Home LiteratureArticle Details
PMID: 20664588 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Zoledronic acid impairs myeloid differentiation to tumour-associated macrophages in mesothelioma.

British journal of cancer ·Vol. 103 ·No. 5 ·2010-08-24 ·Pages 629-41

Veltman JD, Lambers ME, van Nimwegen M, Hendriks RW, Hoogsteden HC, Hegmans JP, Aerts JG

Abstract

Suppressive immune cells present in tumour microenvironments are known to augment tumour growth and hamper efficacy of antitumour therapies. The amino-bisphosphonate Zoledronic acid (ZA) is considered as an antitumour agent, as recent studies showed that ZA prolongs disease-free survival in cancer patients. The exact mechanism is a topic of debate; it has been suggested that ZA targets tumour-associated macrophages (TAMs). We investigate the role of ZA on the myeloid differentiation to TAMs in murine mesothelioma in vivo and in vitro. Mice were intraperitoneally inoculated with a lethal dose of mesothelioma tumour cells and treated with ZA to determine the effects on myeloid differentiation and survival. We show that ZA impaired myeloid differentiation. Inhibition of myeloid differentiation led to a reduction in TAMs, but the number of immature myeloid cells with myeloid-derived suppressor cell (MDSC) characteristics was increased. In addition, ZA affects the phenotype of macrophages leading to reduced level of TAM-associated cytokines in the tumour microenvironment. No improvement of survival was observed. We conclude that ZA leads to a reduction in macrophages and impairs polarisation towards an M2 phenotype, but this was associated with an increase in the number of immature myeloid cells, which might diminish the effects of ZA on survival.

MeSH Terms
Animals Antineoplastic Agents/pharmacology Cell Count Cell Differentiation/drug effects Cell Survival/drug effects Cytokines/biosynthesis Diphosphonates/pharmacology Imidazoles/pharmacology Macrophages/drug effects Mesothelioma/immunology,pathology Mice Myeloid Cells/drug effects Phenotype Zoledronic Acid
Chemicals
Antineoplastic Agents Cytokines Diphosphonates Imidazoles Zoledronic Acid
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Veltman J D
Department of Pulmonary Medicine, Erasmus Medical Centre Rotterdam, PO Box 2040, Rotterdam 3000 CA, The Netherlands.
Lambers M E H
van Nimwegen M
Hendriks R W
Hoogsteden H C
Hegmans J P J J
Aerts J G J V
References (71)
71 references, click to expand
  1. Differential inhibition of invasion and proliferation by bisphosphonates: anti-metastatic potential of Zoledronic acid in prostate cancer.
    Eur Urol. 2004 Sep;46(3):389-401; discussion 401-2 PMID: 15306113
  2. The effect of zoledronic acid on the function and differentiation of myeloid cells.
    Haematologica. 2006 Sep;91(9):1165-71 PMID: 16956814
  3. Tumour-associated macrophages are a distinct M2 polarised population promoting tumour progression: potential targets of anti-cancer therapy.
    Eur J Cancer. 2006 Apr;42(6):717-27 PMID: 16520032
  4. Role of macrophages in tumour progression.
    Immunol Lett. 2009 Apr 27;123(2):97-102 PMID: 19428556
  5. Preclinical models of bone metastases.
    Semin Oncol. 2001 Aug;28(4 Suppl 11):2-8 PMID: 11544569
  6. Can we consider zoledronic acid a new antitumor agent? Recent evidence in clinical setting.
    Curr Cancer Drug Targets. 2010 Feb;10(1):46-54 PMID: 20088792
  7. Cytotoxic effects of gammadelta T cells expanded ex vivo by a third generation bisphosphonate for cancer immunotherapy.
    Int J Cancer. 2005 Aug 10;116(1):94-9 PMID: 15756684
  8. Zoledronic acid inhibits visceral metastases in the 4T1/luc mouse breast cancer model.
    Clin Cancer Res. 2004 Jul 1;10(13):4559-67 PMID: 15240548
  9. Zoledronic acid-related angiogenesis modifications and survival in advanced breast cancer patients.
    J Interferon Cytokine Res. 2005 Mar;25(3):144-51 PMID: 15767788
  10. A randomized, placebo-controlled trial of zoledronic acid in patients with hormone-refractory metastatic prostate carcinoma.
    J Natl Cancer Inst. 2002 Oct 2;94(19):1458-68 PMID: 12359855
  11. Zoledronic acid, an aminobisphosphonate, modulates differentiation and maturation of human dendritic cells.
    Immunopharmacol Immunotoxicol. 2009;31(3):499-508 PMID: 19555208
  12. The antineoplastic role of bisphosphonates: from basic research to clinical evidence.
    Ann Oncol. 2003 Oct;14(10):1468-76 PMID: 14504045
  13. Regulation of immune responses by L-arginine metabolism.
    Nat Rev Immunol. 2005 Aug;5(8):641-54 PMID: 16056256
  14. Approval summary for zoledronic acid for treatment of multiple myeloma and cancer bone metastases.
    Clin Cancer Res. 2003 Jul;9(7):2394-9 PMID: 12855610
  15. Nitric oxide, apoptosis and macrophage polarization during tumor progression.
    Nitric Oxide. 2008 Sep;19(2):95-102 PMID: 18486631
  16. RAS-blocking bisphosphonate zoledronic acid inhibits the abnormal proliferation and differentiation of juvenile myelomonocytic leukemia cells in vitro.
    Blood. 2005 Nov 1;106(9):3134-41 PMID: 16046524
  17. Zoledronic acid modulates antitumoral responses of prostate cancer-tumor associated macrophages.
    Cancer Immunol Immunother. 2008 Oct;57(10):1451-9 PMID: 18297280
  18. Zoledronic acid repolarizes tumour-associated macrophages and inhibits mammary carcinogenesis by targeting the mevalonate pathway.
    J Cell Mol Med. 2010 Dec;14(12):2803-15 PMID: 19818098
  19. Additive antitumor activities of taxoids in combination with the bisphosphonate ibandronate against invasion and adhesion of human breast carcinoma cells to bone.
    Int J Cancer. 1999 Oct 8;83(2):263-9 PMID: 10471537
  20. Mesothelioma environment comprises cytokines and T-regulatory cells that suppress immune responses.
    Eur Respir J. 2006 Jun;27(6):1086-95 PMID: 16540497
  21. Actions of bisphosphonate on bone metastasis in animal models of breast carcinoma.
    Cancer. 2000 Jun 15;88(12 Suppl):2979-88 PMID: 10898341
  22. Anti-tumour activity of zoledronic acid.
    Cancer Treat Rev. 2005;31 Suppl 3:1-8 PMID: 16225995
  23. Myeloid-derived suppressor cells.
    Adv Exp Med Biol. 2007;601:213-23 PMID: 17713008
  24. Stimulation of gammadelta T cells by aminobisphosphonates and induction of antiplasma cell activity in multiple myeloma.
    Blood. 2000 Jul 15;96(2):384-92 PMID: 10887096
  25. Regulatory T cells: how do they suppress immune responses?
    Int Immunol. 2009 Oct;21(10):1105-11 PMID: 19737784
  26. Pamidronate induces modifications of circulating angiogenetic factors in cancer patients.
    Clin Cancer Res. 2002 May;8(5):1080-4 PMID: 12006522
  27. Myeloid-derived suppressor cells as regulators of the immune system.
    Nat Rev Immunol. 2009 Mar;9(3):162-74 PMID: 19197294
  28. Tumor-infiltrating myeloid-derived suppressor cells are pleiotropic-inflamed monocytes/macrophages that bear M1- and M2-type characteristics.
    J Leukoc Biol. 2008 May;83(5):1136-44 PMID: 18285406
  29. Generation of large numbers of dendritic cells from mouse bone marrow cultures supplemented with granulocyte/macrophage colony-stimulating factor.
    J Exp Med. 1992 Dec 1;176(6):1693-702 PMID: 1460426
  30. Myeloid-derived suppressor cell activation by combined LPS and IFN-gamma treatment impairs DC development.
    Eur J Immunol. 2009 Oct;39(10):2865-76 PMID: 19637228
  31. Targeting tumor-associated macrophages in an orthotopic murine model of diffuse malignant mesothelioma.
    Mol Cancer Ther. 2008 Apr;7(4):788-99 PMID: 18375821
  32. Macrophage polarization in tumour progression.
    Semin Cancer Biol. 2008 Oct;18(5):349-55 PMID: 18467122
  33. Tumor-associated macrophages: effectors of angiogenesis and tumor progression.
    Biochim Biophys Acta. 2009 Aug;1796(1):11-8 PMID: 19269310
  34. Macrophages: obligate partners for tumor cell migration, invasion, and metastasis.
    Cell. 2006 Jan 27;124(2):263-6 PMID: 16439202
  35. The Yin-Yang of tumor-associated macrophages in neoplastic progression and immune surveillance.
    Immunol Rev. 2008 Apr;222:155-61 PMID: 18364000
  36. Hierarchy of immunosuppressive strength among myeloid-derived suppressor cell subsets is determined by GM-CSF.
    Eur J Immunol. 2010 Jan;40(1):22-35 PMID: 19941314
  37. Regulatory T cells and immune tolerance.
    Cell. 2008 May 30;133(5):775-87 PMID: 18510923
  38. The inflammatory micro-environment in tumor progression: the role of tumor-associated macrophages.
    Crit Rev Oncol Hematol. 2008 Apr;66(1):1-9 PMID: 17913510
  39. Adjuvant oral clodronate improves the overall survival of primary breast cancer patients with micrometastases to the bone marrow: a long-term follow-up.
    Ann Oncol. 2008 Dec;19(12):2007-11 PMID: 18664560
  40. An amino-bisphosphonate targets MMP-9-expressing macrophages and angiogenesis to impair cervical carcinogenesis.
    J Clin Invest. 2004 Sep;114(5):623-33 PMID: 15343380
  41. Immature myeloid cells and cancer-associated immune suppression.
    Cancer Immunol Immunother. 2002 Aug;51(6):293-8 PMID: 12111117
  42. Cancer-related inflammation, the seventh hallmark of cancer: links to genetic instability.
    Carcinogenesis. 2009 Jul;30(7):1073-81 PMID: 19468060
  43. A prospective, randomized, placebo-controlled trial of zoledronic acid in bony metastatic bladder cancer.
    Int J Clin Oncol. 2010 Aug;15(4):382-9 PMID: 20354750
  44. Zoledronic acid is effective against experimental malignant pleural effusion.
    Am J Respir Crit Care Med. 2008 Jul 1;178(1):50-9 PMID: 18388351
  45. Tumor-induced immune dysfunctions caused by myeloid suppressor cells.
    J Immunother. 2001 Nov-Dec;24(6):431-46 PMID: 11759067
  46. Endocrine therapy plus zoledronic acid in premenopausal breast cancer.
    N Engl J Med. 2009 Feb 12;360(7):679-91 PMID: 19213681
  47. Macrophage polarization: tumor-associated macrophages as a paradigm for polarized M2 mononuclear phagocytes.
    Trends Immunol. 2002 Nov;23(11):549-55 PMID: 12401408
  48. Bisphosphonates and the prevention of metastasis: first evidences from preclinical and clinical studies.
    Cancer. 2000 Jun 15;88(12 Suppl):3080-8 PMID: 10898355
  49. Liposome mediated depletion of macrophages: mechanism of action, preparation of liposomes and applications.
    J Immunol Methods. 1994 Sep 14;174(1-2):83-93 PMID: 8083541
  50. Immunotherapy of murine malignant mesothelioma using tumor lysate-pulsed dendritic cells.
    Am J Respir Crit Care Med. 2005 May 15;171(10):1168-77 PMID: 15764728
  51. Chorionic gonadotropin alleviates thioglycollate-induced peritonitis by affecting macrophage function.
    J Leukoc Biol. 2009 Aug;86(2):361-70 PMID: 19414540
  52. Chorionic gonadotropin can enhance innate immunity by stimulating macrophage function.
    J Leukoc Biol. 2007 Oct;82(4):926-33 PMID: 17626151
  53. Recent developments in bisphosphonates for patients with metastatic breast cancer.
    BMJ. 2005 Apr 2;330(7494):769-73 PMID: 15802719
  54. Bisphosphonates inhibit prostate and breast carcinoma cell adhesion to unmineralized and mineralized bone extracellular matrices.
    Cancer Res. 1997 Sep 15;57(18):3890-4 PMID: 9307266
  55. Long-term efficacy of zoledronic acid for the prevention of skeletal complications in patients with metastatic hormone-refractory prostate cancer.
    J Natl Cancer Inst. 2004 Jun 2;96(11):879-82 PMID: 15173273
  56. Essential requirement of antigen presentation by monocyte lineage cells for the activation of primary human gamma delta T cells by aminobisphosphonate antigen.
    J Immunol. 2001 May 1;166(9):5508-14 PMID: 11313389
  57. Metastasis to bone: causes, consequences and therapeutic opportunities.
    Nat Rev Cancer. 2002 Aug;2(8):584-93 PMID: 12154351
  58. Bisphosphonates antagonise bone growth factors' effects on human breast cancer cells survival.
    Br J Cancer. 2003 Jul 7;89(1):178-84 PMID: 12838321
  59. Macrophage arginine metabolism and the inhibition or stimulation of cancer.
    J Immunol. 1992 Oct 15;149(8):2709-14 PMID: 1401910
  60. Tumour-educated macrophages promote tumour progression and metastasis.
    Nat Rev Cancer. 2004 Jan;4(1):71-8 PMID: 14708027
  61. R115777 (Zarnestra)/Zoledronic acid (Zometa) cooperation on inhibition of prostate cancer proliferation is paralleled by Erk/Akt inactivation and reduced Bcl-2 and bad phosphorylation.
    J Cell Physiol. 2007 May;211(2):533-43 PMID: 17192846
  62. Clodronate-liposome-mediated depletion of tumour-associated macrophages: a new and highly effective antiangiogenic therapy approach.
    Br J Cancer. 2006 Aug 7;95(3):272-81 PMID: 16832418
  63. Myeloid dendritic cell precursors generated from bone marrow suppress T cell responses via cell contact and nitric oxide production in vitro.
    Eur J Immunol. 2005 Dec;35(12):3533-44 PMID: 16331707
  64. Sustained inhibition of tumor growth and prolonged survival following sequential administration of doxorubicin and zoledronic acid in a breast cancer model.
    Int J Cancer. 2010 Jan 15;126(2):522-32 PMID: 19621384
  65. Multicenter, randomized, phase 2 study of zoledronic acid in combination with docetaxel and carboplatin in patients with unresectable stage IIIB or stage IV non-small cell lung cancer.
    Lung Cancer. 2010 Mar;67(3):330-8 PMID: 19493585
  66. Detection, localization and kinetics of immunomodulating liposomes in vivo.
    Res Immunol. 1992 Feb;143(2):235-41 PMID: 1574653
  67. Bisphosphonates in the prevention of disease recurrence: current results and ongoing trials.
    Curr Cancer Drug Targets. 2009 Nov;9(7):824-33 PMID: 20025570
  68. Amino-biphosphonate-mediated MMP-9 inhibition breaks the tumor-bone marrow axis responsible for myeloid-derived suppressor cell expansion and macrophage infiltration in tumor stroma.
    Cancer Res. 2007 Dec 1;67(23):11438-46 PMID: 18056472
  69. Macrophage-derived SPARC bridges tumor cell-extracellular matrix interactions toward metastasis.
    Cancer Res. 2008 Nov 1;68(21):9050-9 PMID: 18974151
  70. Urinary N-telopeptide (uNTx) is an independent prognostic factor for overall survival in patients with bone metastases from castration-resistant prostate cancer.
    Ann Oncol. 2010 Sep;21(9):1864-1869 PMID: 20181574
  71. Bisphosphonates inhibit breast and prostate carcinoma cell invasion, an early event in the formation of bone metastases.
    Cancer Res. 2000 Jun 1;60(11):2949-54 PMID: 10850442
Article Info
Journal
British journal of cancer
Abbr.
Br J Cancer
ISSN
1532-1827
Published
2010-08-24
Epub
2010-00-27
Pages
629-41
Language
English
Region
England
NLM ID
0370635
PMCID
PMC2938257
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com