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Modulation of galectin-3 expression regarding to pH and oxygenation selective pressures: a mechanism for intratumoral heterogeneity?

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Author(s):
Ana Carolina Ferreira Cardoso
Total Authors: 1
Document type: Master's Dissertation
Press: São Paulo.
Institution: Universidade de São Paulo (USP). Faculdade de Medicina (FM/SBD)
Defense date:
Examining board members:
Roger Chammas; Erico Tosoni Costa; Maria Aparecida Nagai
Advisor: Roger Chammas
Abstract

The intratumoral heterogeneity observed in human tumors is extremely important to understand tumor progression and its therapeutic response. Galectin-3 belongs to animal lectin family and it is a ?-galactosidase binding protein which is involved in physiological and pathological processes, including cancer. In this work, an intratumor heterogeneous galectin-3 expression was observed in tissue sessions containing different human melanocytic lesions. Moreover, negative galectin-3 murine cells injected into gal3-/- mice were able to generate tumors composed of a positive galectin-3 cell fraction, suggesting that selective forces in tumor microenvironment modulate galectin-3 expression in melanoma. Extracellular acidosis acts as a negative regulator to galectin-3 in vitro, decreasing its expression in murine and human melanoma cells and even in murine melanocytes. However, intermittent or acute hypoxia exposure did not alter galectin-3 expression in human melanoma cells in vitro. In addition, tumors originated from a mixture of positive and negative galectin-3 cells (mimicking heterogeneous tumors) showed higher growth rate compared to those derived from only galectin-3 positive or negative cells. Therefore, we showed evidences that galectin-3 intratumoral heterogeneity seems to be involved with the evolutionary success of melanoma and that acidosis may be the microenvironmental pressure responsible for the establishment and maintenance of galectin-3 negative cell fraction into the tumor bulk (AU)

FAPESP's process: 12/19665-0 - Galectin-3 expression modulation regarding pH and oxygenation selective pressures: a mechanism for tumor heterogeneity?
Grantee:Ana Carolina Ferreira Cardoso
Support Opportunities: Scholarships in Brazil - Master