Purpose: Dysphagia is a swallowing condition which has significant health and quality of life implications. Speech-language pathologists provide assessment and support shared decision making to optimise swallowing safety. Many people elect to eat and drink with acknowledged risk.
View Article and Find Full Text PDFDesmosomes are intercellular junctions that regulate mechanical integrity in epithelia and cardiac muscle. Dynamic desmosome remodeling is essential for wound healing and development, yet the mechanisms governing junction assembly remain elusive. While we and others have shown that cadherin ectodomains are highly organized, how this ordered architecture emerges during assembly is unknown.
View Article and Find Full Text PDFBackground: Nursing students and nurse preceptors indicate that a comprehensive orientation is vital to successful work-integrated learning placements in Prison Health Services. The aim of this study was to implement and evaluate a Prison Health Service orientation package that included innovative asynchronous online video simulations with branched decision-making and feedback opportunities to stimulate learning and improve students' feelings of preparedness for a placement in this setting.
Methods: A cross-sectional pre and post design was used to evaluate the resource.
Heterogeneity within the glycocalyx influences cell adhesion mechanics and signaling. However, the role of specific glycosylation subtypes in influencing cell mechanics via alterations of receptor function remains unexplored. It has been shown that the addition of sialic acid to terminal glycans impacts growth, development, and cancer progression.
View Article and Find Full Text PDFDesmosomes are macromolecular cell-cell junctions critical for maintaining adhesion and resisting mechanical stress in epithelial tissue. Desmosome assembly and the relationship between maturity and molecular architecture are not well understood. To address this, we employed a calcium switch assay to synchronize assembly followed by quantification of desmosome nanoscale organization using direct Stochastic Optical Reconstruction Microscopy (dSTORM).
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