Adult Stem Cell Group, BioMediTech, Faculty of Medicine and Health Technology, Tampere University, Arvo Ylpön katu 34, 33520 Tampere, Finland.
Research, Development and Innovation Centre, Tampere University Hospital, Elämänaukio, Kuntokatu 2, 33520 Tampere, Finland.
Cells. 2023 Jan 5;12(2):224. doi: 10.3390/cells12020224.
Bioactive glass (BaG) materials are increasingly used in clinics, but their regulatory mechanisms on osteogenic differentiation remain understudied. In this study, we elucidated the currently unknown role of the p38 MAPK downstream target heat shock protein 27 (HSP27), in the osteogenic commitment of human mesenchymal stem cells (hMSCs), derived from adipose tissue (hASCs) and bone marrow (hBMSCs). Osteogenesis was induced with ionic extract of an experimental BaG in osteogenic medium (OM). Our results showed that BaG OM induced fast osteogenesis of hASCs and hBMSCs, demonstrated by enhanced alkaline phosphatase (ALP) activity, production of extracellular matrix protein collagen type I, and matrix mineralization. BaG OM stimulated early and transient activation of p38/HSP27 signaling by phosphorylation in hMSCs. Inhibition of HSP27 phosphorylation with SB202190 reduced the ALP activity, mineralization, and collagen type I production induced by BaG OM. Furthermore, the reduced pHSP27 protein by SB202190 corresponded to a reduced F-actin intensity of hMSCs. The phosphorylation of HSP27 allowed its co-localization with the cytoskeleton. In terminally differentiated cells, however, pHSP27 was found diffusely in the cytoplasm. This study provides the first evidence that HSP27 is involved in hMSC osteogenesis induced with the ionic dissolution products of BaG. Our results indicate that HSP27 phosphorylation plays a role in the osteogenic commitment of hMSCs, possibly through the interaction with the cytoskeleton.
生物活性玻璃(BaG)材料在临床上的应用越来越广泛,但它们对成骨分化的调节机制仍研究不足。在这项研究中,我们阐明了目前未知的 p38MAPK 下游靶标热休克蛋白 27(HSP27)在人脂肪来源间充质干细胞(hASCs)和成骨诱导培养基(OM)中诱导的碱性磷酸酶(ALP)活性、细胞外基质蛋白 I 型胶原的产生和基质矿化增强,表明 BaG OM 快速诱导 hASCs 和 hBMSCs 的成骨分化。BaG OM 刺激 hMSCs 中 p38/HSP27 信号的早期和短暂激活,通过磷酸化。用 SB202190 抑制 HSP27 磷酸化可降低 BaG OM 诱导的 ALP 活性、矿化和 I 型胶原产生。此外,SB202190 减少的 pHSP27 蛋白对应于 hMSCs 的 F-肌动蛋白强度降低。HSP27 的磷酸化允许其与细胞骨架共定位。然而,在终末分化的细胞中,pHSP27 则弥散在细胞质中。这项研究首次提供了证据表明 HSP27 参与了 BaG 离子溶解产物诱导的 hMSC 成骨作用。我们的结果表明,HSP27 磷酸化在 hMSCs 的成骨分化中起作用,可能通过与细胞骨架的相互作用。