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FGF23 is elevated in multiple myeloma and increases heparanase expression by tumor cells

Multiply myeloma (MM) grows in and destroys bone, where osteocytes secrete FGF23, a hormone which affects phosphate homeostasis and aging. We report that multiple myeloma (MM) cells express receptors for and respond to FGF23. FGF23 increased mRNA for EGR1 and its target heparanase, a pro-osteolytic...

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Autores principales: Suvannasankha, Attaya, Tompkins, Douglas R., Edwards, Daniel F., Petyaykina, Katarina V., Crean, Colin D., Fournier, Pierrick G., Parker, Jamie M., Sandusky, George E., Ichikawa, Shoji, Imel, Erik A., Chirgwin, John M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4637311/
https://www.ncbi.nlm.nih.gov/pubmed/25944690
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author Suvannasankha, Attaya
Tompkins, Douglas R.
Edwards, Daniel F.
Petyaykina, Katarina V.
Crean, Colin D.
Fournier, Pierrick G.
Parker, Jamie M.
Sandusky, George E.
Ichikawa, Shoji
Imel, Erik A.
Chirgwin, John M.
author_facet Suvannasankha, Attaya
Tompkins, Douglas R.
Edwards, Daniel F.
Petyaykina, Katarina V.
Crean, Colin D.
Fournier, Pierrick G.
Parker, Jamie M.
Sandusky, George E.
Ichikawa, Shoji
Imel, Erik A.
Chirgwin, John M.
author_sort Suvannasankha, Attaya
collection PubMed
description Multiply myeloma (MM) grows in and destroys bone, where osteocytes secrete FGF23, a hormone which affects phosphate homeostasis and aging. We report that multiple myeloma (MM) cells express receptors for and respond to FGF23. FGF23 increased mRNA for EGR1 and its target heparanase, a pro-osteolytic factor in MM. FGF23 signals through a complex of klotho and a classical FGF receptor (FGFR); both were expressed by MM cell lines and patient samples. Bone marrow plasma cells from 42 MM patients stained positively for klotho, while plasma cells from 8 patients with monoclonal gammopathy of undetermined significance (MGUS) and 6 controls were negative. Intact, active FGF23 was increased 2.9X in sera of MM patients compared to controls. FGF23 was not expressed by human MM cells, but co-culture with mouse bone increased its mRNA. The FGFR inhibitor NVP-BGJ398 blocked the heparanase response to FGF23. NVP-BGJ398 did not inhibit 8226 growth in vitro but significantly suppressed growth in bone and induction of the osteoclast regulator RANK ligand, while decreasing heparanase mRNA. The bone microenvironment provides resistance to some anti-tumor drugs but increased the activity of NVP-BGJ398 against 8226 cells. The FGF23/klotho/heparanase signaling axis may offer targets for treatment of MM in bone.
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spelling pubmed-46373112015-12-02 FGF23 is elevated in multiple myeloma and increases heparanase expression by tumor cells Suvannasankha, Attaya Tompkins, Douglas R. Edwards, Daniel F. Petyaykina, Katarina V. Crean, Colin D. Fournier, Pierrick G. Parker, Jamie M. Sandusky, George E. Ichikawa, Shoji Imel, Erik A. Chirgwin, John M. Oncotarget Research Paper Multiply myeloma (MM) grows in and destroys bone, where osteocytes secrete FGF23, a hormone which affects phosphate homeostasis and aging. We report that multiple myeloma (MM) cells express receptors for and respond to FGF23. FGF23 increased mRNA for EGR1 and its target heparanase, a pro-osteolytic factor in MM. FGF23 signals through a complex of klotho and a classical FGF receptor (FGFR); both were expressed by MM cell lines and patient samples. Bone marrow plasma cells from 42 MM patients stained positively for klotho, while plasma cells from 8 patients with monoclonal gammopathy of undetermined significance (MGUS) and 6 controls were negative. Intact, active FGF23 was increased 2.9X in sera of MM patients compared to controls. FGF23 was not expressed by human MM cells, but co-culture with mouse bone increased its mRNA. The FGFR inhibitor NVP-BGJ398 blocked the heparanase response to FGF23. NVP-BGJ398 did not inhibit 8226 growth in vitro but significantly suppressed growth in bone and induction of the osteoclast regulator RANK ligand, while decreasing heparanase mRNA. The bone microenvironment provides resistance to some anti-tumor drugs but increased the activity of NVP-BGJ398 against 8226 cells. The FGF23/klotho/heparanase signaling axis may offer targets for treatment of MM in bone. Impact Journals LLC 2015-04-12 /pmc/articles/PMC4637311/ /pubmed/25944690 Text en Copyright: © 2015 Suvannasankha et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Suvannasankha, Attaya
Tompkins, Douglas R.
Edwards, Daniel F.
Petyaykina, Katarina V.
Crean, Colin D.
Fournier, Pierrick G.
Parker, Jamie M.
Sandusky, George E.
Ichikawa, Shoji
Imel, Erik A.
Chirgwin, John M.
FGF23 is elevated in multiple myeloma and increases heparanase expression by tumor cells
title FGF23 is elevated in multiple myeloma and increases heparanase expression by tumor cells
title_full FGF23 is elevated in multiple myeloma and increases heparanase expression by tumor cells
title_fullStr FGF23 is elevated in multiple myeloma and increases heparanase expression by tumor cells
title_full_unstemmed FGF23 is elevated in multiple myeloma and increases heparanase expression by tumor cells
title_short FGF23 is elevated in multiple myeloma and increases heparanase expression by tumor cells
title_sort fgf23 is elevated in multiple myeloma and increases heparanase expression by tumor cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4637311/
https://www.ncbi.nlm.nih.gov/pubmed/25944690
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