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Implementing Patch Clamp and Live Fluorescence Microscopy to Monitor Functional Properties of Freshly Isolated PKD Epithelium
Published on: September 1, 2015
The cellular pathways and potential therapeutics of Polycystic Kidney Disease
Taylor Richards1, Kavindiya Modarage1, Soniya A Malik1
1Department of Biomedical Science and Physiology, Faculty of Science and Engineering, University of Wolverhampton, Wulfruna Street, Wolverhampton WV1 1LY, U.K.
Abstract:
Polycystic Kidney Disease (PKD) refers to a group of disorders, driven by the formation of cysts in renal tubular cells and is currently one of the leading causes of end-stage renal disease. The range of symptoms observed in PKD is due to mutations in cilia-localising genes, resulting in changes in cellular signalling. As such, compounds that are currently in preclinical and clinical trials target some of these signalling pathways that are dysregulated in PKD. In this review, we highlight these pathways including cAMP, EGF and AMPK signalling and drugs that target them and may show promise in lessening the disease burden of PKD patients. At present, tolvaptan is the only approved therapy for ADPKD, however, it carries several adverse side effects whilst comparatively, no pharmacological drug is approved for ARPKD treatment. Aside from this, drugs that have been the subject of multiple clinical trials such as metformin, which targets AMPK signalling and somatostatins, which target cAMP signalling have shown great promise in reducing cyst formation and cellular proliferation. This review also discusses other potential and novel targets that can be used for future interventions, such as β-catenin and TAZ, where research has shown that a reduction in the overexpression of these signalling components results in amelioration of disease phenotype. Thus, it becomes apparent that well-designed preclinical investigations and future clinical trials into these pathways and other potential signalling targets are crucial in bettering disease prognosis for PKD patients and could lead to personalised therapy approaches.
Insights
Polycystic Kidney Disease (PKD) treatments are being developed by targeting cellular signaling pathways. Promising drugs like metformin and somatostatins show potential in reducing cyst formation and improving prognosis for PKD patients.
Area of Science:
- Nephrology
- Genetics
- Cell Biology
Background:
- Polycystic Kidney Disease (PKD) is a genetic disorder causing cyst formation in kidney tubules, leading to end-stage renal disease.
- Mutations in cilia-localizing genes disrupt cellular signaling pathways, contributing to PKD's diverse symptoms.
- Current treatments for PKD are limited, with only tolvaptan approved for ADPKD, and significant side effects.
Purpose of the Study:
- To review signaling pathways dysregulated in PKD, including cAMP, EGF, and AMPK.
- To highlight current and potential pharmacological interventions targeting these pathways.
- To discuss novel targets like β-catenin and TAZ for future PKD therapies.
Main Methods:
- Review of preclinical and clinical trial data on PKD signaling pathways.
- Analysis of drug efficacy in targeting cAMP, EGF, and AMPK signaling.
- Exploration of emerging therapeutic targets and their impact on disease phenotype.
Main Results:
- Tolvaptan is the sole approved therapy for ADPKD but has adverse effects; no drug is approved for ARPKD.
- Metformin (AMPK signaling) and somatostatins (cAMP signaling) show promise in reducing cystogenesis and proliferation.
- Targeting β-catenin and TAZ may ameliorate PKD by reducing overexpression of these signaling components.
Conclusions:
- Targeting dysregulated signaling pathways offers a promising therapeutic strategy for PKD.
- Further preclinical and clinical investigations are crucial for developing effective PKD treatments.
- Personalized therapy approaches based on specific signaling pathway modulation are a future direction for PKD management.
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