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Semon, A.

Publications and source records attributed to Semon, A..

2 recordsLinked to original sources

Pharmacological reduction of neutrophil infiltration reduces Clostridioides difficile infection severity

Clostridioides difficile is the leading cause of nosocomial infections and an urgent public health threat. This bacterial pathogen is challenging to treat due to antibiotic resistance and high recurrence rates, highlighting the need for additional therapeutic strategies. The host inflammatory response is a major driver of C. difficile-associated disease and associated with worse clinical outcomes. Currently, few strategies targeting the inflammatory response have been leveraged to treat CDI. Here, we show that administration of the prostaglandin E1 (PGE1) analog misoprostol markedly reduces CDI severity by modulating host immune responses. During CDI, misoprostol decreases circulating neutrophils and limits infiltration into the colon, reducing epithelial damage, intestinal pathology, and infection severity. Additionally, misoprostol reduces serum granulocyte colony-stimulating factor (G-CSF), an important cytokine in neutrophil mobilization, controlling neutrophil levels during CDI. Together, these findings highlight neutrophil infiltration as a key driver of C. difficile-associated disease and identify innate immune modulation as a potential host-directed therapeutic strategy.

immunology↗

Shared Lineage, Distinct Outcomes: Yap and Taz Loss Differentially Impact Schwann and Olfactory Ensheathing Cell Development Without Disrupting GnRH-1 Migration

Olfactory Ensheathing Cells (OECs) are glial cells originating from the neural crest, critical for bundling olfactory axons to the brain. Their development is crucial for the migration of Gonadotropin-Releasing Hormone-1 (GnRH-1) neurons, which are essential for puberty and fertility. OECs have garnered interest as potential therapeutic targets for central nervous system lesions, although their development is not fully understood. Our single-cell RNA sequencing of mouse embryonic nasal tissues suggests that OECs and Schwann cells share a common origin from Schwann cell precursors yet exhibit significant genetic differences. The transcription factors Yap and Taz have previously been shown to play a crucial role in Schwann cell development. We used Sox10-Cre mice to conditionally ablate Yap and Taz in migrating the neural crest and its derivatives. Our analyses showed reduced Sox10+ glial cells along nerves in the nasal region, altered gene expression of SCs, melanocytes, and OECs, and a significant reduction in olfactory sensory neurons and vascularization in the vomeronasal organ. However, despite these changes, GnRH-1 neuronal migration remained unaffected. Our findings highlight the importance of the Hippo pathway in OEC development and how changes in cranial neural crest derivatives indirectly impact the development of olfactory epithelia.

developmental biology↗