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Published on: February 28, 2017
Paracrine inhibition of osteoblast differentiation induced by neuroblastoma cells
Donatella Granchi1, Serena Rubina Baglìo, Ilaria Amato
1Laboratory of Pathophysiology, Istituto Ortopedico Rizzoli, Bologna, Italy. donatella.granchi.@ior.it
Abstract:
The aim of our study was to investigate whether the defective function of osteogenic cells induced by neuroblastoma might play a role in the development of skeletal metastases. This mechanism has been extensively demonstrated for multiple myeloma, in which the blockage of osteoblast differentiation has been ascribed to the inhibitors of canonical Wingless pathway (Wnt), namely Dickkopf 1 (Dkk1). Our purpose was to verify if neuroblastoma cells derived from bone marrow metastases (SH-SY5Y, LAN1) or primaries (NB100, CHP212) hamper the differentiation of mesenchymal stem cells (hMSCs) into osteoblasts in a paracrine manner, and to test whether this ability depends on Dkk1 activity. We found that all neuroblastoma cells increased the proliferation of hMSCs collected from pediatric-aged donors, with a corresponding decrease in osteoblast differentiation markers, including alkaline phosphatase (ALP), analyzed as gene expression, enzymatic activity and number of ALP-positive colony forming units, osteoprotegerin (OPG) release, OPG and osteocalcin gene-expression. Dkk1 mRNA and protein were detectable in all cell lines, and the use of neutralizing anti-Dkk1 antibody reversed the effects induced by SH-SY5Y cells. Taken together, our results confirm that neuroblastoma hinders osteoblastogenesis, and that Dkk1 release seems to play a crucial role in blocking the differentiation of osteoprogenitor cells, though the ability to promote osteoclast activation remains an essential requirement for the development of skeletal metastases. Finally, our findings suggest that strategies regulating Wnt signaling and Dkk1 activity could be considered for adjuvant therapies in neuroblastoma metastasizing to the skeleton.
Insights
Neuroblastoma hinders bone formation by blocking osteoblast differentiation, partly via Dickkopf 1 (Dkk1). Targeting Dkk1 may offer new therapies for skeletal metastases in neuroblastoma patients.
Area of Science:
- Oncology
- Cell Biology
- Biochemistry
Background:
- Skeletal metastases are a significant complication in neuroblastoma.
- The role of osteogenic cell dysfunction in skeletal metastasis development is under investigation.
- Dickkopf 1 (Dkk1) is known to inhibit osteoblast differentiation in multiple myeloma.
Purpose of the Study:
- To investigate if neuroblastoma cells impair mesenchymal stem cell (hMSC) differentiation into osteoblasts.
- To determine if this impairment is mediated by Dickkopf 1 (Dkk1) in a paracrine manner.
- To explore potential therapeutic strategies targeting Wnt signaling.
Main Methods:
- Co-culture of neuroblastoma cell lines (SH-SY5Y, LAN1, NB100, CHP212) with human mesenchymal stem cells (hMSCs).
- Assessment of osteoblast differentiation markers (alkaline phosphatase, osteocalcin, osteoprotegerin).
- Analysis of Dkk1 mRNA and protein levels; use of neutralizing anti-Dkk1 antibodies.
Main Results:
- Neuroblastoma cells increased hMSC proliferation but decreased osteoblast differentiation markers.
- Dkk1 mRNA and protein were detected in all tested neuroblastoma cell lines.
- Neutralizing anti-Dkk1 antibodies partially reversed the inhibitory effects of SH-SY5Y cells on osteoblastogenesis.
Conclusions:
- Neuroblastoma actively hinders osteoblastogenesis, contributing to skeletal metastases.
- Dkk1 plays a crucial role in blocking osteoprogenitor cell differentiation.
- Targeting Wnt signaling and Dkk1 activity may be beneficial for adjuvant therapy in skeletal neuroblastoma metastases.
