用于牙科干细胞输送和组织再生的可注射微载体-水凝胶复合材料

SmartMat Pub Date : 2024-01-22 DOI:10.1002/smm2.1268
Yu Jie Soh, Ruby Yu‐Tong Lin, Gopu Sriram, Wei Seong Toh, Victoria Soo Hoon Yu, Nileshkumar Dubey
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引用次数: 0

摘要

干细胞治疗组织再生的传统方法往往面临挑战,如细胞活力差和移植后整合。为解决这一问题,我们提出在合成微环境中移植细胞,以保持细胞活力、细胞表型、支持细胞外基质(ECM)分泌并促进分化,从而增强受损宿主组织的再生能力。在牙科组织再生过程中,使用牙髓干细胞微载体(MCs)混合甲基丙烯酸明胶(GelMA)水凝胶作为传输系统,对这一假设进行了测试。与单独的 GelMA 相比,MCs 和 GelMA 的组合具有相似的物理特性和良好的生物特性。具体来说,混入 GelMA 中的细胞负载 MC 可增强细胞增殖和 ECM 分泌,并保持正常的表型。值得注意的是,MC 改性 GelMA 能促进牙体分化、矿化和血管内皮生长因子的释放。此外,储存 MC 改性 GelMA 对其注射力、细胞存活率和矿化潜能均无不利影响,这表明复合水凝胶是一种很有前景的治疗性干细胞注射载体。这种策略可广泛应用于各种组织和器官系统,提供和指导细胞群参与再生可能对临床有用。
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Injectable microcarrier‐hydrogel composite for dental stem cell delivery and tissue regeneration
Conventional methods of stem cell therapy for tissue regeneration often face challenges, such as poor cell viability and integration posttransplantation. To address this, we proposed transplanting cells within synthetic microenvironments that maintain viability, cell phenotype, support extracellular matrix (ECM) secretion, and promote differentiation to enhance the regeneration of damaged host tissue. This hypothesis was tested in dental tissue regeneration using dental pulp stem cell‐laden microcarriers (MCs) mixed in a gelatin methacrylate (GelMA) hydrogel as a delivery system. The combination of MCs and GelMA exhibited similar physical properties and favorable biological properties compared to GelMA alone. Specifically, cell‐laden MC mixed into GelMA enhanced cell proliferation and ECM secretion and maintained a normal phenotype. Notably, MC‐modified GelMA amplified odontogenic differentiation, mineralization, and vascular endothelial growth factor release. Moreover, the storage of MC‐modified GelMA showed no detrimental effects on its injection force, cell viability, and mineralization potential, which demonstrates that the composite hydrogel is a promising injectable vehicle for therapeutic stem cell delivery. This strategy may be broadly applied to various tissues and organ systems, in which the provision and instruction of a cell population to participate in regeneration may be clinically useful.
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