Searchable abstracts of presentations at key conferences on calcified tissues

ba0007p93 | (1) | ICCBH2019

Assessing the ability of vibration analysis to differentiate wrist and ankle fractures from sprains in children

Fennimore David , Ali Ridita , Alboul Lyuba , Offiah Amaka

Rationale and Hypothesis: Standard practice for differentiating fractures from sprains requires conventional radiographs. Up to 21% of wrist and ankle radiographs in children are negative at a local cost of over £100,000 per annum, approximately £12 million per annum across England and Wales. Our recent pilot study in adults confirmed that vibration analysis in injured patients causes no discomfort.Objectives: To assess the ability of vibration...

ba0002oc6 | Epidemiology | ICCBH2013

Role of bone-associated loci identified in GWAS meta-analyses in the context of longitudinal pediatric BMD in European Americans

Zemel Babette , Kalkwarf Heidi , Li Mingyao , Deliard Sandra , Kim Celia , Qu Liming , Chiavacci Rosetta , Paulhamus Donna , Lappe Joan , Gilsanz Vicente , Hakonarson Hakon , Oberfield Sharon , Shepherd John , Voight Ben , Kelly Andrea , Grant Struan

Objective: With recent genome wide association studies (GWAS), ~70 loci have been robustly and reproducibly associated with adult bone density and/or osteoporosis. However, to date no systematic effort has investigated which of these loci operate early in life. We investigated whether these single nucleotide polymorphisms (SNPs) are associated with childhood areal bone mineral density (aBMD). In addition we determined if any of the associations were age dependent.<p class=...

ba0004is16biog | (1) (1) | ICCBH2015

Growth plate and diseases of calcinosis

White Ken

Biographical DetailsKen White, PhD is the David D Weaver Professor of Genetics in the Department of Medical and Molecular Genetics at the Indiana University School of Medicine in Indianapolis, IN, USA. He serves as Director of the Division of Molecular Genetics and Gene Therapy. Dr K White’s research interests focus on the molecular genetics of metabolic bone diseases in regards to p...

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...

ba0001pp231 | Cell biology: osteoclasts and bone resorption | ECTS2013

Osteoclasts activity is affected by adenovirus infection

Santo Ana Isabel Espirito , Danks Lynett , Mahoney David , Vattakuzhi Youridies , Sabokbar Afsaneh , Horwood Nicole

Osteoclast resorption depends on their ability to reorganise their actin cytoskeleton and form the sealing zone. In order to resorb bone, osteoclasts become polarised by condensing their podosomes into a highly dynamic podosomal belt. The podosome turnover is regulated by several factors such as non-receptor tyrosine kinases, small GTPases and actin-binding proteins. The innate immune system responds to viral pathogens. Cytoplasmic double-stranded DNA activates the immune syst...

ba0001pp268 | Genetics | ECTS2013

No mutations in the serotonin related TPH1 and HTR1B genes in patients with monogenic sclerosing bone disorders

Boudin Eveline , Jennes Karen , de Freitas Fenna , Tegay David , Mortier Geert , Van Hul Wim

Since the identification of LRP5 as the causative gene for the osteoporosis pseudoglioma syndrome (OPPG) as well as the high bone mass (HBM) phenotype, LRP5 and the Wnt/β-catenin signalling have been extensively studied for their role in the differentiation and proliferation of osteoblasts, in the apoptosis of osteoblasts and osteocytes and in the response of bone to mechanical loading. However, more recently the direct effect of LRP5 on osteoblasts and bone formation has...

ba0001pp290 | Muscle, physical activity and bone | ECTS2013

Response of mechanically strained tenocytes to different cell culture substrates

Musson David , JungJoo Kim , Callon Karen , Naot Dorit , Shim Vickie , Anderson Iain , Cornish Jillian , Chhana Ashika

The musculoskeletal system experiences severe mechanical strain, with repetitive or extreme strains causing significant trauma; the result being an increase in mechanobiological studies evaluating mechanical strain on musculoskeletal cells. Currently, most stretching studies utilise fibronectin-coated cultures, as these enhance cell attachment. However, recent studies suggest that fibronectin increases cell turnover and DNA damage and affects cell differentiation. Furthermore,...

ba0001pp497 | Other diseases of bone and mineral metabolism | ECTS2013

A frameshift mutation in receptor activator of NF-κB reveals a potential ligand-independent mechanism for NF-κB activation

Dignan Cahal , Mellis David , Duthie Angela , Pangrazio Alessandra , Sobacchi Cristina , Schulz Ansgar , Helfrich Miep , Crockett Julie

Osteoclast-poor autosomal recessive osteopetrosis is characterised by susceptibility to fracture despite high bone mineral density as a consequence of an absence of osteoclasts. One of the 12 receptor activator of NF-κB (RANK) mutations associated with this condition is a frameshift mutation encoding a protein that is truncated within the extracellular, N-terminal domain (R110Pfs). We investigated the effect of this mutation on osteoclast formation, receptor localisation ...

ba0001pp500 | Other diseases of bone and mineral metabolism | ECTS2013

IFITM5 c.−14C>T mutation causes variable type V osteogenesis imperfecta phenotype and decreased COL1A1 expression but increased mineralization by cultured proband osteoblasts

Reich Adi , Bae Alison S , Barnes Aileen M , Cabral Wayne A , Chitayat David , Marini Joan C

Introduction: Osteogenesis imperfecta (OI) is a genetically heterogeneous disorder characterized by bone fragility. OI type V, with autosomal dominant inheritance, is characterized by ossification of the forearm interosseus membrane, radiodense metaphyseal bands, propensity for hyperplastic callus formation, and mesh-like lamellation on bone histology. Type V OI probands are reported to have white sclerae and normal teeth. Recent reports identified the cause of type V OI as a ...

ba0002p132 | (1) | ICCBH2013

Studies on bone and osteoclasts in patients with Shwachman Diamond syndrome

Helfrich Miep , Mellis David , Coxon Fraser , Greenhorn John , Kuijpers Taco , Crockett Julie

Shwachman Diamond syndrome (SDS; MIM 260400) is a monogenic, autosomal recessive, pancreatic condition often accompanied by low bone mass and fracture. In SDS, as in cystic fibrosis, a low bone mass may be secondary to poor nutrition or chronic low-grade infection, but it has also been suggested there may be a primary bone phenotype. Paradoxically, recent studies in cell lines and in a mouse knockout for the SBDS gene, have suggested changes in important osteoclast gr...