4.3 Article

Radiation-enhanced therapeutic targeting of galectin-1 enriched malignant stroma in triple negative breast cancer

期刊

ONCOTARGET
卷 7, 期 27, 页码 41559-41574

出版社

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.9490

关键词

galectin-1; triple negative breast cancer; stromal-targeting; TNBC tumor model; tumor tissue analog (TTA)

资金

  1. National Cancer Institute [R21CA173609, R25CA153954]
  2. Cancer Nanotechnology Platform Partnership [U01CA151461]
  3. Markey Cancer Center (NCI) [P30 CA177558]
  4. NU Quantitative Bio-elemental Imaging Center (QBIC) by NASA Ames Research Center [NNA06CB93G]

向作者/读者索取更多资源

Currently there are no FDA approved targeted therapies for Triple Negative Breast Cancer (TNBC). Ongoing clinical trials for TNBC have focused primarily on targeting the epithelial cancer cells. However, targeted delivery of cytotoxic payloads to the nontransformed tumor associated-endothelium can prove to be an alternate approach that is currently unexplored. The present study is supported by recent findings on elevated expression of stromal galectin-1 in clinical samples of TNBC and our ongoing findings on stromal targeting of radiation induced galectin-1 by the anginex-conjugated arseniccisplatin loaded liposomes using a novel murine tumor model. We demonstrate inhibition of tumor growth and metastasis in response to the multimodal nanotherapeutic strategy using a TNBC model with orthotopic tumors originating from 3D tumor tissue analogs (TTA) comprised of tumor cells, endothelial cells and fibroblasts. The `rigorous' combined treatment regimen of radiation and targeted liposomes is also shown to be well tolerated. More importantly, the results presented provide a means to exploit clinically relevant radiation dose for concurrent receptor mediated enhanced delivery of chemotherapy while limiting overall toxicity. The proposed study is significant as it falls in line with developing combinatorial therapeutic approaches for stroma-directed tumor targeting using tumor models that have an appropriate representation of the TNBC microenvironment.

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