98%
921
2 minutes
20
Genetics likely play a role in various responses to nerve agent exposure, as genetic background plays an important role in behavioral, neurological, and physiological responses to environmental stimuli. Mouse strains or selected lines can be used to identify susceptibility based on background genetic features to nerve agent exposure. Additional genetic techniques can then be used to identify mechanisms underlying resistance and sensitivity, with the ultimate goal of developing more effective and targeted therapies. Here, we discuss the available literature on strain and selected line differences in cholinesterase activity levels and response to nerve agent-induced toxicity and seizures. We also discuss the available cholinesterase and toxicity literature across different non-human primate species. The available data suggest that robust genetic differences exist in cholinesterase activity, nerve agent-induced toxicity, and chemical-induced seizures. Available cholinesterase data suggest that acetylcholinesterase activity differs across strains, but are limited by the paucity of carboxylesterase data in strains and selected lines. Toxicity and seizures, two outcomes of nerve agent exposure, have not been fully evaluated for genetic differences, and thus further studies are required to understand baseline strain and selected line differences.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1016/j.tox.2017.11.003 | DOI Listing |
Toxicon
September 2025
Department of Pathology, College of Medicine, King Khalid University, P.O. 641, Abha, 61421, Saudi Arabia; Department of Forensic Medicine and Clinical Toxicology, Mansoura University, Egypt.
Titanium dioxide nanoparticles (TiO-NPs) are used in the production of various industrial and commercial products and reported to cause neurotoxicity in Sprague Dawley rats. Fortunellin (FRN) is a potent flavonoid with diverse biological properties. This research experiment was performed to explore the protective role FRN against TiO-NPs induced brain damage.
View Article and Find Full Text PDFCancer Med
September 2025
Department of Medicine, University of Chicago, Chicago, Illinois, USA.
Background: Cisplatin is a commonly used chemotherapeutic across numerous cancer types that can cause neurotoxicities in patients, including peripheral sensory neuropathy, tinnitus, hearing loss, and vertigo.
Objective: We aimed to evaluate, for the first time, how genetic ancestry impacts cisplatin-induced neurotoxicities and if disparities are related to population differences in allele frequency.
Methods: In a cohort of cisplatin-treated testicular cancer survivors, relationships between genetic ancestry and neurotoxicities, medications, and lifestyle factors were assessed using logistic regression and Kruskal-Wallis tests and multiple pairwise comparisons using the Wilcoxon rank-sum test (Benjamini-Hochberg adjustment).
Antiviral Res
September 2025
Innovative Molecules GmbH, Lipowsky Str. 10, 81373 Munich, Germany. Electronic address:
The high incidence and prevalence of herpes infections pose a significant health burden worldwide. Herpes simplex virus infections are the cause of herpes labialis, genital herpes or herpes keratitis and in rare cases life-threatening herpes encephalitis, meningitis or disseminated disease. After primary infection herpes simplex viruses (HSVes) establish latency in the trigeminal and sacral ganglia and at least 30% of patients experience clinically manifestant recurrences for life.
View Article and Find Full Text PDFUlus Travma Acil Cerrahi Derg
September 2025
Department of Medical Biochemistry, Bestepe State Hospital, Ankara-Türkiye.
Background: Traumatic brain injury is a global health problem. Infliximab is used daily to treat a variety of inflammatory systemic disorders. The goal of this study was to compare the pathological and biochemical changes induced by dexamethasone and infliximab usage in rats with blunt head trauma.
View Article and Find Full Text PDFJ Appl Polym Sci
August 2025
Department of Biomedical Engineering, University of Houston.
Recent advances in neural regeneration have demonstrated the importance of incorporating proteins into polymeric capsules to provide both topographical and biochemical cues to cells. Coaxial electrospinning has emerged as a versatile technique for embedding delicate bioactive agents within core-shell nanofibers, enabling controlled and sustained drug release. In this study, we employed a design-of-experiment approach to systematically investigate how controllable parameters in coaxial electrospinning influence the diameter and size distribution of aligned poly (ethylene oxide-poly(l-lactide-co-glycolide) nanofibers loaded with nerve growth factor (NGF).
View Article and Find Full Text PDF