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Showing 1-20 of 6,912 results
  1. Review of neurotoxicity of T-2 toxin

    T-2 toxin is a representative trichothecene that is widely detected in corn, wheat and other grain feeds. T-2 toxin has stable physical and chemical...

    Youshuang Wang, Bo Wang, ... Cong Zhang in Mycotoxin Research
    Article 13 January 2024
  2. HDAC3 deacetylates H3K27ac and H3K9ac on the TrkC promoter to exacerbate sevoflurane-induced neurotoxicity

    Background

    Sevoflurane (Sev) is a widely used general anesthetic that can cause neurotoxicity. Histone acetylation is a vital epigenetic mechanism...

    Jiegang Zhou, **nwei Feng, Dan Wang in Molecular & Cellular Toxicology
    Article 09 November 2023
  3. Intestinal microbiota protects against methylmercury-induced neurotoxicity

    Methylmercury (MeHg) remains a global public health issue because of its frequent presence in human food sources obtained from the water. The...

    Tao Ke, André Rajoo, ... Michael Aschner in BioMetals
    Article 16 November 2023
  4. Quetiapine attenuates cadmium neurotoxicity by suppressing oxidative stress, inflammation, and pyroptosis

    Background

    Cadmium (Cd) is a heavy metal with extremely harmful toxic effects on the brain. Quetiapine (QTP) has unique neuroprotective effects with...

    Hanan S. Althagafy, Steve Harakeh, ... Emad H. M. Hassanein in Molecular Biology Reports
    Article 15 May 2024
  5. Crocin alleviates neurotoxicity induced by bupivacaine in SH-SY5Y cells with inhibition of PI3K/AKT signaling

    Background

    Bupivacaine, a common local anesthetic, can cause neurotoxicity and permanent neurological disorders. Crocin has been widely reported as a...

    Lili Lin, Zhen Chen, ... Caijie Shen in Genes & Genomics
    Article 31 July 2023
  6. Complement C1q-mediated microglial synaptic elimination by enhancing desialylation underlies sevoflurane-induced developmental neurotoxicity

    Background

    Repeated neonatal sevoflurane exposures led to neurocognitive disorders in young mice. We aimed to assess the role of microglia and...

    Gang Wang, Hua-yue Liu, ... Fu-hai Ji in Cell & Bioscience
    Article Open access 01 April 2024
  7. Sodium Butyrate Ameliorates Fluorosis-Induced Neurotoxicity by Regulating Hippocampal Glycolysis In Vivo

    Fluorosis can induce neurotoxicity. Sodium butyrate (SB), a histone deacetylase inhibitor, has important research potential in correcting glucose...

    Yangjie Li, Zhengdong Wang, ... Nan Yan in Biological Trace Element Research
    Article 30 January 2023
  8. STAMP2 alleviates microglial neurotoxicity by inhibiting LPS-induced NF-κB activation

    Background

    The six-transmembrane protein of the prostate 2 (STAMP2) is crucial for damage-induced inflammation. Excessive inflammatory responses in...

    Zengbian Chen, Jie **, Qi Lu in Molecular & Cellular Toxicology
    Article 10 March 2023
  9. Melatonin Protects Against Titanium Oxide-Induced Neurotoxicity: Neurochemical, Neurobehavioral, and Histopathological Evidences

    titania (titanium dioxide, TiO 2 ) is known to induce neurotoxicity and CNS dysfunctions. Numerous studies have explored the neuroprotective effects of...

    Sarvenaz Sobhani, Ali-Asghar Tehrani, ... Alina Atif in Biological Trace Element Research
    Article 15 November 2022
  10. Petrosamine isolated from marine sponge Petrosia sp. demonstrates protection against neurotoxicity in vitro and in vivo

    According to The World Alzheimer Report 2023 by Alzheimer’s Disease International (ADI) estimates that 33 to 38.5 million people worldwide suffer...

    Joana Ribeiro, Henrique Araújo-Silva, ... Andreia C. Gomes in Natural Products and Bioprospecting
    Article Open access 22 February 2024
  11. Sulbactam protects neurons against double neurotoxicity of amyloid beta and glutamate load by upregulating glial glutamate transporter 1

    Amyloid beta (Abeta) synergistically enhances excitotoxicity of glutamate load by impairing glutamate transporter 1 (GLT1) expression and function,...

    Li Li, Wenbin Li, ... Renhao Xu in Cell Death Discovery
    Article Open access 06 February 2024
  12. Melatonin Attenuates Arsenic-Induced Neurotoxicity in Rats Through the Regulation of miR-34a/miR-144 in Sirt1/Nrf2 Pathway

    Arsenic (As) exposure is known to cause several neurological disorders through various molecular mechanisms such as oxidative stress, apoptosis, and...

    Nahid Najafi, Samira Barangi, ... Gholamreza Karimi in Biological Trace Element Research
    Article 19 October 2023
  13. Alpha-mangostin Protects PC12 Cells Against Neurotoxicity Induced by Cadmium and Arsenic

    Arsenic and cadmium are nonessential elements that are of importance in public health due to their high toxicity. Contact with these toxic elements,...

    Reyhaneh Ahmadian, Mahmoud Reza Heidari, ... Hossein Hosseinzadeh in Biological Trace Element Research
    Article 29 November 2022
  14. Excessive Lysosomal Stress Response and Consequently Impaired Autophagy Contribute to Fluoride-Induced Developmental Neurotoxicity

    Fluoride can cause developmental neurotoxicity; however, the precise mechanism has yet to be determined. We aimed to explore the possible role and...

    Wan**g Xu, Zeyu Hu, ... Qiang Niu in Biological Trace Element Research
    Article 05 December 2022
  15. Pre-mating exposure with hesperidin protects N-ethyl-N-nitrosourea-induced neurotoxicity and congenital abnormalities in next generation of mice as a model of glioma

    Chemical carcinogen-induced oxidative stress has a key role in cell signaling linked to the development of cancer. Oxidative stress leads to...

    Saleh Khezri, Sepideh Azizian, Ahmad Salimi in Journal of Molecular Histology
    Article 25 June 2024
  16. Targeting TGFβ-activated kinase-1 activation in microglia reduces CAR T immune effector cell-associated neurotoxicity syndrome

    Cancer immunotherapy with chimeric antigen receptor (CAR) T cells can cause immune effector cell-associated neurotoxicity syndrome (ICANS). However,...

    Janaki Manoja Vinnakota, Francesca Biavasco, ... Robert Zeiser in Nature Cancer
    Article 13 May 2024
  17. Loss of TDP-43 mediates severe neurotoxicity by suppressing PJA1 gene transcription in the monkey brain

    The nuclear loss and cytoplasmic accumulation of TDP-43 (TAR DNA/RNA binding protein 43) are pathological hallmarks of amyotrophic lateral sclerosis...

    Longhong Zhu, Fuyu Deng, ... Peng Yin in Cellular and Molecular Life Sciences
    Article 09 January 2024
  18. Regulation of BDNF transcription by Nrf2 and MeCP2 ameliorates MPTP-induced neurotoxicity

    Mounting evidence suggests the key role of brain-derived neurotrophic factor (BDNF) in the dopaminergic neurotoxicity of Parkinson’s disease (PD)....

    Qianqian Cao, Qiuming Zou, ... Ji-chun Zhang in Cell Death Discovery
    Article Open access 20 May 2022
  19. Pluripotent Stem Cell-derived Dopaminergic Neurons for Studying Developmental Neurotoxicity

    With the vast number of chemicals in commerce, higher throughput strategies are needed to inform risk assessment. The field of toxicology is...

    Anna Kreutz, Guang Hu, Erik Tokar in Stem Cell Reviews and Reports
    Article Open access 05 June 2023
  20. Fenpropathrin exposure induces neurotoxicity in zebrafish embryos

    Fenpropathrin has been a commonly used insecticide to control agricultural and household insects over a few decades. Up to now, fenpropathrin residue...

    Tingting Yu, **aowen Xu, ... Dongming Li in Fish Physiology and Biochemistry
    Article 21 October 2022
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