Literature DB >> 27635043

Enhanced Survival with Implantable Scaffolds That Capture Metastatic Breast Cancer Cells In Vivo.

Shreyas S Rao1, Grace G Bushnell2, Samira M Azarin3, Graham Spicer4, Brian A Aguado5, Jenna R Stoehr6, Eric J Jiang4, Vadim Backman7, Lonnie D Shea8, Jacqueline S Jeruss9.   

Abstract

The onset of distant organ metastasis from primary breast cancer marks the transition to a stage IV diagnosis. Standard imaging modalities often detect distant metastasis when the burden of disease is high, underscoring the need for improved methods of detection to allow for interventions that would impede disease progression. Here, microporous poly(ε-caprolactone) scaffolds were developed that capture early metastatic cells and thus serve as a sentinel for early detection. These scaffolds were used to characterize the dynamic immune response to the implant spanning the acute and chronic foreign body response. The immune cell composition had stabilized at the scaffold after approximately 1 month and changed dramatically within days to weeks after tumor inoculation, with CD11b(+)Gr1(hi)Ly6C(-) cells having the greatest increase in abundance. Implanted scaffolds recruited metastatic cancer cells that were inoculated into the mammary fat pad in vivo, which also significantly reduced tumor burden in the liver and brain. Additionally, cancer cells could be detected using a label-free imaging modality termed inverse spectroscopic optical coherence tomography, and we tested the hypothesis that subsequent removal of the primary tumor after early detection would enhance survival. Surgical removal of the primary tumor following cancer cell detection in the scaffold significantly improved disease-specific survival. The enhanced disease-specific survival was associated with a systemic reduction in the CD11b(+)Gr1(hi)Ly6C(-) cells as a consequence of the implant, which was further supported by Gr-1 depletion studies. Implementation of the scaffold may provide diagnostic and therapeutic options for cancer patients in both the high-risk and adjuvant treatment settings. Cancer Res; 76(18); 5209-18. ©2016 AACR. ©2016 American Association for Cancer Research.

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Year:  2016        PMID: 27635043      PMCID: PMC5027988          DOI: 10.1158/0008-5472.CAN-15-2106

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  48 in total

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Journal:  Eur J Immunol       Date:  2010-12       Impact factor: 5.532

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Authors:  Christine L Chaffer; Robert A Weinberg
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Journal:  Proc Natl Acad Sci U S A       Date:  2012-11-12       Impact factor: 11.205

4.  FDG-PET/CT in the diagnosis of recurrent breast cancer.

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Journal:  Acta Radiol       Date:  2011-11-08       Impact factor: 1.990

5.  Increased circulating myeloid-derived suppressor cells correlate with clinical cancer stage, metastatic tumor burden, and doxorubicin-cyclophosphamide chemotherapy.

Authors:  C Marcela Diaz-Montero; Mohamed Labib Salem; Michael I Nishimura; Elizabeth Garrett-Mayer; David J Cole; Alberto J Montero
Journal:  Cancer Immunol Immunother       Date:  2008-04-30       Impact factor: 6.968

6.  GM-CSF promotes the immunosuppressive activity of glioma-infiltrating myeloid cells through interleukin-4 receptor-α.

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7.  Species-specific homing mechanisms of human prostate cancer metastasis in tissue engineered bone.

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Review 8.  Dissemination and growth of cancer cells in metastatic sites.

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Journal:  Nat Rev Cancer       Date:  2002-08       Impact factor: 60.716

Review 9.  Preparing the "soil": the premetastatic niche.

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10.  Differential post-surgical metastasis and survival in SCID, NOD-SCID and NOD-SCID-IL-2Rγ(null) mice with parental and subline variants of human breast cancer: implications for host defense mechanisms regulating metastasis.

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Journal:  PLoS One       Date:  2013-08-14       Impact factor: 3.240

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  27 in total

1.  Engineering Biomaterials to Direct Innate Immunity.

Authors:  R S Oakes; E Froimchuk; C M Jewell
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Authors:  Grace G Bushnell; Tejaswini P Hardas; Rachel M Hartfield; Yining Zhang; Robert S Oakes; Scott Ronquist; Haiming Chen; Indika Rajapakse; Max S Wicha; Jacqueline S Jeruss; Lonnie D Shea
Journal:  Cancer Res       Date:  2019-02-26       Impact factor: 12.701

Review 3.  Progress on Modulating Tumor-Associated Macrophages with Biomaterials.

Authors:  Meilyn Sylvestre; Courtney A Crane; Suzie H Pun
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4.  Biomaterial Scaffolds as Pre-metastatic Niche Mimics Systemically Alter the Primary Tumor and Tumor Microenvironment.

Authors:  Brian A Aguado; Rachel M Hartfield; Grace G Bushnell; Joseph T Decker; Samira M Azarin; Dhaval Nanavati; Matthew J Schipma; Shreyas S Rao; Robert S Oakes; Yining Zhang; Jacqueline S Jeruss; Lonnie D Shea
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5.  Biomaterials to model and measure epithelial cancers.

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7.  Scaffold-Assisted Ectopic Transplantation of Internal Organs and Patient-Derived Tumors.

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Journal:  ACS Biomater Sci Eng       Date:  2019-11-13

Review 8.  Engineered Niches to Analyze Mechanisms of Metastasis and Guide Precision Medicine.

Authors:  Aaron H Morris; Sophia M Orbach; Grace G Bushnell; Robert S Oakes; Jacqueline S Jeruss; Lonnie D Shea
Journal:  Cancer Res       Date:  2020-05-14       Impact factor: 12.701

9.  High Frequency Spectral Ultrasound Imaging to Detect Metastasis in Implanted Biomaterial Scaffolds.

Authors:  Grace G Bushnell; Xiaowei Hong; Rachel M Hartfield; Yining Zhang; Robert S Oakes; Shreyas S Rao; Jacqueline S Jeruss; Jan P Stegemann; Cheri X Deng; Lonnie D Shea
Journal:  Ann Biomed Eng       Date:  2019-09-23       Impact factor: 3.934

10.  Microporous scaffolds loaded with immunomodulatory lentivirus to study the contribution of immune cell populations to tumor cell recruitment in vivo.

Authors:  Grace G Bushnell; Shreyas S Rao; Rachel M Hartfield; Yining Zhang; Robert S Oakes; Jacqueline S Jeruss; Lonnie D Shea
Journal:  Biotechnol Bioeng       Date:  2019-10-03       Impact factor: 4.530

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