GT160-246, a Toxin Binding Polymer for Treatment of Clostridium difficile Colitis
Abstract
ABSTRACT GT160-246, a high-molecular-weight soluble anionic polymer, was tested in vitro and in vivo for neutralization of Clostridium difficile toxin A and B activities. Five milligrams of GT160-246 per ml neutralized toxin-mediated inhibition of protein synthesis in Vero cells induced by 5 ng of toxin A per ml or 1.25 ng of toxin B per ml. In ligated rat ileal loops, 1 mg of GT160-246 neutralized fluid accumulation caused by 5 μg of toxin A. At doses as high as 80 mg/loop, cholestyramine provided incomplete neutralization of fluid accumulation caused by 5 μg of toxin A. GT160-246 protected 80% of the hamsters from mortality caused by infection with C. difficile , whereas cholestyramine protected only 10% of animals. Treatment of C. difficile -infected hamsters with metronidazole initially protected 100% of the hamsters from mortality, but upon removal of treatment, 80% of the hamsters had relapses and died. In contrast, removal of GT160-246 treatment did not result in disease relapse in the hamsters. GT160-246 showed no antimicrobial activity in tests with a panel of 16 aerobic bacteria and yeast and 22 anaerobic bacteria and did not interfere with the in vitro activities of most antibiotics. GT160-246 offers a novel, nonantimicrobial treatment of C. difficile disease in humans.
Related Papers
- The Efficacy of a Novel Water-Soluble Anti-Mycotoxin Solution in Improving Broiler Chicken Performance Under Mycotoxin ChallengeToxins · 2025 · 1 shared tag
- Probing the VIPR2 Microduplication Linkage to Schizophrenia in Animal and Cellular ModelsFrontiers in Neuroscience · 2021 · 1 shared tag
- Temporal dynamics in diversity and composition of the air mycobiome and dominant allergenic fungi in the subway environmentEnvironmental DNA · 2023 · 1 shared tag
- Considering traditional Chinese medicine as adjunct therapy in the management of chronic constipation by regulating intestinal floraBioScience Trends · 2024 · 1 shared tag
- Lipid-Induced Insulin Resistance Mechanisms: The Link to Inflammation and Type 2 Diabetes.2021 · 1 shared tag
- Dimethyl Fumarate and Intestine: From Main Suspect to Potential Ally against Gut DisordersInternational Journal of Molecular Sciences · 2023 ·