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Designing drugs that combat kidney damage
Adrián M Ramos1, Cristian González-Guerrero, Ana Sanz
1Instituto de Investigación Sanitaria-Fundación Jiménez Díaz (IIS-FJD), Laboratory of Renal and Vascular Pathology and Diabetes , Av. Reyes Católicos 2, 28040, Madrid , Spain amramos@fjd.es.
Insights
Developing new drugs for kidney disease is crucial due to high mortality rates. Key targets include inflammation, cell death, and fibrosis, with nanomedicines showing promise for targeted delivery.
Area of Science:
- Nephrology
- Pharmacology
- Drug Development
Background:
- Kidney disease is a leading global non-communicable disease, with high mortality for both chronic kidney disease (CKD) and acute kidney injury (AKI).
- Current therapeutic options are limited, primarily focusing on renal function replacement, highlighting an urgent need for novel drug development.
Purpose of the Study:
- To review the challenges and prospects for developing new drugs to treat kidney diseases.
- To identify key therapeutic targets and emerging technologies in nephroprotection.
Main Methods:
- Discussion of hurdles and opportunities in kidney disease drug development.
- Analysis of clinical trial experiences with existing and novel therapeutic agents.
Main Results:
- Inflammation, cell death, and fibrosis are identified as critical targets for combating kidney damage.
- Targeted drug delivery to kidney cells shows promise but is currently limited to preclinical stages.
- Nanomedicines offer potential for improved drug delivery in kidney disease treatment.
Conclusions:
- Repurposed drugs are common in current kidney disease clinical trials.
- CCX140 (a chemokine receptor inhibitor) shows promise for CKD.
- QPI-1002 (a p53 inhibitor) is a potential therapeutic for AKI.
Introduction:
Kidney disease remains one of the last worldwide frontiers in the field of non-communicable human disease. From 1990 to 2013, chronic kidney disease (CKD) was the top non-communicable cause of death with a greatest increase in global years of life lost while mortality of acute kidney injury (AKI) still hovers around 50%. This reflects the paucity (for CKD) or lack of (for AKI) therapeutic approaches beyond replacing renal function. Understanding what the barriers are and what potential pathways may facilitate the design of new drugs to combat kidney disease is a key public health priority.
Areas Covered:
The authors discuss the hurdles and opportunities for future drug development for kidney disease in light of experience accumulated with drugs that made it to clinical trials.
Expert Opinion:
Inflammation, cell death and fibrosis are key therapeutic targets to combat kidney damage. While the specific targeting of drugs to kidney cells would be desirable, the technology is only working at the preclinical stage and with mixed success. Nanomedicines hold promise in this respect. Most drugs undergoing clinical trials for kidney disease have been repurposed from other indications. Currently, the chemokine receptor inhibitor CCX140 holds promise for CKD and the p53 inhibitor QPI-1002 for AKI.
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