Title | Chemoresistance Transmission via Exosome-Mediated EphA2 Transfer in Pancreatic Cancer. |
Publication Type | Journal Article |
Year of Publication | 2018 |
Authors | Fan J, Wei Q, Koay EJ, Liu Y, Ning B, Bernard PW, Zhang N, Han H, Katz MH, Zhao Z, Hu Y |
Journal | Theranostics |
Volume | 8 |
Issue | 21 |
Pagination | 5986-5994 |
Date Published | 2018 |
ISSN | 1838-7640 |
Keywords | Antineoplastic Agents, Cell Line, Tumor, Cell Survival, Deoxycytidine, Drug Resistance, Neoplasm, Exosomes, Humans, Pancreatic Neoplasms, Proteome, Receptor, EphA2 |
Abstract | Exosomes are small extracellular vesicles secreted by most cells that are found in blood and other bodily fluids, and which contain cytoplasmic material and membrane factors corresponding to their cell type of origin. Exosome membrane factors and contents have been reported to alter adjacent and distant cell behavior in multiple studies, but the impact of cancer-derived exosomes on chemoresistance is less clear. Exosomes isolated from three pancreatic cancer (PC) cell lines displaying variable gemcitabine (GEM) resistance (PANC-1, MIA PaCa-2, and BxPC-3) were tested for their capacity to transmit chemoresistance among these cell lines. Comparative proteomics was performed to identify key exosomal proteins that conferred chemoresistance. Cell survival was assessed in GEM responsive PC cell lines treated with recombinant Ephrin type-A receptor 2 (EphA2), a candidate chemoresistance transfer factor, or exosomes from a chemoresistant PC cell line treated with or without EphA2 shRNA. Exosomes from chemoresistant PANC-1 cells increased the GEM resistance of MIA PaCa-2 and BxPC-3 cell cultures. Comparative proteomics determined that PANC-1 exosomes overexpressed Ephrin type-A receptor 2 (EphA2) versus exosomes of less chemoresistant PC cell lines MIA PaCa-2 and BxPC-3. EphA2-knockdown in PANC-1 cells inhibited their ability to transmit exosome-mediated chemoresistance to MIA PaCa-2 and BxPC-3, while treatment of MIA PaCa-2 and BxPC-3 cells with soluble EphA2 did not promote chemoresistance, indicating that membrane carried EphA2 was important for the EphA2 chemoresistance effect. Exosomal EphA2 expression could transmit chemoresistance and may potentially serve as a minimally-invasive predictive biomarker for PC treatment response. Further work should address whether additional exosomal factors regulate resistance to other cancer therapeutic agents for PC or other cancer types. |
DOI | 10.7150/thno.26650 |
Alternate Journal | Theranostics |
PubMed ID | 30613276 |
PubMed Central ID | PMC6299429 |
Grant List | R01 AI122932 / AI / NIAID NIH HHS / United States P50 CA126752 / CA / NCI NIH HHS / United States R01 AI113725 / AI / NIAID NIH HHS / United States R01 HD090927 / HD / NICHD NIH HHS / United States U01 CA214254 / CA / NCI NIH HHS / United States |
Related Faculty:
Zhen Zhao, Ph.D.