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一种可注射的牙髓脱细胞基质水凝胶通过调节巨噬细胞反应促进牙本质修复。

An injectable dental pulp-derived decellularized matrix hydrogel promotes dentin repair through modulation of macrophage response.

机构信息

Hospital of Stomatology, Sun Yat-sen University, Guangdong Provincial Key Laboratory of Stomatology, Guanghua School of Stomatology, Guangzhou, Guangdong, China.

Changsha Medical University, Changsha, Hunan, China.

出版信息

Biomater Adv. 2024 Jul;161:213883. doi: 10.1016/j.bioadv.2024.213883. Epub 2024 May 8.

Abstract

Maintaining the viability of damaged pulp is critical in clinical dentistry. Pulp capping, by placing dental material over the exposed pulp, is a main approach to promote pulp-dentin healing and mineralized tissue formation. The dental materials are desired to impact on intricate physiological mechanisms in the healing process, including early regulation of inflammation, immunity, and cellular events. In this study, we developed an injectable dental pulp-derived decellularized matrix (DPM) hydrogel to modulate macrophage responses and promote dentin repair. The DPM derived from porcine dental pulp has high collagen retention and low DNA content. The DPM was solubilized by pepsin digestion (named p-DPM) and subsequently injected through a 25G needle to form hydrogel facilely at 37 °C. In vitro results demonstrated that the p-DPM induced the M2-polarization of macrophages and the migration, proliferation, and dentin differentiation of human dental pulp stem cells from deciduous teeth (SHEDs). In a mouse subcutaneous injection test, the p-DPM hydrogel was found to facilitate cell recruitment and M2 polarization during the early phase of implantation. Additionally, the acute pulp restoration in rat models proved that injectable p-DPM hydrogel as a pulp-capping agent had excellent efficacy in dentin regeneration. This study demonstrates that the DPM promotes dentin repair by modulating macrophage responses, and has a potential for pulp-capping applications in dental practice.

摘要

维持受损牙髓的活力在临床牙科中至关重要。牙髓盖髓术通过在暴露的牙髓上放置牙科材料来促进牙髓-牙本质愈合和矿化组织形成,是促进牙髓-牙本质愈合和矿化组织形成的主要方法。人们希望牙科材料能够影响愈合过程中的复杂生理机制,包括早期调节炎症、免疫和细胞事件。在这项研究中,我们开发了一种可注射的牙髓脱细胞基质(DPM)水凝胶,以调节巨噬细胞反应并促进牙本质修复。来源于猪牙髓的 DPM 具有高胶原蛋白保留率和低 DNA 含量。DPM 通过胃蛋白酶消化(命名为 p-DPM)溶解,然后通过 25G 针头在 37°C 下轻松注射形成水凝胶。体外结果表明,p-DPM 诱导巨噬细胞向 M2 极化,并促进人乳牙牙髓干细胞(SHED)的迁移、增殖和牙本质分化。在小鼠皮下注射试验中,发现 p-DPM 水凝胶在植入早期促进细胞募集和 M2 极化。此外,大鼠模型中的急性牙髓修复证明,可注射的 p-DPM 水凝胶作为盖髓剂在牙本质再生方面具有优异的疗效。本研究表明,DPM 通过调节巨噬细胞反应促进牙本质修复,并有潜力在牙髓盖髓术等牙科实践中应用。

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