Skip to main content
Erschienen in: Angiogenesis 4/2013

01.10.2013 | Brief Communication

Erythropoietin is involved in the angiogenic potential of bone marrow macrophages in multiple myeloma

verfasst von: Annunziata De Luisi, Laura Binetti, Roberto Ria, Simona Ruggieri, Simona Berardi, Ivana Catacchio, Vito Racanelli, Vincenzo Pavone, Bernardo Rossini, Angelo Vacca, Domenico Ribatti

Erschienen in: Angiogenesis | Ausgabe 4/2013

Einloggen, um Zugang zu erhalten

Abstract

Erythropoietin (Epo) is the crucial cytokine regulator of red blood cell production, and recombinant human erythropoietin (rHuEpo) is widely used in clinical practice for the treatment of anemia, primarily in kidney disease and in cancer. Increasing evidence suggests several biological roles for Epo and its receptor, Epo-R, unrelated to erythropoiesis, including angiogenesis. Epo-R has been found expressed in various non-haematopoietic cells and tissues, and in cancer cells. Here, we detected the expression of Epo-R in bone marrow-derived macrophages (BMMAs) from multiple myeloma (MM) and monoclonal gammopathy of undetermined significance (MGUS) patients and assessed whether Epo/Epo-R axis plays a role in MM macrophage-mediated angiogenesis. We found that Epo-R is over-expressed in BMMAs from MM patients with active disease compared to MGUS patients. The treatment of BMMAs with rHuEpo significantly increased the expression and secretion of key pro-angiogenic mediators, such as vascular endothelial growth factor, hepatocyte growth factor and monocyte chemotactic protein (MCP-1/CCL-2), through activation of JAK2/STAT5 and PI3 K/Akt pathways. In addition, the conditioned media harvested from rHuEpo-treated BMMAs enhanced bone marrow-derived endothelial cell migration and capillary morphogenesis in vitro, and induced angiogenesis in the chorioallantoic membrane of chick embryos in vivo. Furthermore, we found an increase in the circulating levels of several pro-angiogenic cytokines in serum of MM patients with anemia under treatment with Epo. Our findings highlight the direct effect of rHuEpo on macrophage-mediated production of pro-angiogenic factors, suggesting that Epo/Epo-R pathway may be involved in the regulation of angiogenic response occurring in MM.
Anhänge
Nur mit Berechtigung zugänglich
Literatur
1.
Zurück zum Zitat Vacca A, Ribatti D, Roncali L et al (1994) Bone marrow angiogenesis and progression in multiple myeloma. Br J Haematol 87(3):503–508CrossRefPubMed Vacca A, Ribatti D, Roncali L et al (1994) Bone marrow angiogenesis and progression in multiple myeloma. Br J Haematol 87(3):503–508CrossRefPubMed
2.
Zurück zum Zitat Ribatti D, Nico B, Crivellato E, Roccaro AM, Vacca A (2007) The history of the angiogenic switch concept. Leukemia 21(1):44–52CrossRefPubMed Ribatti D, Nico B, Crivellato E, Roccaro AM, Vacca A (2007) The history of the angiogenic switch concept. Leukemia 21(1):44–52CrossRefPubMed
3.
Zurück zum Zitat Vacca A, Ribatti D (2006) Bone marrow angiogenesis in multiple myeloma. Leukemia 20(2):193–199CrossRefPubMed Vacca A, Ribatti D (2006) Bone marrow angiogenesis in multiple myeloma. Leukemia 20(2):193–199CrossRefPubMed
4.
Zurück zum Zitat Ribatti D, Nico B, Vacca A (2006) Importance of the bone marrow microenvironment in inducing the angiogenic response in multiple myeloma. Oncogene 25(31):4257–4266CrossRefPubMed Ribatti D, Nico B, Vacca A (2006) Importance of the bone marrow microenvironment in inducing the angiogenic response in multiple myeloma. Oncogene 25(31):4257–4266CrossRefPubMed
5.
Zurück zum Zitat Scavelli C, Nico B, Cirulli T et al (2008) Vasculogenic mimicry by bone marrow macrophages in patients with multiple myeloma. Oncogene 27(5):663–674CrossRefPubMed Scavelli C, Nico B, Cirulli T et al (2008) Vasculogenic mimicry by bone marrow macrophages in patients with multiple myeloma. Oncogene 27(5):663–674CrossRefPubMed
6.
7.
Zurück zum Zitat Lifshitz L, Tabak G, Gassmann M, Mittelman M, Neumann D (2010) Macrophages as a novel target for erythropoietin. Haematologica 95(11):1823–1831CrossRefPubMed Lifshitz L, Tabak G, Gassmann M, Mittelman M, Neumann D (2010) Macrophages as a novel target for erythropoietin. Haematologica 95(11):1823–1831CrossRefPubMed
8.
Zurück zum Zitat Vacca A, Ria R, Semeraro F et al (2003) Endothelial cells in the bone marrow of patients with multiple myeloma. Blood 102(9):3340–3348CrossRefPubMed Vacca A, Ria R, Semeraro F et al (2003) Endothelial cells in the bone marrow of patients with multiple myeloma. Blood 102(9):3340–3348CrossRefPubMed
9.
Zurück zum Zitat Moschetta M, Di Pietro G, Ria R et al (2010) Bortezomib and zoledronic acid on angiogenic and vasculogenic activities of bone marrow macrophages in patients with multiple myeloma. Eur J Cancer 46(2):420–429CrossRefPubMed Moschetta M, Di Pietro G, Ria R et al (2010) Bortezomib and zoledronic acid on angiogenic and vasculogenic activities of bone marrow macrophages in patients with multiple myeloma. Eur J Cancer 46(2):420–429CrossRefPubMed
10.
Zurück zum Zitat De Luisi A, Ferrucci A, Coluccia AML et al (2011) Lenalidomide restrains motility and overangiogenic potential of bone marrow endothelial cells in patients with active multiple myeloma. Clin Cancer Res 17(7):1935–1946CrossRefPubMed De Luisi A, Ferrucci A, Coluccia AML et al (2011) Lenalidomide restrains motility and overangiogenic potential of bone marrow endothelial cells in patients with active multiple myeloma. Clin Cancer Res 17(7):1935–1946CrossRefPubMed
11.
Zurück zum Zitat Livak KJ, Schmittgen TD (2001) Analysis of relative gene expression data using real-time quantitative PCR and the 2(-delta delta C(T)) method. Methods 25(4):402–408CrossRefPubMed Livak KJ, Schmittgen TD (2001) Analysis of relative gene expression data using real-time quantitative PCR and the 2(-delta delta C(T)) method. Methods 25(4):402–408CrossRefPubMed
12.
Zurück zum Zitat Ribatti D, Nico B, Vacca A, Presta M (2006) The gelatin sponge-chorioallantoic membrane assay. Nat Protoc 1(1):85–91CrossRefPubMed Ribatti D, Nico B, Vacca A, Presta M (2006) The gelatin sponge-chorioallantoic membrane assay. Nat Protoc 1(1):85–91CrossRefPubMed
13.
Zurück zum Zitat Elliott S, Sinclair AM (2012) The effect of erythropoietin on normal and neoplastic cells. Biologics 6:163–189PubMed Elliott S, Sinclair AM (2012) The effect of erythropoietin on normal and neoplastic cells. Biologics 6:163–189PubMed
14.
Zurück zum Zitat Ribatti D, Presta M, Vacca A et al (1999) Human erythropoietin induces a pro-angiogenic phenotype in cultured endothelial cells and stimulates neovascularization in vivo. Blood 93(8):2627–2636PubMed Ribatti D, Presta M, Vacca A et al (1999) Human erythropoietin induces a pro-angiogenic phenotype in cultured endothelial cells and stimulates neovascularization in vivo. Blood 93(8):2627–2636PubMed
15.
Zurück zum Zitat Perelman N, Selvaraj SK, Batra S et al (2003) Placenta growth factor activates monocytes and correlates with sickle disease severity. Blood 102(4):1506–1514CrossRefPubMed Perelman N, Selvaraj SK, Batra S et al (2003) Placenta growth factor activates monocytes and correlates with sickle disease severity. Blood 102(4):1506–1514CrossRefPubMed
16.
Zurück zum Zitat Okazaki T, Ebihara S, Asada M, Yamanda S, Niu K, Arai H (2008) Erythropoietin promotes the growth of tumors lacking its receptor and decreases survival of tumor-bearing mice by enhancing angiogenesis. Neoplasia 10(9):932–939PubMed Okazaki T, Ebihara S, Asada M, Yamanda S, Niu K, Arai H (2008) Erythropoietin promotes the growth of tumors lacking its receptor and decreases survival of tumor-bearing mice by enhancing angiogenesis. Neoplasia 10(9):932–939PubMed
17.
Zurück zum Zitat Blackwell KL, Kirkpatrick JP, Snyder SA et al (2003) Human recombinant erythropoietin significantly improves tumor oxygenation independent of its effects on hemoglobin. Cancer Res 63(19):6162–6165PubMed Blackwell KL, Kirkpatrick JP, Snyder SA et al (2003) Human recombinant erythropoietin significantly improves tumor oxygenation independent of its effects on hemoglobin. Cancer Res 63(19):6162–6165PubMed
18.
Zurück zum Zitat Hardee ME, Cao Y, Fu P et al (2007) Erythropietin blockade inhibits the induction of tumor angiogenesis and progression. PLoS ONE 2(6):e549CrossRefPubMed Hardee ME, Cao Y, Fu P et al (2007) Erythropietin blockade inhibits the induction of tumor angiogenesis and progression. PLoS ONE 2(6):e549CrossRefPubMed
19.
Zurück zum Zitat Xue Y, Lim S, Yang Y et al (2011) PDGF-BB modulates hematopoiesis and tumor angiogenesis by inducing erythropoietin production in stromal cells. Nat Med 18(1):100–110CrossRefPubMed Xue Y, Lim S, Yang Y et al (2011) PDGF-BB modulates hematopoiesis and tumor angiogenesis by inducing erythropoietin production in stromal cells. Nat Med 18(1):100–110CrossRefPubMed
20.
Zurück zum Zitat Ribatti D, Marzullo A, Nico B, Crivellato E, Ria R, Vacca A (2003) Erytropoietin is an angiogenic factor in gastric carcinoma. Histopathology 42(3):246–250CrossRefPubMed Ribatti D, Marzullo A, Nico B, Crivellato E, Ria R, Vacca A (2003) Erytropoietin is an angiogenic factor in gastric carcinoma. Histopathology 42(3):246–250CrossRefPubMed
21.
Zurück zum Zitat Ribatti D, Marzullo A, Gentile A et al (2007) Erytropoietin/erytropoietin-receptor system is involved in angiogenesis in human hepatocellular carcinoma. Histopathology 50(5):591–596CrossRefPubMed Ribatti D, Marzullo A, Gentile A et al (2007) Erytropoietin/erytropoietin-receptor system is involved in angiogenesis in human hepatocellular carcinoma. Histopathology 50(5):591–596CrossRefPubMed
22.
Zurück zum Zitat Ribatti D, Poliani PL, Longo V, Mangieri D, Nico B, Vacca A (2007) Erythropoietin/erythropoietin-receptor system is involved in angiogenesis in human neuroblastoma. Histopathology 50(5):636–641CrossRefPubMed Ribatti D, Poliani PL, Longo V, Mangieri D, Nico B, Vacca A (2007) Erythropoietin/erythropoietin-receptor system is involved in angiogenesis in human neuroblastoma. Histopathology 50(5):636–641CrossRefPubMed
23.
Zurück zum Zitat Ribatti D, Nico B, Perra MT et al (2010) Erytropoietin is involved in angiogenesis in human primary melanoma. Int J Exp Pathol 91(6):495–499CrossRefPubMed Ribatti D, Nico B, Perra MT et al (2010) Erytropoietin is involved in angiogenesis in human primary melanoma. Int J Exp Pathol 91(6):495–499CrossRefPubMed
24.
Zurück zum Zitat Nico B, Annese T, Guidolin D, Finato N, Crivellato E, Ribatti D (2011) Epo is involved in angiogenesis in human glioma. J Neurooncol 102(1):51–58CrossRefPubMed Nico B, Annese T, Guidolin D, Finato N, Crivellato E, Ribatti D (2011) Epo is involved in angiogenesis in human glioma. J Neurooncol 102(1):51–58CrossRefPubMed
25.
Zurück zum Zitat Yang J, Xiao Z, Li T, Gu X, Fan B (2012) Erytropoietin promotes the growth of pituitary adenomas by enhancing angiogenesis. Int J Oncol 40(4):1230–1237PubMed Yang J, Xiao Z, Li T, Gu X, Fan B (2012) Erytropoietin promotes the growth of pituitary adenomas by enhancing angiogenesis. Int J Oncol 40(4):1230–1237PubMed
26.
Zurück zum Zitat Ribatti D, Crivellato E, Nico B, Guidolin D, Gassmann M, Djonov V (2009) Mast cells and macrophages in duodenal mucosa of mice overexpressing erythropoietin. J Anat 215(5):548–554CrossRefPubMed Ribatti D, Crivellato E, Nico B, Guidolin D, Gassmann M, Djonov V (2009) Mast cells and macrophages in duodenal mucosa of mice overexpressing erythropoietin. J Anat 215(5):548–554CrossRefPubMed
27.
Zurück zum Zitat Bogdanova A, Mihov D, Lutz H, Saam B, Gassmann M, Vogel J (2007) Enhanced erythro-phagocytosis in polycythemic mice overexpressing erythropoietin. Blood 110(2):762–769CrossRefPubMed Bogdanova A, Mihov D, Lutz H, Saam B, Gassmann M, Vogel J (2007) Enhanced erythro-phagocytosis in polycythemic mice overexpressing erythropoietin. Blood 110(2):762–769CrossRefPubMed
28.
Zurück zum Zitat Haroon ZA, Amin K, Jiang X, Arcasoy MO (2003) A novel role for erythropoietin during fibrin-induced wound-healing response. Am J Pathol 163(3):993–1000CrossRefPubMed Haroon ZA, Amin K, Jiang X, Arcasoy MO (2003) A novel role for erythropoietin during fibrin-induced wound-healing response. Am J Pathol 163(3):993–1000CrossRefPubMed
29.
Zurück zum Zitat Olujihungle A, Handa S, Holmes J (1997) Does erythropoietin accelerate malignant transformation in multiple myeloma? Postgrad Med J 73(857):163–164CrossRef Olujihungle A, Handa S, Holmes J (1997) Does erythropoietin accelerate malignant transformation in multiple myeloma? Postgrad Med J 73(857):163–164CrossRef
30.
Zurück zum Zitat Bunworasate U, Arnouk H, Minderman H et al (2001) Erythopoietin-dependent transformation of myelodysplastic syndrome to acute monoblastic leukemia. Blood 98(12):3492–3494CrossRefPubMed Bunworasate U, Arnouk H, Minderman H et al (2001) Erythopoietin-dependent transformation of myelodysplastic syndrome to acute monoblastic leukemia. Blood 98(12):3492–3494CrossRefPubMed
31.
Zurück zum Zitat Mittelman M, Zeidman A, Fradin Z, Magazanik A, Lewinski UH, Cohen A (1997) Recombinant human erythropoietin in the treatment of multiple myeloma-associated anemia. Acta Haematol 98(4):204–210CrossRefPubMed Mittelman M, Zeidman A, Fradin Z, Magazanik A, Lewinski UH, Cohen A (1997) Recombinant human erythropoietin in the treatment of multiple myeloma-associated anemia. Acta Haematol 98(4):204–210CrossRefPubMed
32.
Zurück zum Zitat Mittelman M, Neumann D, Peled A, Kanter P, Haran-Ghera N (2001) Erythropoietin induces tumor regression and antitumor immune responses in murine myeloma models. Proc Natl Acad Sci USA 98(9):5181–5186CrossRefPubMed Mittelman M, Neumann D, Peled A, Kanter P, Haran-Ghera N (2001) Erythropoietin induces tumor regression and antitumor immune responses in murine myeloma models. Proc Natl Acad Sci USA 98(9):5181–5186CrossRefPubMed
33.
Zurück zum Zitat Prutchi-Sagiv S, Golishevsky N, Oster HS et al (2006) Erytropoietin treatment in advanced multiple myeloma is associated with improved immunological functions: could it be beneficial in early disease? Br J Haematol 135(5):660–672CrossRefPubMed Prutchi-Sagiv S, Golishevsky N, Oster HS et al (2006) Erytropoietin treatment in advanced multiple myeloma is associated with improved immunological functions: could it be beneficial in early disease? Br J Haematol 135(5):660–672CrossRefPubMed
34.
Zurück zum Zitat Katz O, Barzilay E, Skaat A, Herman A, Mittelman M, Neumann D (2005) Erytropoietin induced tumor mass reduction in murine lymphoproliferative models. Acta Haematol 114(3):177–179CrossRefPubMed Katz O, Barzilay E, Skaat A, Herman A, Mittelman M, Neumann D (2005) Erytropoietin induced tumor mass reduction in murine lymphoproliferative models. Acta Haematol 114(3):177–179CrossRefPubMed
35.
Zurück zum Zitat Katz O, Gil L, Lifshitz L et al (2007) Erytropoietin enhances immune responses in mice. Eur J Immunol 37(6):1584–1593CrossRefPubMed Katz O, Gil L, Lifshitz L et al (2007) Erytropoietin enhances immune responses in mice. Eur J Immunol 37(6):1584–1593CrossRefPubMed
36.
Zurück zum Zitat Leyland-Jones B (2003) Breast cancer trial with erythropoietin terminated unexpectedly. Lancet Oncol 4(8):459–460CrossRefPubMed Leyland-Jones B (2003) Breast cancer trial with erythropoietin terminated unexpectedly. Lancet Oncol 4(8):459–460CrossRefPubMed
37.
Zurück zum Zitat Powles T, Shamash J, Liu W (2004) Erytropoietin to treat anemia in patients with head and neck cancer. Lancet 363(9402):82CrossRefPubMed Powles T, Shamash J, Liu W (2004) Erytropoietin to treat anemia in patients with head and neck cancer. Lancet 363(9402):82CrossRefPubMed
38.
Zurück zum Zitat Cao Y (2013) Erytropoietin in cancer: a dilemma in risk therapy. Trends Endocrinol Metab 24(4):190–199CrossRefPubMed Cao Y (2013) Erytropoietin in cancer: a dilemma in risk therapy. Trends Endocrinol Metab 24(4):190–199CrossRefPubMed
Metadaten
Titel
Erythropoietin is involved in the angiogenic potential of bone marrow macrophages in multiple myeloma
verfasst von
Annunziata De Luisi
Laura Binetti
Roberto Ria
Simona Ruggieri
Simona Berardi
Ivana Catacchio
Vito Racanelli
Vincenzo Pavone
Bernardo Rossini
Angelo Vacca
Domenico Ribatti
Publikationsdatum
01.10.2013
Verlag
Springer Netherlands
Erschienen in
Angiogenesis / Ausgabe 4/2013
Print ISSN: 0969-6970
Elektronische ISSN: 1573-7209
DOI
https://doi.org/10.1007/s10456-013-9369-2

Weitere Artikel der Ausgabe 4/2013

Angiogenesis 4/2013 Zur Ausgabe

Leitlinien kompakt für die Innere Medizin

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

Echinokokkose medikamentös behandeln oder operieren?

06.05.2024 DCK 2024 Kongressbericht

Die Therapie von Echinokokkosen sollte immer in spezialisierten Zentren erfolgen. Eine symptomlose Echinokokkose kann – egal ob von Hunde- oder Fuchsbandwurm ausgelöst – konservativ erfolgen. Wenn eine Op. nötig ist, kann es sinnvoll sein, vorher Zysten zu leeren und zu desinfizieren. 

Umsetzung der POMGAT-Leitlinie läuft

03.05.2024 DCK 2024 Kongressbericht

Seit November 2023 gibt es evidenzbasierte Empfehlungen zum perioperativen Management bei gastrointestinalen Tumoren (POMGAT) auf S3-Niveau. Vieles wird schon entsprechend der Empfehlungen durchgeführt. Wo es im Alltag noch hapert, zeigt eine Umfrage in einem Klinikverbund.

Proximale Humerusfraktur: Auch 100-Jährige operieren?

01.05.2024 DCK 2024 Kongressbericht

Mit dem demographischen Wandel versorgt auch die Chirurgie immer mehr betagte Menschen. Von Entwicklungen wie Fast-Track können auch ältere Menschen profitieren und bei proximaler Humerusfraktur können selbst manche 100-Jährige noch sicher operiert werden.

Die „Zehn Gebote“ des Endokarditis-Managements

30.04.2024 Endokarditis Leitlinie kompakt

Worauf kommt es beim Management von Personen mit infektiöser Endokarditis an? Eine Kardiologin und ein Kardiologe fassen die zehn wichtigsten Punkte der neuen ESC-Leitlinie zusammen.

Update Innere Medizin

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.