Oxidant Mechanisms in Renal Injury and Disease

Окислительные механизмы повреждения и заболеваний почек
Brian B. Ratliff, Wasan Abdulmahdi, Rahul D. Pawar, Michael S. Wolin
2016-02-23

NADPH oxidasereactive nitrogen speciesreactive oxygen speciesrenal antioxidant systemsrenal oxidative stress
SIGNIFICANCE: A common link between all forms of acute and chronic kidney injuries, regardless of species, is enhanced generation of reactive oxygen species (ROS) and reactive nitrogen species (RNS) during injury/disease progression. While low levels of ROS and RNS are required for prosurvival signaling, cell proliferation and growth, and vasoreactivity regulation, an imbalance of ROS and RNS generation and elimination leads to inflammation, cell death, tissue damage, and disease/injury progression. RECENT ADVANCES: Many aspects of renal oxidative stress still require investigation, including clarification of the mechanisms which prompt ROS/RNS generation and subsequent renal damage. However, we currently have a basic understanding of the major features of oxidative stress pathology and its link to kidney injury/disease, which this review summarizes. CRITICAL ISSUES: The review summarizes the critical sources of oxidative stress in the kidney during injury/disease, including generation of ROS and RNS from mitochondria, NADPH oxidase, and inducible nitric oxide synthase. The review next summarizes the renal antioxidant systems that protect against oxidative stress, including superoxide dismutase and catalase, the glutathione and thioredoxin systems, and others. Next, we describe how oxidative stress affects kidney function and promotes damage in every nephron segment, including the renal vessels, glomeruli, and tubules. FUTURE DIRECTIONS: Despite the limited success associated with the application of antioxidants for treatment of kidney injury/disease thus far, preventing the generation and accumulation of ROS and RNS provides an ideal target for potential therapeutic treatments. The review discusses the shortcomings of antioxidant treatments previously used and the potential promise of new ones. Antioxid. Redox Signal. 25, 119-146.
1
Enhanced generation of reactive oxygen and nitrogen species is a common feature of acute and chronic kidney injuries across species.
2
Low ROS and RNS levels support survival signaling, proliferation, growth, and vasoreactivity, whereas their imbalance causes inflammation, cell death, tissue damage, and disease progression.
3
Major renal oxidative-stress sources include mitochondria, NADPH oxidase, and inducible nitric oxide synthase.
4
Oxidative stress impairs function and promotes injury throughout the nephron, affecting renal vessels, glomeruli, and tubules; preventing ROS/RNS generation may offer better therapeutic potential than conventional antioxidants.
5
Renal antioxidant defenses include superoxide dismutase, catalase, glutathione, thioredoxin, and related systems that limit oxidative damage.

The kidney during acute and chronic injury and disease

Reactive oxygen and nitrogen species generation, antioxidant defenses, and oxidative-stress mechanisms driving renal dysfunction, tissue damage, and disease progression

Publication Details
Publication Date
2016-02-23
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Brian B. Ratliff
Wasan Abdulmahdi
Rahul D. Pawar
Michael S. Wolin
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%