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Updated: Oct 23, 2025

Osteoclast Derivation from Mouse Bone Marrow
Published on: November 6, 2014
Reelin depletion alleviates multiple myeloma bone disease by promoting osteogenesis and inhibiting osteolysis
Aixia Dou1, Ying Zhang2, Yongjing Wang2
1Department of Hematology, The Second Hospital, Cheeloo College of Medicine, Shandong University, Jinan, Shandong, China. douax0110@163.com.
Abstract:
Extracellular matrix glycoprotein Reelin is associated with tumor metastasis and prognosis in various malignancies. However, its effects on multiple myeloma (MM) are not fully understood. Here, we investigated the regulatory effects of Reelin on MM and its underlying pathogenic mechanisms. Lentivirus plasmid containing short hairpin RNA targeting Reelin (LV3-Reln) was transfected into SP2/0 cells to knockdown Reelin expression. Flow cytometry assay analyzed cell cycle and apoptosis while Transwell assay evaluated invasiveness. BALB/c mice were inoculated with LV3-Reln-transfected SP2/0 cells to establish MM model. Primary myeloma cells and osteoblasts/osteoclast were isolated from tumor tissue and limb long bones respectively. ELISA examined serum biomarkers and immunohistochemistry detected immunoglobulin light chain expression. Morphological changes and osteoclast/osteoblast differentiation were observed by histological staining. mRNA and proteins expression were determined by qPCR and WB. In vitro studies showed that Reelin depletion regulated osteolysis and osteogenesis balance, cell cycle, invasiveness, and apoptosis in SP2/0 cells. In LV3-Reln mice, tumor growth and invasiveness were suppressed, meanwhile, reduced osteoclast activation and enhanced osteoblast activity were observed. Reelin knockdown alleviated extramedullary morbidity and inhibited spleen immune cell apoptosis by down-regulating CDK5, IL-10, and Cyto-C expression. Furthermore, reduced Reelin expression restrained osteoclast differentiation while promoted osteogenesis in the bone of LV3-Reln mice. This was further supported by down-regulation of osteolytic specific mRNAs and proteins (Trap, Mmp9, Ctsk, Clcn7) and up-regulation of osteogenic specific ones (COL-1, Runx2, β-Catenin). Reelin exerted important impacts on myeloma development through rebalancing osteolysis and osteogenesis, thus might be a potential therapeutic target for MM.
Insights
Reelin glycoprotein knockdown suppressed multiple myeloma (MM) growth and bone destruction by rebalancing osteolysis and osteogenesis. This suggests Reelin as a potential therapeutic target for MM patients.
Area of Science:
- Oncology
- Biochemistry
- Cell Biology
Background:
- Reelin, an extracellular matrix glycoprotein, is implicated in tumor metastasis and prognosis.
- The specific role of Reelin in multiple myeloma (MM) pathogenesis remains unclear.
Purpose of the Study:
- To investigate the regulatory effects of Reelin on multiple myeloma.
- To elucidate the underlying pathogenic mechanisms of Reelin in MM.
Main Methods:
- Reelin expression was knocked down in SP2/0 cells using lentivirus-mediated short hairpin RNA (LV3-Reln).
- In vitro assays included flow cytometry for cell cycle and apoptosis, and Transwell assays for invasiveness.
- An MM mouse model was established, and bone microenvironment changes were analyzed via histology, qPCR, and Western blotting.
Main Results:
- Reelin depletion in vitro modulated SP2/0 cell cycle, apoptosis, and invasiveness, and regulated the osteolysis/osteogenesis balance.
- In vivo, Reelin knockdown suppressed tumor growth, reduced osteoclast activity, and enhanced osteoblast activity.
- Reelin knockdown alleviated extramedullary spread and inhibited spleen immune cell apoptosis by downregulating CDK5, IL-10, and Cyto-C.
Conclusions:
- Reelin plays a significant role in multiple myeloma development by disrupting the osteolytic-osteogenic balance.
- Targeting Reelin may offer a novel therapeutic strategy for multiple myeloma.
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