Identification of a set of genes potentially responsible for resistance to ferroptosis in lung adenocarcinoma cancer stem cells

Author:

Mancini Rita1ORCID,Ascenzi Francesca2,Esposito Antonella3,Bruschini Sara2,Salvati Valentina4,De Vitis Claudia1,Ricci Giulia5,Martino Simona Di6,Buglioni Simonetta6,Bassi Massimiliano1ORCID,Venuta Federico1,De Nicola Francesca2,Massacci Alice2,Grassucci Isabella2,Pallocca Matteo7,Ricci Alberto8,Fanciulli Maurizio2ORCID,Ciliberto Gennaro9ORCID

Affiliation:

1. Sapienza University of Rome

2. IRCCS Regina Elena National Cancer Institute

3. National Cancer Institute IRCCS - Fondazione G.Pascale

4. IRCCS Regina Elena National Cancer Institute, Rome

5. Università Degli Studi Della Campania Luigi Vanvitelli

6. IRCCS-Regina Elena National Cancer Institute

7. National Research Council

8. Università La Sapienza

9. National Cancer Institute, Regina Elena

Abstract

Abstract Scientific literature supports the evidence that Cancer Stem Cells (CSCs) retain inside low Reactive Oxygen Species (ROS) levels and are therefore less susceptible to cell death, including ferroptosis, a type of cell death dependent on iron-driven lipid peroxidation. A collection of lung adenocarcinoma (LUAD) primary cell lines derived from malignant pleural effusions (MPEs) of patients was used to obtain 3D spheroids enriched for stem-like properties. We observed that the ferroptosis inducer RSL3 triggered lipid peroxidation and cell death in LUAD cells when grown in 2D conditions; however, when grown in 3D condition, all cell lines underwent a phenotypic switch, exhibiting substantial resistance to RSL3 and therefore protection against ferroptotic cell death. Interestingly, this phenomenon was reversed by disrupting 3D cells and growing them back in adherence, supporting the idea of CSCs plasticity, which holds that cancer cells have the dynamic ability to transition between a CSC state and a non-CSC state. Molecular analyses showed that ferroptosis resistance in 3D spheroids correlated with an increased expression of antioxidant genes and high levels of proteins involved in iron storage and export, indicating protection against oxidative stress and low availability of iron for the initiation of ferroptosis. Moreover, transcriptomic analyses highlighted a novel subset of genes commonly modulated in 3D spheroids and potentially capable of driving ferroptosis protection in LUAD CSCs, thus allowing to better understand the mechanisms of CSC-mediated drug resistance in tumors.

Publisher

Research Square Platform LLC

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