Literature DB >> 26818785

Microarchitecture and Peripheral BMD are Impaired in Postmenopausal White Women With Fracture Independently of Total Hip T-Score: An International Multicenter Study.

Stephanie Boutroy1,2, Sundeep Khosla3, Elisabeth Sornay-Rendu2, Maria Belen Zanchetta4, Donald J McMahon1, Chiyuan A Zhang1, Roland D Chapurlat2, Jose Zanchetta4, Emily M Stein1, Cesar Bogado4, Sharmila Majumdar5, Andrew J Burghardt5, Elizabeth Shane1.   

Abstract

Because single-center studies have reported conflicting associations between micro<span class="Chemical">architecture and <span class="Disease">fracture prevalence, we included high-resolution peripheral quantitative computed tomography (HR-pQCT) data from five centers worldwide into a large multicenter analysis of postmenopausal women with and without fracture. Volumetric BMD (vBMD) and microarchitecture were assessed at the distal radius and tibia in 1379 white postmenopausal women (age 67 ± 8 years); 470 (34%) had at least one fracture including 349 with a major fragility fracture. Age, height, weight, and total hip T-score differed across centers and were employed as covariates in analyses. Women with fracture had higher BMI, were older, and had lower total hip T-score, but lumbar spine T-score was similar between groups. At the radius, total and trabecular vBMD and cortical thickness were significantly lower in fractured women in three out of five centers, and trabecular number in two centers. Similar results were found at the tibia. When data from five centers were combined, however, women with fracture had significantly lower total, trabecular, and cortical vBMD (2% to 7%), lower trabecular number (4% to 5%), and thinner cortices (5% to 6%) than women without fracture after adjustment for covariates. Results were similar at the radius and tibia. Similar results were observed with analysis restricted to major fragility fracture, vertebral and hip fractures, and peripheral fracture (at the radius). When focusing on osteopenic women, each SD decrease of total and trabecular vBMD was associated with a significantly increased risk of major fragility fracture (OR = 1.55 to 1.88, p < 0.01) after adjustment for covariates. Moreover, trabecular architecture modestly improved fracture discrimination beyond peripheral total vBMD. In conclusion, we observed differences by center in the magnitude of fracture/nonfracture differences at both the distal radius and tibia. However, when data were pooled across centers and the sample size increased, we observed significant and consistent deficits in vBMD and microarchitecture independent of total hip T-score in all postmenopausal white women with fracture and in the subgroup of osteopenic women, compared to women who never had a fracture.
© 2016 American Society for Bone and Mineral Research. © 2016 American Society for Bone and Mineral Research.

Entities:  

Keywords:  BONE MICROSTRUCTURE; FRACTURE RISK; HR-PQCT; MULTICENTER STUDIES; OSTEOPOROSIS

Mesh:

Year:  2016        PMID: 26818785      PMCID: PMC4891284          DOI: 10.1002/jbmr.2796

Source DB:  PubMed          Journal:  J Bone Miner Res        ISSN: 0884-0431            Impact factor:   6.741


  41 in total

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7.  High-resolution pQCT analysis at the distal radius and tibia discriminates patients with recent wrist and femoral neck fractures.

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Journal:  Bone       Date:  2008-04-16       Impact factor: 4.398

10.  Structural determinants of vertebral fracture risk.

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Journal:  J Bone Miner Res       Date:  2007-12       Impact factor: 6.741

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2.  Volumetric Bone Mineral Density and Failure Load of Distal Limbs Predict Incident Clinical Fracture Independent HR-pQCT BMD and Failure Load Predicts Incident Clinical Fracture of FRAX and Clinical Risk Factors Among Older Men.

Authors:  Lisa Langsetmo; Katherine W Peters; Andrew J Burghardt; Kristine E Ensrud; Howard A Fink; Peggy M Cawthon; Jane A Cauley; John T Schousboe; Elizabeth Barrett-Connor; Eric S Orwoll
Journal:  J Bone Miner Res       Date:  2018-05-22       Impact factor: 6.741

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Review 4.  A Comparison of Peripheral Imaging Technologies for Bone and Muscle Quantification: a Mixed Methods Clinical Review.

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6.  Guidelines for the assessment of bone density and microarchitecture in vivo using high-resolution peripheral quantitative computed tomography.

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7.  Interaction between LRP5 and periostin gene polymorphisms on serum periostin levels and cortical bone microstructure.

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8.  Association of High-resolution Peripheral Quantitative Computed Tomography (HR-pQCT) bone microarchitectural parameters with previous clinical fracture in older men: The Osteoporotic Fractures in Men (MrOS) study.

Authors:  Howard A Fink; Lisa Langsetmo; Tien N Vo; Eric S Orwoll; John T Schousboe; Kristine E Ensrud
Journal:  Bone       Date:  2018-05-08       Impact factor: 4.398

9.  Accelerated Bone Loss in Older Men: Effects on Bone Microarchitecture and Strength.

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10.  Characterization of trabecular bone microstructure in premenopausal women with distal radius fractures.

Authors:  T D Rozental; F Johannesdottir; K C Kempland; M L Bouxsein
Journal:  Osteoporos Int       Date:  2017-11-03       Impact factor: 4.507

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