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PMID: 27355476 Published · epublish English Journal Article

Development of Patient Derived Xenograft Models of Overt Spontaneous Breast Cancer Metastasis: A Cautionary Note.

PloS one ·Vol. 11 ·No. 6 ·2016-00-00 ·Pages e0158034

Paez-Ribes M, Man S, Xu P, Kerbel RS

Abstract

Several approaches are being evaluated to improve the historically limited value of studying transplanted primary tumors derived by injection of cells from established cell lines for predicting subsequent cancer therapy outcomes in patients and clinical trials. These approaches include use of genetically engineered mouse models (GEMMs) of spontaneous tumors, or patient tumor tissue derived xenografts (PDXs). Almost all such therapy studies utilizing such models involve treatment of established primary tumors. An alternative approach we have developed involves transplanted human tumor xenografts derived from established cell lines to treat mice with overt visceral metastases after primary tumor resection. The rationale is to mimic the more challenging circumstance of treating patients with late stage metastatic disease. These metastatic models entail prior in vivo selection of heritable, phenotypically stable variants with increased aggressiveness for spontaneous metastasis; they were derived by orthotopic injection of tumor cells followed by primary tumor resection and serial selection of distant spontaneous metastases, from which variant cell lines having a more aggressive heritable metastatic phenotype were established. We attempted to adopt this strategy for breast cancer PDXs. We studied five breast cancer PDXs, with the emphasis on two, called HCI-001 and HCI-002, both derived from triple negative breast cancer patients. However significant technical obstacles were encountered. These include the inherent slow growth rates of PDXs, the rarity of overt spontaneous metastases (detected in only 3 of 144 mice), very high rates of tumor regrowths at the primary tumor resection site, the failure of the few human PDX metastases isolated to manifest a more aggressive metastatic phenotype upon re-transplantation into new hosts, and the formation of metastases which were derived from de novo mouse thymomas arising in aged SCID mice that we used for the experiments. We discuss several possible strategies that may be employed to overcome these limitations. Uncovering the basis of the failure to detect a high rate of overt spontaneous distant metastases having a heritable phenotype in PDX models may reveal new insights into the biology and treatment of advanced metastatic disease.

MeSH Terms
Animals Cell Line, Tumor Disease Models, Animal Female Heterografts Humans Mice Mice, SCID Neoplasm Metastasis Neoplasm Transplantation Phenotype Triple Negative Breast Neoplasms/pathology
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Paez-Ribes Marta
Biological Sciences Platform, Sunnybrook Research Institute, Toronto, Canada.
Man Shan
Biological Sciences Platform, Sunnybrook Research Institute, Toronto, Canada.
Xu Ping
Biological Sciences Platform, Sunnybrook Research Institute, Toronto, Canada.
Kerbel Robert S
Biological Sciences Platform, Sunnybrook Research Institute, Toronto, Canada. | Dept. of Medical Biophysics, University of Toronto, Toronto, Canada.
References (36)
36 references, click to expand
  1. Maintenance treatment with capecitabine and bevacizumab in metastatic colorectal cancer (CAIRO3): a phase 3 randomised controlled trial of the Dutch Colorectal Cancer Group.
    Lancet. 2015 May 9;385(9980):1843-52 PMID: 25862517
  2. Severe combined immunodeficiency (SCID) in the mouse. Pathology, reconstitution, neoplasms.
    Am J Pathol. 1985 Sep;120(3):464-77 PMID: 2412448
  3. Growth dominance of the metastatic cancer cell: cellular and molecular aspects.
    Adv Cancer Res. 1990;55:87-132 PMID: 2167000
  4. Mouse models of advanced spontaneous metastasis for experimental therapeutics.
    Nat Rev Cancer. 2011 Feb;11(2):135-41 PMID: 21258397
  5. Subclonal diversification of primary breast cancer revealed by multiregion sequencing.
    Nat Med. 2015 Jul;21(7):751-9 PMID: 26099045
  6. Postsurgical adjuvant or metastatic renal cell carcinoma therapy models reveal potent antitumor activity of metronomic oral topotecan with pazopanib.
    Sci Transl Med. 2015 Apr 8;7(282):282ra50 PMID: 25855496
  7. Locoregional recurrence of triple-negative breast cancer: effect of type of surgery and adjuvant postoperative radiotherapy.
    Breast Cancer (Dove Med Press). 2014 Sep 10;6:151-8 PMID: 25228818
  8. 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.
    PLoS One. 2013 Aug 14;8(8):e71270 PMID: 23967178
  9. Genetic evidence for progressive selection and overgrowth of primary tumors by metastatic cell subpopulations.
    Cancer Res. 1988 Nov 1;48(21):6109-14 PMID: 3167857
  10. Phase III randomized trial of sunitinib versus capecitabine in patients with previously treated HER2-negative advanced breast cancer.
    Breast Cancer Res Treat. 2010 May;121(1):121-31 PMID: 20339913
  11. Establishment of a patient-derived orthotopic Xenograft (PDOX) model of HER-2-positive cervical cancer expressing the clinical metastatic pattern.
    PLoS One. 2015 Feb 17;10(2):e0117417 PMID: 25689852
  12. Potent preclinical impact of metronomic low-dose oral topotecan combined with the antiangiogenic drug pazopanib for the treatment of ovarian cancer.
    Mol Cancer Ther. 2010 Apr;9(4):996-1006 PMID: 20371722
  13. Orthotopic transplantation of histologically intact clinical specimens of stomach cancer to nude mice: correlation of metastatic sites in mouse and individual patient donors.
    Int J Cancer. 1993 Feb 20;53(4):608-12 PMID: 8436434
  14. Implications of constructed biologic subtype and its relationship to locoregional recurrence following mastectomy.
    Breast Cancer Res. 2012 May 23;14(3):R82 PMID: 22621306
  15. Patient-derived orthotopic xenografts: better mimic of metastasis than subcutaneous xenografts.
    Nat Rev Cancer. 2015 Aug;15(8):451-2 PMID: 26422835
  16. Highly efficacious nontoxic preclinical treatment for advanced metastatic breast cancer using combination oral UFT-cyclophosphamide metronomic chemotherapy.
    Cancer Res. 2006 Apr 1;66(7):3386-91 PMID: 16585158
  17. Tumor grafts derived from women with breast cancer authentically reflect tumor pathology, growth, metastasis and disease outcomes.
    Nat Med. 2011 Oct 23;17(11):1514-20 PMID: 22019887
  18. Development of a high metastatic orthotopic model of human renal cell carcinoma in nude mice: benefits of fragment implantation compared to cell-suspension injection.
    Clin Exp Metastasis. 1999 May;17(3):265-70 PMID: 10432012
  19. A metastatic nude-mouse model of human pancreatic cancer constructed orthotopically with histologically intact patient specimens.
    Proc Natl Acad Sci U S A. 1992 Jun 15;89(12):5645-9 PMID: 1608975
  20. Genomic Characterization of Brain Metastases Reveals Branched Evolution and Potential Therapeutic Targets.
    Cancer Discov. 2015 Nov;5(11):1164-77 PMID: 26410082
  21. Patient-derived tumour xenografts as models for oncology drug development.
    Nat Rev Clin Oncol. 2012 Apr 17;9(6):338-50 PMID: 22508028
  22. A new patient-like metastatic model of human small-cell lung cancer constructed orthotopically with intact tissue via thoracotomy in nude mice.
    Anticancer Res. 1992 Sep-Oct;12(5):1403-6 PMID: 1332576
  23. Development of a preclinical model of spontaneous human melanoma central nervous system metastasis.
    Cancer Res. 2008 Jun 15;68(12):4500-5 PMID: 18559492
  24. Paclitaxel plus bevacizumab versus paclitaxel alone for metastatic breast cancer.
    N Engl J Med. 2007 Dec 27;357(26):2666-76 PMID: 18160686
  25. The nonobese diabetic scid mouse: model for spontaneous thymomagenesis associated with immunodeficiency.
    Proc Natl Acad Sci U S A. 1992 Apr 15;89(8):3290-4 PMID: 1373493
  26. A model of postsurgical advanced metastatic breast cancer more accurately replicates the clinical efficacy of antiangiogenic drugs.
    Cancer Res. 2013 May 1;73(9):2743-8 PMID: 23610448
  27. Orthotopic metastatic mouse models for anticancer drug discovery and evaluation: a bridge to the clinic.
    Invest New Drugs. 1999;17(4):343-59 PMID: 10759402
  28. First-line treatment of advanced breast cancer with sunitinib in combination with docetaxel versus docetaxel alone: results of a prospective, randomized phase III study.
    J Clin Oncol. 2012 Mar 20;30(9):921-9 PMID: 22331954
  29. Metronomic oral topotecan prolongs survival and reduces liver metastasis in improved preclinical orthotopic and adjuvant therapy colon cancer models.
    Gut. 2013 Feb;62(2):259-71 PMID: 22543158
  30. Dynamic stromal-epithelial interactions during progression of MCF10DCIS.com xenografts.
    Int J Cancer. 2007 May 15;120(10):2127-34 PMID: 17266026
  31. A metastatic orthotopic-transplant nude-mouse model of human patient breast cancer.
    Anticancer Res. 1993 Jul-Aug;13(4):901-4 PMID: 8352558
  32. Prediction of local recurrence, distant metastases, and death after breast-conserving therapy in early-stage invasive breast cancer using a five-biomarker panel.
    J Clin Oncol. 2009 Oct 1;27(28):4701-8 PMID: 19720911
  33. Phase III trial of sunitinib in combination with capecitabine versus capecitabine monotherapy for the treatment of patients with pretreated metastatic breast cancer.
    J Clin Oncol. 2013 Aug 10;31(23 ):2870-8 PMID: 23857972
  34. Gastrointestinal cancer: Rationale for metronomic chemotherapy in phase III trials.
    Nat Rev Clin Oncol. 2015 Jun;12(6):313-4 PMID: 25963090
  35. Models of human metastatic colon cancer in nude mice orthotopically constructed by using histologically intact patient specimens.
    Proc Natl Acad Sci U S A. 1991 Oct 15;88(20):9345-9 PMID: 1924398
  36. Spontaneous thymic lymphomas in the non-obese diabetic/Shi-scid, IL-2R gamma (null) mouse.
    Lab Anim. 2009 Oct;43(4):402-4 PMID: 19505936
Article Info
Journal
PloS one
Abbr.
PLoS One
ISSN
1932-6203
Published
2016-00-00
Epub
2016-00-29
Pages
e0158034
Language
English
Region
United States
NLM ID
101285081
PMCID
PMC4927067
Subset
IM
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