2021
Physiologically detectable bisphenol A impairs human sperm functions by reducing protein-tyrosine phosphorylation
Li N, Kang H, Peng Z, Wang H, Weng S, Zeng X. Physiologically detectable bisphenol A impairs human sperm functions by reducing protein-tyrosine phosphorylation. Ecotoxicology And Environmental Safety 2021, 221: 112418. PMID: 34146982, DOI: 10.1016/j.ecoenv.2021.112418.Peer-Reviewed Original ResearchConceptsHuman sperm viabilityHuman sperm functionHuman spermExposure of BPASperm functionProgesterone-induced acrosome reactionProtein tyrosine phosphorylationProtein tyrosine phosphorylation levelsAcrosome reactionMale infertilityHealthy peopleMouse sperm motilitySperm viabilityCalcium signalingPhosphorylation levelsTyrosine phosphorylation levelsBisphenol ASperm motilityProgressive motilityHyperactivationMotilityDetectable concentrationRemarkable declineTyrosine phosphorylationPlastic monomers
2016
Matrine compromises mouse sperm functions by a [Ca2+]i-related mechanism
Luo T, Zou Q, He Y, Wang H, Wang T, Liu M, Chen Y, Wang B. Matrine compromises mouse sperm functions by a [Ca2+]i-related mechanism. Reproductive Toxicology 2016, 60: 69-75. PMID: 26867864, DOI: 10.1016/j.reprotox.2016.02.003.Peer-Reviewed Original ResearchConceptsMouse sperm functionSperm functionDaily dosesIntraperitoneal injectionMale miceSperm countTestis weightReproductive toxicityMiceChinese medicineCatSper channelsMatrineProgressive motilityAcrosome reactionKey regulatorMouse spermTotal motilitySperm viabilityGene expressionTestis sizeMotilitySpermDoses