L. Zhao, M. Liu, S. Wang, M. A. Musser, A. Shepherd, J. Zhang, M. Whalen, D. Binion, M. Rao, M. Dong, J. Manion
Clostridioides difficile is a major cause of healthcare associated infections. C. difficile infection (CDI) is a toxin-mediated disease driven by the secretion of two large protein toxins, Toxin A (TcdA) and Toxin B (TcdB). TcdA and TcdB cause neurogenic inflammation that can contribute to intestinal inflammation in rat and mouse models. Substance P (SP), a potent vasoactive neuropeptide, is a major contributor to C. difficile toxin induced inflammation in animal models. SP acts on multiple receptors including the high affinity receptor NK1-R, and lower affinity receptors (Mrgprb2 and NK2-R). Through in vivo mouse infection models, we confirmed the effects of SP in hypervirulent C. difficile are largely mediated by the neurokinin-1 receptor (NK1-R), the high affinity receptor for SP. Through genetic mice that lack mast cells (cKitW-sh) we determined that mast cells which respond to SP in certain kinds of neurogenic inflammation appear dispensable for inflammation caused by C. difficile infection. We explored the role of NK1-R antagonists in a retrospective study of a large clinical cohort. We determined that, after propensity matching, NK1-R antagonists were associated with a significant survival benefit and that patients treated with NK1-R antagonists showed evidence of reduced vascular inflammation (increased serum albumin). Together these data suggest blocking SP activity through antagonism of NK1-R with small molecule inhibitors may be a useful strategy for adjunctive treatment during C. difficile infection.