LONDON – While large-scale biobanks that link genomics to longitudinal health records of diagnosis, treatment and outcomes promise to revolutionize the understanding of the genetics of complex disease, the detailed statistical analysis of those high-dimensional data is still very much in its infancy.
A Chinese study has established a previously unknown direct mechanistic link between elevated mechanical tension caused by impaired alveolar regeneration and progressive idiopathic pulmonary fibrosis (IPF), highlighting a pathogenic mechanism that may underlie fibrosis.
Researchers at Duke University have developed a bandage that concentrates adenosine at the site of a fracture and speeds bone repair. In animal testing, the bandage accelerated bone healing by 20% to 25%, lead researcher Shyni Varghese told BioWorld MedTech.
LONDON – While large-scale biobanks that link genomics to longitudinal health records of diagnosis, treatment and outcomes promise to revolutionize understanding of the genetics of complex disease, the detailed statistical analysis of those high-dimensional data is still very much in its infancy.
A Chinese study has established a previously unknown direct mechanistic link between elevated mechanical tension caused by impaired alveolar regeneration and progressive idiopathic pulmonary fibrosis (IPF), highlighting a pathogenic mechanism that may underlie fibrosis.
A Chinese study has established a previously unknown direct mechanistic link between elevated mechanical tension caused by impaired alveolar regeneration and progressive idiopathic pulmonary fibrosis (IPF), highlighting a pathogenic mechanism that may underlie fibrosis.