Trained innate immunity modulates osteoblast and osteoclast differentiation

Publication date

2024-05

Authors

Rahmani, Nada
Belluomo, R
Kruyt, Moyo C.ORCID 0000-0002-5983-5251ISNI 0000000387798520
Gawlitta, DebbyORCID 0000-0001-9622-3062ISNI 0000000396738562
Joosten, L A B
Weinans, HarrieORCID 0000-0002-2275-6170ISNI 0000000393288658
Croes, Michiel

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Abstract

Macrophages are key regulators in bone repair and regeneration. Recent studies have shown that long-term epigenetic changes and metabolic shifts occur during specific immune training of macrophages that affect their functional state, resulting in heightened (trained) or reduced (tolerant) responses upon exposure to a second stimulus. This is known as innate immune memory. Here, we study the impact of macrophages’ memory trait on osteoblast differentiation of human mesenchymal stromal cells (hMSCs) and osteoclast differentiation. An in vitro trained immunity protocol of monocyte-derived macrophages was employed using inactivated Candida albicans and Bacillus Calmette–Guérin (BCG) to induce a ‘trained’ state and Pam3CSK4 (PAM) and Lipopolysaccharides (LPS) to induce a ‘tolerance’ state. Macrophages were subsequently cocultured with hMSCs undergoing osteogenic differentiation during either resting (unstimulated) or inflammatory conditions (restimulated with LPS). Alkaline phosphatase activity, mineralization, and cytokine levels (TNF, IL-6, oncostatin M and SDF-1α) were measured. In addition, macrophages underwent osteoclast differentiation. Our findings show that trained and tolerized macrophages induced opposing results. Under resting conditions, BCG-trained macrophages enhanced ALP levels (threefold), while under inflammatory conditions this was found in the LPS-tolerized macrophages (fourfold). Coculture of hMSCs with trained macrophages showed mineralization while tolerized macrophages inhibited the process under both resting and inflammatory conditions. While osteoclast differentiation was not affected in trained-macrophages, this ability was significantly loss in tolerized ones. This study further confirms the intricate cross talk between immune cells and bone cells, highlighting the need to consider this interaction in the development of personalized approaches for bone regenerative medicine. Graphical Abstract: (Figure presented.).

Keywords

Bone regeneration, Innate immune memory, Macrophage, MSC, Osteoimmunology, Cancer Research, Cell Biology, Journal Article

Citation

Rahmani, N R, Belluomo, R, Kruyt, M C, Gawlitta, D, Joosten, L A B, Weinans, H & Croes, M 2024, 'Trained innate immunity modulates osteoblast and osteoclast differentiation', Stem cell reviews and reports, vol. 20, no. 4, pp. 1121-1134. https://doi.org/10.1007/s12015-024-10711-9