Literature DB >> 26489399

Cyclic and constant hyperoxia cause inflammation, apoptosis and cell death in human umbilical vein endothelial cells.

J Wu1,2, C Hafner1, J P Schramel3, C Kaun4,5, K A Krychtiuk4,6, J Wojta4,5,6, S Boehme1, R Ullrich1, E V Tretter1, K Markstaller1, K U Klein1.   

Abstract

BACKGROUND: Perioperative high-dose oxygen (O2 ) exposure can cause hyperoxia. While the effect of constant hyperoxia on the vascular endothelium has been investigated to some extent, the impact of cyclic hyperoxia largely remains unknown. We hypothesized that cyclic hyperoxia would induce more injury than constant hyperoxia to human umbilical vein endothelial cells (HUVECs).
METHODS: HUVECs were exposed to cyclic hyperoxia (5-95% O2 ) or constant hyperoxia (95% O2 ), normoxia (21% O2 ), and hypoxia (5% O2 ). Cell growth, viability (Annexin V/propidium iodide and 3-(4,5-dimethythiazol-2-yl)-2,5-diphenyl tetrazolium bromide, MTT) lactate dehydrogenase (LDH), release, cytokine (interleukin, IL and macrophage migration inhibitory factor, MIF) release, total antioxidant capacity (TAC), and superoxide dismutase activity (SOD) of cell lysate were assessed at baseline and 8, 24, and 72 h. A signal transduction pathway finder array for gene expression analysis was performed after 8 h.
RESULTS: Constant and cyclic hyperoxia-induced gradually detrimental effects on HUVECs. After 72 h, constant or cyclic hyperoxia exposure induced change in cytotoxic (LDH +12%, P = 0.026; apoptosis +121/61%, P < 0.01; alive cells -15%, P < 0.01; MTT -16/15%, P < 0.01), inflammatory (IL-6 +142/190%, P < 0.01; IL-8 +72/43%, P < 0.01; MIF +147/93%, P < 0.01), or redox-sensitive (SOD +278%, TAC-25% P < 0.01) markers. Gene expression analysis revealed that constant and cyclic hyperoxia exposure differently activates oxidative stress, nuclear factor kappa B, Notch, and peroxisome proliferator-activated receptor pathways.
CONCLUSIONS: Extreme hyperoxia exposure induces inflammation, apoptosis and cell death in HUVECs. Although our findings cannot be transferred to clinical settings, results suggest that hyperoxia exposure may cause vascular injury that could play a role in determining perioperative outcome.
© 2015 The Acta Anaesthesiologica Scandinavica Foundation. Published by John Wiley & Sons Ltd.

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Year:  2015        PMID: 26489399     DOI: 10.1111/aas.12646

Source DB:  PubMed          Journal:  Acta Anaesthesiol Scand        ISSN: 0001-5172            Impact factor:   2.105


  7 in total

1.  High arterial oxygen levels and supplemental oxygen administration in traumatic brain injury: insights from CENTER-TBI and OzENTER-TBI.

Authors:  Emanuele Rezoagli; Matteo Petrosino; Paola Rebora; David K Menon; Stefania Mondello; D James Cooper; Andrew I R Maas; Eveline J A Wiegers; Stefania Galimberti; Giuseppe Citerio
Journal:  Intensive Care Med       Date:  2022-10-20       Impact factor: 41.787

2.  Exosomes secreted by endothelial progenitor cells improve the bioactivity of pulmonary microvascular endothelial cells exposed to hyperoxia in vitro.

Authors:  Xiaomei Zhang; Aizhen Lu; Zhi Li; Jiali Sun; Dan Dai; Liling Qian
Journal:  Ann Transl Med       Date:  2019-06

3.  Cyclic PaO2 oscillations assessed in the renal microcirculation: correlation with tidal volume in a porcine model of lung lavage.

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Journal:  BMC Anesthesiol       Date:  2017-07-11       Impact factor: 2.217

4.  The effects of hyperoxia on microvascular endothelial cell proliferation and production of vaso-active substances.

Authors:  Ilias Attaye; Yvo M Smulders; Monique C de Waard; Heleen M Oudemans-van Straaten; Bob Smit; Michiel H Van Wijhe; Rene J Musters; Pieter Koolwijk; Angelique M E Spoelstra-de Man
Journal:  Intensive Care Med Exp       Date:  2017-04-13

5.  Haem relieves hyperoxia-mediated inhibition of HMEC-1 cell proliferation, migration and angiogenesis by inhibiting BACH1 expression.

Authors:  Lan Jian; Yang Mei; Chen Xing; Yuan Rongdi
Journal:  BMC Ophthalmol       Date:  2021-02-25       Impact factor: 2.209

6.  Tidal changes in PaO2 and their relationship to cyclical lung recruitment/derecruitment in a porcine lung injury model.

Authors:  D C Crockett; J N Cronin; N Bommakanti; R Chen; C E W Hahn; G Hedenstierna; A Larsson; A D Farmery; F Formenti
Journal:  Br J Anaesth       Date:  2018-11-03       Impact factor: 9.166

7.  Oxygen conditions oscillating between hypoxia and hyperoxia induce different effects in the pulmonary endothelium compared to constant oxygen conditions.

Authors:  Peter Wohlrab; Michael Johann Danhofer; Wolfgang Schaubmayr; Akos Tiboldi; Katharina Krenn; Klaus Markstaller; Roman Ullrich; Klaus Ulrich Klein; Verena Tretter
Journal:  Physiol Rep       Date:  2021-02
  7 in total

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