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Sanchez-Redondo, S.

Publications and source records attributed to Sanchez-Redondo, S..

2 recordsLinked to original sources

Endoglin, a novel biomarker and therapeutical target to prevent malignant peripheral nerve sheath tumor growth and metastasis

PurposeMalignant peripheral nerve sheath tumors (MPNSTs) are highly aggressive softtissue sarcomas that lack effective treatments, underscoring the urgent need to uncover novel mediators of MPNST pathogenesis that may serve as potential therapeutic targets. Tumor angiogenesis is considered a critical event in MPNST transformation and progression. Here, we have investigated whether endoglin (ENG), a TGF-{beta} coreceptor with a crucial role in angiogenesis, could be a novel therapeutic target in MPNSTs. Experimental DesignENG expression was evaluated in human peripheral nerve sheath tumor tissues and plasma samples. Effects of tumor cell-specific ENG expression on gene expression, signaling pathways and in vivo MPNST growth and metastasis were investigated. The efficacy of ENG targeting in monotherapy or in combination with MEK inhibition was analyzed in xenograft models. ResultsENG expression was found to be upregulated in both human MPNST tumor tissues and plasma circulating small extracellular vesicles. We demonstrated that ENG modulates Smad1/5 and MAPK/ERK pathway activation and pro-angiogenic and pro-metastatic gene expression in MPNST cells and plays an active role in tumor growth and metastasis in vivo. Targeting with ENG-neutralizing antibodies (TRC105/M1043) decreased MPNST tumor growth and metastasis in xenograft models by reducing tumor cell proliferation and angiogenesis. Importantly, combination of anti-ENG therapy with MEK inhibition reduced more effectively tumor cell growth and angiogenesis. ConclusionsOur data unveil a tumor-promoting function of ENG in MPNSTs and support the combined use of anti-ENG antibodies and MEK inhibitors as a novel potential combination to control MPNSTs growth and metastasis. Statement of translational relevanceMalignant peripheral nerve sheath tumors (MPNSTs) present a poor clinical outcome due to tumor aggressiveness and the absence of effective treatments that underline the need for identifying novel therapeutic approaches. Here, we show that ENG is upregulated in human MPNSTs and we uncover an important role for this coreceptor in MPNST. ENG-neutralizing antibodies (TRC105/M1043) decreased MPNST tumor growth and metastasis in xenograft models, supporting a novel use of anti-ENG therapies for MPNST treatment. Currently, MEK inhibitors are used in the clinic to shrink peripheral nerve sheath tumors (e.g. plexiform neurofibromas). Importantly, we demonstrate that combination of anti ENG antibodies with MEK inhibitors efficiently blocked MPNST growth and metastasis. Our findings provide a rationale for combining anti-ENG and MEK inhibitors as a new strategy for MPNST management.

cancer biology↗

Characterization of plasma circulating small extracellular vesicles in patients with metastatic solid tumors and newly diagnosed brain metastasis.

PurposeNearly 40% of the advanced cancer patients will present brain metastases during the course of their disease, with a 2-year life expectancy of less than 10%. Immune system impairment, including the modulation of both STAT3 and PD-L1, is one of the hallmarks of brain metastases. Liquid biopsy could offer several advantages in brain metastases management, such as the possibility of non-invasive dynamic monitoring. Extracellular vesicles (EVs) have been recently proposed as novel biomarkers especially useful in liquid biopsy due to their secretion in biofluids and their role in cell communication during tumor progression. Materials and MethodsThe main aim of this work was to characterize the size and protein cargo of plasma circulating EVs in patients with solid tumors and their correlation with newly diagnosed brain metastases, in addition to their association with other relevant clinical variables. ResultsWe analyzed circulating EVs in the plasma of 123 patients: 42 patients with brain metastases, 50 without brain metastases and 31 healthy controls. Patients with newly diagnosed brain metastases had a lower number of circulating EVs in the plasma and a higher protein concentration in small EVs (sEVs) compared to patients without brain metastases and healthy controls. Interestingly, melanoma patients with brain metastases presented decreased STAT3 activation and increased PD-L1 levels in circulating sEVs compared to patients without central nervous system metastases. ConclusionsDecreased STAT3 activation and increased PD-L1 in plasma circulating sEVs identify melanoma patients with brain metastasis. Statement of translational relevanceBrain metastases are critical for outcomes and quality of life in almost 50% of oncological patients, generally associated with a poor short-term prognosis. Early or preventive diagnosis of this complication represents an unmet need. There is a necessity of discovering new biomarkers that could aid to predict disease outcome. In this study, we analyzed plasma circulating extracellular vesicles (EVs) from a cohort of 92 patients with different solid tumors (lung, breast, kidney cancer and melanoma) and found that newly diagnosed patients with brain metastases presented lower number of circulating particles and a higher protein concentration in small extracellular vesicles (sEVs) compared to patients without brain metastases and healthy controls. Out of all groups analyzed, melanoma patients with brain metastases presented decreased STAT3 activation and increased PD-L1 levels in circulating sEVs compared to patients without central nervous system metastases. The data presented in this work suggest that circulating sEVs may represent the immunosuppressive status of newly diagnosed brain metastases characterized by the reduced phospho-STAT3 (pSTAT3) and increased PD-L1, although the origin of these molecules found in circulating sEVs remains to be uncovered.

cancer biology↗