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Renal aging and associated diseases: Common mechanisms and therapeutic approaches
Jabir Aliyu Muhammad1, Nadya Marcelina Julianto1, Tania Setiawan2
1Department of Integrated Biomedical Science, Soonchunhyang University, Cheonan-si, Republic of Korea; Soonchunhyang Institute of Medi-bio Science (SIMS), Soonchunhyang University, Cheonan-si, Republic of Korea.
Abstract:
The kidneys are highly metabolically active organs that undergo a progressive, intrinsic decline in renal function with aging, a process that can be further exacerbated by chronic exposure to oxidative stress, inflammation, hypertension, and various toxins. Studies have shown that the prevalence of acute kidney injury and chronic kidney disease is significantly higher in the elderly. This suggests that the age-related reduction in baseline renal function, rather than advanced age itself, increases the susceptibility to and severity of these disorders after nephrotoxic insults. We comprehensively discuss the emerging recognition of shared molecular and cellular mechanisms underpinning fibrosis and cellular senescence, 2 hallmark features of functional decline seen in renal aging, acute kidney injury, and chronic kidney disease, as well as proposing the interconnection between these events. Furthermore, we highlight therapeutic strategies aimed at mitigating kidney damage and counteracting the effects of aging. These include lifestyle modifications, small-molecule inhibitors, and senotherapeutic approaches such as senolytics and senomorphics. Overall, this work aims to establish a foundation for understanding the pathogenesis of renal aging and related diseases, while also identifying promising avenues for effective therapeutic intervention. SIGNIFICANCE STATEMENT: Cellular senescence and fibrosis intersect in renal aging, acute kidney injury, and chronic kidney disease, highlighting shared pathways that may be targeted to slow disease progression and providing insights into the underlying mechanisms, current interventions, and future strategies for age-related kidney disorders.
Insights
Kidney aging involves cellular senescence and fibrosis, increasing susceptibility to kidney diseases. Targeting these shared pathways offers new therapeutic strategies for age-related kidney disorders.
Area of Science:
- Nephrology
- Gerontology
- Cellular Biology
Background:
- Kidneys exhibit age-related functional decline, exacerbated by oxidative stress, inflammation, and hypertension.
- Elderly individuals have higher rates of acute kidney injury (AKI) and chronic kidney disease (CKD), suggesting reduced baseline function increases susceptibility.
- Cellular senescence and fibrosis are key features of declining renal function in aging, AKI, and CKD.
Purpose of the Study:
- To discuss shared molecular and cellular mechanisms of fibrosis and cellular senescence in renal aging, AKI, and CKD.
- To propose the interconnection between these aging-related renal events.
- To highlight therapeutic strategies for mitigating kidney damage and counteracting aging effects.
Main Methods:
- Comprehensive review of emerging research on renal aging, fibrosis, and cellular senescence.
- Discussion of molecular and cellular pathways involved in kidney disease progression.
- Identification and categorization of current and future therapeutic interventions.
Main Results:
- Cellular senescence and fibrosis are identified as interconnected hallmarks of renal aging and kidney diseases.
- Shared pathways underlying these processes present potential therapeutic targets.
- Therapeutic strategies include lifestyle modifications, small-molecule inhibitors, senolytics, and senomorphics.
Conclusions:
- Cellular senescence and fibrosis are critical, interconnected processes in age-related kidney decline and disease.
- Targeting these shared pathways offers promising therapeutic avenues for renal aging and related disorders.
- Further research into these mechanisms can lead to effective interventions for kidney disease prevention and treatment.
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