Oxidative Stress and Hypertension

Окислительный стресс и гипертензия
Kathy K. Griendling, Rhian M. Touyz, Augusto C. Montezano, Lívia L. Camargo, Francisco J. Rios, Rhéure Alves-Lopes
2021-04-01

NADPH oxidasesoxidative stressreactive oxygen speciesredox proteomicsuncoupled endothelial nitric oxide synthase
A link between oxidative stress and hypertension has been firmly established in multiple animal models of hypertension but remains elusive in humans. While initial studies focused on inactivation of nitric oxide by superoxide, our understanding of relevant reactive oxygen species (superoxide, hydrogen peroxide, and peroxynitrite) and how they modify complex signaling pathways to promote hypertension has expanded significantly. In this review, we summarize recent advances in delineating the primary and secondary sources of reactive oxygen species (nicotinamide adenine dinucleotide phosphate oxidases, uncoupled endothelial nitric oxide synthase, endoplasmic reticulum, and mitochondria), the posttranslational oxidative modifications they induce on protein targets important for redox signaling, their interplay with endogenous antioxidant systems, and the role of inflammasome activation and endoplasmic reticular stress in the development of hypertension. We highlight how oxidative stress in different organ systems contributes to hypertension, describe new animal models that have clarified the importance of specific proteins, and discuss clinical studies that shed light on how these processes and pathways are altered in human hypertension. Finally, we focus on the promise of redox proteomics and systems biology to help us fully understand the relationship between ROS and hypertension and their potential for designing and evaluating novel antihypertensive therapies.
1
Oxidative posttranslational modifications of proteins, interplay with endogenous antioxidants, inflammasome activation, and endoplasmic reticular stress all contribute to hypertension development.
2
Oxidative stress is firmly linked to hypertension in multiple animal models, but this connection remains elusive in humans.
3
Primary and secondary ROS sources implicated include NADPH oxidases, uncoupled endothelial nitric oxide synthase, endoplasmic reticulum, and mitochondria.
4
Redox proteomics and systems biology hold promise for clarifying ROS–hypertension relationships and guiding novel antihypertensive therapy design and evaluation.
5
Relevant reactive oxygen species (superoxide, hydrogen peroxide, peroxynitrite) modify complex signaling pathways to promote hypertension beyond nitric oxide inactivation.

Reactive oxygen species–mediated oxidative stress in cardiovascular and related organ systems contributing to hypertension

How reactive oxygen species sources, ROS-induced posttranslational protein modifications, antioxidant interactions, inflammasome and endoplasmic reticulum stress mechanisms, and organ-specific redox signaling drive the development and progression of hypertension and inform potential redox-targeted therapies

Publication Details
Publication Date
2021-04-01
Journal
Publisher
ISSN
Cited by
576
Access Type
Author Information
Authors
Kathy K. Griendling
Rhian M. Touyz
Augusto C. Montezano
Lívia L. Camargo
Francisco J. Rios
Rhéure Alves-Lopes
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%