Searchable abstracts of presentations at key conferences on calcified tissues

ba0001pp245 | Cell biology: osteocytes | ECTS2013

IGF1 regulates MC-3T3 and human primary osteoblast to osteocyte differentiation in 3D culture

Scully Nicole E E , Mason Deborah J , Evans Bronwen A J

Osteocytes differentiate from osteoblasts, are embedded in mineralised matrix and are critical regulators of bone remodelling. In vitro osteocyte models are limited to cell lines in monolayer, which do not represent their 3D environment in vivo. We have shown that osteoblasts in 3D gels differentiate along the osteocytic pathway. Since IGF1 regulates osteoblasts, and is involved in osteocyte response to mechanical loading, we hypothesised that IGF1 modulates ...

ba0002p21 | (1) | ICCBH2013

Bone disease in children with geroderma osteodysplasticum: a 25-year experience from a single tertiary centre

Gopal-Kothandapani J S , Padidela R , Clayton-Smith J , Chandler K E , Adams J E , Freemont A J , Mughal M Z

Geroderma osteodysplasticum (GO) is a rare autosomal recessive connective tissue disorder characterised by progeria like facies, wrinkled lax skin, joint hypermobility, congenital dislocation of hips and propensity to fragility fractures. In the past 25 years, five patients (three females and two males) diagnosed with GO were referred to our Paediatric metabolic bone service for assessment and management of secondary bone problems. All five children were born to consanguineous...

ba0002p163 | (1) | ICCBH2013

Phenotype–genotype correlation and role of ancillary investigations in atypical and rare forms of osteogenesis imperfecta

Balasubramanian Meena , Parker Michael , Bishop Nicholas J

Background: Osteogenesis imperfecta (OI) is a heterogeneous group of inherited disorders of bone formation, resulting in low bone mass and an increased propensity to fracture. It is a variable condition with a range of clinical severity. About 90% of patients with a clinical diagnosis of OI have a mutation in the COL1A1 or COL1A2 genes, which shows an autosomal dominant pattern (AD) of inheritance. Other genes are associated with the autosomal recessive (AR) ...

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...

ba0001pp246 | Cell biology: osteocytes | ECTS2013

Development of a novel 3D mineralising culture system to investigate the differentiation of osteoblasts to osteocytes

Scully Nicole E E , Evans Sam L , Mason Deborah J , Evans Bronwen A J

Osteocytes make up >90% of bone cells, are embedded in mineralised matrix where they form a communication network. Osteocytes differentiate from osteoblasts, and are mechano-sensitive. They are very difficult to isolate with a dependence on cell lines for in vitro studies of osteocyte biology. Therefore new methods to study these cells are essential. Recent publications indicate that osteoblasts maintained in in vitro 3D collagen gels may differentiate to...

ba0002p108 | (1) | ICCBH2013

Antenatal glucocorticoid injections do not aggravate stress-induced bone loss in young adult mice

Henneicke Holger , Gasparini Sylvia J , Brennan-Speranza Tara C , Zhou Hong , Seibel Markus J

Antenatal glucocorticoid (GC) injections are not only used to enhance fetal lung maturation in preterm children but also for the treatment of maternal conditions such as autoimmune diseases or infections. Animal models and clinical studies suggest that the regulation of the hypothalamic–pituitary–adrenal axis is altered in the offspring of GC-treated mothers with increased sensitivity to stress.Objective: The aim of this study is i) to define t...

ba0004p128 | (1) | ICCBH2015

Patients treated with anti-epileptic drugs have a higher rate of fracture and impaired bone and muscle development compared with controls: results from a pilot study

Simm Peter J , Seah Sebastian , Mackay Mark , Freeman Jeremy , Petty Sandra J , Wark John D

Epilepsy is a relatively common condition of childhood, with anti-epileptic drugs (AEDs) the mainstay of medical therapy. AED use in adults has been shown to be associated with impaired bone density and increased risk of bone fracture. Paediatric data are more limited particularly in relation to fracture risk and skeletal geometry.This study aimed to examine the within-pair differences in fracture prevalence and bone, muscle and balance parameters in sex...

ba0005ni7 | Abstract Presentations | ECTS2016

Exposure to chronic stress induces bone loss via glucocorticoid signalling in osteoblasts

Henneicke Holger , Li Jing-Bao , Gasparini Sylvia J , Seibel Markus J , Zhou Hong

Chronic stress and depression are associated with alterations in the hypothalamic–pituitary–adrenal signalling cascade and considered a risk factor for bone loss and fractures. However, the mechanisms underlying the association between stress and poor bone health are unclear. Utilising a transgenic (tg) mouse model in which glucocorticoid signalling is selectively disrupted in mature osteoblasts and osteocytes (HSD2OB-tg mice), the current study examines t...

ba0005p491 | Steroid hormones and receptors | ECTS2016

Exposure to chronic stress induces bone loss via glucocorticoid signalling in osteoblasts

Henneicke Holger , Li Jing-Bao , Gasparini Sylvia J , Seibel Markus J , Zhou Hong

Chronic stress and depression are associated with alterations in the hypothalamic-pituitary-adrenal signalling cascade and considered a risk factor for bone loss and fractures. However, the mechanisms underlying the association between stress and poor bone health are unclear. Utilising a transgenic (tg) mouse model in which glucocorticoid signalling is selectively disrupted in mature osteoblasts and osteocytes (HSD2OB-tg mice), the current study examines the impact ...