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Liboni, C.

Publications and source records attributed to Liboni, C..

3 recordsLinked to original sources

Selective targeting of RalA with intrabodies impairs Triple Negative Breast Cancer metastasis

This study successfully developed and validated isoform-specific intrabodies targeting the highly homologous Ral oncoproteins, key effectors in cancer progression. Phage display was used to isolate single-chain variable fragment (scFv) clones that recognize specifically RalA (C1-A, G5-A), RalB (F6-B), or both paralogs (A12-AB). Using lentiviral transduction, these intrabodies were stably expressed as GFP fusions in murine breast cancer 4T1 cells. The anti-RalA clones C1-A and A12-AB demonstrated clear colocalization with RalA, confirming their binding activity inside the cell. We further confirmed their activity in cells by analyzing Ral-dependent pathways. All intrabodies targeting RalA (C1-A, G5-A, A12-AB) but not the one specific to RalB inhibited mitochondrial fission, a known RalA function. All clones, except the pan-Ral one, altered the endo-lysosome pathway by decreasing lysosome number. Furthermore, the RalA-specific C1-A clone reduced lysosomes size, and uniquely and strongly reduced extracellular vesicle secretion, highlighting its distinct inhibitory potential. In an orthotopic Triple-Negative Breast Cancer (TNBC) mouse model, The C1-A RalA specific clone significantly but weakly reduced primary tumor growth, but exerted a powerful anti-metastatic effect, dramatically reducing lung metastases, with a complete abolition of metastases observed in 2/5 mice. In summary, these potent, isoform-specific Ral intrabodies act as effective intracellular inhibitors, successfully modulating RalA-specific functions in cells and offering a promising therapeutic strategy for significantly suppressing tumor growth and metastasis in vivo.

cancer biology↗

Tumoral CD24 tunes platelets binding and pro-metastatic functions

One of the earliest steps of breast cancer metastasis occurs when tumor cells (TCs) disseminate through the bloodstream. There, they interact with several blood components. Among them, platelet favor TC survival and metastatic spread. While the binding of platelet to TC is highly variable, its molecular controls and downstream consequences remain unidentified. Here, we first document that high CD24 expression correlates with increased platelet binding and poorer survival in breast cancer. We further demonstrate that CD24-mediated platelet binding regulates TC cluster formation and resistance to anoikis in vitro. Depleting CD24 expression significantly reduces TC metastatic potential by rewiring the metastatic tumor microenvironment (mTME), affecting immune compartments and secreted factors. Overall, our work identifies CD24 as a molecular cue controlling TC-platelet interaction, dictating their metastatic potential. As such, it represents a druggable target to counteract platelet-TC collaboration in metastasis.

cancer biology↗

Depletion of all platelet integrins impacts hemostasis, thrombosis and tumor metastasis

Platelet integrins, in addition to other platelet receptors, are known to control hemostasis, thrombosis but also metastatic progression. Yet, their exclusive but combined deficiency has never been tested in these processes. Taking advantage of PF4Cre-{beta}1-/-/{beta}3-/- mouse strain, we show that platelets are exclusively depleted for all integrins. While they displayed impaired binding to fibrinogen and annexin-V, P-selectin exposure was normal. Platelet adhesion was abrogated on immobilized fibrinogen and fibrillar fibronectin under shear flow. PF4Cre-{beta}1-/- /{beta}3-/- mice presented an increased bleeding time and a profound defect in experimental models of arterial thrombosis. Platelet adhesion to tumor cells was also reduced, with a profound impact on tumor growth and metastatic burden in a model of triple negative breast cancer. Overall, these results confirm the central role of platelet integrins in hemostasis and thrombosis, and define their role in tumor growth and metastasis formation. 40-word summary: Depletion of all platelet integrins in PF4Cre-{beta}1-/-/{beta}3-/- mice leads to increased bleeding time and inhibits in vivo arterial thrombosis. Integrin-null platelets reduce tumor growth and metastatic burden in orthotopic and experimental metastasis models. Platelet integrins control hemostasis, thrombosis and metastasis.

cancer biology↗