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Published on: June 23, 2015
Autosomal dominant polycystic kidney disease: recent advances in pathogenesis and potential therapies
Toshio Mochizuki1, Ken Tsuchiya, Kosaku Nitta
1Department of Medicine, Kidney Center, Tokyo Women's Medical University, 8-1 Kawada-cho, Shinjuku-ku, Tokyo, Japan. mtoshi@kc.twmu.ac.jp
Insights
Autosomal dominant polycystic kidney disease (ADPKD) is a genetic kidney disorder. New research explores novel therapeutic targets for ADPKD by understanding cyst formation and progression.
Area of Science:
- Nephrology
- Genetics
- Cell Biology
Background:
- Autosomal dominant polycystic kidney disease (ADPKD) is the most common inherited kidney disease, often caused by mutations in PKD1 or PKD2 genes.
- ADPKD is characterized by renal cyst development, leading to kidney function compromise.
- Current ADPKD treatments focus on symptom management, lacking targeted therapies.
Purpose of the Study:
- To review the pathogenesis of renal cyst formation in ADPKD.
- To explore novel therapeutic targets for ADPKD based on recent advances in understanding cystogenesis.
Main Methods:
- Review of scientific literature on ADPKD pathogenesis.
- Analysis of cellular abnormalities contributing to cyst enlargement (fluid secretion, cell proliferation).
- Investigation of the role of primary cilia in ADPKD.
Main Results:
- ADPKD pathogenesis involves renal tubular epithelial cell abnormalities and cyst development.
- Primary cilia are implicated as a site for proteins involved in renal cystogenesis.
- Understanding cyst enlargement mechanisms opens avenues for targeted therapies.
Conclusions:
- Novel therapeutic strategies for ADPKD are emerging from research into cystogenesis pathways.
- Targeting specific cellular processes in ADPKD may offer future treatment options.
Abstract:
Autosomal dominant polycystic kidney disease (ADPKD) is the most common progressive hereditary kidney disease. In 85-90% of cases, ADPKD results from a mutation in the PKD1 gene, and the other 10-15% of the cases are accounted for by mutations in PKD2. PKD1 and PKD2 encode polycystin-1 and polycystin-2. Polycystin-1 may be a receptor that controls the channel activity of polycystin-2 as part of the polycystin signaling complex. ADPKD is characterized by the progressive development of fluid-filled cysts derived from renal tubular epithelial cells that gradually compress the parenchyma and compromise renal function. In recent years, considerable interest has developed in the primary cilia as a site of the proteins that are involved in renal cystogenesis. The pathological processes that facilitate cyst enlargement are hypothesized to result from two specific cellular abnormalities: (1) increased fluid secretion into the cyst lumen and (2) inappropriately increased cell division by the epithelium lining the cyst. Since there is no clinically approved specific or targeted therapy, current practice focuses on blood pressure control and statin therapy to reduce the cardiac mortality associated with chronic kidney disease. However, recent advances in our understanding of the pathways that govern renal cystogenesis have led to a number of intriguing possibilities in regard to therapeutic interventions. The purpose of this article is to review the pathogenesis of renal cyst formation and to review novel targets for the treatment of ADPKD.
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