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Functional transplantation of salivary gland cells differentiated from mouse early ES cells in vitro
Authors:Miyuki Kawakami  Hiroshi Ishikawa  Toshiaki Tachibana  Akira Tanaka  Izumi Mataga
Institution:1. Department of Oral and Maxillofacial Surgery, School of Life Dentistry, The Nippon Dental University, Niigata, Japan
2. Department of NDU Life Sciences, School of Life Dentistry, The Nippon Dental University, Tokyo, Japan
3. Department of Anatomy, The Jikei University, School of Medicine, Tokyo, Japan
4. Department of Oral and Maxillofacial Surgery, Niigata Hospital, The Nippon Dental University, Niigata, Japan
5. Division of Cell Regeneration and Transplantation, Advanced Research Center, School of Life Dentistry, The Nippon Dental University, Niigata, Japan
Abstract:Atrophy or hypofunction of the salivary gland because of aging or disease causes hyposalivation and has an effect on the quality of life of patients, for example not only dry mouth but deterioration in mastication/deglutition disorder and the status of oral hygiene. Currently conducted therapies for atrophy or hypofunction of the salivary gland in clinical practice are only symptomatic treatments with drugs and artificial saliva, and therefore it is preferable to establish a radical therapy. At this time, as a fundamental investigation, by co-culturing mouse early ES (mEES-6) cells with human salivary gland-derived fibroblasts (hSG-fibro), differentiation of mEES-6 cells to salivary gland cells has been attempted. Also, the possibility of cell engraftment was examined. After identifying the cells which were co-cultured with GFP-transfected mEES-6 cells and hSG-fibro, the cells were transplanted into the submandibular gland of SCID mice, and the degree of differentiation into tissues was examined. The possibility of tissue functional reconstitution from co-cultured cells in a three-dimensional culture system was examined. Our results confirmed that the co-cultured cells expressed salivary gland-related markers and had an ability to generate neo-tissues by transplantation in vivo. Moreover, the cells could reconstitute gland structures in a three-dimensional culture system. By co-culture with hSG-fibro, mEES-6 cells were successfully differentiated into salivary gland cells which were transplantable and have tissue neogenetic ability.
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