The advent of micro-physiological systems (MPS) in biomedical research
has enabled the introduction of more complex and relevant physiological
into in vitro models. The recreation of complex morphological features
in three-dimensional environments can recapitulate otherwise absent
dynamic interactions in conventional models. In this study we developed
an advanced in vitro Renal Cell Carcinoma (RCC) that mimics the
interplay between healthy and malignant renal tissue. Based on the
TissUse Humimic platform our model combines healthy renal proximal
tubule epithelial cells (RPTEC) and RCC. Co-culturing reconstructed
RPTEC tubules with RCC spheroids in a closed micro-perfused circuit
resulted in significant phenotypical changes to the tubules. Expression
of immune factors revealed that interleukin-8 (IL-8) and tumor necrosis
factor-alfa (TNF-α) were upregulated in the non-malignant cells while
neutrophil gelatinase-associated lipocalin (NGAL) was downregulated in
both RCC and RPTEC. Metabolic analysis showed that RCC prompted a shift
in the energy production of RPTEC tubules, inducing glycolysis, in a
metabolic adaptation that likely supports RCC growth and immunogenicity.
In contrast, RCC maintained stable metabolic activity, emphasizing
their resilience to external factors. RNA-seq and biological process
analysis of primary RTPTEC tubules demonstrated that the 3D tubular
architecture and MPS conditions reverted cells to a predominant
oxidative phosphorylate state, a departure from the glycolytic
metabolism observed in 2D culture. This dynamic RCC co-culture model,
approximates the physiology of healthy renal tubules to that of RCC,
providing new insights into tumor-host interactions. Our approach can
show that an RCC-MPS can expand the complexity and scope of
pathophysiology and biomarker studies in kidney cancer research.
| Titel | Integrating tumor and healthy epithelium in a micro-physiology multi-compartment approach to study renal cell carcinoma pathophysiology |
|---|---|
| Medien | Scientific Reports |
| Heft | 1 |
| Band | 2024 / 14 |
| Verfasser | Maryna Somova, Prof. Dr. Stefan Simm, Adventina Padmyastuti, Jens Ehrhardt, Janosch Schoon, Ingmar Wolff, Martin Burchardt, Cindy Roennau, Pedro Caetano Pinto |
| Seiten | 9357 |
| Veröffentlichungsdatum | 23.04.2024 |
| Zitation | Somova, Maryna; Simm, Stefan; Padmyastuti, Adventina; Ehrhardt, Jens; Schoon, Janosch; Wolff, Ingmar; Burchardt, Martin; Roennau, Cindy; Pinto, Pedro Caetano (2024): Integrating tumor and healthy epithelium in a micro-physiology multi-compartment approach to study renal cell carcinoma pathophysiology . Scientific Reports 2024 / 14 (1), 9357. DOI: 10.1038/s41598-024-60164-w |