Vertebral bone marrow clot breakthrough: a powerful osteogenic and antibacterial scaffold for spinal fusion surgery

Прорыв сгустка костного мозга позвонка: мощный остеогенный и антибактериальный каркас для операций спинального слияния
Martina Cappelletti, Francesca Salamanna, Gianluca Giavaresi, Alessandro Gasbarrini, Maria Teresa Sartori, Giuseppe Tedesco, Daniele Ghezzi, Matteo Cianciavicchia, Chiara Alcherigi, Cristiana Griffoni, Giovanni Barbanti Bròdano
2025-10-21

antibacterial activitykinocidinsmesenchymal stromal cells (MSCs)spinal fusionvertebral body bone marrow clot
Achieving solid arthrodesis while minimizing postoperative infections remains a critical challenge in spinal fusion surgery. Clotted bone marrow aspirate (BMA) has emerged as promising tools to enhance bone fusion, yet their antimicrobial potential remains underexplored. This study investigates the biological and antimicrobial properties of vertebral body BMA (vBMA) clots as a multifunctional scaffold for spinal fusion. Human vBMA clots were characterized by growth factor and cytokine content via ELISA. Mesenchymal stromal cells (MSCs) were isolated and analyzed for morphology, viability, immunophenotype, and trilineage differentiation potential. The antibacterial activity of vBMA clots was assessed against Staphylococcus aureus and Escherichia coli strains by monitoring the bacterial concentration over time. Additionally, production of kinocidins (CXCL1, CCL5, CXCL7, CXCL8, CXCL12) was quantified. vBMA clots exhibited high levels of regenerative cytokines, especially PDGF-AB, and contained viable, multipotent MSCs expressing canonical surface markers. Antibacterial assays revealed potent, broad-spectrum bactericidal activity, with >99 % CFU reduction for both pathogens after 24 h of exposure to the clots, independently from the bacterial culture medium used. Notably, kinocidin production significantly increased upon bacterial exposure, particularly in response to E. coli, suggesting active immune engagement by clot-resident cells. vBMA clots possess a dual regenerative and antimicrobial function, offering a novel, one step and autologous strategy for enhancing spinal fusion outcomes while reducing infection risk. This bioactive scaffold may represent a paradigm shift in spinal surgery by unifying osteogenic support and localized antibacterial defense in a single therapeutic material.
1
Antibacterial activity of vBMA clots was effective independently of the bacterial culture medium used.
2
Production of kinocidins (CXCL1, CCL5, CXCL7, CXCL8, CXCL12) by clot-resident cells significantly increased upon bacterial exposure, especially in response to E. coli.
3
Vertebral body bone marrow aspirate (vBMA) clots contain high levels of regenerative cytokines, notably PDGF-AB.
4
vBMA clots demonstrated potent broad-spectrum bactericidal activity, achieving >99% CFU reduction for Staphylococcus aureus and Escherichia coli after 24 hours.
5
vBMA clots include viable, multipotent mesenchymal stromal cells (MSCs) expressing canonical surface markers and trilineage differentiation potential.
6
vBMA clots provide a dual regenerative and antimicrobial scaffold, supporting a one-step autologous strategy to enhance spinal fusion and reduce infection risk.

Vertebral body bone marrow aspirate (vBMA) clots used as a scaffold for spinal fusion

Dual osteogenic and antibacterial properties and biological activity of vBMA clots, including growth factor/cytokine content, MSC viability and multipotency, kinocidin production, and bactericidal efficacy against Staphylococcus aureus and Escherichia coli

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2025-10-21
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Martina Cappelletti
Francesca Salamanna
Gianluca Giavaresi
Alessandro Gasbarrini
Maria Teresa Sartori
Giuseppe Tedesco
Daniele Ghezzi
Matteo Cianciavicchia
Chiara Alcherigi
Cristiana Griffoni
Giovanni Barbanti Bròdano
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