Showing 241 to 250 of 1261 Search Results:
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Sodium fluoride impairs splenic innate immunity via inactivation of TLR2/MyD88 signaling pathway in mice.
Kuang P, Guo H, Deng H, Cui H, Fang J, Zuo Z, Deng J, Li Y, Wang X, Zhao L.
Journal Name: Chemosphere
Publish Date: July 23, 2019
Volume/Page: 237:124437.
Type: Animal Study
Categories: Immune System, Mechanisms of Cellular Toxicity, DNA effects, Spleen
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Fluoride-induced unrestored arrest during haploid period of spermatogenesis via the regulation of DDX25 in rats.
Han Y, Yu Y, Liang C, Shi Y, Zhu Y, Zheng H, Wang J, Zhang J.
Journal Name: Environmental Pollution
Publish Date: July 5, 2019
Volume/Page: 53:538-551. doi: 10.1016/j.envpol.2019.06.107.
Type: Animal Study
Categories: Reproductive Toxicity, Sperm Effects, Testes
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Fluoride related changes in behavioral outcomes may relate to increased serotonin.
Lu F, Zhang Y, Trivedi A, Jiang X, Chandra D, Zheng J, Nakano Y, Uyghurturk DA, Jalai R, Guner S, Mentes A, DenBesten PK.
Journal Name: Physiology & Behavior
Publish Date: July 1, 2019
Volume/Page: 206:76-83.
Type: Animal Study, Human Study
Categories: Brain, Behavior, *NTP2019, NIDCR grant, NIEHS grant
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Subchronic exposure to arsenite and fluoride from gestation to puberty induces oxidative stress and disrupts ultrastructure in the kidneys of rat offspring.
Tian X, Feng J, Dong N, Lyu Y, Wei C, Li B, Ma Y, Xie J, Qiu Y, Song G, Ren X, Yan X.
Journal Name: Science of The Total Environment
Publish Date: July 1, 2019
Volume/Page: 686:1229-1237.
Type: Animal Study
Categories: Kidney, Mechanisms of Cellular Toxicity, Oxidative Stress, Susceptible Populations, Chemical Co-Exposures, Arsenic, Animal offspring
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Anuran tadpoles inhabiting a fluoride-rich stream: diets and morphological indicators.
Pollo FE, Cibils-Martina L, Otero MA, Baraquet M, Grenat PR, Salas NE, Martino AL.
Journal Name: Heliyon
Publish Date: June 26, 2019
Volume/Page: 5:6. https://doi.org/10.1016/j.heliyon.2019.e02003
Type: Animal Study
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Effects of Perinatal Fluoride Exposure on Short- and Long-Term Memory, Brain Antioxidant Status, and Glutamate Metabolism of Young Rat Pups.
Bartos M, Gumilar F, Gallegos CE, Bras C, Dominguez S, Cancela LM, Minetti A.
Journal Name: International Journal of Toxicology
Publish Date: June 20, 2019
Volume/Page: [Epub ahead of print]
Type: Animal Study
Categories: Brain, Mechanisms of Cellular Toxicity, Oxidative Stress, Animal offspring
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Intestinal barrier damage involved in intestinal microflora changes in fluoride-induced mice.
Liu J, Wang HW, Lin L, Miao CY, Zhang Y, Zhou BH.
Journal Name: Chemosphere
Publish Date: June 12, 2019
Volume/Page: 234:409-418.
Type: Animal Study
Categories: Gastrointestinal
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Long-term exposure to fluoride as a factor promoting changes in the expression and activity of cyclooxygenases (COX1 and COX2) in various rat brain structures.
Dec K, Lukomska A, Skonieczna-Zydecka K, Kolasa-Wolosiuk A, Tarnowski M, Baranowska-Bosiacka I, Gutowska I.
Journal Name: Neurotoxicology
Publish Date: June 5, 2019
Volume/Page: 74:81-90.
Type: Animal Study
Categories: Brain, Brain Cellular/Tissue Effects, Hippocampus, Animal offspring
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Effects of long-term fluoride exposure on cognitive ability and the underlying mechanisms: Role of autophagy and its association with apoptosis.
Zhou G, Tang S, Yang L, Niu Q, Chen J, Xia T, Wang S, Wang M, Zhao Q, Liu L, Li P, Dong L, Yang K, Zhang S, Wang A.
Journal Name: Toxicology and Applied Pharmacology
Publish Date: June 5, 2019
Volume/Page: 378:114608.
Type: Animal Study
Categories: Brain, Mechanisms of Cellular Toxicity, Apoptosis, Animal offspring, Autophagy, Pregnant animal
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Mixture effect of arsenic and fluoride at environmentally relevant concentrations in zebrafish (Danio rerio) liver: Expression pattern of Nrf2 and related xenobiotic metabolizing enzymes.
Mondal P, Shaw P, Bandyopadhyay A, Dey Bhowmik A, Chakraborty A, Sudarshan M, Chattopadhyay A.
Journal Name: Aquatic Toxicology
Publish Date: June 3, 2019
Type: Animal Study
Categories: Liver, Mechanisms of Cellular Toxicity, Oxidative Stress, Arsenic, Chemical Co-Exposures, Zebrafish