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The ATX-LPA Axis Regulates Vascular Permeability during Cerebral Ischemic-Reperfusion.
Bhattarai, Susmita; Sharma, Sudha; Subedi, Utsab; Ara, Hosne; Shum, Alika; Milena, Murov; Bhuiyan, Md Shenuarin; Kidambi, Srivatsan; Sun, Hong; Miriyala, Sumitra; Panchatcharam, Manikandan.
Afiliação
  • Bhattarai S; Department of Cellular Biology and Anatomy, Louisiana State University Health Sciences, Shreveport, LA 71103, USA.
  • Sharma S; Department of Cellular Biology and Anatomy, Louisiana State University Health Sciences, Shreveport, LA 71103, USA.
  • Subedi U; Department of Cellular Biology and Anatomy, Louisiana State University Health Sciences, Shreveport, LA 71103, USA.
  • Ara H; Department of Cellular Biology and Anatomy, Louisiana State University Health Sciences, Shreveport, LA 71103, USA.
  • Shum A; Department of Cellular Biology and Anatomy, Louisiana State University Health Sciences, Shreveport, LA 71103, USA.
  • Milena M; Department of Cellular Biology and Anatomy, Louisiana State University Health Sciences, Shreveport, LA 71103, USA.
  • Bhuiyan MS; Department of Pathology and Translational Pathobiology, Louisiana State University Health Sciences, Shreveport, LA 71103, USA.
  • Kidambi S; Department of Chemical and Biomolecular Engineering, University of Nebraska, Lincoln, NB 68588, USA.
  • Sun H; Department of Cellular Biology and Anatomy, Louisiana State University Health Sciences, Shreveport, LA 71103, USA.
  • Miriyala S; Department of Cellular Biology and Anatomy, Louisiana State University Health Sciences, Shreveport, LA 71103, USA.
  • Panchatcharam M; Department of Cellular Biology and Anatomy, Louisiana State University Health Sciences, Shreveport, LA 71103, USA.
Int J Mol Sci ; 23(8)2022 Apr 08.
Article em En | MEDLINE | ID: mdl-35456953
ABSTRACT
Endothelial permeability is a major complication that must be addressed during stroke treatment. Study of the mechanisms underlying bloodbrain barrier (BBB) disruption and management of the hypoxic stress-induced permeability of the endothelium following reperfusion are both urgently needed for stroke management. Lysophosphatidic acid (LPA), a bioactive lipid essential for basic cellular functions, causes unfavorable outcomes during stroke progression. LPA-producing enzyme autotaxin (ATX) is regulated in ischemic stroke. We used an electrical cell-substrate impedance sensor (ECIS) to measure endothelial permeability. Mitochondrial bioenergetics were obtained using a Seahorse analyzer. AR-2 probe fluorescence assay was used to measure ATX activity. LPA increased endothelial permeability and reduced junctional protein expression in mouse brain microvascular endothelial cells (MBMEC). LPA receptor inhibitors Ki16425 and AM095 attenuated the LPA-induced changes in the endothelial permeability and junctional proteins. LPA significantly diminished mitochondrial function in MBMEC. ATX was upregulated (p < 0.05) in brain microvascular endothelial cells under hypoxic reperfusion. ATX activity and permeability were attenuated with the use of an ATX inhibitor in a mouse stroke model. The upregulation of ATX with hypoxic reperfusion leads to LPA production in brain endothelial cells favoring permeability. Inhibition of the ATX−LPA−LPAR axis could be therapeutically targeted in stroke to achieve better outcomes.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Permeabilidade Capilar / AVC Isquêmico Limite: Animals Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Permeabilidade Capilar / AVC Isquêmico Limite: Animals Idioma: En Ano de publicação: 2022 Tipo de documento: Article