Mitochondrial Oxidative Metabolism: An Emerging Therapeutic Target to Improve CKD Outcomes
Kranti A Mapuskar1, Gabriela Vasquez-Martinez2, Gabriel Mayoral-Andrade2
1Free Radical and Radiation Biology Program, Department of Radiation Oncology, University of Iowa Hospitals and Clinics, Iowa City, IA 52242, USA.
Abstract:
Chronic kidney disease (CKD) predisposes one toward end-stage renal disease (ESRD) and its associated morbidity and mortality. Significant metabolic perturbations in conjunction with alterations in redox status during CKD may induce increased production of reactive oxygen species (ROS), including superoxide (O2●-) and hydrogen peroxide (H2O2). Increased O2●- and H2O2 may contribute to the overall progression of renal injury as well as catalyze the onset of comorbidities. In this review, we discuss the role of mitochondrial oxidative metabolism in the pathology of CKD and the recent developments in treating CKD progression specifically targeted to the mitochondria. Recently published results from a Phase 2b clinical trial by our group as well as recently released data from a ROMAN: Phase 3 trial (NCT03689712) suggest avasopasem manganese (AVA) may protect kidneys from cisplatin-induced CKD. Several antioxidants are under investigation to protect normal tissues from cancer-therapy-associated injury. Although many of these antioxidants demonstrate efficacy in pre-clinical models, clinically relevant novel compounds that reduce the severity of AKI and delay the progression to CKD are needed to reduce the burden of kidney disease. In this review, we focus on the various metabolic pathways in the kidney, discuss the role of mitochondrial metabolism in kidney disease, and the general involvement of mitochondrial oxidative metabolism in CKD progression. Furthermore, we present up-to-date literature on utilizing targets of mitochondrial metabolism to delay the pathology of CKD in pre-clinical and clinical models. Finally, we discuss the current clinical trials that target the mitochondria that could potentially be instrumental in advancing the clinical exploration and prevention of CKD.
Insights
Chronic kidney disease (CKD) involves metabolic changes and oxidative stress. Mitochondrial metabolism is key in CKD progression, with avasopasem manganese (AVA) showing promise in clinical trials for kidney protection.
Area of Science:
- Nephrology
- Mitochondrial Biology
- Oxidative Stress
Background:
- Chronic kidney disease (CKD) leads to end-stage renal disease (ESRD), increasing morbidity and mortality.
- Metabolic disturbances and altered redox status in CKD elevate reactive oxygen species (ROS), contributing to kidney injury and comorbidities.
Purpose of the Study:
- To review the role of mitochondrial oxidative metabolism in CKD pathology.
- To discuss recent developments in mitochondria-targeted CKD treatments.
- To highlight avasopasem manganese (AVA) as a potential therapeutic agent.
Main Methods:
- Literature review focusing on kidney metabolic pathways and mitochondrial involvement in CKD.
- Analysis of pre-clinical and clinical data on mitochondria-targeted therapies.
- Discussion of ongoing clinical trials.
Main Results:
- Mitochondrial oxidative metabolism significantly contributes to CKD progression.
- Avasopasem manganese (AVA) demonstrated protective effects in cisplatin-induced CKD models (Phase 2b and Phase 3 ROMAN trial data).
- Several antioxidants show promise, but clinically effective novel compounds are needed.
Conclusions:
- Targeting mitochondrial metabolism offers a promising strategy for delaying CKD progression.
- AVA represents a potential therapeutic candidate for preventing or mitigating CKD.
- Further clinical trials are crucial for advancing CKD prevention and treatment.
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