4.7 Article

Oxidative and Inflammatory Imbalance in Placenta and Kidney of sFlt1-Induced Early-Onset Preeclampsia Rat Model

Journal

ANTIOXIDANTS
Volume 11, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/antiox11081608

Keywords

inflammation; kidney; NADPH oxidase; nitric oxide; oxidative stress; placenta; preeclampsia; sFlt1

Funding

  1. Consejeria de Salud, Junta de Andalucia [PI-0456-2018]
  2. Consejeria de Transformacion Economica, Industria, Conocimiento y Universidades, Junta de Andalucia [2020/275, 2021/188, CTS-584]
  3. Ministerio de Universidades [FPU17/03465]
  4. Ministerio de Ciencia e Innovacion, Ayudas para la Promocion de Empleo Joven e Implantacion de la Garantia Juvenil en I+D+ [i 2017-2020 (PEJ2018-004474-A), PEJ5-2020-662]
  5. Fondo Nacional de Desarrollo Cientifico y Tecnologico (FONDECYT), Chile [1190316]
  6. International Sabbaticals (University Medical Centre Groningen, University of Groningen, The Netherlands) from the Vice rectorate of Academic Affairs, Academic Development Office of the Pontificia Universidad Catolica de Chile
  7. Thematic Project-Diamater, Sao Paulo Research Foundation (FAPESP), Brazil [16/01743-5]
  8. Fundacao de Amparo a Pesquisa do Estado de Sao Paulo (FAPESP) [16/01743-5] Funding Source: FAPESP

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This study investigates the role of the NADPH oxidase system in a rodent model of preeclampsia. The results suggest that NADPH oxidase mediates oxidative stress and inflammation in the placenta and kidney, providing important insights into the pathogenesis and potential treatment of preeclampsia.
Preeclampsia (PE) is a pregnancy-specific disorder characterized by the new onset of hypertension plus proteinuria and/or end-organ dysfunction. Here, we investigate the role of the nicotinamide adenine dinucleotide phosphate (NADPH) oxidase system as a major component of reactive oxygen species generation, in a rodent model of early-onset preeclampsia induced by excess sFlt1 (soluble fms-like tyrosine kinase 1). Placenta and kidney samples were obtained from normal pregnant and PE rats to measure the sFlt1/PlGF (placental growth factor) ratio in addition to oxidative stress-related parameters, including the activities and expressions of NADPH oxidase isoforms (NOX1, NOX2, and NOX4), components of nitric oxide (NO) metabolism, and antioxidant enzymes. Peroxisome proliferator-activated receptors (PPAR alpha, PPAR gamma) and cytokines IL1 beta, IL3, IL6, IL10, and IL18 were also measured to evaluate the inflammation status in our experimental setting. Excessive O-2(?-) production was found in rats that were treated with sFlt1; interestingly, this alteration appears to be mediated mainly by NOX2 in the placenta and by NOX4 in the kidney. Altered NO metabolism and antioxidant defense systems, together with mitochondrial dysfunction, were observed in this model of PE. Preeclamptic animals also exhibited overexpression of proinflammatory biomarkers as well as increased collagen deposition. Our results highlight the role of NADPH oxidase in mediating oxidative stress and possibly inflammatory processes in the placenta and kidney of an sFlt1-based model of early-onset preeclampsia.

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