2024
Placental Vascular Anastamoses and Associated Pathologies in Dichorionic Twin Gestations
Dave E, Bahtiyar M, Campbell W, Morotti R, Kohari K. Placental Vascular Anastamoses and Associated Pathologies in Dichorionic Twin Gestations. Twin Research And Human Genetics 2024, 27: 251-255. PMID: 39508257, DOI: 10.1017/thg.2024.35.Peer-Reviewed Original ResearchTwin-to-twin transfusion syndromeTwin anemia-polycythemia sequenceDichorionic twin gestationsVascular anastamosesTwin gestationsDichorionic twin pregnanciesTwin transfusion syndromePlacental vascular anastomosesDichorionic gestationsMonochorionic pregnanciesPrenatal surveillanceTransfusion syndromeTwin pregnanciesGestationMitigate morbidityVascular anastomosisAssociated pathologyPregnancyAnastamosesPathologyDichorionicityMorbidityPathophysiologySyndrome
2023
Anticonvulsants
Popovitz E, Li J, Vadivelu N. Anticonvulsants. 2023, 139-146. DOI: 10.1007/978-3-031-21291-8_9.ChaptersDiabetic peripheral neuropathySpinal cord injuryPerioperative settingRole of anticonvulsantsHerpetic neuralgiaMultimodal analgesiaNeuropathic painSurgery protocolPeripheral neuropathyCord injuryPrimary medicationThoracic proceduresAssociated pathologyEnhanced recoveryAnalgesiaNeuropathyPainAnticonvulsantsOptimal dosageGabapentinoidsNeuralgiaMedicationsHIVGabapentinPregabalin
2022
Alzheimer risk gene product Pyk2 suppresses tau phosphorylation and phenotypic effects of tauopathy
Brody AH, Nies SH, Guan F, Smith LM, Mukherjee B, Salazar SA, Lee S, Lam TKT, Strittmatter SM. Alzheimer risk gene product Pyk2 suppresses tau phosphorylation and phenotypic effects of tauopathy. Molecular Neurodegeneration 2022, 17: 32. PMID: 35501917, PMCID: PMC9063299, DOI: 10.1186/s13024-022-00526-y.Peer-Reviewed Original ResearchConceptsPS19 miceTau phosphorylationDisease riskPyk2 expressionPyk2 activityHuman neuronal culturesAlzheimer's disease riskNeuro-inflammationSynapse lossTau accumulationTau pathologyMouse survivalC1q depositionT cellsAssociated pathologyMouse modelLittermate controlsMAPK activityHuman neuronsHuman tauNeuronal culturesPyk2 inhibitionVivo modelMouse brainSynaptic functionZebrafish as a Model to Study Vascular Elastic Fibers and Associated Pathologies
Hoareau M, El Kholti N, Debret R, Lambert E. Zebrafish as a Model to Study Vascular Elastic Fibers and Associated Pathologies. International Journal Of Molecular Sciences 2022, 23: 2102. PMID: 35216218, PMCID: PMC8875079, DOI: 10.3390/ijms23042102.Peer-Reviewed Original ResearchConceptsElastic fibersLack of elastic fibersConventional mouse modelsReverse geneticsModel organismsStudy human pathologiesVascular elastic fibersCardiovascular defectsHuman pathologiesFibrillin-rich microfibrilsIncreased riskMouse modelZebrafish modelAnimal modelsAssociated pathologyVascular pathologyBlood vesselsZebrafish
This site is protected by hCaptcha and its Privacy Policy and Terms of Service apply