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Just Look! Intravital Microscopy as the Best Means to Study Kidney Cell Death Dynamics
Ina Maria Schießl1, Anna Hammer1, Anne Riquier-Brison2
1Institute of Physiology, University of Regensburg, Regensburg, Germany.
Abstract:
Kidney cell death plays a key role in the progression of life-threatening renal diseases, such as acute kidney injury and chronic kidney disease. Injured and dying epithelial and endothelial cells take part in complex communication with the innate immune system, which drives the progression of cell death and the decrease in renal function. To improve our understanding of kidney cell death dynamics and its impact on renal disease, a study approach is needed that facilitates the visualization of renal function and morphology in real time. Intravital multiphoton microscopy of the kidney has been used for more than a decade and made substantial contributions to our understanding of kidney physiology and pathophysiology. It is a unique tool that relates renal structure and function in a time- and spatial-dependent manner. Basic renal function, such as microvascular blood flow regulation and glomerular filtration, can be determined in real time and homeostatic alterations, which are linked inevitably to cell death and can be depicted down to the subcellular level. This review provides an overview of the available techniques to study kidney dysfunction and inflammation in terms of cell death in vivo, and addresses how this novel approach can be used to improve our understanding of cell death dynamics in renal disease.
Insights
Kidney cell death drives renal disease progression. Intravital multiphoton microscopy visualizes kidney function and cell death in real-time, improving understanding of kidney diseases.
Area of Science:
- Nephrology
- Cell Biology
- Immunology
Background:
- Kidney cell death is central to acute kidney injury and chronic kidney disease.
- Interactions between dying kidney cells and the immune system worsen renal function.
- Real-time visualization is crucial for understanding kidney cell death dynamics.
Purpose of the Study:
- To review techniques for studying kidney cell death in vivo.
- To explore how intravital multiphoton microscopy aids in understanding renal disease.
Main Methods:
- Intravital multiphoton microscopy of the kidney.
- Real-time assessment of renal function and morphology.
- Subcellular visualization of homeostatic alterations and cell death.
Main Results:
- Intravital multiphoton microscopy offers time- and spatial-dependent insights into kidney structure and function.
- Basic renal functions like blood flow and filtration can be monitored in real time.
- The technique visualizes cellular and subcellular changes linked to kidney dysfunction.
Conclusions:
- Intravital multiphoton microscopy is a powerful tool for studying kidney cell death in vivo.
- This approach enhances understanding of cell death dynamics in renal diseases.
- Improved insights can guide therapeutic strategies for kidney disorders.

