Searchable abstracts of presentations at key conferences on calcified tissues

ba0001pp483 | Other diseases of bone and mineral metabolism | ECTS2013

Did Paget's bone disease changed over the last decade?

Fernandes Susana , Borges Joana , Goncalves Ines , Miranda Luis Cunha , Leitao Rui , Cardoso Alexandra , Micaelo Manuela , Simoes Eugenia , Faustino Augusto , Barcelos Filipe , Silva Candida , Sousa Miguel , Parente Manuela , Silva Margarida , Madeira Helena , Las Vera , Cortes Sara , Gomes Jose Melo , Patto Jose Vaz

Introduction: Paget’s bone disease (PBD) is the second most prevalent metabolic bone disease. Most patients present with pain or fracture but many remain asymptomatic. Evidence suggests a significant reduction both in its prevalence and clinical severity. Recent papers described differences in clinical course and therapeutic options in the last 10–15 years.Objective: To characterize PBD differences between patients having been diagnosed before ...

ba0003w2.2 | Genetics of bone disease | ECTS2014

Epigenetics

Riancho Jose

Epigenetic mechanisms regulate gene expression and are heritable through cell divisions even though they do not involve modifications in the gene sequence. They include methylation and other chemical modifications of cytosine nucleotides, histone posttranslational modifications, microRNAs and other non-coding RNAs. Most cytosines in the human genome are methylated, particularly in the inactive, tightly packed, heterochromatin of autosomes, and the inactivated X-chromosome in f...

ba0006is05 | (1) (1) | ICCBH2017

Skeletal mineralization – enzymes and animal models

Millan Jose Luis

Increased understanding of the biochemical pathways leading to MV-mediated initiation of skeletal, dental and vascular calcification has been attained through the extensive use of single and double knockout mouse models as well as via overexpression of genes by transgenesis. Our current integrated model of these pathways is compatible with the following sequence of events: MVs initiate mineral deposition by accumulation of Pi generated intravesicularly by the action...

ba0006is05biog | (1) (1) | ICCBH2017

Skeletal mineralization – enzymes and animal models

Millan Jose Luis

Biographical DetailsJosé Luis MillánProfessor José Luis Millán received his early training in clinical chemistry and biochemistry at the University of Buenos Aires, Argentina, and his PhD in Physiological Chemistry at the University of Umeå, Sweden, in 1983. Professor Millán is currently based at the Children’s Hea...

ba0001pp172 | Cell biology: osteoblasts and bone formation | ECTS2013

Differential gene expression of matrix metalloproteinases (MMPs), MMP inhibitors (TIMPs and RECK), and MMP-activator (EMMPRIN/CD147) during osteogenic differentiation from human dental pulp stem cells

Paiva Katiucia , Silva Luiz , Sogayar Mari

Constant remodeling of extracellular matrix (ECM) is a hallmark during physiological conditions, such as stem cell differentiation, embryogenesis and tissue repair. Matrix metalloproteinases (MMP) play a key role in these processes. MMPs, MMP-activator (EMMPRIN/CD147) and MMP-inhibitors (TIMPs and RECK) are responsible for bone matrix remodeling and, probably, determinate the level of its turnover. Mesenchymal stem cells derived from dental pulp are multipotent and have the ca...

ba0007p139 | (1) | ICCBH2019

Growth hormone therapy in a child with severe short stature due to Miller-McKusick-Malvaux (3M) syndrome-2

Seneviratne Sumudu , Silva Deepthi de , Cottrell Emily , Kuruppu Piumi , Silva KSH de , Storr Helen

Background: 3M syndrome is a primordial growth disorder caused by mutations in CUL7, OBSL1 or CCDC8. Affected individuals have severe short stature for which growth hormone (GH) therapy may have a role1. We present a 10-year-old girl from Sri Lanka with 3M syndrome-2 due to a mutation in OBSL1 gene, with good short-term response to growth hormone therapy.Presenting Problem: The only child of second-degree consanguineous parents, both themselve...

ba0005oc4.5 | Catabolism and metabolism | ECTS2016

Effects of glucagon-like peptide-1 receptor agonists on bone blow flow and architecture in diabetic mice

Pereira Marie , Gohin Stephanie , Cleasby Mark , Chenu Chantal

Type 2 diabetes mellitus prevalence increases with age and the disease predisposes to increased risk of fractures and skeletal complications. One possible contributor to skeletal weakening in diabetes is a decline in blood supply. We hypothesised that bone blood flow is impaired in diabetic mice and that chronic administration of glucagon-like peptide-1 receptor agonists (GLP-1RA) can increase blood flow to bone, thereby stimulating bone formation and improving bone architectu...

ba0005lb8 | (1) | ECTS2016

Bone texture modifications during bone regeneration and osteocyte cell-signaling changes in response to treatment with Teriparatide

Smargiassi Alberto , Checchi Marta , Cavani Francesco , Ferretti Marzia , Palumbo Carla

Teriparatide is the active fragment (1–34) of the endogenous human parathyroid hormone (PTH). Studies showed that chronic administration of PTH results in decreased bone mass while intermittent exposure to PTH activates osteoblast bone deposition. Most of the structural studies published so far about the effect of Teriparatide focused their attention on the amount of newly-deposed bone without investigating the quality of the newly-formed bone tissue; moreover, most of th...

ba0005p12 | Biochemical testing | ECTS2016

Improvement on growth of osteoporotic bone tissue around screw and fixation strength of screw induced by stress force from the expanding pedicle screw: dynamic microstructural, histological and biomechanical studies in osteoporotic sheep lumbar vertebrae

Liu Da , Zhang Bo , Xie Qing-yun , Wang Cai-ru , Liao Dong-fa , Lei Wei

Objective: It was proved that expansive pedicle screw (EPS) could significantly enhance immediate screw stability through mechanical expanding and compressing. However, there were little researches on growth of bone tissue around screw and dynamic screw stability in vivo in osteoporotic vertebrae. This study was designed to evaluate growth and microstructure of bone tissue around screw and fixation strength of screw in osteoporotic sheep lumbar vertebrae.<p class=...