Mesenchymal stromal cell exosomes enhance dental pulp cell functions and promote pulp-dentin regeneration

Q3 Biochemistry, Genetics and Molecular Biology
Jiajun Shi , Kristeen Ye Wen Teo , Shipin Zhang , Ruenn Chai Lai , Vinicius Rosa , Huei Jinn Tong , Mandeep S. Duggal , Sai Kiang Lim , Wei Seong Toh
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Abstract

Mesenchymal stromal/stem cell (MSC) therapies are currently being explored for dental pulp regeneration. As the therapeutic effects of MSCs in tissue repair are mediated mainly through the release of extracellular vesicles (EVs) including exosomes, we investigated here the cellular processes and molecular mechanisms modulated by MSC exosomes in dental pulp regeneration. Using dental pulp cell (DPC) cultures, we demonstrated that MSC exosomes could increase DPC migration, proliferation, and odontogenic differentiation. The enhancement of these cellular processes was mediated through exosomal CD73-mediated adenosine receptor activation of AKT and ERK signaling. Consistent with these observations, MSC exosomes increased the expression of dentin matrix proteins and promoted the formation of dentin-like tissue and bridge-like structures in a rat pulp defect model. These effects were comparable to that of mineral trioxide aggregate (MTA) treatment. MSC exosomes also yielded recellularized pulp-dentin tissues in the root canal of endodontically-treated human premolars, following subcutaneous implantation in the mouse dorsum. Together, our findings suggest that MSC exosomes could exert a multi-faceted effect on DPC functions including migration, proliferation and odontogenic differentiation to promote dental pulp regeneration. This study provides the basis for development of MSC exosomes as a cell-free MSC therapeutic alternative for pulp-dentin regeneration.

Abstract Image

间充质间质细胞外泌体增强牙髓细胞功能,促进牙髓-牙本质再生
间充质基质/干细胞(MSC)疗法目前正在探索用于牙髓再生。由于MSC在组织修复中的治疗作用主要通过包括外泌体在内的细胞外囊泡(EVs)的释放介导,我们在此研究了MSC外泌体在牙髓再生中调节的细胞过程和分子机制。使用牙髓细胞(DPC)培养,我们证明MSC外泌体可以增加DPC的迁移、增殖和牙源性分化。这些细胞过程的增强是通过外泌体CD73介导的AKT和ERK信号的腺苷受体激活介导的。与这些观察结果一致,在大鼠牙髓缺损模型中,MSC外泌体增加了牙本质基质蛋白的表达,并促进了牙本质样组织和桥状结构的形成。这些效果与矿物三氧化二聚集体(MTA)处理相当。MSC外泌体在小鼠背部皮下植入后,在根管治疗的人类前磨牙的根管中也产生了再细胞化的牙髓-牙本质组织。总之,我们的研究结果表明,MSC外泌体可以对DPC的功能发挥多方面的作用,包括迁移、增殖和牙源性分化,以促进牙髓再生。本研究为开发MSC外泌体作为牙髓-牙本质再生的无细胞MSC治疗替代品提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
4.10
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