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Updated: Oct 1, 2025

Epithelial Cell Repopulation and Preparation of Rodent Extracellular Matrix Scaffolds for Renal Tissue Development
Published on: August 10, 2015
Ways and Means of Cellular Reconditioning for Kidney Regeneration
Shinya Ishiko1, Michael S Goligorsky2
1Department of Medicine, New York Medical College, Valhalla, New York, USA, sishiko@nymc.edu.
Background:
Mitochondrial, lysosomal, and peroxisomal dysfunction; defective autophagy; mitophagy; and pexophagy, as well as the loss of glycocalyx integrity are known contributors to initiation and progression of diverse kidney diseases. Those cellular organelles are tightly interactive in health, and during development of a disease, damage in one may propagate to others. By extension, it follows that restoring an individual defect may culminate in a broader restorative spectrum and improvement of cell and organ functions.
Summary:
A novel strategy of reconditioning cellular organellar dysfunction, which we define as refurbishment of pathogenically pivotal intra- or extracellular elements, damaged in the course of disease and impeding restoration, is briefly outlined in this overview. Individual therapeutic reconditioning approaches targeting selected organelles are cataloged. We anticipate that the proposed reconditioning strategy in the future may enrich the arsenal of regenerative medicine and nephrology.
Key Message:
The arsenal of regenerative medicine and nephrology consisting of organ transplantation, use of stem cells, cell-free approaches, cell reprogramming strategies, and organ engineering has been enriched by the reconditioning strategy. The latter is based on the recognition of two facts that (a) impairment of diverse cellular organelles contributes to pathogenesis of kidney disease and (b) individual organelles are functionally interactively coupled, which explains the "domino effect" leading to their dysfunction. Reconditioning takes advantage of these facts and, while initially directed to restore the function of individual cellular organelles, culminates in the propagation of a therapeutic intervention to account for improved cell and organ function. Examples of such interventions are briefly summarized along the presentation of defective cellular organelles contributing to pathogenesis of kidney disease.
Insights
Restoring cellular organelle dysfunction, such as in mitochondria and lysosomes, can improve kidney disease. This reconditioning strategy leverages organelle interactions for broader therapeutic benefits in nephrology.
Area of Science:
- Nephrology
- Cell Biology
- Regenerative Medicine
Background:
- Kidney diseases involve mitochondrial, lysosomal, and peroxisomal dysfunction, impaired autophagy, and loss of glycocalyx integrity.
- Cellular organelles are interconnected, meaning damage to one can trigger dysfunction in others.
- These interconnected defects contribute to the initiation and progression of various kidney diseases.
Purpose of the Study:
- To introduce a novel strategy termed 'reconditioning' for addressing cellular organelle dysfunction in kidney disease.
- To catalog individual therapeutic approaches for targeting specific organelles within this reconditioning framework.
- To propose reconditioning as a future enrichment to regenerative medicine and nephrology.
Main Methods:
- The strategy involves refurbishing damaged cellular elements crucial to disease pathogenesis.
- Therapeutic interventions are directed at restoring the function of individual, impaired organelles.
- The interconnectedness of organelles is leveraged to achieve broader functional improvements.
Main Results:
- The reconditioning strategy capitalizes on the functional coupling of cellular organelles.
- Restoring individual organelle function can propagate therapeutic effects, leading to improved cell and organ function.
- This approach offers a new avenue for enhancing regenerative medicine and nephrology.
Conclusions:
- Cellular organelle dysfunction is a key factor in kidney disease pathogenesis.
- The 'domino effect' of organelle dysfunction can be therapeutically targeted.
- Organelle reconditioning holds promise for improving kidney function and advancing regenerative therapies.
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