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P Garnero

Publications and source records attributed to P Garnero.

At least 19 recordsLinked to original sources

Potential contribution of IL-17-producing Th(1)cells to defective repair activity in joint inflammation: partial correction with Th(2)-promoting conditions.

To assess the contribution of cell interactions to the production of cytokines and type I collagen, fixed synovium T cell clones were cocultured on synoviocytes and levels of IL-6, LIF and PICP, a marker of type I collagen synthesis measured. Levels of IL-6 and LIF were higher with Th(1)than with Th(0)and Th(2)clones. Levels of PICP were decreased with Th(1)clones and increased with Th(2)clones. IL-17-producing T cells, all Th(1), were among the highest inducers of cytokine and inhibitors of collagen synthesis. Preincubation of clones in Th(1)conditions (IL-12 plus anti-IL-4) increased IL-6 production, whereas Th(2)conditions (IL-4 plus anti-IL-12) strongly inhibited IL-6 production and restored repair activity. As rheumatoid synovium is infiltrated by Th(1)cells, local cell interactions result in a pro-inflammatory pattern with defective repair, which can be reversed at least in part, by a Th(2)pattern.

Arthritis, Rheumatoid↗

A functional polymorphic variant in the interleukin-6 gene promoter associated with low bone resorption in postmenopausal women.

OBJECTIVE: To examine functional interleukin-6 (IL-6) -174 G-->C allelic variants in relation to bone turnover and bone mineral density (BMD) in postmenopausal women. METHODS: Four hundred thirty-four healthy women living in the community (mean +/- SD age 71.7 +/- 5.7 years) were genotyped for the IL-6 -174 G-->C polymorphism. Serum levels of C-telopeptide of type I collagen (CTx), a marker of bone resorption, and osteocalcin (OC), a marker of bone formation, were determined. BMD at the hip and forearm was measured by dual-energy x-ray absorptiometry. RESULTS: CTx levels differed significantly (P = 0.006) among IL-6 genotypes (mean +/- SEM 0.275 +/- 0.02 ng/ml, 0.325 +/- 0.01 ng/ml, and 0.356 +/- 0.02 ng/ml in women with the CC genotype [n = 68], the GC genotype [n = 204], and the GG genotype [n = 162], respectively). Compared with the GG group, age-adjusted odds ratios for high bone resorption were 0.65 (95% confidence interval [95% CI] 0.41-1.0, P = 0.06) and 0.37 (95% CI 0.18-0.73, P = 0.0047) in GC and CC subjects, respectively. In contrast, OC levels did not differ by genotype. BMD at the hip and forearm was 1.5-5% higher in CC subjects compared with GG subjects (P not significant). When the cohort was divided according to the median age (70.5 years), BMD was significantly decreased in older compared with younger postmenopausal women with the GG and GC genotypes (-9.6% on average; P < 0.01), but not in those with the CC genotype (-5.1% on average; P not significant). CONCLUSION: Compared with the GC and GG IL-6 -174 G-->C genotypes, the CC genotype is associated with lower bone resorption and lesser decrease in bone mass in older postmenopausal women. These results suggest that IL-6 -174 G-->C alleles may be significant determinants of the risk for osteoporosis in elderly subjects.

Aged↗

The bisphosphonate zoledronate decreases type II collagen breakdown in patients with Paget's disease of bone.

Bisphosphonates have been suggested to be partially chondroprotective in animal models of arthritis. The aim of this study was to assess the short-term effect of the bisphosphonate zoledronate on type II collagen degradation in patients with Paget's disease of bone. Twenty-six patients with active Paget's disease who were a part of a double-blind, placebo-controlled, randomized study comparing the effects of several doses of a single injection of zoledronate, a potent bisphosphonate, were studied. Type II collagen destruction was assessed by urinary levels of type II collagen C-telopeptide (CTX-II) using a new immunoassay. Bone resorption was assessed by measuring the urinary excretion of nonisomerized type I collagen C-telopeptide (alpha CTX-I). Biochemical markers were measured at baseline and 5, 10, 30, and 60 days after injection. At baseline, no significant increase of CTX-II was observed in patients with Paget's disease compared with a group of 27 gender-and age-matched controls, in contrast to the ninefold (p < 0.0001) increase of urinary alpha CTX-I. After a single intravenous injection of zoledronate (200 or 400 microg), urinary CTX-II transiently decreased by a median of 25% 5 days after the injection of zoledronate (p = 0.0023 vs. placebo), then increased to pretreatment levels after 10 days. In contrast, urinary alpha CTX-I decreased within 5 days with a maximal decrease of 51% at day 10 (p < 0.001 vs. baseline and placebo), and levels remained suppressed during the 2 months of the study. Zoledronate not only reduces bone turnover but also directly decreases type II collagen degradation in patients with Paget's disease, suggesting that bisphosphonates may have chondroprotective effects in humans. Measurement of type II collagen breakdown by a new urinary biochemical marker may be useful for in vivo assessment of the effects of drugs that potentially inhibit cartilage destruction.

Aged↗

Three-year follow-up of the use of transdermal 17beta-estradiol matrix patches for the prevention of bone loss in early postmenopausal women.

OBJECTIVE: A total of 325 of 569 postmenopausal women who were initially recruited into two 2-year, double-blind, placebo-controlled, dose-ranging studies of a matrix transdermal formulation of 17beta-estradiol (Menorest) participated in open-label extensions for a third year. STUDY DESIGN: Those patients originally randomly assigned to receive 17beta-estradiol continued active treatment with dosages of 25, 50, 75, or 100 microg/d, whereas those originally randomly assigned to receive a placebo patch were switched to an active patch of identical size that delivered 17beta-estradiol at 25, 50, 75, or 100 microg/d. Follow-up was conducted, and bone density and other parameters were compared. RESULTS: Overall, gains in bone mass were maintained in patients who received 3 years of active treatment. In patients originally randomly assigned to receive placebo, initial losses in bone mass during the first 2 years were reversed and replaced with marked increases after the switch to active treatment. All patients who had initially received placebo showed significant, dose-related, clinically relevant increases (2.77% +/- 0.99%; P =.0048; to 7.36% +/- 0.74%; P =.0001) in lumbar spine bone mineral density relative to the end of the second year of the original study; smaller final-year increases were noted among the patients who had been actively treated for all 3 years. Similar trends were reported for femoral, trochanter, and total hip bone mineral densities. Mean total body bone mineral density either increased or remained unchanged in all dosage groups. These results were accompanied by parallel changes in levels of serum and urinary markers of bone turnover, with all markers approaching or returning to premenopausal levels by month 36. The high tolerability of this formulation during years 1 and 2 was maintained during year 3; 5.5% of patients withdrew from treatment because of adverse events in the final year. CONCLUSION: The Menorest formulation of transdermal 17beta-estradiol maintained bone mineral density gains in postmenopausal women and was well tolerated through a 3-year treatment period. It was also effective in reversing the initial bone loss associated with late commencement of therapy.

Absorptiometry, Photon↗

Urinary excretion of glucosyl-galactosyl pyridinoline: a specific biochemical marker of synovium degradation.

OBJECTIVE: Glucosyl-galactosyl pyridinoline (Glc-Gal-PYD), which has been identified in urine, is a glycosylated analogue of pyridinoline. The tissue distribution of this molecule has not been yet determined and its utility as a potential biochemical marker of joint degradation in patients with joint diseases has not been investigated. METHODS AND RESULTS: In this study, we demonstrate that Glc-Gal-PYD is abundant in human synovium tissue, absent from bone and present in minute amounts in cartilage and other soft tissues, such as muscle and liver. Using an ex vivo model of human joint tissue degradation, we found that Glc-Gal-PYD is released from synovium tissue, but not from bone and cartilage. The urinary level of Glc-Gal-PYD was increased by 109% in patients with rheumatoid arthritis (RA) compared with healthy adults, but was normal in patients with Paget's disease of bone. In addition, Glc-Gal-PYD was higher in those patients with destructive disease, as assessed by X-rays of the joints, than in those with non-destructive RA. CONCLUSION: Glc-Gal-PYD may be useful for the clinical investigation of patients with joint disease.

Adult↗

Bioavailable estradiol may be an important determinant of osteoporosis in men: the MINOS study.

During recent years, experimental data, case reports, and epidemiological studies have suggested an important role for estradiol in bone metabolism in men. In a cohort of 596 men, aged 51-85 yr, we measured bone mineral density (BMD) of the lumbar spine, hip, total body, and forearm; serum levels of sex steroid hormones [total and free testosterone, total estradiol (17betaE(2)), bioavailable estradiol (bio-17betaE(2)), androstenedione, and sex hormone-binding globulin]; and markers of bone turnover [serum osteocalcin, bone alkaline phosphatase, N-terminal extension propeptide of type I collagen, and beta-isomerized C-terminal telopeptide of collagen type I (betaCTX)], as well as urinary excretion of betaCTX and deoxypyridinoline (DPyr). An age-related decrease was found for bio-17betaE(2) (r = -0.16; P < 0.001), free testosterone (r = -0.25; P < 0.001), free testosterone index (r = -0.32; P < 0.001), and androstenedione (r = -0.22; P < 0.001), but not for total 17betaE(2) or total testosterone. 17betaE(2) and bio-17betaE(2), but not other hormones, were correlated with BMD after adjustment for age and body weight. In men with a bio-17betaE(2) level in the lowest quartile, the average BMD was lower than in men having a bio-17betaE(2) level in the highest quartile by 6.6-8.7% according to the site of measurement, which corresponded to 0.45-0.65 SD. In age- and body weight-adjusted models, bio-17betaE(2), but not other hormones, was negatively correlated with bone markers (e.g., osteocalcin: r = -0.14; P < 0.001; urinary betaCTX: r = -0.20; P = 0.0001; DPyr: r = -0.14; P < 0.001). In men with the lowest concentration of bio-17betaE(2) (first quartile), the concentrations of markers of bone turnover were higher by 11-35% (or 0.4-0.7 SD) than in men having the highest bio-17betaE(2) level (upper quartile). In men in the lowest quartile for bio-17betaE(2) and in the highest quartile for urinary DPyr or betaCTX, the BMD of total hip and that of distal forearm were 8% and 10% lower than in men in the highest quartile for bio-17betaE(2) and in the lowest quartile for DPyr or ssCTX. In the age- and body weight-adjusted multiple regression models, bio-17betaE(2) contributed significantly to the explanation for the variability in all markers. In summary, we found in a cross-sectional analysis of a cohort of men that low levels of bio-17betaE(2) are associated with high bone turnover and low BMD. These data suggest that the age-related decrease in bio-17betaE(2) contributes to bone loss in elderly men by increasing bone turnover. Low 17betaE(2) levels may be an important risk factor for osteoporosis in men.

Aging↗

Effects of a new selective estrogen receptor modulator (MDL 103,323) on cancellous and cortical bone in ovariectomized ewes: a biochemical, histomorphometric, and densitometric study.

The aims of this study performed in ewes were: (1) to confirm in this animal model the effects on bone of ovariectomy (OVX) alone or associated with Lentaron (L), a potent peripheral aromatase inhibitor, used to amplify the effects of OVX and (2) to evaluate the effects of a new selective estrogen receptor modulator (SERM; MDL 103,323) on bone remodeling. Thirty-nine old ewes were divided into five groups: sham (n = 7); OVX (n = 8); OVX + L (n = 8); OVX + L + MDL; 0.1 mg/kg per day (n = 8); and OVX + L + MDL 1 mg/kg per day (n = 8). The animals were treated for 6 months. Biochemical markers of bone turnover (urinary excretion of type 1 collagen C-telopeptide [CTX], serum osteocalcin [OC], and bone alkaline phosphatase [BAP]) were measured each month. Bone biopsy specimens were taken at the beginning and after death at the end of the experiment. Bone mineral density (BMD) was measured by dual-energy X-ray absorptiometry (DXA) on the lumbar spine and femur. OVX induced a significant increase in biochemical markers. This effect was the highest after 3 months for CTX (+156% vs. sham) and after 4 months for OC and BAP (+74% and +53% vs. sham, respectively). L tended to amplify the effect of OVX on OC and BAP. OVX induced significant increases in the porosity, eroded, and osteoid surfaces in cortical bone but no effect was observed in cancellous bone. MDL treatment reduced the bone turnover as assessed by bone markers, which returned to sham levels as well as histomorphometry both in cortical and in cancellous bone. Cancellous osteoid thickness decreased by 27% (p < 0.05), mineralizing perimeter by 81% (p < 0.05), and activation frequency by 84% (p < 0.02) versus OVX + L. Femoral and spinal BMD were increased by MDL and tended to return to the sham values. The effects of OVX on bone turnover were different on cortical and cancellous bone. These effects on cortical bone were reflected by changes in biochemical markers. MDL markedly reduces bone turnover and increases BMD suggesting that this new agent may prevent postmenopausal bone loss.

Alkaline Phosphatase↗

Evaluation of a fully automated serum assay for C-terminal cross-linking telopeptide of type I collagen in osteoporosis.

BACKGROUND: Biochemical markers of bone turnover can provide prognostic information about the risk of osteoporotic fracture and are useful tools for monitoring efficacy of antiresorptive therapy. A serum-based automated assay may be of better clinical value than urinary markers because of lower imprecision and day-to-day within-person variability. Our aim was to evaluate the technical and clinical performances of a new, fully automated assay for serum C-terminal cross-linking telopeptide of type I collagen (CTX), a marker of bone resorption. METHODS: Serum CTX was measured on the Elecsys 2010 automated analyzer (Roche). Results were compared with those of the manual ELISA. We measured serum CTX concentrations in 728 healthy women, ages 31-89 years. We investigated the ability of this assay to predict the rate of postmenopausal forearm bone loss evaluated by four repeated bone mineral density measurements using dual-x-ray absorptiometry in 305 women followed prospectively for 4 years. Finally, in a cohort of healthy, untreated, postmenopausal women, we compared baseline serum CTX in 55 women who subsequently had a fracture (20 vertebral and 35 peripheral fractures) with values in the 380 women who did not fracture during a mean 5 years of follow-up. RESULTS: The within- (n = 21) and between-run (n = 21) CVs were <4.1% and 5.7%, respectively. In 728 healthy women, serum CTX concentrations (automated) correlated with those of the manual ELISA (r = 0.82; P<0.0001). The median long-term within-person variability assessed by four repeated measurements over 3 months in 18 postmenopausal women was 9.4%. Compared with 254 premenopausal women, serum CTX was 39% (P<0.0001) higher in 45 perimenopausal women and 86% (P<0.0001) higher in 429 postmenopausal women (mean age, 64 years). Baseline serum CTX correlated negatively with changes of bone mass measured at the mid (r = -0.23; P<0.0001) and distal (r = -0.27; P<0001) radius. Postmenopausal women with serum CTX greater than the mean + 2 SD values in premenopausal women accounted for 42% of the population, lost bone at the mid radius on average eightfold more rapidly than the other women (-0.27% +/- 2.92% vs. -2.25% +/- 3.95%; P<0.0001), and had increased risk of fracture with a relative risk (95% confidence interval) of 1.8 (1.01-3.1) after adjustment for physical activity. CONCLUSIONS: The automated assay for serum CTX is precise and predicts rate of bone loss and fracture risk in postmenopausal women. Because it is convenient to use and has high throughput, this serum bone resorption marker may be useful for the investigation of patients with osteoporosis.

Adult↗

Racemization and isomerization of type I collagen C-telopeptides in human bone and soft tissues: assessment of tissue turnover.

Urinary excretion of the type I collagen C-telopeptide (CTx) has been shown to be a sensitive index of the rate of bone resorption. The human type I collagen sequence A(1209)HDGGR(1214) of CTx can undergo racemization of the aspartic acid residue Asp(1211) and isomerization of the bond between this residue and Gly(1212). These spontaneous non-enzymic chemical reactions takes place in vivo in bone, and the degree of racemization and isomerization of CTx molecules may be an index of the biological age and the remodelling of bone. The aim of the present study was to investigate the degree of racemization and isomerization of type I collagen in human connective soft tissues, in order to estimate the rate of collagen turnover in adult tissues and compare it with that of bone. We also performed a systematic evaluation of the pyridinium cross-link content in adult human tissues. Using antibodies raised against the different CTx forms, we found that bone and dermis are the tissues that show most racemization and isomerization. The type I collagen of arteries, lung, intestine, kidney, skeletal muscle and heart shows significantly less racemization and isomerization than that of bone, suggesting that these soft tissues have a faster turnover than bone. We also found that pyridinoline and, to a lesser degree, deoxypyridinoline are distributed throughout the different tissues investigated. Because bone type I collagen is characterized by a high degree of both racemization/isomerization and deoxypyridinoline cross-linking, the concomitant assessment of these two post-translational modifications is likely to result in a highly specific marker of bone resorption.

Aged↗

Contribution of interleukin 17 to synovium matrix destruction in rheumatoid arthritis.

Interleukin (IL-)17 is a T cell-derived pro-inflammatory cytokine produced by RA synovium. We studied the role of IL-17 in the synovium cytokine network to determine whether it can influence the inflammatory and destructive pattern characteristic of RA. Herein, we investigated whether the production and action of MMP-1 and its inhibitor TIMP-1 could be modulated by IL-17 in the presence of pro-inflammatory cytokine (IL-1) and anti-inflammatory cytokines (IL-4, IL-13, IL-10). The effect of the blockade of endogenous IL-17 on the secretion of MMP-1 and TIMP-1 by RA synovium and matrix destruction was also studied. IL-17 increased the spontaneous production of MMP-1 by synoviocytes five-fold. IL-1 was more potent since it increased MMP-1 production nine-fold. Addition of IL-4, IL-13 and IL-10 to synoviocyte cultures reduced the spontaneous production of MMP-1 and induced TIMP-1 production by synoviocytes stimulated with IL-17 or/and IL-1beta. In the presence of anti-IL-17 blocking mAb, MMP-1 production and collagenase activity by RA synovium was reduced by 50% and associated with a 50% reduction in type I collagen C-telopeptide fragments (CTX) released in the supernatants, demonstrating the direct contribution of IL-17 in destruction. IL-17 and its producing T cells appear to contribute to the inflammatory process involved in the rheumatoid lesion.

Arthritis, Rheumatoid↗

A combination of low doses of 17 beta-estradiol and norethisterone acetate prevents bone loss and normalizes bone turnover in postmenopausal women.

The effects of 17 beta-estradiol (E2) 1 mg combined with low doses of norethisterone acetate (NETA) on postmenopausal bone loss and turnover were investigated in a 2-year, randomized, double-masked, placebo-controlled trial. A total of 135 postmenopausal women with a lumbar spine bone mineral density (BMD) T-score between -2 and +2 were randomized to daily treatment with an oral tablet of either placebo, E2 1 mg/NETA 0.25 mg, or E2 1 mg/NETA 0.5 mg. Significant (p < 0.001) increases in BMD at the lumbar spine (L1-4) were observed with E2 1 mg/NETA 0.25 mg (5.2%) and E2 1 mg/NETA 0.5 mg (5.4%) compared with placebo (-0.9%). The total hip BMD increased significantly in the E2 1 mg/NETA 0.25 mg (3.1%) and E2 1 mg/NETA 0.5 mg groups (3.3%) compared with placebo. At the femoral trochanter, the increase in BMD in the E2 1 mg/NETA 0.5 mg group (6.3%) was significantly different from the placebo group (0.8%), while that in the E2 1 mg/NETA 0.25 mg group (3.3%) was not. No statistical differences were found between the active groups and placebo for the change in BMD at the femoral neck. Significant increases in BMD at the distal radius and total body were found for both E2 1 mg/NETA 0.25 mg (0.9% and 2.5%, respectively) and E2 1 mg/NETA 0.5 mg (2.1% and 3.0%, respectively) compared with placebo (-0.7% and 0.4%, respectively). At the end of the treatment, urinary pyridinoline type I collagen C-telopeptide had decreased by 65% and 60% in the E2 1 mg/NETA 0.25 mg and E2 1 mg/NETA 0.5 mg groups, respectively, while the mean serum concentrations of osteocalcin had decreased by 39% and 34%, bone-specific alkaline phosphatase by 32% and 29%, and C-terminal propeptide of type I collagen by 21% and 19% had decreased by 34-39%, 29-32%, and 19-21% in the E2 1 mg/NETA 0.25 mg and E2 1 mg/NETA 0.25 mg groups, respectively. In conclusion, combinations of E2 1 mg and NETA 0.25 or 0.5 mg prevent bone loss in postmenopausal women at the lumbar spine, hip, distal radius and total body, and normalize bone turnover.

Aged↗

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↗

Monitoring individual response to hormone replacement therapy with bone markers.

Hormone replacement therapy (HRT) induces a rapid decrease in biochemical markers of bone turnover that correlate with a subsequent increase in bone mineral density (BMD). To determine the utility of bone markers in the management of postmenopausal women receiving HRT, we analyzed the relationship between changes in four markers (serum osteocalcin and bone alkaline phosphatase [BAP], serum and urinary C-telopeptide of type I collagen [CTX]) and changes in spine BMD in 569 women treated for 2 years with different doses of a matrix transdermal 17beta-estradiol patch in two placebo-controlled trials. Using a logistic regression model, we found that both the percent change from baseline and the actual value of resorption markers at 3 and 6 months of treatment were predictive of BMD response at 2 years. Comparable results were obtained with formation markers at 6 months only. We determined the sensitivity, probably of positive BMD response, and corresponding cutoff value of markers at 3 and 6 months with a specificity set at a level of 0.90, so that <10% of women classified with markers as responders, i.e., as having a subsequent increase in BMD at 2 years >/=2.26%, would be false positive. All markers provided a high probability of positive BMD response ranging from 0.82 to 0.91, with a sensitivity higher for resorption than for formation markers, and sometimes improved in a model combining the percent change and the actual value of marker under HRT. For example, a decrease in serum CTX >/= 33% at 3 months of HRT provided a 68% sensitivity and 87% probability of positive BMD response at 2 years for a 90% specificity. At 6 months, a decrease in urinary CTX >/= 53% provided a 68% sensitivity and 91% probability of a positive BMD response for a 90% specificity. Half of false-negative cases at 3 months will be correctly identified by a subsequent urinary CTX measurement at 6 months. We conclude that the short-term change in bone markers reflects long-term changes of BMD in postmenopausal women treated with HRT. Our data suggest that bone turnover markers can be used to monitor the BMD response to HRT at the individual level. Whether such monitoring could improve long-term compliance to HRT should be tested prospectively.

Alendronate↗

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↗