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Tumor stromal topography promotes chemoresistance in migrating breast cancer cell clusters.
Su, Chia-Yi; Wu, Alex; Dong, Zhipeng; Miller, Chris P; Suarez, Allister; Ewald, Andrew J; Ahn, Eun Hyun; Kim, Deok-Ho.
Affiliation
  • Su CY; Department of Biomedical Engineering, Johns Hopkins University, Baltimore, MD, United States.
  • Wu A; Department of Biomedical Engineering, Johns Hopkins University, Baltimore, MD, United States.
  • Dong Z; Department of Mechanical Engineering, Johns Hopkins University, Baltimore, MD, United States.
  • Miller CP; Clinical Research Division, Fred Hutchinson Cancer Center, Seattle, WA, United States.
  • Suarez A; Department of Biomedical Engineering, Johns Hopkins University, Baltimore, MD, United States.
  • Ewald AJ; Department of Biomedical Engineering, Johns Hopkins University, Baltimore, MD, United States; Department of Oncology, Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University School of Medicine, Baltimore, MD, United States; Department of Cell Biology and Center for Cell Dynamics, Johns H
  • Ahn EH; Department of Biomedical Engineering, Johns Hopkins University, Baltimore, MD, United States. Electronic address: ahn@jhu.edu.
  • Kim DH; Department of Biomedical Engineering, Johns Hopkins University, Baltimore, MD, United States; Department of Mechanical Engineering, Johns Hopkins University, Baltimore, MD, United States; Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, MD, United States. Electronic ad
Biomaterials ; 298: 122128, 2023 07.
Article in En | MEDLINE | ID: mdl-37121102
ABSTRACT
Multicellular clustering provides cancer cells with survival advantages and facilitates metastasis. At the tumor migration front, cancer cell clusters are surrounded by an aligned stromal topography. It remains unknown whether aligned stromal topography regulates the resistance of migrating cancer cell clusters to therapeutics. Using a hybrid nanopatterned model to characterize breast cancer cell clusters at the migration front with aligned stromal topography, we demonstrate that topography-induced migrating cancer cell clusters exhibit upregulated cytochrome P450 family 1 (CYP1) drug metabolism and downregulated glycolysis gene signatures, which correlates with unfavorable prognosis. Screening on approved oncology drugs shows that cancer cell clusters on aligned stromal topography are more resistant to diverse chemotherapeutics. Full-dose drug testings further indicate that topography induces drug resistance of hormone receptor-positive breast cancer cell clusters to doxorubicin and tamoxifen and triple-negative breast cancer cell clusters to doxorubicin by activating the aryl hydrocarbon receptor (AhR)/CYP1 pathways. Inhibiting the AhR/CYP1 pathway restores reactive oxygen species-mediated drug sensitivity to migrating cancer cell clusters, suggesting a plausible therapeutic direction for preventing metastatic recurrence.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Breast Neoplasms / Triple Negative Breast Neoplasms Limits: Female / Humans Language: En Journal: Biomaterials Year: 2023 Document type: Article Affiliation country: Estados Unidos Publication country: HOLANDA / HOLLAND / NETHERLANDS / NL / PAISES BAJOS / THE NETHERLANDS

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Breast Neoplasms / Triple Negative Breast Neoplasms Limits: Female / Humans Language: En Journal: Biomaterials Year: 2023 Document type: Article Affiliation country: Estados Unidos Publication country: HOLANDA / HOLLAND / NETHERLANDS / NL / PAISES BAJOS / THE NETHERLANDS