Tumor-derived extracellular vesicles inhibit osteogenesis and exacerbate myeloma bone disease

Theranostics. 2019 Jan 1;9(1):196-209. doi: 10.7150/thno.27550. eCollection 2019.

Abstract

Background: As a hallmark driver of multiple myeloma (MM), MM bone disease (MBD) is unique in that it is characterized by severely impaired osteoblast activity resulting from blocked osteogenesis in bone marrow-derived mesenchymal stem cells (BM-MSCs). The mechanisms underlying this preferential blockade are incompletely understood. Methods: miRNA expression of MM cell-derived extracellular vesicles (MM-EVs) was detected by RNA sequencing. MM-EVs impaired osteogenesis and exacerbated MBD were in vitro and in vivo validated by histochemical staining, qPCR and micro-CT. We additionally examined the correlation between CD138+ circulating EVs (cirEVs) count and bone lesion in de novo MM patients. Results: Here, by sequencing and bioinformatics analysis, we found that MM-EVs were enriched in various molecules negatively regulating osteogenesis. We experimentally verified that MM-EVs inhibited BM-MSC osteogenesis, induced elevated expression of miR-103a-3p inhibiting osteogenesis in BM-MSCs, and increased cell viability and interleukin-6 secretion in MM cells. In a mouse model, MM-EVs that were injected into the marrow space of the left tibia led to impaired osteogenesis and exacerbated MBD and MM progression. Furthermore, the levels of CD138+ cirEVs in the peripheral blood were positively correlated with the number of MM bone lesions in MM patients. Conclusions: These findings suggest that MM-EVs play a pivotal role in the development of severely impaired osteoblast activity, which represents a novel biomarker for the precise diagnosis of MBD and a compelling rationale for exploring MM-EVs as a therapeutic target.

Keywords: bone lesions; extracellular vesicles; mesenchymal stem cells; multiple myeloma; osteogenesis.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adult
  • Aged
  • Aged, 80 and over
  • Animals
  • Biological Factors / analysis*
  • Bone Marrow Cells / drug effects
  • Bone Neoplasms / physiopathology*
  • Disease Models, Animal
  • Extracellular Vesicles / chemistry*
  • Extracellular Vesicles / metabolism*
  • Female
  • Gene Expression Regulation / drug effects
  • Humans
  • Male
  • Mesenchymal Stem Cells / drug effects
  • Mice
  • Middle Aged
  • Multiple Myeloma / physiopathology*
  • Osteoblasts / drug effects*
  • Osteogenesis / drug effects*

Substances

  • Biological Factors