Cargando…

Bone Marrow Stromal Cells Derived MCP-1 Reverses the Inhibitory Effects of Multiple Myeloma Cells on Osteoclastogenesis by Upregulating the RANK Expression

Multiple myeloma (MM) cells are responsible for aberrant osteoclast (OC) activation. However, when cocultured monocytes, but not OC precursors, with MM cells, we made a novel observation that MM cells inhibited receptor activator of nuclear factor κB ligand (RANKL)-induced increase of OC differentia...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Zhiqiang, Xu, Jingda, Li, Haiyan, Zheng, Yuhuan, He, Jin, Liu, Huan, Zhong, Yuping, Lu, Yong, Hong, Bangxing, Zhang, Mingjun, Lin, Pei, Du, Juan, Hou, Jian, Qian, Jianfei, Kwak, Larry W., Yi, Qing, Yang, Jing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3858321/
https://www.ncbi.nlm.nih.gov/pubmed/24340030
http://dx.doi.org/10.1371/journal.pone.0082453
_version_ 1782295269167071232
author Liu, Zhiqiang
Xu, Jingda
Li, Haiyan
Zheng, Yuhuan
He, Jin
Liu, Huan
Zhong, Yuping
Lu, Yong
Hong, Bangxing
Zhang, Mingjun
Lin, Pei
Du, Juan
Hou, Jian
Qian, Jianfei
Kwak, Larry W.
Yi, Qing
Yang, Jing
author_facet Liu, Zhiqiang
Xu, Jingda
Li, Haiyan
Zheng, Yuhuan
He, Jin
Liu, Huan
Zhong, Yuping
Lu, Yong
Hong, Bangxing
Zhang, Mingjun
Lin, Pei
Du, Juan
Hou, Jian
Qian, Jianfei
Kwak, Larry W.
Yi, Qing
Yang, Jing
author_sort Liu, Zhiqiang
collection PubMed
description Multiple myeloma (MM) cells are responsible for aberrant osteoclast (OC) activation. However, when cocultured monocytes, but not OC precursors, with MM cells, we made a novel observation that MM cells inhibited receptor activator of nuclear factor κB ligand (RANKL)-induced increase of OC differentiation, OC gene expression, signaling pathways and bone resorption activity. Our results showed that MM cells produced multiple inhibitory cytokines of osteoclastogenesis, such as IL-10, which activated STAT3 signaling and induce OC inhibition. However, cocultures of bone marrow stromal cells (BMSCs) reversed MM-induced OC inhibition. We found that MM cells increased production of MCP-1 from BMSCs and BMSC-derived MCP-1 enhanced OC formation. Mechanistic studies showed that IL-10 downregulated RANK expression in monocytes and thus, inhibited RANKL-induced OC formation. In contrast, MCP-1 upregulated RANK expression and thus, enhanced OC formation. Overall, our studies for the first time demonstrated that MM cell have inhibitory effects on osteoclastogenesis by producing inhibitory cytokines. Our results further indicate that activation of osteoclastogenesis in bone marrow requests the crosstalk of MM cells, BMSCs and their produced cytokines. Thus, our studies provide evidences that targeting bone marrow microenvironmental cells and/or cytokines may be a new approach to treating MM bone destruction.
format Online
Article
Text
id pubmed-3858321
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-38583212013-12-11 Bone Marrow Stromal Cells Derived MCP-1 Reverses the Inhibitory Effects of Multiple Myeloma Cells on Osteoclastogenesis by Upregulating the RANK Expression Liu, Zhiqiang Xu, Jingda Li, Haiyan Zheng, Yuhuan He, Jin Liu, Huan Zhong, Yuping Lu, Yong Hong, Bangxing Zhang, Mingjun Lin, Pei Du, Juan Hou, Jian Qian, Jianfei Kwak, Larry W. Yi, Qing Yang, Jing PLoS One Research Article Multiple myeloma (MM) cells are responsible for aberrant osteoclast (OC) activation. However, when cocultured monocytes, but not OC precursors, with MM cells, we made a novel observation that MM cells inhibited receptor activator of nuclear factor κB ligand (RANKL)-induced increase of OC differentiation, OC gene expression, signaling pathways and bone resorption activity. Our results showed that MM cells produced multiple inhibitory cytokines of osteoclastogenesis, such as IL-10, which activated STAT3 signaling and induce OC inhibition. However, cocultures of bone marrow stromal cells (BMSCs) reversed MM-induced OC inhibition. We found that MM cells increased production of MCP-1 from BMSCs and BMSC-derived MCP-1 enhanced OC formation. Mechanistic studies showed that IL-10 downregulated RANK expression in monocytes and thus, inhibited RANKL-induced OC formation. In contrast, MCP-1 upregulated RANK expression and thus, enhanced OC formation. Overall, our studies for the first time demonstrated that MM cell have inhibitory effects on osteoclastogenesis by producing inhibitory cytokines. Our results further indicate that activation of osteoclastogenesis in bone marrow requests the crosstalk of MM cells, BMSCs and their produced cytokines. Thus, our studies provide evidences that targeting bone marrow microenvironmental cells and/or cytokines may be a new approach to treating MM bone destruction. Public Library of Science 2013-12-10 /pmc/articles/PMC3858321/ /pubmed/24340030 http://dx.doi.org/10.1371/journal.pone.0082453 Text en © 2013 Liu et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Liu, Zhiqiang
Xu, Jingda
Li, Haiyan
Zheng, Yuhuan
He, Jin
Liu, Huan
Zhong, Yuping
Lu, Yong
Hong, Bangxing
Zhang, Mingjun
Lin, Pei
Du, Juan
Hou, Jian
Qian, Jianfei
Kwak, Larry W.
Yi, Qing
Yang, Jing
Bone Marrow Stromal Cells Derived MCP-1 Reverses the Inhibitory Effects of Multiple Myeloma Cells on Osteoclastogenesis by Upregulating the RANK Expression
title Bone Marrow Stromal Cells Derived MCP-1 Reverses the Inhibitory Effects of Multiple Myeloma Cells on Osteoclastogenesis by Upregulating the RANK Expression
title_full Bone Marrow Stromal Cells Derived MCP-1 Reverses the Inhibitory Effects of Multiple Myeloma Cells on Osteoclastogenesis by Upregulating the RANK Expression
title_fullStr Bone Marrow Stromal Cells Derived MCP-1 Reverses the Inhibitory Effects of Multiple Myeloma Cells on Osteoclastogenesis by Upregulating the RANK Expression
title_full_unstemmed Bone Marrow Stromal Cells Derived MCP-1 Reverses the Inhibitory Effects of Multiple Myeloma Cells on Osteoclastogenesis by Upregulating the RANK Expression
title_short Bone Marrow Stromal Cells Derived MCP-1 Reverses the Inhibitory Effects of Multiple Myeloma Cells on Osteoclastogenesis by Upregulating the RANK Expression
title_sort bone marrow stromal cells derived mcp-1 reverses the inhibitory effects of multiple myeloma cells on osteoclastogenesis by upregulating the rank expression
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3858321/
https://www.ncbi.nlm.nih.gov/pubmed/24340030
http://dx.doi.org/10.1371/journal.pone.0082453
work_keys_str_mv AT liuzhiqiang bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression
AT xujingda bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression
AT lihaiyan bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression
AT zhengyuhuan bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression
AT hejin bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression
AT liuhuan bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression
AT zhongyuping bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression
AT luyong bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression
AT hongbangxing bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression
AT zhangmingjun bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression
AT linpei bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression
AT dujuan bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression
AT houjian bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression
AT qianjianfei bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression
AT kwaklarryw bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression
AT yiqing bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression
AT yangjing bonemarrowstromalcellsderivedmcp1reversestheinhibitoryeffectsofmultiplemyelomacellsonosteoclastogenesisbyupregulatingtherankexpression