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Recent Advances in the Management of Diabetic Kidney Disease: Slowing Progression
1Department of Nephrology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, China.
Insights
Diabetic kidney disease (DKD) management requires novel strategies. Combination therapies and targeting inflammatory and fibrotic pathways show promise for slowing DKD progression and improving patient outcomes.
Area of Science:
- Nephrology
- Endocrinology
- Pharmacology
Background:
- Diabetic kidney disease (DKD) is a leading cause of chronic kidney disease (CKD) and increases cardiovascular risk.
- DKD pathogenesis involves hemodynamic, inflammatory, and metabolic factors converging on fibrosis.
- Genetic and lifestyle factors contribute significantly to DKD development and progression.
Purpose of the Study:
- To review the mechanisms and current therapies for DKD.
- To explore novel therapeutic targets and combination strategies for DKD.
- To identify promising future therapeutic avenues for DKD.
Main Methods:
- Literature review of DKD pathogenesis, current treatments, and emerging therapies.
- Analysis of inflammatory and fibrotic factors as biomarkers and therapeutic targets.
- Exploration of combination therapy approaches based on existing treatment paradigms.
Main Results:
- Current therapies like ARBs/ACEI, SGLT2 inhibitors, and NS-MRAs are insufficient to halt DKD progression.
- Agents such as GLP-1RAs, pentoxifylline, selonsertib, and baricitinib show potential due to anti-inflammatory and antifibrotic properties.
- Combination therapy and targeting pathways involving inflammation, fibrosis, and specific biomarkers are crucial for effective DKD management.
Conclusions:
- Multidisciplinary treatment combining lifestyle modifications and pharmacotherapy is essential for decelerating DKD progression.
- Novel therapeutic targets including HIF inhibitors, AGE inhibitors, and epigenetic modifications offer future treatment strategies.
- Further research into DKD mechanisms is urgent to optimize management and develop effective combination therapies.
Abstract:
Diabetic kidney disease (DKD) is a major cause of chronic kidney disease (CKD), and it heightens the risk of cardiovascular incidents. The pathogenesis of DKD is thought to involve hemodynamic, inflammatory, and metabolic factors that converge on the fibrotic pathway. Genetic predisposition and unhealthy lifestyle practices both play a significant role in the development and progression of DKD. In spite of the recent emergence of angiotensin receptors blockers (ARBs)/angiotensin converting enzyme inhibitor (ACEI), sodium-glucose cotransporter 2 (SGLT2) inhibitors, and nonsteroidal mineralocorticoid receptors antagonists (NS-MRAs), current therapies still fail to effectively arrest the progression of DKD. Glucagon-like peptide 1 receptor agonists (GLP-1RAs), a promising class of agents, possess the potential to act as renal protectors, effectively slowing the progression of DKD. Other agents, including pentoxifylline (PTF), selonsertib, and baricitinib hold great promise as potential therapies for DKD due to their anti-inflammatory and antifibrotic properties. Multidisciplinary treatment, encompassing lifestyle modifications and drug therapy, can effectively decelerate the progression of DKD. Based on the treatment of heart failure, it is recommended to use multiple drugs in combination rather than a single-use drug for the treatment of DKD. Unearthing the mechanisms underlying DKD is urgent to optimize the management of DKD. Inflammatory and fibrotic factors (including IL-1, MCP-1, MMP-9, CTGF, TNF-a and TGF-β1), along with lncRNAs, not only serve as diagnostic biomarkers, but also hold promise as therapeutic targets. In this review, we delve into the potential mechanisms and the current therapies of DKD. We also explore the additional value of combing these therapies to develop novel treatment strategies. Drawing from the current understanding of DKD pathogenesis, we propose HIF inhibitors, AGE inhibitors, and epigenetic modifications as promising therapeutic targets for the future.
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