Multiple Myeloma Cell-Derived Secretome Modulates Bone Marrow Mesenchymal Stromal Cell Migration In Vitro

Multiple myeloma (MM) depends on a permissive bone marrow microenvironment that supports malignant plasma cell survival and disease progression. Bone marrow mesenchymal stromal cells (BM-MSCs) are key components of this niche, but the mechanisms by which they are recruited by MM cells remain unclear. Here, we show that the MM-derived secretome (MM-Sec) promotes BM-MSC wound closure and transwell migration-associated responses in vitro. A small extracellular vesicle (sEV)-enriched pellet was isolated from MM.1S-Sec by differential ultracentrifugation and characterized, and the relative contributions of the sEV-enriched fraction and sEV-depleted secretome (post-100,000× g) to BM-MSC migration were assessed. The results show that the sEV-depleted secretome is more effective than the sEV-enriched fraction in promoting BM-MSC recruitment. Chemokine profiling of MM.1S-Sec identified CCL3 (MIP-1α) and CCL5 (RANTES) as abundant secreted factors and exploratory candidate contributors. Recombinant CCL3 and CCL5 increased the BM-MSC transwell migration response at high concentrations. Priming with MM.1S-Sec was associated with increased transwell migration-associated responses in the presence of CCL3 and CCL5. Together, these exploratory findings suggest that both vesicle-associated and soluble non-vesicular components may contribute to BM-MSC migration, while CCL3 and CCL5 may participate as candidate contributors within a broader network of soluble mediators. These findings identify secretome-mediated modulation of stromal migration as a relevant component of MM–microenvironment crosstalk that warrants further mechanistic investigation.

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Publication Details

Journal
International Journal of Molecular Sciences
Published
2026-09-30
DOI
https://doi.org/10.3390/ijms27198763
Primary Topic
Multiple Myeloma Research and Treatments
Type
article
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article

Multiple Myeloma Cell-Derived Secretome Modulates Bone Marrow Mesenchymal Stromal Cell Migration In Vitro

Maria Inês Almeida, Maria João Fernandes, Susana Gomes dos Santos, Maria José Oliveira et al.
International Journal of Molecular Sciences
Multiple Myeloma Research and Treatments
article

Multiple Myeloma Cell-Derived Secretome Modulates Bone Marrow Mesenchymal Stromal Cell Migration In Vitro

Maria Inês Almeida, Maria João Fernandes, Susana Gomes dos Santos, Maria José Oliveira, Maria Helena Vasconcelos, Andrea Giestinhas, Sara Reis Moura
article en

Abstract

Multiple myeloma (MM) depends on a permissive bone marrow microenvironment that supports malignant plasma cell survival and disease progression. Bone marrow mesenchymal stromal cells (BM-MSCs) are key components of this niche, but the mechanisms by which they are recruited by MM cells remain unclear. Here, we show that the MM-derived secretome (MM-Sec) promotes BM-MSC wound closure and transwell migration-associated responses in vitro. A small extracellular vesicle (sEV)-enriched pellet was isolated from MM.1S-Sec by differential ultracentrifugation and characterized, and the relative contributions of the sEV-enriched fraction and sEV-depleted secretome (post-100,000× g) to BM-MSC migration were assessed. The results show that the sEV-depleted secretome is more effective than the sEV-enriched fraction in promoting BM-MSC recruitment. Chemokine profiling of MM.1S-Sec identified CCL3 (MIP-1α) and CCL5 (RANTES) as abundant secreted factors and exploratory candidate contributors. Recombinant CCL3 and CCL5 increased the BM-MSC transwell migration response at high concentrations. Priming with MM.1S-Sec was associated with increased transwell migration-associated responses in the presence of CCL3 and CCL5. Together, these exploratory findings suggest that both vesicle-associated and soluble non-vesicular components may contribute to BM-MSC migration, while CCL3 and CCL5 may participate as candidate contributors within a broader network of soluble mediators. These findings identify secretome-mediated modulation of stromal migration as a relevant component of MM–microenvironment crosstalk that warrants further mechanistic investigation.

International Journal of Molecular SciencesVol. 27(19)
Universidade do Porto (PT), Rede de Química e Tecnologia (PT), i3S - Instituto de Investigação e Inovação em Saúde, Universidade do Porto (PT), Instituto de Ciências Biomédicas Albel Salazar (PT)
Reduced inequalities
Openalex Percentile: Top 11%
Multiple Myeloma Research and Treatments
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