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Biomedical subjects

Patrick Garnero

Publications and source records attributed to Patrick Garnero.

At least 37 records · Page 2Linked to original sources

The effect of continuous oestradiol with intermittent norgestimate on bone mineral density and bone turnover in post-menopausal women.

OBJECTIVE: To assess in post-menopausal women the efficacy and tolerability of a continuous oestradiol/intermittent norgestimate HRT regimen to prevent and to reverse post-menopausal loss of bone mineral density (BMD) and to determine the effects on serum bone turnover markers markers. METHODS: A 1-year, multicentre, international, placebo-controlled, randomised, double-blind clinical trial was conducted in 146 post-menopausal women with an intact uterus in order to assess the effect on bone loss of continuous oral 17beta-oestradiol (1 mg per day) combined with norgestimate (90 microg per day), for 3 consecutive days out of every 6-day treatment period (E2/iNGM). During a second year extension, all women agreeing to continue were on the E2/iNGM regimen. BMD was assessed prior to treatment and after 1 and 2 years or at the end of treatment in women stopping participation prematurely after at least 6 months of treatment. Serum bone turnover markers were determined prior to and at 1 year of treatment Adverse events were collected at three-monthly intervals during clinic visits over the treatment period. RESULTS: BMD in the lumbar spine, the primary endpoint, was evaluable in 117 subjects completing >6 months of treatment. BMD increased on average by 2.4% in women on the intermittent progestin regimen. It decreased by 1.4% in placebo treated women. The change from baseline and the difference between active and placebo treatment (Delta placebo) were highly significant (P < 0.0001). On E2/iNGM, also the BMD in the total hip increased (+1.49%, Delta placebo 3.73%, P < 0.0001). The serum markers for bone formation osteocalcin and type I collagen N-propeptide were significantly reduced compared to baseline by 31 and 44%, respectively and the bone resorption marker C-terminal crosslinked telopeptide of type I collagen by 59%. Minor increases (<10%) of markers in the placebo group were not significant. During a second year extension of the trial, all subjects were on active treatment. Subjects on placebo who lost (median+/-CI 95%) 0.66% (-2.3 to +0.5) of spine BMD during the first year now gained 4.41% (2.7-7.6). They also gained 1.6% (0.1-0.3.6) in the total hip. Subjects continuously on oestradiol/intermittent norgestimate (E2/iNGM) gained an additional 5.7% (2.3-13.5) in the lumbar spine and +0.1% (-0.6 to +2.2) at the total hip. Side effects reported by women on the intermittent progestin regimen significantly in excess over reports from the placebo group were uterine bleeding, abdominal and breast pain, but not headache. Back pain and weight gain was reported by significantly fewer women on active treatment compared to placebo. CONCLUSION: The continuous oestradiol/intermittent norgestimate HRT regimen is well tolerated, reduces bone turnover and prevents post-menopausal bone loss in healthy post-menopausal women.

Aged↗

Change in bone turnover and hip, non-spine, and vertebral fracture in alendronate-treated women: the fracture intervention trial.

UNLABELLED: We used data from the Fracture Intervention Trial to assess the relationship change in bone turnover after 1 year of alendronate or placebo treatment and subsequent hip, non-spine, and spine fracture risk among 6186 postmenopausal women. In the alendronate group (n = 3105), greater reductions in one or more biochemical marker were associated with a lower risk of fracture. INTRODUCTION: There are few data on the relationship between short-term change in biochemical markers of bone turnover and non-spine fracture risk among bisphosphonate-treated women, and the clinical use of such measurements is unknown. MATERIALS AND METHODS: We measured biochemical markers of bone turnover (bone-specific alkaline phosphatase [bone ALP], intact N-terminal propeptide of type I collagen, and C-terminal crosslinked telopeptide of type 1 collagen) and BMD of the spine and hip at baseline and after 1 year of alendronate or placebo. During a mean follow-up of 3.6 years, 72 hip, 786 non-spine, and 336 vertebral fractures were documented. RESULTS AND CONCLUSIONS: Each 1 SD reduction in 1-year change in bone ALP was associated with fewer spine (odds ratio = 0.74; CI: 0.63, 0.87), non-spine (relative hazard [RH] = 0.89; CI: 0.78, 1.00; p < 0.050), and hip fractures (RH = 0.61; CI: 0.46, 0.78). Alendronate-treated women with at least a 30% reduction in bone ALP had a lower risk of non-spine (RH = 0.72; CI: 0.55, 0.92) and hip fractures (RH = 0.26; CI: 0.08, 0.83) relative to those with reductions <30%. We conclude that greater reductions in bone turnover with alendronate therapy are associated with fewer hip, non-spine, and vertebral fractures, and the effect is at least as strong as that observed with 1-year change in BMD.

Aged↗

Markers for type II collagen breakdown predict the effect of disease-modifying treatment on long-term radiographic progression in patients with rheumatoid arthritis.

OBJECTIVE: To investigate in a randomized clinical trial setting with an aggressive combination-therapy arm and a mild-monotherapy arm, whether therapy-induced changes in urinary C-terminal crosslinking telopeptide of type I collagen (CTX-I) and type II collagen (CTX-II) predict 5-year radiographic progression in patients with rheumatoid arthritis (RA). METHODS: Patients had participated in the COBRA (Combinatietherapie Bij Reumatoïde Artritis) trial comparing aggressive step-down combination therapy (the COBRA regimen, including temporary high-dose prednisolone, temporary low-dose methotrexate, and sulfasalazine [SSZ]) and mild monotherapy (SSZ). Urinary CTX-I and CTX-II levels were measured at baseline and 3, 6, 9, and 12 months after initiation of treatment. Radiographs were scored according to the modified Sharp/van der Heijde method (mean of 2 independent readers who were aware of the sequence). Individual long-term radiographic progression was estimated, using baseline radiographs and all radiographs obtained during the followup period, by simple linear regression analysis (curve fitting). RESULTS: Both COBRA therapy and SSZ monotherapy produced a significant decrease in urinary CTX-I and CTX-II levels at 3 months, and this decrease was amplified at 6 months. COBRA therapy suppressed CTX-II (change from baseline levels -36% and -43% at 3 and 6 months, respectively), but not CTX-I, significantly better than did SSZ (-17% and -21% at 3 and 6 months, respectively) at 3 and 6 months. The magnitude of the decrease in urinary CTX-II levels at 3 months significantly predicted long-term (5-year) radiographic progression (beta = 0.48 [95% confidence interval (95% CI) 0.13, 0.83]). This effect was independent of the change in disease activity and inflammation indices at 3 months. Patients whose CTX-II levels were normalized (<150 ng/mmoles of urinary creatinine) at 3 months had a significantly higher chance of radiographic stability (no progression over 5 years) than did patients whose CTX-II levels were increased both at baseline and at 3 months (odds ratio 4.5 [95% CI 1.5, 13]). CONCLUSION: The individual CTX-II response measured after 3 months of therapy in patients with active RA who had increased CTX-II levels at baseline independently predicts long-term radiographic progression. Urinary CTX-II levels may be used as early markers of treatment efficacy in patients with RA.

Adult↗

Association between spine disc degeneration and type II collagen degradation in postmenopausal women: the OFELY study.

OBJECTIVE: To investigate whether radiologic spine disc degeneration is associated with increased type II collagen (CII) degradation products in the urine of postmenopausal women, independently of radiologic knee osteoarthritis (OA) and clinical hand OA. METHODS: The study group comprised 324 postmenopausal women ages 58-94 years who had no treatment or disease that could alter bone metabolism. Lateral radiographs of the thoracic and lumbar spine were obtained in each woman and scored for disc space narrowing (DSN) and osteophytes. Fixed-flexion posteroanterior radiographs of the knee were obtained to assess femorotibial knee OA. In all women, hand OA was assessed by clinical examination, and the level of urinary C-terminal crosslinking telopeptide of CII (CTX-II), a biologic marker of CII degradation, was measured. RESULTS: The prevalences of radiographic lumbar and thoracic spine disc degeneration, knee OA, and clinical hand OA were 84%, 88%, 35%, and 58%, respectively. After adjustment for age and body mass index (BMI), patients with lumbar spine DSN grade > or = 1 had, on average, 34% higher CTX-II levels compared with the other women (P = 0.0005), whereas no association was observed with lumbar spine osteophytes. No significant association between thoracic spine DSN or osteophytes and urinary CTX-II levels was observed. Multivariate analysis of variance showed that, after adjustment for age and BMI, lumbar spine DSN (P = 0.0049), knee OA (P = 0.0055), and clinical hand OA (P = 0.0060) were, independently of each other, associated with CTX-II levels. Thus, patients with lumbar spine DSN, knee OA, and clinical hand OA had CTX-II levels 80% higher (P < 0.0001 after adjustment for age and BMI) than those of patients with no lumbar spine DSN, no radiologic knee OA, and no clinical hand OA. CONCLUSION: Postmenopausal women with lumbar spine disc degeneration are characterized by increased CII degradation. The contribution of lumbar spine DSN to CII degradation was similar to, and independent of, the contribution of radiologic knee OA or clinical hand OA. Lumbar spine disc degeneration in elderly patients should be assessed when analyzing levels of CTX-II in studies of knee, hip, and hand OA.

Adult↗

Noninvasive techniques for assessing skeletal changes in inflammatory arthritis: bone biomarkers.

PURPOSE OF REVIEW: Inflammatory arthritis diseases including rheumatoid arthritis (RA) are characterized by systemic bone loss and increased risk of osteoporosis and local joint bone erosion. Clinical and biologic parameters of disease activity and inflammation and radiologic findings are poorly sensitive for assessing skeletal changes. More specific biologic markers reflecting systemic quantitative and dynamic changes of bone turnover represent promising adjunctive tools. RECENT FINDINGS: More specific and well-characterized biochemical assays especially for type I collagen-based bone resorption markers have been recently developed. Prospective studies indicate that increased levels of some biochemical markers of bone resorption are associated with a more rapid progression of joint destruction in patients with early RA, independently of disease activity and inflammation parameters. This increased bone resorption associated with local bone erosion is likely to be mediated by changes in the balance of the OPG/RANK-L system (receptor activator of nuclear factor kappaB-ligand and osteoprotegerin) as suggested by the significant association of this ratio in serum and long-term radiologic progression. Besides their well-documented response to bisphosphonate treatment used as adjuvant therapy in patients with glucocorticoid-induced osteoporosis, bone markers may be useful to assess potential beneficial effects of new disease-modifying antirheumatic drugs on systemic bone loss and on progression of joint damage. SUMMARY: Recent evidence suggests that biochemical markers of bone resorption may be useful to predict progression of joint damage in RA. Together with new biochemical markers of cartilage turnover, they are likely to play a major role in assessing effects of treatment on joint damage. Their value in assessing systemic and local bone abnormalities should be explored in other inflammatory arthritis diseases such as ankylosing spondylarthritis.

Arthritis↗

Development and clinical application in arthritis of a new immunoassay for serum type IIA procollagen NH2 propeptide.

Type II collagen, the most abundant protein of cartilage matrix, is synthesized as a procollagen molecule including the N-(PIINP) and C-(PIICP) propeptides at each end. Type II procollagen is produced in two forms as the result of alternative RNA splicing. One form (IIA) includes and the other form (IIB) excludes a 69-amino acid cysteine-rich globular domain encoded by exon 2 in PIINP. During the process of synthesis, these N-propeptides are removed by specific proteases and released in the circulation, and their levels are believed to reflect type II collagen synthesis. In this chapter we describe the development of a specific enzyme-linked immunosorbent assay (ELISA) for the measurement of the IIA form of PIINP (PIIANP) in serum based on a polyclonal antibody raised against recombinant human exon 2 fusion protein of type II procollagen. We show that this ELISA is highly specific for circulating PIIANP and has adequate technical precision. In patients with knee osteoarthritis and rheumatoid arthritis, serum PIIANP was decreased by 53% (p < 0.0001) and 35% (p < 0.001), respectively, suggesting that type IIA collagen synthesis is altered in these arthritic diseases. The measurement of serum PIIANP may be useful for the clinical investigation of patients with joint diseases.

Adolescent↗

The effects of parathyroid hormone and alendronate alone or in combination in postmenopausal osteoporosis.

BACKGROUND: Parathyroid hormone increases bone strength primarily by stimulating bone formation, whereas antiresorptive drugs reduce bone resorption. We conducted a randomized, double-blind clinical study of parathyroid hormone and alendronate to test the hypothesis that the concurrent administration of the two agents would increase bone density more than the use of either one alone. METHODS: A total of 238 postmenopausal women (who were not using bisphosphonates) with low bone mineral density at the hip or spine (a T score of less than -2.5, or a T score of less than -2.0 with an additional risk factor for osteoporosis) were randomly assigned to daily treatment with parathyroid hormone (1-84) (100 microg; 119 women), alendronate (10 mg; 60 women), or both (59 women) and were followed for 12 months. Bone mineral density at the spine and hip was assessed by dual-energy x-ray absorptiometry and quantitative computed tomography. Markers of bone turnover were measured in fasting blood samples. RESULTS: The bone mineral density at the spine increased in all the treatment groups, and there was no significant difference in the increase between the parathyroid hormone group and the combination-therapy group. The volumetric density of the trabecular bone at the spine increased substantially in all groups, but the increase in the parathyroid hormone group was about twice that found in either of the other groups. Bone formation increased markedly in the parathyroid hormone group but not in the combination-therapy group. Bone resorption decreased in the combination-therapy group and the alendronate group. CONCLUSIONS: There was no evidence of synergy between parathyroid hormone and alendronate. Changes in the volumetric density of trabecular bone, the cortical volume at the hip, and levels of markers of bone turnover suggest that the concurrent use of alendronate may reduce the anabolic effects of parathyroid hormone. Longer-term studies of fractures are needed to determine whether and how antiresorptive drugs can be optimally used in conjunction with parathyroid hormone therapy.

Absorptiometry, Photon↗

Serum leptin as a determinant of bone resorption in healthy postmenopausal women.

To examine the relationships between serum leptin and bone metabolism, we measured bone mineral density (BMD) at the spine and the hip, fasting serum leptin, and osteocalcin and urinary excretion of C-terminal crosslinking telopeptide of type I collagen (CTX), as markers of bone formation and resorption, respectively, in 121 postmenopausal women aged 54 +/- 5 years. These parameters were also assessed at 6 months and 2 years of treatment with either 2.5 mg tibolone (n = 34), 1.25 mg tibolone (n = 45), or 2 mg estradiol plus 1 mg norethindrone acetate (n = 42). At baseline, serum leptin correlated positively with spine (r = 0.21, P = 0.02) and total hip (r = 0.26, P = 0.0044) BMD and negatively with CTX (r = -0.38, P < 0.0001) and osteocalcin (r = 0.21, P = 0.025). After adjustment for BMI and for fat mass, the association between serum leptin and CTX persisted with a partial correlation coefficient of -0.18 (P = 0.046) and of -0.22 (P = 0.03), respectively. Women in the highest quartile of leptin levels had 11% higher total hip (P = 0.0039) and lumbar spine BMD (P = 0.016), 21% lower osteocalcin (P = 0.01), and 38% lower CTX (P = 0.0005) than women in the lowest quartile (P < 0.05). During treatment, serum leptin levels increased (+14.7 +/- 47.3%, P = 0.019), without significant difference between the groups. This increase correlated with the increase in body weight (r = 0.46, P < 10(-4)). No correlation was found between the changes in leptin and the changes in bone parameters. In conclusion, leptin may play a role as a determinant of bone resorption in healthy, untreated postmenopausal women, but the effect of estradiol or tibolone on bone are not mediated by leptin.

Aged↗

Effect of withdrawal of hormone replacement therapy on bone mass and bone turnover: the OFELY study.

The beneficial effects of hormone replacement therapy (HRT) on bone mineral density (BMD) and bone turnover are well documented but whether HRT withdrawal is followed by an accelerated rate of bone loss is still controversial. We analyzed 26 women who have withdrawn HRT during a 6-year follow-up of the OFELY cohort. They were compared with three groups of women from the same cohort: one hundred four healthy postmenopausal women who continued HRT during the 6-year follow-up, 78 untreated postmenopausal women matched for age, and 31 untreated women within 5 years of menopause. Bone markers [serum osteocalcin (Intact OC), bone alkaline phosphatase (Bone ALP), and serum CTX] were performed annually during 4 years and bone mineral density (BMD) was measured at the forearm (DXA) during 6 years. Withdrawal of HRT was followed by a significant bone loss with an annual rate ranged from -0.7 to -1.6% at the radius according to the skeletal site and by a marked increase of bone markers after 6 months: +36 % for osteocalcin, +23% for bone alkaline phosphatase, and +120% for serum CTX (P < 0.05 to P < 0.001). In contrast, in the HRT continuing group, there was no bone loss and no substantial change of bone markers over 4 years. The rate of bone loss after withdrawal of HRT was significantly greater than in postmenopausal women matched for age who never received HRT (2.2 to 2.8 times higher according to the radius area) and not different as compared to the accelerated bone loss observed in untreated women within 5 years of menopause. We conclude that in postmenopausal women who have been on HRT for 6 years, cessation of treatment results in a rapid increase of bone turnover and a rate of bone loss similar to early postmenopausal women during the subsequent 4 years and greater than untreated women of the same age.

Adult↗

The DASH diet and sodium reduction improve markers of bone turnover and calcium metabolism in adults.

Dietary strategies to prevent and treat osteoporosis focus on increased intake of calcium and vitamin D. Modification of whole dietary patterns and sodium reduction may also be effective. We examined the effects of two dietary patterns and three sodium levels on bone and calcium metabolism in a randomized feeding study. A total of 186 adults, aged 23-76 y, participated. After a 2-wk run-in period, participants were assigned randomly to diets containing three levels of sodium (50, 100 and 150 mmol/d) to be consumed for 30 d in random order. Serum osteocalcin (OC), C-terminal telopeptide of type I collagen (CTX), fasting serum parathyroid hormone (PTH), urinary sodium, potassium, calcium and cAMP were measured at baseline and at the end of each sodium period. The Dietary Approaches to Stop Hypertension (DASH) diet reduced serum OC by 8-11% and CTX by 16-18% (both P < 0.001). Urinary calcium excretion did not differ between subjects that consumed the DASH and control diets. Reducing sodium from the high to the low level significantly decreased serum OC 0.6 microg/L in subjects that consumed the DASH diet, fasting serum PTH 2.66 ng/L in control subjects and urinary calcium 0.5 mmol/24 h in both groups. There were no consistent effects of the diets or sodium levels on urinary cAMP. In conclusion, the DASH diet significantly reduced bone turnover, which if sustained may improve bone mineral status. A reduced sodium intake reduced calcium excretion in both diet groups and serum OC in the DASH group. The DASH diet and reduced sodium intake may have complementary, beneficial effects on bone health.

Adult↗

Biomarkers in osteoarthritis.

PURPOSE OF REVIEW: Osteoarthritis is a chronic disease characterized by progressive destruction of articular cartilage and subchondral bone, and synovial reaction. Clinical and radiologic findings that form the basis of the diagnosis of osteoarthritis are poorly sensitive for monitoring the progression of the disease. Biologic markers reflecting quantitative and dynamic changes of joint tissue turnover represent promising adjunct tools. RECENT FINDINGS: New tissue-specific markers have been developed and include assays for type II collagen synthesis and degradation and synovitis. Prospective studies indicate that increased or decreased levels of some of these markers are associated with rapid progression of joint destruction in patients with knee osteoarthritis. Because progression of joint damage is likely to result primarily from an imbalance between degradation and reparative processes, a combination of markers reflecting these two components appears promising. For example, combining two new markers for type II collagen synthesis and degradation in an uncoupling index of cartilage turnover was more effective in predicting 1-year radiologic progression in knee osteoarthritis than the measurement of a single marker. Preliminary data in rheumatoid arthritis show a rapid response of a marker of type II collagen degradation under disease-modifying antirheumatic drugs, with early changes of this marker being predictive of long-term radiologic progression. SUMMARY: Recent evidence suggests that the combination of some biologic markers will be useful for identifying patients at risk for rapid joint destruction in osteoarthritis. Because of their rapid changes under treatment, biologic markers will play an important role in the development and monitoring of new structure-modifying therapies for osteoarthritis.

Biomarkers↗

Long-term variability of markers of bone turnover in postmenopausal women and implications for their clinical use: the OFELY study.

UNLABELLED: Bone marker variability has raised concern for its use in individual patients. Serum osteocalcin (formation) and CTX (resorption) were measured every year for 4 years in 268 postmenopausal women. Seventy percent to 80% of women classified as having high bone turnover at baseline were similarly classified by the same methods 4 years later. INTRODUCTION: High bone marker levels are a risk factor for osteoporosis in postmenopausal women, but variability of measurements has raised doubts about their clinical use in an individual patient. METHODS: We studied 268 untreated postmenopausal women (50-81 years of age) belonging to a population-based prospective cohort. We collected fasting morning blood samples every year for 4 years to measure serum intact osteocalcin (OC) and serum C-terminal cross-linked telopeptide of type I collagen (CTX) as bone formation and resorption markers, respectively. RESULTS: Serum OC and CTX remained stable during follow-up (+ 1.2%/year, p = 0.003 and -0.13%/year, p = 0.70 for OC and S-CTX, respectively). At baseline, women were classified as having low (tertile 1), intermediate (tertile 2), or high (tertile 3) bone turnover. Agreement of classification between baseline and 4-year measurements was moderate (kappa [95% CI]: 0.51 [0.43-0.59] and 0.52 [0.44-0.60] for OC and S-CTX, respectively). Less than 10% of women in tertile 1 or 3 of either marker at baseline were found in the opposite tertile 4 years later. When the two markers were combined, only 2% of women at high turnover at baseline--defined as OC and/or S-CTX in tertile 3--were classified at low turnover 4 years later. Among women classified at high bone turnover at baseline (tertile 3), 70-80% were also found at high turnover 4 years later. Among women in tertile 2, only 51% and 43% for OC and CTX, respectively, remained in the same tertile at the second measurement. CONCLUSIONS: Serum levels of bone formation and resorption markers are stable over 4 years in postmenopausal women, on average. The majority of women classified as having high bone turnover were similarly classified by the same methods 4 years later. However, 20-30% of these women at risk for fracture would be incorrectly classified, suggesting that further investigation would be required to reduce the number of patients who would be treated unnecessarily if the decision was made on bone marker measurement. For women with intermediate levels, classification may be improved by a second measurement or by combining two markers.

Aged↗

Association of baseline levels of urinary glucosyl-galactosyl-pyridinoline and type II collagen C-telopeptide with progression of joint destruction in patients with early rheumatoid arthritis.

OBJECTIVE: To evaluate whether measurements of urinary glucosyl-galactosyl-pyridinoline (Glc-Gal-PYD) and urinary C-terminal crosslinking telopeptide of type II collagen (CTX-II), 2 new markers of destruction of the synovium and cartilage collagen breakdown, respectively, are associated with the progression of joint damage in patients with early rheumatoid arthritis (RA), and to compare this association with that with serum matrix metalloproteinase 3 (MMP-3), a proteinase expressed by synovial tissue and chondrocytes, and that with serum C-reactive protein (CRP), an index of systemic inflammation. METHODS: The prospective study cohort comprised 116 patients with early RA who were part of a large, double-blind, randomized study comparing the efficacy of etanercept and methotrexate. The relationship between baseline levels of urinary Glc-Gal-PYD, urinary CTX-II, and serum MMP-3 and the progression of joint destruction, as measured by changes in the modified Sharp score (average findings of 2 independent readers) over 1 year, was investigated. RESULTS: Levels of urinary Glc-Gal-PYD (+70%), urinary CTX-II (+104%), and serum MMP-3 (+219%) were elevated compared with the levels in 76 healthy controls. The baseline levels of Glc-Gal-PYD (r = 0.30), CTX-II (r = 0.25), and MMP-3 (r = 0.29) correlated with the changes over 1 year in the total Sharp score (joint space narrowing and bone erosion). Patients with baseline levels of Glc-Gal-PYD, CTX-II, and MMP-3 that were higher than the mean + 2 SD in healthy controls had a significantly greater progression of joint damage, with an increase in the total Sharp score over 1 year that was from 3- to 8-fold higher than that in patients with low baseline levels of these markers. Moreover, patients with these higher levels of Glc-Gal-PYD, CTX-II, and MMP-3 had a higher risk of progression of the disease (increase in total Sharp score > or =0.5 units) than did the other patients (relative risks and 95% confidence intervals [95% CI] 3.3 [95% CI 1.5-7.4], 2.5 [95% CI 1.1-5.7], and 2.5 [95% CI 1.1-5.6], respectively). The baseline serum level of CRP was not significantly associated with the progression of joint damage. Adjustment of the levels of Glc-Gal-PYD, CTX-II, and MMP-3 according to radiologic damage at baseline did not alter their association with progression. After adjustment for serum CRP, the relative risk slightly decreased, but remained significant, for Glc-Gal-PYD (2.6 [95% CI 1.1-6.3]). Patients with both increased levels of the molecular markers and radiologic damage at baseline had a higher risk of progression of joint damage than did those with either high molecular marker levels or radiologic damage. CONCLUSION: High baseline levels of Glc-Gal-PYD, CTX-II, and MMP-3 are associated with increased risk of progression of joint destruction over 1 year in early RA. The association between baseline levels of urinary Glc-Gal-PYD and progression of joint erosion was independent of the severity of radiologic damage and inflammation at baseline. Combining the measurements of these molecular markers with radiologic assessment of joint damage may be useful for identifying patients with RA who are at high risk of rapid progression and for whom early aggressive treatment would be beneficial.

Adult↗

Uncoupling of type II collagen synthesis and degradation predicts progression of joint damage in patients with knee osteoarthritis.

OBJECTIVE: The hallmark of osteoarthritis (OA) is the loss of articular cartilage. This loss arises from an imbalance between cartilage synthesis and cartilage degradation over a variable period of time. The aims of this study were to investigate the rates of these processes in patients with knee OA using two new molecular markers and to investigate whether the combined use of these markers could predict the progression of joint damage evaluated by both radiography and arthroscopy of the joints during a period of 1 year. METHODS: Seventy-five patients with medial knee OA (51 women, 24 men; mean +/- SD age 63 +/- 8 years, mean +/- SD disease duration 4.8 +/- 5.2 years) were studied prospectively. At baseline, we measured serum levels of N-propeptide of type IIA procollagen (PIIANP) and urinary excretion of C-terminal crosslinking telopeptide of type II collagen (CTX-II) as markers of type II collagen synthesis and degradation, respectively. Joint space width (JSW) on radiography and medial chondropathy at arthroscopy (assessed using a 100-mm visual analog scale [VAS]) were measured in all patients at baseline and in 52 patients at 1 year. Progression of joint destruction was defined as a decrease of > or =0.5 mm in JSW on radiography and as increased chondropathy (an increase in the VAS score of >8.0 units) between the baseline and 1-year evaluations. RESULTS: At baseline, compared with 58 healthy age- and sex-matched controls, patients with knee OA had decreased serum levels of PIIANP (20 ng/ml versus 29 ng/ml; P < 0.001) and increased urinary excretion of CTX-II (618 ng/mmole creatinine [Cr] versus 367 ng/mmole Cr; P < 0.001). The highest discrimination between OA patients and controls was obtained by combining PIIANP and CTX-II in an uncoupling index (Z score CTX-II - Z score PIIANP), which yielded a mean Z score of 2.9 (P < 0.0001). Increased baseline values in the uncoupling index were associated with greater progression of joint damage evaluated either by changes in JSW (r = -0.46, P = 0.0016) or by VAS score (r = 0.36, P = 0.014). Patients with both low levels of PIIANP (less than or equal to the mean - 1 SD in controls) and high levels of CTX-II (greater than or equal to the mean + 1 SD in controls) had an 8-fold more rapid progression of joint damage than other patients (P = 0.012 and P < 0.0001 as assessed by radiography and arthroscopy, respectively) and had relative risks of progression of 2.9 (95% confidence interval [95% CI] 0.80-11.1) and 9.3 (95% CI 2.2-39) by radiography and arthroscopy, respectively. CONCLUSION: Patients with knee OA are characterized by an uncoupling of type II collagen synthesis and degradation which can be detected by assays for serum PIIANP and urinary CTX-II. The combination of these two new markers could be useful for identifying knee OA patients at high risk for rapid progression of joint damage.

Aged↗

Association of baseline levels of markers of bone and cartilage degradation with long-term progression of joint damage in patients with early rheumatoid arthritis: the COBRA study.

OBJECTIVE: The known risk factors for radiologic progression in rheumatoid arthritis (RA) are not optimally discriminative in patients with early disease who do not have evidence of radiologic damage. We sought to determine whether urinary C-terminal crosslinking telopeptide of type I (CTX-I) and type II (CTX-II) collagen (markers of bone and cartilage destruction, respectively) are associated with long-term radiologic progression in patients with early RA. METHODS: This was a prospective study of 110 patients with early RA who were participating in the COBRA (Combinatietherapie Bij Reumatoïde Artritis) clinical trial and followup study, a randomized controlled trial comparing the efficacy of oral pulse prednisolone, methotrexate, plus sulfasalazine with sulfasalazine alone. We investigated the relationship between baseline levels of urinary CTX-I and CTX-II and the mean annual progression of joint destruction over a median of 4 years, as measured by changes in the modified Sharp score (average of 2 independent readers). RESULTS: In multivariate logistic regression analysis, baseline urinary CTX-I and CTX-II levels in the highest tertile were the strongest predictors of radiologic progression (Sharp score increase >2 units/year; odds ratio 7.9 and 11.2, respectively), independently of treatment group, erythrocyte sedimentation rate (ESR), Disease Activity Score in 28 joints, rheumatoid factor (RF), and baseline joint damage (Sharp score). The likelihood ratios for a positive test were 3.8 and 8.0 for CTX-I and CTX-II, respectively, which compared favorably with the likelihood ratios for the ESR (3.0), baseline joint damage (1.6), and RF (1.8). When patients were grouped according to the presence (Sharp score >/=4, n = 49) and absence (Sharp score <4, n = 61) of joint damage at baseline, CTX-I and CTX-II levels were predictive only in those without baseline joint damage (odds ratio 14.9 and 25.7, respectively). CONCLUSION: High baseline levels of urinary CTX-I and CTX-II independently predict an increased risk of radiologic progression over 4 years in patients with early RA, especially those without radiologic joint damage. Urinary CTX-I and CTX-II may be useful for identifying individual RA patients at high risk of progression very early in the disease, before erosions can be detected radiographically. Such patients may be in special need of treatments that inhibit bone and cartilage degradation.

Arthritis, Rheumatoid↗

Effects of tibolone and combined 17beta-estradiol and norethisterone acetate on serum C-reactive protein in healthy post-menopausal women: a randomized trial.

BACKGROUND: Serum C-reactive protein (CRP) is an independent risk factor for the development of cardiovascular diseases in healthy post-menopausal women. Oral unopposed and progestin-combined 17beta-estradiol (E(2)) increase serum CRP in post-menopausal women. The aim of this study was to compare the effects of tibolone, a steroid with estrogenic, androgenic or progestogenic properties, with a combination of E(2) and norethisterone acetate (E(2) + NETA) on serum CRP levels in healthy post-menopausal women. METHODS: A total of 139 post-menopausal women (mean age: 55 years, range 44-48) was randomly assigned to receive tibolone 1.25 mg/day (n = 52), tibolone 2.5 mg/day (n = 39) or E(2) 2 mg/day plus NETA 1 mg/day (n = 48) for 2 years. Serum CRP was measured at baseline and at 6, 12 and 24 months. RESULTS: Both doses of tibolone and E(2) + NETA increased serum CRP by a similar extent as soon as 6 months with a sustained effect over the 24 month treatment period. For example, after 6 months of treatment, serum CRP increased by a median of +106% (P < 0.001), +89% (P < 0.05) and +139% (P < 0.001) for tibolone 1.25 mg/day, tibolone 2.5 mg/day and E(2) + NETA respectively. CONCLUSIONS: Tibolone and E(2) + NETA significantly increase serum CRP levels in healthy post-menopausal women to a comparable extent. Relationships between induced elevated CRP levels with tibolone and E(2) + NETA and cardiovascular events require further studies.

Adult↗

Short-term effects of new synthetic conjugated estrogens on biochemical markers of bone turnover.

Fifty early postmenopausal women completed a double-blind, placebo-controlled study evaluating the short-term effect of a new synthetic conjugated estrogens formulation (Cenestin) on bone turnover. Subjects were randomized to either 0.625 mg/day synthetic conjugated estrogens (n = 35) or placebo (n = 15) for 3 months. Biochemical markers were evaluated at baseline (three measurements at Days -2, -1, and 0) and Days 30, 60, and 90. Bone resorption assessed by urinary NTX (-31.4%) and serum CTX (-34.2%) was significantly (p < 0.01) decreased in the estrogen-treated group compared to the placebo group within 1 month of treatment. The mean percent decreases for urinary NTX from baseline during estrogen treatment were -58.0% (p < 0.01 vs. placebo) and -34.1% (ns) after 2 and 3 months, respectively. For serum CTX, the percent changes from baseline were -17.6% (p < 0.01) and -16.9% (p < 0.01) at 2 and 3 months, respectively. As expected, the decrease of both bone formation markers (bone ALP and PINP) was delayed compared to that of bone resorption and significant (p < 0.05-0.01) only after 2 months of treatment in the estrogen-treated group compared to the placebo group. Synthetic conjugated estrogens significantly decreased bone resorption and bone formation comparable to that previously reported for estrogen treatments proven efficacious in preventing postmenopausal bone loss.

Aged↗