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Unraveling the Receptor-Ligand Interactions between Bladder Cancer Cells and the Endothelium Using AFM
Vinoth Sundar Rajan1, Valérie M Laurent2, Claude Verdier2
1INSERM U1209, CNRS UMR5309, IAB, Grenoble, France; University Grenoble Alpes, IAB, Grenoble, France.
Abstract:
Adhesion of cancer cells to endothelial cells is a key step in cancer metastasis; therefore, identifying the key molecules involved during this process promises to aid in efforts to block the metastatic cascade. We have previously shown that intercellular adhesion molecule-1 (ICAM-1) expressed by endothelial cells is involved in the interactions of bladder cancer cells (BCs) with the endothelium. However, the ICAM-1 ligands have never been investigated. In this study, we combined adhesion assays and atomic force microscopy (AFM) to identify the ligands involved and to quantify the forces relevant in such interactions. We report the expression of MUC1 and CD43 on BCs, and demonstrate that these ligands interact with ICAM-1 to mediate cancer cell-endothelial cell adhesion in the case of the more invasive BCs. This was achieved with the use of adhesion assays, which showed a strong decrease in the attachment of BCs to endothelial cells when MUC1 and CD43 were blocked by antibodies. In addition, AFM measurements showed a similar decrease, by up to 70%, in the number of rupture events that occurred when MUC1 and CD43 were blocked. When we applied a Gaussian mixture model to the AFM data, we observed a distinct force range for receptor-ligand bonds, which allowed us to precisely identify the interactions of ICAM-1 with MUC1 or CD43. Furthermore, a detailed analysis of the rupture events suggested that CD43 is strongly connected to the cytoskeleton and that its interaction with ICAM-1 mainly corresponds to force ramps followed by sudden jumps. In contrast, MUC1 seems to be weakly connected to the cytoskeleton, as its interactions with ICAM-1 are mainly associated with the formation of tethers. This analysis is quite promising and may also be applied to other types of cancer cells.
Insights
Researchers identified MUC1 and CD43 on bladder cancer cells as key ligands interacting with ICAM-1 on endothelial cells. Blocking these molecules significantly reduced cancer cell adhesion, offering new therapeutic targets for metastasis.
Area of Science:
- Oncology
- Cell Biology
- Biophysics
Background:
- Cancer metastasis involves cancer cells adhering to endothelial cells.
- Intercellular adhesion molecule-1 (ICAM-1) on endothelial cells mediates bladder cancer cell (BC) interactions.
- Ligands for ICAM-1 in this process were previously uninvestigated.
Purpose of the Study:
- To identify ICAM-1 ligands on BCs involved in endothelial adhesion.
- To quantify the forces governing these cancer cell-endothelial cell interactions.
- To elucidate the distinct roles of identified ligands in metastasis.
Main Methods:
- Combined adhesion assays and atomic force microscopy (AFM).
- Utilized antibodies to block MUC1 and CD43 expression on BCs.
- Applied Gaussian mixture model to AFM data for force analysis.
Main Results:
- MUC1 and CD43 were identified as ligands on BCs interacting with ICAM-1.
- Blocking MUC1 and CD43 decreased BC-endothelial cell adhesion by up to 70%.
- AFM revealed distinct force signatures for ICAM-1 interactions with MUC1 (tether formation) and CD43 (cytoskeletal linkage).
Conclusions:
- MUC1 and CD43 mediate ICAM-1 dependent adhesion of invasive bladder cancer cells to endothelium.
- CD43 exhibits strong cytoskeletal linkage, while MUC1 shows weaker linkage during ICAM-1 interactions.
- This approach can be applied to study other cancer cell types and their metastatic potential.