2022
A mitochondrial contribution to anti-inflammatory shear stress signaling in vascular endothelial cells
Coon BG, Timalsina S, Astone M, Zhuang ZW, Fang J, Han J, Themen J, Chung M, Yang-Klingler YJ, Jain M, Hirschi KK, Yamamato A, Trudeau LE, Santoro M, Schwartz MA. A mitochondrial contribution to anti-inflammatory shear stress signaling in vascular endothelial cells. Journal Of Cell Biology 2022, 221: e202109144. PMID: 35695893, PMCID: PMC9198948, DOI: 10.1083/jcb.202109144.Peer-Reviewed Original ResearchConceptsLaminar shear stressAnti-inflammatory transcription factorHigh laminar shear stressKruppel-like factor 2Vascular endothelial cellsSubsequent mechanistic investigationsArterial lesionsVascular inflammationDisturbed blood flowMyocardial infarctionVascular diseaseVascular remodelingBlood flowKLF2 expressionWhole-genome CRISPREndothelial cellsMajor causeBiomechanical factorsFactor 2Mitochondrial calciumMitochondrial metabolismKLF2InductionMetabolismMitochondrial pathway
2015
Disturbed shear stress reduces Klf2 expression in arterial‐venous fistulae in vivo
Yamamoto K, Protack CD, Kuwahara G, Tsuneki M, Hashimoto T, Hall MR, Assi R, Brownson KE, Foster TR, Bai H, Wang M, Madri JA, Dardik A. Disturbed shear stress reduces Klf2 expression in arterial‐venous fistulae in vivo. Physiological Reports 2015, 3: e12348. PMID: 25780089, PMCID: PMC4393175, DOI: 10.14814/phy2.12348.Peer-Reviewed Original ResearchArteriovenous fistulaKLF2 expressionDisturbed shear stressFistula diameterMouse aortocaval fistula modelArterial-venous fistulaProtein expressionAortocaval fistula modelInferior vena cavaPotential therapeutic targetAVF maturationAVF patencyDuplex ultrasoundArterial inflowVena cavaVenous outflowArterial limbVenous limbFistula modelMouse modelArterial samplesFistulaTherapeutic targetWestern blotGauge needle
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