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Ameloblastoma cell lines derived from different subtypes demonstrate distinct developmental patterns in a novel animal experimental model

成釉细胞瘤 移植 细胞培养 永生化细胞系 生物 牙源性肿瘤 动物模型 病理 医学 解剖 内科学 内分泌学 牙源性的 遗传学 上颌骨
作者
Takao Fuchigami,Hajime Suzuki,Tsuyoshi Yoshimura,Toshiro Kibe,Elissa Chairani,Tohru Kiyono,Michiko Kishida,Shosei Kishida,Norifumi Nakamura
出处
期刊:Journal of Applied Oral Science [SciELO]
卷期号:28 被引量:2
标识
DOI:10.1590/1678-7757-2019-0558
摘要

Objective Ameloblastoma is a representative odontogenic tumor comprising several characteristic invasive forms, and its pathophysiology has not been sufficiently elucidated. A stable animal experimental model using immortalized cell lines is crucial to explain the factors causing differences among the subtypes of ameloblastoma, but this model has not yet been disclosed. In this study, a novel animal experimental model has been established, using immortalized human ameloblastoma-derived cell lines. Methodology Ameloblastoma cells suspended in Matrigel were subcutaneously transplanted into the heads of immunodeficient mice. Two immortalized human ameloblastoma cell lines were used: AM-1 cells derived from the plexiform type and AM-3 cells derived from the follicular type. The tissues were evaluated histologically 30, 60, and 90 days after transplantation. Results Tumor masses formed in all transplanted mice. In addition, the tumors formed in each group transplanted with different ameloblastoma cells were histologically distinct: the tumors in the group transplanted with AM-1 cells were similar to the plexiform type, and those in the group transplanted with AM-3-cells were similar to the follicular type. Conclusions A novel, stable animal experimental model of ameloblastoma was established using two cell lines derived from different subtypes of the tumor. This model can help clarify its pathophysiology and hasten the development of new ameloblastoma treatment strategies.
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