Takamori Yasuhiko, Suzuki Hironobu, Nakakura-Ohshima Kuniko, Cai Jinglei, Cho Sung-Won, Jung Han-Sung, Ohshima Hayato
DDS, Division of Anatomy and Cell Biology of the Hard Tissue, Department of Tissue Regeneration and Reconstruction, Niigata University Graduate School of Medical and Dental Sciences, 2-5274 Gakkocho-dori, Niigata 951-8514, Japan.
J Histochem Cytochem. 2008 Dec;56(12):1075-86. doi: 10.1369/jhc.2008.951558. Epub 2008 Sep 2.
Dental pulp elaborates both bone and dentin under pathological conditions such as tooth replantation/transplantation. This study aims to clarify the capability of dental pulp to elaborate bone tissue in addition to dentin by allogenic tooth transplantation using immunohistochemistry and histochemistry. After extraction of the molars of 3-week-old mice, the roots and pulp floor were resected and immediately allografted into the sublingual region in a littermate. In addition, we studied the contribution of donor and host cells to the regenerated pulp tissue using a combination of allogenic tooth transplantation and lacZ transgenic ROSA26 mice. On Days 5-7, tubular dentin formation started next to the preexisting dentin at the pulp horn where nestin-positive odontoblast-like cells were arranged. Until Day 14, bone-like tissue formation occurred in the pulp chamber, where intense tartrate-resistant acid phosphatase-positive cells appeared. Furthermore, allogenic transplantation using ROSA26 mice clearly showed that both donor and host cells differentiated into osteoblast-like cells with the assistance of osteoclast-lineage cells, whereas newly differentiated odontoblasts were exclusively derived from donor cells. These results suggest that the odontoblast and osteoblast lineage cells reside in the dental pulp and that both donor and host cells contribute to bone-like tissue formation in the regenerated pulp tissue.
在诸如牙齿再植/移植等病理条件下,牙髓可形成骨和牙本质。本研究旨在通过免疫组织化学和组织化学方法,利用同种异体牙移植来阐明牙髓除形成牙本质外还具备形成骨组织的能力。在拔除3周龄小鼠的磨牙后,切除牙根和髓底,并立即将其同种异体移植到同窝小鼠的舌下区域。此外,我们结合同种异体牙移植和lacZ转基因ROSA26小鼠,研究了供体细胞和宿主细胞对再生牙髓组织的贡献。在第5 - 7天,在牙髓角处靠近原有牙本质的位置开始形成管状牙本质,此处有巢蛋白阳性的成牙本质样细胞排列。直到第14天,牙髓腔内出现骨样组织形成,此处出现强抗酒石酸酸性磷酸酶阳性细胞。此外,使用ROSA26小鼠进行的同种异体移植清楚地表明,在破骨细胞系细胞的协助下,供体细胞和宿主细胞均分化为成骨样细胞,而新分化的成牙本质细胞仅来源于供体细胞。这些结果表明,成牙本质细胞和成骨细胞系细胞存在于牙髓中,并且供体细胞和宿主细胞均对再生牙髓组织中的骨样组织形成有贡献。