Therapy-educated mesenchymal stem cells enrich for tumor-initiating cells

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Abstract

Stromal cells residing in the tumor microenvironment contribute to the development of therapy resistance. Here we show that chemotherapy-educated mesenchymal stem cells (MSC) promote therapy resistance via cross-talk with tumor-initiating cells (TIC), a resistant tumor cell subset that initiates tumorigenesis and metastasis. In response to gemcitabine chemotherapy, MSCs colonized pancreatic adenocarcinomas in large numbers and resided in close proximity to TICs. Furthermore, gemcitabine-educated MSCs promoted the enrichment of TICs in vitro and enhance tumor growth in vivo. These effects were dependent on the secretion of CXCL10 by gemcitabine-educated MSCs and subsequent activation of the CXCL10-CXCR3 axis in TICs. In an orthotopic pancreatic tumor model, targeting TICs using nanovesicles (called nanoghosts) derived from MSC membranes and loaded with a CXCR3 antagonist enhanced therapy outcome and delayed tumor regrowth when administered in combination with gemcitabine. Overall, our results establish a mechanism through which MSCs promote chemoresistance, and propose a novel drug delivery system to target TICs and overcome this resistance.

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Timaner, M., Letko-Khait, N., Kotsofruk, R., Benguigui, M., Beyar-Katz, O., Rachman-Tzemah, C., … Shaked, Y. (2018). Therapy-educated mesenchymal stem cells enrich for tumor-initiating cells. Cancer Research, 78(5), 1253–1265. https://doi.org/10.1158/0008-5472.CAN-17-1547

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