Cross‐linking of the high affinity receptor for IgG, Fc gamma RI, can result in both endocytosis of immune complexes and phagocytosis of opsonized particles in myeloid cells, although the cytoplasmic domain of the receptor lacks the tyrosine activation motif which has been implicated in signal transduction triggered by cross‐linking of other Fc receptors. To identify the structural determinants of Fc gamma RI‐mediated ligand internalization, we have expressed Fc gamma RI or truncated versions of Fc gamma RI in COS cells, either alone or in the presence of the Fc epsilon RI gamma subunit (which contains a classical tyrosine activation motif and associates with Fc gamma RI in myeloid cells), and assessed their ability to mediate endocytosis and phagocytosis. We have found that Fc gamma RI alone (in the absence of the gamma subunit) is capable of mediating endocytosis in COS cells and that the process occurs via a novel, tyrosine kinase‐independent signalling pathway. Activation of this pathway following cross‐linking appears to require only the receptor extracellular domain. In contrast, Fc gamma RI phagocytic function in COS cells is dependent on an interaction between the receptor transmembrane domain and the gamma subunit and is mediated by recruitment of tyrosine kinase activity. Our data therefore indicate that distinct domains of the receptor regulate ligand internalization following receptor cross‐linking by either immune complexes (endocytosis) or opsonized particles (phagocytosis) and that these functions are mediated by different intracellular signalling pathways.
Background: Most cast materials mature and harden via an exothermic reaction. Although rare, thermal injuries secondary to casting can occur. The purpose of this study was to evaluate factors that contribute to the elevated temperature beneath a cast and, more specifically, evaluate the differences of modern casting materials including fiberglass and prefabricated splints.
This study determined the physical and technical demands of elite wheelchair tennis (WT) match-play, how the demands differed between divisions (Men, Women, Quad) and the effect that set result and score margin had on these demands. Seventeen WT players were monitored during a singles competition. Physical measures of performance were analysed using an indoor tracking system and inertial measurement units. Technical measures of performance were examined using video analysis. Physical measures of performance differed by division (Men > Women > Quad) for most parameters. Rallies were longer during Men's (P = 0.027) and Women's (P = 0.004) matches compared to Quad's and fewer shots were hit off 2 bounces in Men's matches compared to Women's and Quad's (P ≤ 0.026). High-speed activity (HSA) increased during losing sets (P = 0.043). Most physical measures of performance increased by moderate to large effects during sets with a small score margin (≤ 3 games differential). Mean speed and HSA were similar during losing sets, regardless of margin, but decreased (large effects) when winning by a large margin. This study demonstrated the physical and technical demands that elite WT players need to be prepared for and how situational factors can influence these demands.
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