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Reese, A.

Publications and source records attributed to Reese, A..

2 recordsLinked to original sources

Inhibition of ErbB kinase signalling promotes resolution of neutrophilic inflammation

Neutrophilic inflammation with prolonged neutrophil survival is common to many inflammatory conditions, including chronic obstructive pulmonary disease (COPD). There are few specific therapies that reverse neutrophilic inflammation, but uncovering mechanisms regulating neutrophil survival is likely to identify novel therapeutic targets. Screening of 367 kinase inhibitors in human neutrophils and a zebrafish tail fin injury model identified ErbBs as common targets of compounds that accelerated inflammation resolution. The ErbB inhibitors gefitinib, CP-724714, erbstatin and tyrphostin AG825 significantly accelerated apoptosis of human neutrophils, including neutrophils from people with COPD. Neutrophil apoptosis was also increased in Tyrphostin AG825 treated-zebrafish in vivo. Tyrphostin AG825 decreased peritoneal inflammation in zymosan-treated mice, and increased lung neutrophil apoptosis and macrophage efferocytosis in a murine acute lung injury model. Tyrphostin AG825 and knockdown of egfra and erbb2 by CRISPR/Cas9 reduced inflammation in zebrafish. Our work shows that inhibitors of ErbB kinases have therapeutic potential in neutrophilic inflammatory disease.

immunology

Parallel signatures of mammalian domestication and human industrialization in the gut microbiota

Domestication may have had convergent effects on the microbiota of domesticates and humans through analogous ecological shifts. Comparing the gut microbiota of domestic and related wild mammals plus humans and chimpanzees, we found consistent shifts in composition in domestic animals and in humans from industrialized but not traditional societies. Reciprocal diet switches in mice and canids demonstrated that diet played a dominant role in shaping the domestic gut microbiota, with stronger responses in the member of the wild-domestic pair with higher dietary and microbial diversity. Laboratory mice recovered wild-like microbial diversity and responsiveness with experimental colonization. We conclude that domestication and industrialization have similarly impacted the gut microbiota, emphasizing the utility of domestic animal models and diets for understanding host-microbial interactions in rapidly changing environments.

microbiology