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Assays for Validating Histone Acetyltransferase Inhibitors
Published on: August 6, 2020
Pyroptosis Tuning in Intestinal Cryptosporidiosis via the Natural Histone Deacetylase Inhibitor Romidepsin
Noha E Shalaby1, Zeinab S Shoheib1, Nabila A Yassin1
1Medical Parasitology Department, Faculty of Medicine, Tanta University, Tanta, Egypt.
Abstract:
Cryptosporidium is an opportunistic protozoan, with many species of cross-human infectivity. It causes life-threatening diarrhoea in children and CD4-defective patients. Despite its limited efficacy, nitazoxanide remains the primary anti-cryptosporidial drug. Cryptosporidium infects the intestinal brush border (intracellular-extracytoplasmic) and down-regulates pyroptosis to prevent expulsion. Romidepsin is a natural histone deacetylase inhibitor that triggers pyroptosis. Romidepsin's effect on cryptosporidiosis was assessed in immunocompromised mice via gasdermin-D (GSDM-D) immunohistochemical expression, IFN-γ, IL-1β and IL-18 blood levels by ELISA, and via parasite scanning by modified Ziehl-Neelsen staining and scanning electron microscopy (SEM). Oocyst deformity and local cytokines were also assessed in ex vivo ileal explants. Following intraperitoneal injection of romidepsin, oocyst shedding significantly reduced at the 9th, 12th and 15th d.p.i. compared with infected-control and drug-control (nitazoxanide-treated) mice. H&E staining of intestinal sections from romidepsin-treated mice showed significantly low intestinal scoring with marked reduction in epithelial hyperplasia, villous blunting and cellular infiltrate. SEM revealed marked oocyst blebbing and paucity (in vivo and ex vivo) after romidepsin compared with nitazoxanide. Regarding pyroptosis, romidepsin triggered significantly higher intestinal GSDM-D expression in vivo, and higher serum/culture IFN-γ, IL-1β and IL-18 levels in romidepsin-treated mice than in the control groups. Collectively, in cryptosporidiosis, romidepsin succeeded in enhancing pyroptosis in the oocysts and infected epithelium, reducing infection and shifting the brush border towards normalisation.
Insights
Romidepsin effectively treats cryptosporidiosis by triggering pyroptosis, reducing parasite shedding and intestinal damage in mice. This histone deacetylase inhibitor offers a promising alternative to nitazoxanide for cryptosporidium infections.
Area of Science:
- * Parasitology
- * Immunology
- * Drug Discovery
Background:
- * Cryptosporidium is an opportunistic protozoan causing severe diarrhea in immunocompromised individuals.
- * Current treatment, nitazoxanide, has limited efficacy.
- * Cryptosporidium evades host defenses by inhibiting pyroptosis.
Purpose of the Study:
- * To evaluate the efficacy of romidepsin, a histone deacetylase inhibitor, against cryptosporidiosis.
- * To investigate romidepsin's mechanism of action, focusing on pyroptosis induction.
Main Methods:
- * Immunocompromised mice infected with Cryptosporidium were treated with romidepsin.
- * Assessed parasite shedding, intestinal pathology (H&E staining), oocyst morphology (SEM), and pyroptosis markers (GSDM-D, IFN-γ, IL-1β, IL-18).
- * Ex vivo ileal explants were used to assess local cytokine responses and oocyst damage.
Main Results:
- * Romidepsin significantly reduced oocyst shedding and intestinal damage compared to controls and nitazoxanide.
- * Histopathology revealed reduced epithelial hyperplasia and villous blunting in romidepsin-treated mice.
- * Romidepsin enhanced pyroptosis, evidenced by increased GSDM-D expression and elevated serum/tissue levels of IFN-γ, IL-1β, and IL-18.
Conclusions:
- * Romidepsin effectively reduces Cryptosporidium infection in mice by inducing pyroptosis.
- * Romidepsin demonstrates superior efficacy over nitazoxanide in managing cryptosporidiosis.
- * Romidepsin shows potential as a novel therapeutic agent for cryptosporidiosis.
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