Furue M, Okamoto T, Hayashi H, Sato J D, Asashima M, Saito S
Department of Oral Biochemistry, Kanagawa Dental College, Yokosuka City, Japan.
In Vitro Cell Dev Biol Anim. 1999 Mar;35(3):131-5. doi: 10.1007/s11626-999-0014-8.
To study the mechanisms of morphogenesis in salivary gland regeneration, we have established the RSMG-1 cell line derived from submandibular gland (SMG) of 10-wk-old Wistar female rats in serum-free culture. Our finding that RSMG-1 cells originated from duct cells was based on morphology and immunohistochemical results. In three-dimensional serum-free collagen gel culture, HGF induced branching morphogenesis of RSMG-1 cells. Histological examination revealed that HGF-induced branching structure exhibited well-formed lumina. This morphology closely resembles that found in vivo. The cells also expressed activin A. Exogenously added activin A at a high concentration reduced HGF-induced branching morphogenesis. These findings suggest that the morphogenesis of the salivary gland is modulated by HGF and activin A. Our results show that the RSMG-1 cell line may be useful in studies of salivary gland regeneration.
为研究唾液腺再生过程中的形态发生机制,我们在无血清培养条件下,建立了源自10周龄雌性Wistar大鼠下颌下腺(SMG)的RSMG-1细胞系。我们基于形态学和免疫组化结果发现RSMG-1细胞起源于导管细胞。在三维无血清胶原凝胶培养中,肝细胞生长因子(HGF)诱导RSMG-1细胞发生分支形态发生。组织学检查显示,HGF诱导的分支结构呈现出形态良好的管腔。这种形态与体内发现的形态非常相似。这些细胞还表达激活素A。高浓度外源性添加激活素A可降低HGF诱导的分支形态发生。这些发现表明,唾液腺的形态发生受HGF和激活素A的调节。我们的结果表明,RSMG-1细胞系可能有助于唾液腺再生的研究。