Evolution of cancer stem-like cells in endocrine-resistant metastatic breast cancers is mediated by stromal microvesicles Journal Article


Authors: Sansone, P.; Berishaj, M.; Rajasekhar, V. K.; Ceccarelli, C.; Chang, Q.; Strillacci, A.; Savini, C.; Shapiro, L.; Bowman, R. L.; Mastroleo, C.; De Carolis, S.; Daly, L.; Benito-Martin, A.; Perna, F.; Fabbri, N.; Healey, J. H.; Spisni, E.; Cricca, M.; Lyden, D.; Bonaf, M.; Bromberg, J.
Article Title: Evolution of cancer stem-like cells in endocrine-resistant metastatic breast cancers is mediated by stromal microvesicles
Abstract: The hypothesis that microvesicle-mediated miRNA transfer converts noncancer stem cells into cancer stem cells (CSC) leading to therapy resistance remains poorly investigated. Here we provide direct evidence supporting this hypothesis, by demonstrating how microvesicles derived from cancer-Associated fibroblasts (CAF) transfer miR-221 to promote hormonal therapy resistance (HTR) in models of luminal breast cancer. We determined that CAF-derived microvesicles horizontally transferred miR-221 to tumor cells and, in combination with hormone therapy, activated an ERlo/Notchhi feed-forward loop responsible for the generation of CD133hi CSCs. Importantly, microvesicles from patients with HTR metastatic disease expressed high levels of miR-221. We further determined that the IL6-pStat3 pathway promoted the biogenesis of onco-miR-221hi CAF microvesicles and established stromal CSC niches in experimental and patient-derived breast cancer models. Coinjection of patient-derived CAFs from bone metastases led to de novo HTR tumors, which was reversed with IL6R blockade. Finally, we generated patient-derived xenograft (PDX) models from patient-derived HTR bone metastases and analyzed tumor cells, stroma, and microvesicles. Murine and human CAFs were enriched in HTR tumors expressing high levels of CD133hi cells. Depletion of murine CAFs from PDX restored sensitivity to HT, with a concurrent reduction of CD133hi CSCs. Conversely, in models of CD133neg, HT-sensitive cancer cells, both murine and human CAFs promoted de novo HT resistance via the generation of CD133hi CSCs that expressed low levels of estrogen receptor alpha. Overall, our results illuminate how microvesicle-mediated horizontal transfer of genetic material from host stromal cells to cancer cells triggers the evolution of therapy-resistant metastases, with potentially broad implications for their control. © 2017 American Association for Cancer Research.
Journal Title: Cancer Research
Volume: 77
Issue: 8
ISSN: 0008-5472
Publisher: American Association for Cancer Research  
Date Published: 2017-04-15
Start Page: 1927
End Page: 1941
Language: English
DOI: 10.1158/0008-5472.can-16-2129
PUBMED: 28202520
PROVIDER: scopus
PMCID: PMC5392366
DOI/URL:
Notes: Article -- Export Date: 2 June 2017 -- Source: Scopus
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MSK Authors
  1. David C Lyden
    87 Lyden
  2. Jacqueline Bromberg
    142 Bromberg
  3. Qing Chang
    37 Chang
  4. Pasquale Sansone
    14 Sansone
  5. Fabiana Perna
    45 Perna
  6. John H Healey
    550 Healey
  7. Robert L Bowman
    52 Bowman
  8. Nicola Fabbri
    64 Fabbri
  9. Laura Daly
    11 Daly
  10. Claudia Savini
    3 Savini