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Updated: Jul 14, 2026

Cefoperazone-treated Mouse Model of Clinically-relevant Clostridium difficile Strain R20291
Published on: December 10, 2016
Protease-activated receptor 2, dipeptidyl peptidase I, and proteases mediate Clostridium difficile toxin A enteritis
Graeme S Cottrell1, Silvia Amadesi, Stella Pikios
1Center for the Neurobiology of Digestive Disease, Department of Surgery, University of California, San Francisco, San Francisco, California 94143-0660, USA.
Background & Aims:
We studied the role of protease-activated receptor 2 (PAR(2)) and its activating enzymes, trypsins and tryptase, in Clostridium difficile toxin A (TxA)-induced enteritis.
Methods:
We injected TxA into ileal loops in PAR(2) or dipeptidyl peptidase I (DPPI) knockout mice or in wild-type mice pretreated with tryptase inhibitors (FUT-175 or MPI-0442352) or soybean trypsin inhibitor. We examined the effect of TxA on expression and activity of PAR(2) and trypsin IV messenger RNA in the ileum and cultured colonocytes. We injected activating peptide (AP), trypsins, tryptase, and p23 in wild-type mice, some pretreated with the neurokinin 1 receptor antagonist SR140333.
Results:
TxA increased fluid secretion, myeloperoxidase activity in fluid and tissue, and histologic damage. PAR(2) deletion decreased TxA-induced ileitis, reduced luminal fluid secretion by 20%, decreased tissue and fluid myeloperoxidase by 50%, and diminished epithelial damage, edema, and neutrophil infiltration. DPPI deletion reduced secretion by 20% and fluid myeloperoxidase by 55%. In wild-type mice, FUT-175 or MPI-0442352 inhibited secretion by 24%-28% and tissue and fluid myeloperoxidase by 31%-71%. Soybean trypsin inhibitor reduced secretion to background levels and tissue myeloperoxidase by up to 50%. TxA increased expression of PAR(2) and trypsin IV in enterocytes and colonocytes and caused a 2-fold increase in Ca(2+) responses to PAR(2) AP. AP, tryptase, and trypsin isozymes (trypsin I/II, trypsin IV, p23) caused ileitis. SR140333 prevented AP-induced ileitis.
Conclusions:
PAR(2) and its activators are proinflammatory in TxA-induced enteritis. TxA stimulates existing PAR(2) and up-regulates PAR(2) and activating proteases, and PAR(2) causes inflammation by neurogenic mechanisms.
Insights
Protease-activated receptor 2 (PAR(2)) and its activators play a proinflammatory role in Clostridium difficile toxin A (TxA)-induced enteritis. Targeting PAR(2) and its activators may offer therapeutic benefits for TxA-induced intestinal inflammation.
Area of Science:
- Gastroenterology
- Immunology
- Molecular Biology
Background:
- Clostridium difficile toxin A (TxA) causes enteritis.
- Protease-activated receptor 2 (PAR(2)) and its activating enzymes (trypsins, tryptase) are implicated in inflammatory processes.
Purpose of the Study:
- To investigate the role of PAR(2) and its activating enzymes in TxA-induced enteritis.
- To determine the mechanisms by which PAR(2) contributes to inflammation.
Main Methods:
- TxA was injected into ileal loops of PAR(2) or dipeptidyl peptidase I (DPPI) knockout mice and wild-type mice pretreated with inhibitors.
- Expression and activity of PAR(2) and trypsin IV were examined.
- The effects of PAR(2) activating peptide (AP), trypsins, and tryptase on ileitis were assessed, with or without neurokinin 1 receptor antagonist.
Main Results:
- PAR(2) deletion and DPPI deletion significantly reduced TxA-induced ileitis, fluid secretion, and myeloperoxidase activity.
- Tryptase inhibitors and soybean trypsin inhibitor partially or significantly ameliorated TxA-induced enteritis.
- TxA increased PAR(2) and trypsin IV expression, and PAR(2) activation led to ileitis, which was prevented by a neurokinin 1 receptor antagonist.
Conclusions:
- PAR(2) and its activators are key proinflammatory mediators in TxA-induced enteritis.
- TxA stimulates existing PAR(2), up-regulates PAR(2) and its activators, and promotes inflammation via neurogenic mechanisms.
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