Pathogenic Escherichia coli (E. coli) can cause intestinal diseases in humans and livestock, damage the intestinal barrier, increase systemic inflammation, and seriously threaten human health and the development of animal husbandry. In this study, we designed and synthesized a novel conjugate florfenicol sulfathiazole (FST) based on drug combination principles, and investigated its antibacterial activity in vitro and its protective effect on inflammatory response and intestinal barrier function in E. coli O78-infected mice in vivo. The results showed that FST had superior antibacterial properties and minimal cytotoxicity compared with its prodrugs as florfenicol and sulfathiazole. FST protected mice from lethal E. coli infection, reduced clinical signs of inflammation, reduced weight loss, alleviated intestinal structural damage. FST decreased the expression of inflammatory cytokines IL-1β, IL-6, TNF-α, and increased the expression of claudin-1, Occludin, and ZO-1 in the jejunum, improved the intestinal barrier function, and promoted the absorption of nutrients. FST also inhibited the expression of TLR4, MyD88, p-p65, and p-p38 in the jejunum. The study may lay the foundation for the development of FST as new drugs for intestinal inflammation and injury in enteric pathogen infection.
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http://dx.doi.org/10.1016/j.intimp.2023.111386 | DOI Listing |
Regul Toxicol Pharmacol
January 2025
Division of Applied Regulatory Science, Office of Clinical Pharmacology, Center for Drug Evaluation and Research, The U.S. Food and Drug Administration, 10903 New Hampshire Avenue, Silver Spring, MD 20993, United States of America. Electronic address:
The static Caco-2 monolayer is an extensively utilized model for predicting the permeability of small molecules during the drug development process. While these cells can differentiate and develop key functional and morphological features that emulate human enterocytes, they do not fully replicate the complexity of human intestinal physiology. In this study, we investigated functional and morphological aspects of Caco-2 cells, alongside their transcriptomic profiles, with a particular emphasis on genes encoding drug-metabolizing enzymes and drug transporters.
View Article and Find Full Text PDFInt J Biol Macromol
January 2025
School of Pharmaceutical Sciences, Sun Yat-sen University, Guangzhou, 510006, Guangdong, China. Electronic address:
Ulcerative colitis (UC) treatment is often limited by adverse reactions and high recurrence rates, highlighting the need for safer, more effective therapies. Citrus medica 'Fingered' (C. medica), known for its anti-inflammatory properties, remains underexplored, particularly its polysaccharide components.
View Article and Find Full Text PDFInt J Biol Macromol
January 2025
Institute of Traditional Chinese Medicine, Heilongjiang University of Chinese Medicine, Harbin 150040, China. Electronic address:
Numerous studies indicate that Schisandra chinensis (Turcz.) Baill (SC) has anti-type 2 diabetes mellitus (T2DM) effects, and its processed products are commonly used in clinical practice. However, limited reports exist on the mechanisms of polysaccharides from its vinegar products and their role in T2DM.
View Article and Find Full Text PDFJ Med Microbiol
January 2025
Shenzhen Qianhai Shekou Free Trade Zone Hospital, Shenzhen 518067, PR China.
Alcohol abuse can lead to significant cardiac injury, resulting in Alcoholic heart disease (AHD). The interplay between cardiac health and gut microbiota composition in the context of alcohol consumption is not well understood. Shen Song Yang Xin (SSYX) capsule and amiodarone are common drugs used to treat alcoholic heart disease, but little is known about their microbial regulatory mechanisms in alcoholic heart disease.
View Article and Find Full Text PDFBioact Mater
April 2025
School of Biomedical Engineering, Anhui Provincial Institute of Translational Medicine, Anhui Engineering Research Center for Medical Micro-Nano Devices, Anhui Medical University, Hefei, 230011, PR China.
Oxidative stress, dysbiosis, and immune dysregulation have been confirmed to play pivotal roles in the complex pathogenesis of inflammatory bowel disease (IBD). Herein, we design copper ion-luteolin nanocomplexes (CuL NCs) through a metal-polyphenol coordination strategy, which plays a multifaceted role in the amelioration of IBD. The fabricated CuL NCs function as therapeutic agents with exceptional antioxidant and anti-inflammatory capabilities because of their great stability and capacity to scavenge reactive oxygen species (ROS).
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