Abstract

Cancer stem cells (CSCs) are comprised of a rare sub-population of cells in tumors that have been proposed to be responsible for high recurrence rates and resistance to chemotherapy. Galectins are highly expressed in cancers that correlate with the aggressiveness of tumors. Galectins may also promote the resistance of cancer cells to chemotherapy. However, the role of galectins in CSCs remains unknown. In this study, sphere formation was used to enrich H1299 human lung CSCs that had self-renewal ability, advanced tumorigenic potential, and that highly expressed stem/progenitor cell markers such as Oct4, Sox2, Nanog, and CD133. A novel candidate molecule, galectin-3, for stemness was found in lung CSCs. The expression of galectin-3 robustly increased in lung cancer spheres over serial passages, but its suppression in the H1299 monolayer or spheres resulted in reduced expression of stemness-related genes, sphere-forming ability, tumorigenicity, chemoresistance, and tumor initiation in mice. Notably, the overexpression of galectin-3 in A549 lung cancer cells, which have low capability to grow as tumor spheres, promoted CSC formation. β-catenin activity was increased in H1299 spheres and counteracted by galectin-3 suppression. Thus, galectin-3 may act as a cofactor by interacting with β-catenin to augment the transcriptional activities of stemness-related genes. Furthermore, galectin-3 expression correlated with tumor progression and expressions of β-catenin and CSC marker CD133 in lung cancer tissues. Targeting galectin-3 signaling may provide a new strategy for lung cancer treatment by inhibiting stem-like properties.

Highlights

  • Non-small cell lung cancer (NSCLC) is the leading cause of cancer death worldwide [1]

  • It is apparent that increased levels of Oct4, Sox2, Nanog, and CD133 proteins were detected in H1299 spheres compared to those in the parental cells using flow cytometry and immunofluorescence (Figs. 1C and 1D)

  • Since Cancer stem cells (CSCs) were enriched in CD44+ and/or CD133+ cell population had been reported [21], H1299 cells from monolayer and tumor spheres were analyzed for CD44/CD133 doublestaining by flow cytometry (Fig. 1E)

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Summary

Introduction

Non-small cell lung cancer (NSCLC) is the leading cause of cancer death worldwide [1]. Cancer stem cells (CSCs) have been indicated as key tumor-initiating cells that may play an integral role in recurrence following chemotherapy [4]. Defined as a rare sub-population of cancer cells with a self-renewal capacity, CSCs have the potential to develop into multiple lineages in tumors and the proliferative ability to continuously expand the population of malignant cells [5]. They have been identified in www.impactjournals.com/oncotarget some cancers to be critical in sustaining tumor progression and metastasis [6]. A lack of reliable lung stem cell markers has impeded an accurate identification of lung CSCs [9]

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