Kim Ji-Youn, Kim Myung-Rae, Kim Sun-Jong
Division of Oral and Maxillofacial Surgery, Department of Dentistry, St. Vincent's Hospital, The Catholic University of Korea, Suwon, Korea.
Department of Oral and Maxillofacial Surgery, Ewha Womans University Mok-dong Hospital, Ewha Womans University School of Medicine, Seoul, Korea.
J Korean Assoc Oral Maxillofac Surg. 2013 Apr;39(2):55-62. doi: 10.5125/jkaoms.2013.39.2.55. Epub 2013 Apr 23.
Bone tissue engineering is one of the important therapeutic approaches to the regeneration of bones in the entire field of regeneration medicine. Mesenchymal stem cells (MSCs) are actively discussed as material for bone tissue engineering due to their ability to differentiate into autologous bone. MSCs are able to differentiate into different lineages: osteo/odontogenic, adipogenic, and neurogenic. The tissue of origin for MSCs defines them as bone marrow-derived stem cells, adipose tissue-derived stem cells, and, among many others, dental stem cells. According to the tissue of origin, DSCs are further stratified into dental pulp stem cells, periodontal ligament stem cells, stem cells from apical papilla, stem cells from human exfoliated deciduous teeth, dental follicle precursor cells, and dental papilla cells. There are numerous in vitro/in vivo reports suggesting successful mineralization potential or osteo/odontogenic ability of MSCs. Still, there is further need for the optimization of MSCs-based tissue engineering methods, and the introduction of genes related to osteo/odontogenic differentiation into MSCs might aid in the process. In this review, articles that reported enhanced osteo/odontogenic differentiation with gene introduction into MSCs will be discussed to provide a background for successful bone tissue engineering using MSCs with artificially introduced genes.
骨组织工程是整个再生医学领域中骨再生的重要治疗方法之一。间充质干细胞(MSCs)因其能够分化为自体骨的能力而被积极讨论作为骨组织工程的材料。MSCs能够分化为不同的谱系:成骨/成牙谱系、成脂谱系和神经谱系。MSCs的起源组织将它们定义为骨髓来源的干细胞、脂肪组织来源的干细胞以及许多其他类型中的牙源性干细胞。根据起源组织,牙源性干细胞(DSCs)进一步分为牙髓干细胞、牙周膜干细胞、根尖乳头干细胞、人脱落乳牙干细胞、牙囊前体细胞和牙乳头细胞。有许多体外/体内报告表明MSCs具有成功的矿化潜力或成骨/成牙能力。然而,基于MSCs的组织工程方法仍需要进一步优化,将与成骨/成牙分化相关的基因导入MSCs可能有助于这一过程。在这篇综述中,将讨论那些报道通过将基因导入MSCs来增强成骨/成牙分化的文章,以为使用人工导入基因的MSCs成功进行骨组织工程提供背景。