the EPIDOS study.

We report the predictive value for hip fracture of a new marker of bone resorption, serum C-telopeptide of type I collagen (CTX), measured on a new automated analyzer, Elecsys. Baseline urinary and serum samples from 212 patients who subsequently had a hip fracture and from 642 controls were analyzed in a nested case control study within the EPIDOS prospective cohort. Each fracture patient was matched with three control patients of the same age who did not fracture. Mean follow-up was 3.3 years (maximum 4.9 years). We measured urinary CTX, urinary free deoxypyridinoline, and serum CTX. Urinary markers were assessed to know whether the magnitude of prediction of hip fracture by this serum marker was similar compared with that given by urinary markers. In the whole group, serum CTX was not predictive of hip fracture risk. When the analysis was restricted to samples taken in the early afternoon (between 1 and 2 P.M.), representing 115 fracture cases and 293 controls, serum CTX was significantly predictive with a relative hazard of 1.86 (95% confidence interval 1.01-3.76) for values above the premenopausal range (mean + 2 SD). For comparison, in the whole group, the relative hazard for fracture of women having a T-score >/= 2 for urinary CTX and free deoxypyridinoline was 1.67 (1.19-2.32), and 2. 07 (1.49-2.9), respectively. Serum CTX from morning samples did not predict hip fractures probably because it was not controlled for time and fasting/nonfasting state. We conclude that serum CTX sampled under controlled conditions significantly predicts the subsequent risk of hip fracture in ambulatory elderly women, with the same magnitude as urinary markers of resorption.

Aged↗

Fibrous dysplasia of bone.

Fibrous dysplasia of bone is a disease that can involve one or several bones and is characterized by bone deformities, pain and iterative fractures. Some patients can present with endocrine dysfunction (generally precocious puberty) and cutaneous café-au-lait spots. Some complications, such as nerve compression and malignant transformation, are uncommon. Many patients can, however, be asymptomatic. Diagnosis relies on X-ray examination and pathology. Prognosis is assessed by X-rays and markers of bone remodelling. Several breakthroughs in the understanding of the pathophysiology have been made in the past 10 years. It is now recognized that fibrous dysplasia is caused by a somatic activating mutation of the Gs alpha subunit of protein G, resulting in an increased cAMP concentration and thus in abnormalities of osteoblast differentiation, these osteoblasts producing abnormal bone. There is also an increase in interleukin-6-induced osteoclastic bone resorption, which is the rationale for treating these patients with bisphosphonates. In the past 10 years, the bisphosphonate pamidronate has been used by infusion for fibrous dysplasia (two courses per year), with good results with respect to pain and, in about 50% of patients, the refilling of osteolytic lesions.

Adolescent↗

Serum estradiol and sex hormone-binding globulin and the risk of hip fracture in elderly women: the EPIDOS study.

It has been suggested that low serum 17beta-estradiol (E2) and sex hormone-binding globulin (SHBG) may predict hip fracture in postmenopausal women. We have investigated the predictive value of serum E2 and SHBG concentrations and urinary deoxypyridinoline (D-Pyr) and type I collagen breakdown products (CTX) in a large prospective cohort of 7,598 healthy elderly ambulatory women (EPIDOS study), aged 75 years or more. We performed a nested case control study, by matching 212 patients with incident hip fracture with 636 controls. Mean follow-up was 3.3 years (maximum, 4.9 years). Women having serum E2 below the limit of detection (3 pg/ml), that is, 2% of the population, were not at higher risk, with a relative hazard (RH) of 1.59 (95% CI = 0.45-5.55). Women having serum E2 below 5, 6, 7, or 8 pg/ml, in the lowest quartile, or below the median had no increased risk of hip fracture. In contrast, women having serum E2 in the highest quartile (i.e., > or = 10 pg/ml) were protected, with an RH of 0.66 (0.44-0.98) that did not remain significant after adjustment for weight (RH = 0.71 [0.47-1.06]). High serum SHBG values with different cut-offs tended to be associated with an increased risk of hip fracture. Women in the highest quartile had an RH of 2.5 (1.37-4.61), compared with those in the lowest quartile, that decreased markedly after adjustment for body weight (1.61 [0.99 -2.62]). The highest quartile of the ratio E2/SHBG, which is an index of free E2, was associated with a lower hip fracture risk (RH = 0.6 [0.4-0.91]) that was no longer significant after adjustment for weight. In contrast, urinary D-Pyr and CTX, when elevated above the upper limit of premenopausal values, were predictive of hip fracture, with an RH of 2.07 (1.49-2.9) and 1.67 (1.19-2.32), respectively, even after adjustment for body weight, serum E2, and SHBG. We conclude that in healthy elderly French women over 75 years of age, serum E2 and E2/SHBG in the highest quartile are associated with a lower risk of hip fracture and that this association is explained by a higher body weight. In addition, serum levels of E2 and SHBG do not account for the increased risk of hip fracture associated with high levels of bone resorption markers.

Adult↗

[Bone and hormones. Effects of growth hormone on bone tissue in adults].

GROWTH HORMONE INSUFFICIENCY: Bone mass is reduced and bone remodeling diminished in case of growth hormone insufficiency. ACROMEGALY: In acromegaly, cortical bone mass increases due to excessive growth hormone. The effect on trabecular bone is less well established. ON THE CELLULAR LEVEL: Growth hormone stimulates the bone formation action of osteoblasts and their synthesis of insulin-like growth factor I. EFFECTS OF TREATMENT: Contradictory results have been obtained in adults treated with growth hormone for insufficiency. Generally, markers of bone remodeling are increased, but the effect on bone density is less clear. Long-term studies are needed. EFFICACY OF GROWTH HORMONE TREATMENT ON OSTEOPOROSIS: Growth hormone has been found to have an effect. Several randomized trials have demonstrated moderate increases in bone density.

Acromegaly↗

Long-term effects of intravenous pamidronate in fibrous dysplasia of bone.

Fibrous dysplasia of bone (FD) is a rare disorder characterized by proliferation of fibrous tissue in bone marrow leading to osteolytic lesions. It causes bone pain and fractures. To date the only treatment is orthopedic. Histological and biochemical similarities between FD and Paget's bone disease related to increased osteoclastic resorption led us to propose treatment with the bisphosphonate pamidronate. The aim of the study was to assess the long-term effects of intravenous pamidronate in FD. In this open label phase III study, 20 patients with FD (11 males and 9 females; mean age 31 years) received courses of 180 mg of intravenous pamidronate every 6 months (60 mg/day during 3 days by infusion). The mean duration of follow-up was 39 months (range 18-64). Severity of bone pain, number of painful skeletal sites per patient, X-rays of all involved areas, serum alkaline phosphatase, fasting urinary hydroxyproline, and urinary type I collagen C-telopeptide were assessed every 6 months. The severity of bone pain and the number of painful sites appeared to be significantly reduced. All biochemical markers of bone remodeling were substantially lowered. We observed a radiographic response in nine patients with refilling of osteolytic lesions. A mineralization defect proven by bone biopsy was observed in one case. Four patients sustained bone stress lines, but no fracture occurred. We suggest that intravenous pamidronate alleviates bone pain, reduces the rate of bone turnover assessed by biochemical markers, and improves radiological lesions of FD. Few side effects were observed.

Adolescent↗

Dual energy X-ray absorptiometry in patients with lower limb reflex sympathetic dystrophy syndrome.

OBJECTIVE: To assess the difference in bone mineral density (BMD) between pathologic and healthy legs in reflex sympathetic dystrophy syndrome (RSDS) using a whole body BMD with dual energy X-ray absorptiometry (DEXA). METHODS: Cross sectional evaluation of BMD in 55 patients with RSDS compared BMD of the affected and the healthy limb with 121 controls. Followup was performed on 21 patients treated with intravenous pamidronate. RESULTS: In the cross sectional study, BMD was reduced in the dystrophic affected extremities and this reduction correlated with the duration of evolution of the disease. In the longitudinal study, BMD remained stable in patients treated with pamidronate. CONCLUSION: The cross sectional study confirms that DEXA is not a diagnostic tool. The longitudinal study confirms DEXA is accurate, nontraumatic, rapid, and safe for longterm quantitative assessment of unilateral bone loss caused by lower limb RSDS.

Absorptiometry, Photon↗