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Current Advance and Future Prospects of Tissue Engineering Approach to Dentin/Pulp Regenerative Therapy

机译:组织工程技术在牙本质/牙髓再生治疗中的研究进展与展望

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摘要

Recent advances in biomaterial science and tissue engineering technology have greatly spurred the development of regenerative endodontics. This has led to a paradigm shift in endodontic treatment from simply filling the root canal systems with biologically inert materials to restoring the infected dental pulp with functional replacement tissues. Currently, cell transplantation has gained increasing attention as a scientifically valid method for dentin-pulp complex regeneration. This multidisciplinary approach which involves the interplay of three key elements of tissue engineering—stem cells, scaffolds, and signaling molecules—has produced an impressive number of favorable outcomes in preclinical animal studies. Nevertheless, many practical hurdles need to be overcome prior to its application in clinical settings. Apart from the potential health risks of immunological rejection and pathogenic transmission, the lack of a well-established banking system for the isolation and storage of dental-derived stem cells is the most pressing issue that awaits resolution and the properties of supportive scaffold materials vary across different studies and remain inconsistent. This review critically examines the classic triad of tissue engineering utilized in current regenerative endodontics and summarizes the possible techniques developed for dentin/pulp regeneration.
机译:生物材料科学和组织工程技术的最新进展极大地促进了再生牙髓治疗的发展。这导致了牙髓治疗的模式转变,从简单地用生物惰性材料填充牙根管系统到用功能性替代组织恢复感染的牙髓。目前,作为牙本质-纸浆复合物再生的科学有效方法,细胞移植已引起越来越多的关注。这种涉及组织工程的三个关键要素(干细胞,支架和信号传导分子)相互作用的多学科方法在临床前动物研究中产生了令人印象深刻的良好结果。然而,在将其应用于临床环境之前,需要克服许多实际障碍。除了可能存在免疫排斥和病原体传播的健康风险外,缺乏一个完善的用于分离和储存牙源性干细胞的银行系统是迫切需要解决的最紧迫的问题,并且支撑支架材料的特性在各个方面都有所不同。不同的研究并保持不一致。这篇评论严格审查了当前再生牙髓学中使用的组织工程的经典三合会,并总结了为牙本质/牙髓再生开发的可能技术。

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