Jinming Wang

ORCID: 0000-0002-1982-8751
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About
Contact & Profiles
Research Areas
  • Fluoride Effects and Removal
  • Folate and B Vitamins Research
  • Anesthesia and Neurotoxicity Research
  • Nutritional Studies and Diet
  • Tryptophan and brain disorders
  • Selenium in Biological Systems
  • Infant Nutrition and Health
  • Vitamin D Research Studies
  • Bone and Dental Protein Studies

Shanxi Agricultural University
2009-2022

To assess the roles of dietary protein (Pr) and calcium (Ca) level associated with excessive fluoride (F) intake impact Pr, Ca, F on thyroid function, 144 30-day-old Wistar albino rats were randomly allotted to six groups 24 (female:male = 1:1). The fed (1) a normal control (NC) diet (17.92% 0.85% Ca NC group); (2) high (338 mg NaF [=150 ion]/L in their drinking water NC+F (3) low Pr (10.01% 0.24% LPrLCa (4) plus LPrLCa+F group; (5) (25.52% 0.25% HPrLCa+F (6) (10.60% 1.93% LPrHCa+F group)....

10.1177/0748233709102720 article EN Toxicology and Industrial Health 2009-02-01

Depression is a mental health problem with typically high levels of distress and dysfunction, 150 mg/L fluoride (F) can induce depression-like behavior. The development depression correlated neuronal atrophy, insufficient secretion monoamine neurotransmitters, extreme deviations from the normal microglial activation status, immune-inflammatory response. Studies found that Se supplementation was related to improvement depression. In this study, we applied selenium nanoparticles (SeNPs) for...

10.1021/acsami.1c18417 article EN ACS Applied Materials & Interfaces 2022-01-13

Long-term excessive intake of fluoride (F) can cause osseous and non-osseous damage. The kidney is the main excretion organ body. This study aimed to explore whether dietary calcium (Ca) supplementation alleviate damage caused by fluorosis further investigate effects Ca on mitigation mechanism renal cell apoptosis triggered F. We evaluated histopathological structure, function indicators, gene protein expression levels death receptor-mediated pathways in Sprague Dawley (SD) rats treated with...

10.1016/j.ecoenv.2021.112851 article EN cc-by-nc-nd Ecotoxicology and Environmental Safety 2021-10-05

Previous investigations demonstrated that high fluoride (F) exposure may adversely affect the neurodevelopment and learning memory ability. However, whether maternal F during gestation lactation can influence learning, ability, glutamate receptor expressions of offspring has not yet been elucidated. Hence, in present study, mice were exposed to (25, 50, or 100 mg/L sodium (NaF) drinking water) lactation. Results showed NaF significantly enhanced number total arm entries working errors radial...

10.1177/0960327117693067 article EN Human & Experimental Toxicology 2017-02-13
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