MacDougall M, Thiemann F, Ta H, Hsu P, Chen L S, Snead M L
University of Texas Health Science Center at San Antonio, Dental School, Department of Pediatric Dentistry 78284-7888, USA.
Connect Tissue Res. 1995;33(1-3):97-103. doi: 10.3109/03008209509016988.
During tooth formation instructive epithelial-mesenchymal interactions result in the cytodifferentiation of ectomesenchymal cells into odontoblasts which produce the dentin extracellular matrix (DECM). The purpose of our study was to establish a stable murine odontoblast cell line by immortalization of odontoblasts using retrovirus transfection. In order to accomplish this goal, we utilized a previously characterized odontoblast monolayer cell culture system supportive of odontoblast cytodifferentiation from dental papilla mesenchyme (DPM), expression and secretion of a DECM and dentin biomineralization. First mandibular molars from E-18 Swiss Webster mice were dissected, the DPM isolated, and pulp cells dissociated. Pulp cells (5 x 10(5)/well) were plated as monolayers and grown in alpha-MEM supplemented with 10% FCS, 100 units/ml penicillin and streptomycin, 50 micrograms/ml ascorbic acid. Cultures were maintained for 6 days at 37 degrees C in a humidified atmosphere of 95% air and 5% CO2, with media changes every two days. Immortalization was performed using a recombinant defective retrovirus containing the temperature sensitive SV-40 large T antigen cDNA and the neomycin (G418) resistance gene recovered from CRE packaging cells. Cultures were infected for 24 h with CRE conditioned medium containing 8 micrograms/ml of polybrene, the media was replaced with selective media containing 300 micrograms/ml of G418, and the cultures incubated at 33 degrees C for one month with media changes every 3-5 days. Neomycin resistant cells were cloned by serial dilution to single cells in 96-well culture plates and grown in selection medium at 33 degrees C.(ABSTRACT TRUNCATED AT 250 WORDS)
在牙齿形成过程中,指导性的上皮-间充质相互作用导致外间充质细胞向成牙本质细胞的细胞分化,成牙本质细胞产生牙本质细胞外基质(DECM)。我们研究的目的是通过使用逆转录病毒转染使成牙本质细胞永生化,从而建立一个稳定的小鼠成牙本质细胞系。为了实现这一目标,我们利用了一个先前已表征的成牙本质细胞单层细胞培养系统,该系统支持从牙乳头间充质(DPM)分化出成牙本质细胞、DECM的表达和分泌以及牙本质生物矿化。解剖E-18瑞士韦伯斯特小鼠的第一下颌磨牙,分离出DPM,并解离牙髓细胞。将牙髓细胞(5×10⁵/孔)铺成单层,在补充有10%胎牛血清、100单位/毫升青霉素和链霉素、50微克/毫升抗坏血酸的α-MEM中培养。培养物在37℃、95%空气和5%二氧化碳的湿润气氛中维持6天,每两天更换一次培养基。使用含有温度敏感型SV-40大T抗原cDNA和从CRE包装细胞中回收的新霉素(G418)抗性基因的重组缺陷逆转录病毒进行永生化。用含有8微克/毫升聚凝胺的CRE条件培养基感染培养物24小时,将培养基替换为含有300微克/毫升G418的选择培养基,并将培养物在33℃下孵育一个月,每3-5天更换一次培养基。通过在96孔培养板中连续稀释至单细胞对新霉素抗性细胞进行克隆,并在33℃的选择培养基中培养。(摘要截短至250字)