Searchable abstracts of presentations at key conferences on calcified tissues

ba0004p133 | (1) | ICCBH2015

Fibrodysplasia ossificans progressiva: disabling but now treatable

Keen Richard , Jacobs Benjamin , Mughal M Zulf

Background: Fibrodysplasia ossificans progressiva (FOP) is a rare condition characterised by congenital malformation of the great toes and progressive heterotopic endochondral ossification. The disease progresses with episodic flare-ups, resulting in disabling cumulative immobility. The discovery of the ACVR1 gene as the cause of FOP has allowed identification of therapeutic targets. Palovarotene, a retinoic acid receptor gamma agonist, is in phase 2 clinical trials.<...

ba0005p137 | Cell biology: osteoblasts and bone formation | ECTS2016

Delta-like 1/fetal antigen 1 (DLK1/FA1) inhibits BMP2-induced osteoblast differentiation by modulating Nfκb signaling pathway: a novel mechanism for regulation of bone formation

Qiu Weimin , Abdallah Basem M. , Kassem Moustapha

Delta-like 1/fetal antigen-1 (DLK1/FA1) is a negative regulator of bone mass in vivo as it inhibits osteoblast (OB) and stimulates osteoclast differentiation. However, the molecular mechanisms underlying these effects are not known. Thus, we studied the effect of DLK1/FA1 on different signaling pathways known to regulate OB differentiation. We identified DLK1/FA1 as an inhibitor of BMP2-induced OB differentiation. Stable overexpression of DLK1/FA1 in C2C12 cells or th...

ba0001pp36 | Bone biomechanics and quality | ECTS2013

Regional heterogeneity of trabecular bone microdamage density in association with trabecular microarchitecture and bone resorption in whole human lumbar vertebrae

Carpentier Vincent T , Tsangari Helen , Fazzalari Nick L , Kuliwaba Julia S

Study aim: Vertebral strength is determined by bone size, shape, bone mineral density, microarchitecture, and bone material properties. Despite its importance to vertebral mechanics, no studies have reported on the variation of bone microdamage present in the human vertebra. Thus, the aim of this study was to assess regional changes in trabecular bone microdamage in association with bone microarchitecture and resorption in whole human lumbar vertebrae.Me...

ba0001pp37 | Bone biomechanics and quality | ECTS2013

Microarchitectural decay and microdamage accumulation in vertebral trabecular bone: a comparative analysis of the iliac crest, proximal femur, and vertebral body in the aged postmenopausal skeleton

Carpentier Vincent T , Muratovic Dzenita , Parkinson Ian H , Fazzalari Nick L , Kuliwaba Julia S

Study aim: The general assumption that changes in bone microstructure and material properties at the iliac crest are representative of skeletal sites that are susceptible to osteoporotic fracture has not yet been addressed. Therefore, our study aim was to perform a comparative analysis of bone microarchitecture, accumulated microdamage and osteocyte morphology between the iliac crest, proximal femur and vertebral body.Methods: Trabecular bone cores were ...

ba0001pp166 | Cell biology: osteoblasts and bone formation | ECTS2013

Activated protein C increases osteoblast proliferation and BMP2 induced bone formation

Shen Kaitlin , Schindeler Aaron J , Cheng Tegan L , Xue Meilang , Little David G , Jackson Chris J

Introduction: Activated protein C (APC) plays an important role in the cutaneous healing of chronic wounds arising from orthopaedic surgery and has cytoprotective and anti-inflammatory properties which may also assist bone repair. The aim of this study was to examine whether APC could directly influence osteoblasts and increase bone formation in a rodent model.Methods: Proliferation of MG-63 osteoblast-like cells was quantified by MTT assay and direct co...

ba0002p10 | (1) | ICCBH2013

Osteoporosis in young patients with neurological impairments

Yaghi Yasser , Horr Fatiha E L , Mousa Youssef , Yaghi Kinda , Hneineh Zeinab

Aim: Osteoporosis and resulting spontaneous fractures in young patients with neurological impairments living outside institutions have not received much attention. The aim of this study was to determine the degree of demineralization in children and teens with such disabilities living in South Lebanon, an under privileged region.Subjects and methods: We reviewed 40 patients attending outpatient clinics in a referral rehabilitation center in South Lebanon...

ba0003oc2.1 | Osteoporosis epidemiology | ECTS2014

Low serum thyrotropin level and duration of suppression as a predictor of major osteoporotic fractures – the openthyro register cohort

Abrahamsen Bo , Jorgensen Henrik L , Laulund Anne S , Nybo Mads , Brix Thomas H , Hegedus Laszlo

Objective: To assess the relationship between thyrotoxicosis and osteoporotic fractures in men and women.Design: Register-based cohort study in patients with a TSH measurement in the region of Funen 1996–2010. All determinations were done in the same lab serving all hospitals and GP practices. Persons with raised TSH or a history of thyroid/pituitary disease were not included.Results: The study population consisted of 222 138 ...

ba0003cc4 | (1) | ECTS2014

Two novel compound heterozygous mutations in LRP5 cause osteoporosis pseudoglioma syndrome

Alonso N , Soares D C , Kabir D , Summers G D , Ralston S H , Gregson C L

Osteoporosis pseudoglioma syndrome (OPPGS) is a rare autosomal recessive disorder characterised by congenital or juvenile-onset blindness, severe juvenile-onset osteoporosis, and skeletal fragility. OPPGS is caused by loss-of-function mutations in the LRP5 gene, a member of the LDL receptor family. It activates the canonical Wnt/β-catenin pathway, regulating osteoblastic bone formation. We investigated a 40-year-old Caucasian male presenting with congenital blind...

ba0003pp50 | Bone development/growth and fracture repair | ECTS2014

Forearm fracture in premenopausal women, a disorder of trabecular corticalization

Bala Yohann , Rozental Tamara , Sepehrizadeh Tara , Bouxsein Mary L , Zebaze Roger , Seeman Ego

Postmenopausal women with forearm fracture have higher cortical porosity and lower trabecular density perhaps due to excessive age-related bone loss1. Remodelling becomes unbalanced and rapid only after ~45 years of age. We therefore proposed that bone fragility in premenopausal women with a forearm fracture originates during growth. At metaphyses, trabeculae emerging from the periphery of the growth plate form cortex by ‘corticalization’)2. We ...