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Biomedical subjects

P Garnero

Publications and source records attributed to P Garnero.

At least 19 recordsLinked to original sources

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

Cross-sectional and longitudinal assessment of pre- and postmenopausal bone loss with a portable forearm X-ray device: the Ofely study.

The aim of our study was to describe cross-sectional and longitudinal bone mineral decrease in pre-, peri-, and postmenopausal healthy women using a monoenergy X-ray densitometer specifically designed for forearm assessement. Measurements were performed on the most distal part of the radius (ultradistal, 55% of trabecular bone and 45% of trabecular bone), and on the distal part (distal, 13% of trabecular bone and 87% of cortical bone). A specific trabecular-rich region of interest (nROI) comprising two trapezoids regions of interest located proximally to the endplates of the radius and ulna was also investigated. From a large prospective study (OFELY study), 455 women were measured once a year for 2 years (three measurements). The proportion of postmenopausal women classified as having osteoporosis (i.e., a T score <-2.5) was 33% for the distal region, 44% for the ultradistal region, and 45% for the nROI. No significant bone mineral decrease was found over the 2-year period in premenopausal women (n = 138). In perimenopausal (n = 48) women, a bone loss of 1% was found at the distal site. In the 269 postmenopausal women, a significant decrease was observed at all sites, ranging from 2.14% for the nROI to 2.68% for the ultradistal part. Bone loss was greater in the first 5 years after menopause in trabecular sites and decreased thereafter. For the distal site, bone loss remained stable during the postmenopausal period. We conclude that this small and portable forearm densitometer is suitable for the diagnosis of osteoporosis, and provides information on the rate of bone loss in peri- and postmenopausal women in trabecular and cortical compartments of bone.

Absorptiometry, Photon

Treatment of postmenopausal women with osteoporosis or low bone density with raloxifene. Raloxifene Study Group.

Raloxifene, a selective estrogen receptor modulator (SERM), has been shown to improved bone mineral density (BMD) and serum lipid profiles in healthy postmenopausal women. The objective of this study was to examine the effects of raloxifene on BMD, biochemical markers of bone metabolism and serum lipids in postmenopausal women with low bone density or osteoporosis. This Phase II, multicenter, 24-month, double-masked study assessed the efficacy and safety of raloxifene in 129 postmenopausal women (mean age +/- SD: 60.2 +/- 6.7 years) with osteoporosis or low bone density (baseline mean lumbar spine BMD T-score: -2.8). Women were randomly assigned to one of three treatment groups: placebo, 60 mg/day raloxifene-HCl (RLX 60) or 150 mg/day raloxifene-HCL (RLX 150) and concomitantly received 1000 mg/day calcium and 300 U/day vitamin D3. At 24 months, BMD was significantly increased in the lumbar spine (+3.2%), femoral neck (+2.1%), trochanter (+2.7%) and total hip (+1.6%) in the RLX 60 group compared with the placebo group (p < 0.05). The RLX 150 group had increases in BMD similar to those observed with RLX 60. A greater percentage of raloxifene-treated patients, compared with those receiving placebo, had increased BMD (p < 0.05). Serum bone-specific alkaline phosphatase activity, serum osteocalcin, and urinary type I collagen:creatinine ratio were significantly decreased in the RLX-treated groups, compared with the placebo group (p < 0.01). RLX 60 treatment significantly decreased serum levels of triglycerides, and total- and LDL-cholesterol levels (p < 0.01). The rates of patient discontinuation and adverse events were not significantly different among groups. In this study, raloxifene increased bone density, decreased bone turnover, and improved the serum lipid profile with minimal adverse events, and may be a safe and effective treatment for postmenopausal women with osteoporosis or low bone density.

Aged

Uncoupling of bone metabolism in rheumatoid arthritis patients with or without joint destruction: assessment with serum type I collagen breakdown products.

In this study we investigate bone metabolism in patients with rheumatoid arthritis (RA), with or without joint destruction, using serum biochemical markers of bone turnover. Three hundred eighteen patients (disease duration >2 years; mean 9 years) were divided into those with joint destruction, that is, with Larsen wrist X-ray index > or =2 (n = 173) and those without joint destruction, that is, with Larsen wrist X-ray index <2 (n = 145). Bone formation was assessed by serum osteocalcin levels and bone resorption by a new assay for serum type I collagen C-telopeptide breakdown products (serum CTX). Osteocalcin levels were significantly lower in both destructive (-17%) and nondestructive (-22%) groups compared with 319 healthy gender- and age-matched control subjects (p < 0.001 for both groups), but were similar in the two arthritis groups. CTX levels were increased in patients with destructive arthritis compared with controls (+35%, p < 0.001), but were not different between those with nondestructive arthritis and controls. In patients with joint destruction, decreased bone formation rate was amplified in those on steroids (n = 72) compared with nonusers (n = 101) as demonstrated by lower osteocalcin levels (p = 0.02). CTX levels, but not osteocalcin levels, were positively correlated with indices of disease activity and, moreover, of joint destruction (p < 0.002-0.0001). These results indicate that bone metabolism is uncoupled in patients with RA. Bone formation appears to be reduced both in patients with and without joint destruction, whereas resorption is increased only in patients with joint destruction in relation to disease activity.

Antirheumatic Agents

A dose-ranging trial of a matrix transdermal 17beta-estradiol for the prevention of bone loss in early postmenopausal women. International Study Group.

This international, randomized, double-blind, placebo-controlled, parallel group, dose-ranging trial was designed to determine the efficacy of 2 years of therapy with a new matrix transdermal 17beta-estradiol (Menorest) in preventing bone loss in early postmenopausal women, and to identify an appropriate dose. Two hundred ninety-two ambulatory women with natural or surgical menopause for 1-6 years were randomized to receive patches delivering 17beta-estradiol 50, 75, or 100 microg/day twice weekly for 25 days per 28 day cycle (with dydrogesterone 10 mg twice daily from days 11 to 24) or placebo, for 24 months. The primary outcome measure was the percentage change from baseline in lumbar spine bone mineral density (BMD) at 2 years. Secondary endpoints were percentage changes from baseline in three sites of proximal femur BMD and total body BMD, and in biochemical bone turnover markers. At 2 years, the difference from placebo in percentage change from baseline of L1-4 spine BMD was 6.2%, 7.6%, and 7.8% in the 50, 75, and 100 microg/day groups, respectively. Lumbar spine bone increased in 65.5%, 76.8%, and 81.0% of patients in the respective active treatment groups, compared with 4.9% on placebo. BMD increased significantly relative to placebo in the femoral neck, trochanter, total hip, and total body. Serum osteocalcin, bone alkaline phosphatase and urinary type I collagen C-telopeptide decreased significantly and dose dependently in 17beta-estradiol patients vs. placebo. For example, at 2 years, the difference between placebo and the 50 microg/day group, expressed in percentage change from baseline, was 3.25% at the femoral neck, 3.92% at the trochanter, 3.52% for total hip, and 2.40% for the total body. Breast pain and skin reactions were more common in the actively treated groups, but tolerability was generally good. Therefore, after 2 years, 17beta-estradiol was well-tolerated and highly effective at doses of between 50 and 100 microg/day in preventing bone loss and reducing bone turnover in early postmenopausal women. The dose of 50 microg/day, the lowest dose tested, is a suitable dose. There was little clinical benefit of increasing the dosage from 75 to 100 microg/day.

Absorptiometry, Photon

A model to monitor the efficacy of alendronate treatment in women with osteoporosis using a biochemical marker of bone turnover.

Markers of bone turnover have been suggested to be useful in monitoring the long-term efficacy of antiresorptive therapy on bone mineral density (BMD). In this study, we developed a new model based on the combination of a marker level and its percent change at 6 months of therapy to predict long-term response in BMD. Serum bone alkaline phosphatase (BAP) was measured in 307 late postmenopausal women (mean age 64 years) with osteoporosis enrolled in a 2 year placebo-controlled trial of the bisphosphonate alendronate (10 mg/day). Under treatment, the maximal decrease was observed at 6 months (-44%) with no further change during the 2 year period. Both BAP levels at 6 months and percent BAP change at 6 months correlated with the percent change of spine BMD at 2 years (r = -0.54 and -0.53, respectively, p < 0.001 for both). Logistic regression analysis showed that BAP levels and percent BAP change at 6 months are independent predictors of long-term positive BMD response, defined as > or = 3% increase in spine BMD at 2 years. The most relevant clinical option that could lead to therapeutic adjustment is likely to be an accurate identification of nonresponders, and thus predictive models need to be highly specific. For a 90% specificity, the combination of both the percent change and BAP levels at 6 months resulted in a significantly (p < 0.05) higher sensitivity (72%) than using percent BAP change (61%) or BAP level at 6 months (59%) alone. This combination model was also more effective than using the least-significant change (a decrease of BAP at 6 months of >44%) based on the within-patient variability in the placebo group. In the combination model, positive BMD responders vs. nonresponders could easily be distinguished by a line on a two-scale graph (BAP level at 6 month vs. percent BAP change at 6 months). In conclusion, the combination of BAP level and of its percent change after 6 months of treatment in a logistic model improved the prediction of the long-term BMD response to alendronate treatment compared with percent BAP change alone. This new model may be useful for quick and accurate identification of noncompliant patients (i.e., nonresponders) vs. responders to alendronate treatment, although prospective studies are required to determine accurately the rate of false positives and false negatives. Because this model is independent of the study design, it should be broadly applicable.

Aged

Effects of intranasal 17beta-estradiol on bone turnover and serum insulin-like growth factor I in postmenopausal women.

Estrogen therapy, using either oral or transdermal routes, decreases bone turnover and prevents postmenopausal bone loss. It has been suggested that oral and transdermal 17beta-estradiol (E2) may have different effects on serum insulin-like growth factor I (IGF-I), a potent bone-forming growth factor. In this study we investigated the effects of a new route of administration, the intranasal E2 spray (S21400), on bone turnover and circulating IGF-I and IGF-binding protein-3 (IGFBP-3). Four hundred and twenty early postmenopausal women (<5 yr since menopause; mean age, 52 yr) were enrolled in a 3-month, double blind, placebo-controlled study of four doses of intranasal E2 (100, 200, 300, and 400 microg/day), two doses of oral E2 valerate (1 or 2 mg/day), and placebo. One hundred and twelve women were further treated for 12 months with intranasal E2 (300 microg/day, i.e. the dose that has been shown to be adequate for the majority of postmenopausal women). Markers of bone resorption (urinary type I collagen C telopeptides) and formation [serum osteocalcin, serum type I collagen N-terminal extension propeptide (PINP), and serum bone alkaline phosphatase (BAP)] were measured at baseline, 1 month, 3 months, and 15 months. Serum IGF-I and IGFBP-3 were measured at baseline, 1 month, and 3 months. Urinary type I collagen C telopeptides decreased significantly in all active treatment groups as soon as 1 month (P<0.001 vs. placebo) and continued to decrease at 3 months with a dose effect for intranasal E2. Serum osteocalcin and PINP did not change at 1 month for oral E2 (1 and 2 mg), but decreased significantly at 3 months. In contrast, formation markers increased significantly at 1 month for the two highest doses of intranasal E2 (P<0.01 vs. placebo for osteocalcin and BAP) and did not decrease at 3 months. Oral E2 induced a marked decrease in circulating IGF-I as early as 1 month, which was amplified at 3 months (-29% and -32% for 1 and 2 mg, respectively), whereas no significant change from placebo was observed for intranasal E2 during the 3-month period. Changes in circulating IGF-I correlated significantly (P<0.01) with changes in osteocalcin, PINP, and BAP at 3 months. Oral and intranasal E2 did not induce any significant change from placebo in serum IGFBP-3 at both 1 and 3 months. After 1 yr of treatment with intranasal E2 (300 microg/day), both resorption and formation markers decreased, reaching the levels in premenopausal women, regardless of the type of treatment during the first 3 months. We conclude that E2 administered by this new nasal route normalizes bone turnover to premenopausal levels. The delayed decrease in bone formation observed with intranasal E2 compared to oral E2 may be related to different effects on serum IGF-I levels.

Administration, Intranasal

Biochemical markers of bone turnover and prediction of hip bone loss in older women: the study of osteoporotic fractures.

To examine the ability of commercially available biochemical markers of bone formation and resorption to predict hip bone loss, we prospectively obtained serum and timed 2-h urine specimens from 295 women age 67 years or older who were not receiving estrogen replacement therapy. Serum was assayed for two markers of bone formation: osteocalcin (OC) and bone-specific alkaline phosphatase (BALP). Urine specimens were assayed for four markers of bone resorption: N-telopeptides (NTX), free pyridinolines (Pyr), free deoxypyridinoline (Dpyr), and C-telopeptides (CTX). Measurements of hip bone mineral density were made at the time the samples were collected and then repeated an average of 3.8 years later. Higher levels of all four resorption markers were, on average, significantly associated with faster rates of bone loss at the total hip, but not at the femoral neck. Women with OC levels above the median had a significantly faster rate of bone loss than women with levels below the median, but there was no significant association between levels of BALP and hip bone loss. The sensitivity and specificity of higher marker levels for predicting rapid hip bone loss was limited, and there was considerable overlap in bone loss rates between women with high and low marker levels. We conclude that higher levels of urine NTX, CTX, Pyr, Dpyr, and serum OC are associated with faster bone loss at the hip in this population of elderly women not receiving estrogen replacement therapy, but these biochemical markers have limited value for predicting rapid hip bone loss in individuals.

Aged

Markers of bone turnover predict postmenopausal forearm bone loss over 4 years: the OFELY study.

The ability of biochemical markers to predict the rate of postmenopausal bone loss is still controversial. To investigate this issue further, baseline levels of a panel of specific and sensitive biochemical bone markers were correlated to the rate of change of forearm bone mineral density (BMD) assessed by four measurements over a 4-year period using dual-energy X-ray absorptiometry in a large population-based prospective cohort of 305 women aged 50-88 years (mean 64 years), 1-38 years postmenopausal. In the whole population, higher baseline levels of bone formation (serum osteocalcin and serum type I collagen N-terminal propeptide) and bone resorption markers (urinary N-telopeptides; urinary and serum C-telopeptides) were significantly associated with faster BMD loss (r = -0.19 to -0.30, p < 0.001), independently of age. In women within 5 years of menopause that have the highest rate of bone loss, the predictive value of bone markers was increased with correlation coefficients reaching 0.53. Women with an abnormally high bone turnover, i.e., with levels of bone markers at baseline 2 SD above the mean of premenopausal women, had a rate of bone loss that was 2- to 6-fold higher than women with a low turnover (p = 0.01-0.0001) according to the marker. When the population was categorized according to quartiles of bone markers at baseline, a similar relationship between increased levels of bone markers and faster rate of bone loss was found (p = 0.008-0.0001). In the logistic regression model, the odds-ratio of fast bone loss, defined as the rate of bone loss in the upper tertile of the population, was increased by 1.8- to 3.2-fold for levels of biochemical markers in the high turnover group compared with levels within the premenopausal range, with, however, a limited value for identifying individual fast bone losers. We conclude that increased levels of some of the new biochemical markers of bone turnover are associated with greater radial bone loss. Because increased bone loss is associated with an increased risk of fracture, bone turnover markers may be useful to improve the prediction of the risk of osteoporosis in postmenopausal women.

Aged

The collagenolytic activity of cathepsin K is unique among mammalian proteinases.

Type I collagen fibers account for 90% of the organic matrix of bone. The degradation of this collagen is a major event during bone resorption, but its mechanism is unknown. A series of data obtained in biological models strongly suggests that the recently discovered cysteine proteinase cathepsin K plays a key role in bone resorption. Little is known, however, about the actual action of cathepsin K on type I collagen. Here, we show that the activity of cathepsin K alone is sufficient to dissolve completely insoluble collagen of adult human cortical bone. We found that the collagenolytic activity of cathepsin K is directed both outside the helical region of the molecule, i.e. the typical activity of cysteine proteinases, and at various sites inside the helical region, hitherto believed to resist all mammalian proteinases but the collagenases of the matrix metalloproteinase family and the neutrophil elastase. This property of cathepsin K is unique among mammalian proteinases and is reminiscent of bacterial collagenases. It is likely to be responsible for the key role of cathepsin K in bone resorption.

Adult

Measurement of urinary excretion of nonisomerized and beta-isomerized forms of type I collagen breakdown products to monitor the effects of the bisphosphonate zoledronate in Paget's disease.

OBJECTIVE: We have previously shown that the woven pagetic bone in patients with Paget's disease is characterized by an impaired degree of beta-isomerization of C-telopeptides of type I collagen molecules, which results in a preferential urinary excretion of nonisomerized type I collagen C-telopeptide breakdown products (CTX). The aim of this study was to measure the urinary excretion of nonisomerized (alpha) and beta-isomerized (beta) CTX in patients with Paget's disease treated with a bisphosphonate. METHODS: We studied 28 patients with active Paget's disease of bone who were a part of a randomized, double-blind, placebo-controlled study comparing the effects of several doses of a single injection of zoledronate, a new potent bisphosphonate. Serum bone alkaline phosphatase (BAP) and type I collagen C-terminal extension propeptide (PICP) and urinary excretion of free deoxypyridinoline (free D-Pyr), N-telopeptide breakdown products (NTX), alphaCTX, and betaCTX were measured at baseline and 5, 10, 30, and 60 days after injection. RESULTS: At baseline, all markers were significantly increased in the patients compared with a group of 97 sex- and age-matched controls, with a greater increase in BAP (12-fold), NTX (19-fold), and alphaCTX (10-fold) compared with PICP (2.2-fold), free D-Pyr (2.5-fold), and betaCTX (3-fold). The ratio of alphaCTX to betaCTX was about 3-fold higher than in controls (2.1 versus 0.76; P < 0.001). After a single intravenous injection of zoledronate (200 or 400 microg), all markers decreased within 5 days, except for BAP and free D-Pyr, which decreased on day 10. The maximum decrease was greater and occurred faster for NTX, alphaCTX (-55% after 10 days), and betaCTX (-42% after 10 days) than for free D-Pyr (-25% after 30 days). After the initial decrease, the urinary excretion of betaCTX increased between days 10 and 30 and returned to pretreatment levels after 2 months, in contrast to the sustained decrease in alphaCTX and NTX that was maintained up to 60 days. The urinary ratio of alphaCTX to betaCTX decreased significantly between days 10 and 60, and returned to within the normal range in most patients after 2 months of treatment, probably reflecting the progressive replacement of woven bone by a lamellar bone with a higher and normal degree of beta-isomerization of type I collagen, as previously documented by histology. CONCLUSION: The determination of the urinary ratio of alphaCTX to betaCTX could be useful for monitoring the effect of bisphosphonate treatment in restoring bone quality in patients with Paget's disease.

Aged

Do markers of bone resorption add to bone mineral density and ultrasonographic heel measurement for the prediction of hip fracture in elderly women? The EPIDOS prospective study.

We have previously shown that hip bone mineral density (BMD), heel broadband ultrasound attenuation (BUA) and bone resorption markers are independent predictors of hip fracture in elderly women. We investigated whether a combination of these three parameters could improve the predictive value of a single test in a nested case-control analysis (75 hip fractures and 228 age-matched controls) of the EPIDOS prospective study comprising 7598 healthy women 75 years of age and older followed prospectively for a mean 22 months. At baseline, prior fracture, femoral neck BMD by dual-energy X-ray absorptiometry (DXA), heel BUA and urinary type I collagen C-telopeptide breakdown products (CTX) were assessed. The area under the receiver operating characteristic curve was significant for the three diagnostic tests, heel BUA being the best single predictor. The added value of urinary CTX to either BMD or BUA depends on the cutoff point chosen to define patients at risk and on the therapeutic strategy that is considered. Defining patients at risk as those with low BMD (or low BUA) or high CTX resulted in a significant increase in the sensitivity compared with BMD or BUA alone--a strategy that could be applied when a broad treatment is considered. However, this increased sensitivity was also obtained simply by increasing the BMD and BUA cutoffs, suggesting that a combination of CTX with BMD/BUA is not useful for that type of treatment strategy. Conversely, defining patients at risk as those with both low BMD and high CTX increases the specificity (88% vs 78%) with a similar number of hip fracture patients being identified (30% vs 32%)--a combination that could be useful when the strategy is to target treatment to a subset of high-risk patients. This strategy appears to be more cost-effective than bone mass measurement alone as indicated by the 37% fewer patients who need to be treated to avoid one fracture per year. If DXA or ultrasound is not available, the combination of a bone resorption marker with a history of any type of fracture after the age of 50 years gave a predictive value similar to that obtained with femoral neck BMD or heel BUA alone, for both types of treatment strategy. We conclude that the combination of urinary CTX with hip BMD could be useful for the identification of elderly women at high risk for hip fracture, resulting in higher specificity for a given sensitivity threshold than BMD measurement alone. If DXA is not available, the combination of history of fracture and urinary CTX performs as well as hip BMD to assess hip fracture risk in elderly women.

Aged

Biochemical markers of bone turnover. Applications for osteoporosis.

The recent discovery of specific and sensitive biochemical markers reflecting the overall rate of bone formation and bone resorption has markedly improved the noninvasive assessment of bone turnover in various metabolic bone diseases, especially in osteoporosis. The immunoassay of human osteocalcin, recognizing the intact molecule and its major proteolytic fragment, and assays for bone alkaline phosphatase and the intact form of the N-terminal extension propeptide of type I collagen are currently the most sensitive markers for assessing bone formation. The best indices of bone resorption are the new immunoassays for pyridinoline cross-links and type I collagen-related peptides in urine and, recently, in serum. Several studies indicate that screening for these bone markers may be useful for improving the prognostic assessment of postmenopausal women in combination with bone mass measurement, that is, their risk for osteoporosis and, ultimately, for fractures and to monitor rapidly the efficacy of antiresorptive drugs.

Alkaline Phosphatase

Lack of correlation between start codon polymorphism of the vitamin D receptor gene and bone mineral density in premenopausal French women: the OFELY study.

Previous studies have demonstrated an association between bone mineral density (BMD) and a start codon polymorphism (SCP) of the vitamin D receptor (VDR) gene in pre- and postmenopausal Caucasian and Japanese women. The SCP can be determined by a restriction fragment length polymorphism defined by the FokI restriction endonuclease. VDR alleles containing the FokI site are denoted by f and alleles lacking the site by F. In this study, the association between BMD and the SCP was examined in a group of 174 premenopausal French women who previously had been studied for a relationship between BMD and the VDR BsmI polymorphism. The SCP genotypes of the French women were FF 40%, Ff 44%, and ff 16% and they were independent of the BsmI genotype. BMD was measured by dual-energy X-ray absorptiometry at the lumbar spine, proximal femur, forearm, and total body. In contrast to previous reports, there was no association of BMD with SCP genotype in this group of Caucasian women at any site. We also measured several biochemical indices of calcium homeostasis and bone turnover. We found no statistically significant associations between SCP genotype and calcium, parathyroid hormone, or vitamin D levels. There was a 33.5% higher level of the skeletal resorption marker N-telopeptides of type I collagen in the women with the ff genotype when compared with women with the FF genotype (p = 0.004). Other bone turnover markers failed to show an association with SCP genotype. In summary, the SCP genotype may not be associated with reduced BMD in all geographical or ethnic populations.

Adult

Collagen Ialpha1 Sp1 polymorphism, bone mass, and bone turnover in healthy French premenopausal women: the OFELY study.

Bone mineral density (BMD) is under strong genetic control. Recent work has suggested that a polymorphism affecting an Sp1 binding site in the collagen I (COLI) A1 gene is associated with BMD and vertebral fracture in postmenopausal women. We analyzed this polymorphism in relation to BMD and bone turnover in 220 healthy premenopausal women aged 31-57 years. There were 61% SS homozygotes, 35% Ss heterozygotes, and 4% ss homozygotes, genotype frequencies similar to those previously reported in other Caucasian populations. Women in the three genotype groups were matched for age, body weight, physical activity, smoking habits, and oral contraceptive use, but height was greatest in the SS group and lowest in the ss group (p = 0.03). Between-group comparisons by analysis of variance (ANOVA) showed that COLI A1 genotype was significantly associated with spine BMD (p = 0.05), total body BMD (p = 0.046), and total body bone mineral content (BMC) (p = 0.02), but the differences between extreme genotypes were small (4, 5, and 10%, for spine BMD, total body BMD, and total body BMC, respectively). After adjustment for height, the differences between genotypes decreased and were no longer significant by ANOVA (p = 0.08, 0.17, and 0.33 for spine BMD, total body BMD, and total body BMC). Furthermore, no significant difference between genotypes was observed for femoral neck, trochanter, Ward's triangle, or forearm BMD. COLI A1 genotype was associated with serum C-terminal extension propeptide of type I collagen (p = 0.04), with lowest levels in ss individuals, but not with any other marker of bone formation (osteocalcin, alkaline phosphatase, and type I collagen N-terminal extension propeptide) or bone resorption (urinary excretion of type I collagen C and N telopeptide breakdown products). The COLI A1 Sp1 polymorphism is associated with height, peak total body BMD and BMC, and spine BMD. The genotype-specific differences account for only a small proportion of variance in BMD at these sites and are not significant after adjustment for height, suggesting that part of the effect on bone mass may be due to differences in body size. Our data support the view that COLI A1 may be a candidate gene for regulation of bone mass, but our results must be treated with caution, in view of the small number of ss individuals, and will require confirmation in larger studies.

Adult

Osteoporosis.

Osteoporosis, one of the most prevalent diseases associated with aging, is characterized by a low bone mass and microarchitectural deterioration of bone tissue leading to increased susceptibility of fracture. The management of osteoporotic patients relies especially on the static measurement of bone mass as bone mineral and dynamic changes of bone turn over. New developments of bone mineral density measurement techniques and biochemical markers of bone turnover are reviewed. Their clinical uses for the management of patients with osteoporosis are discussed.

Biomarkers