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小鼠骨肉瘤的三维海藻酸盐球体培养系统

Three-dimensional alginate spheroid culture system of murine osteosarcoma.

作者信息

Akeda Koji, Nishimura Akinobu, Satonaka Haruhiko, Shintani Ken, Kusuzaki Katsuyuki, Matsumine Akihiko, Kasai Yuichi, Masuda Koichi, Uchida Atsumasa

机构信息

Department of Orthopaedic Surgery, Mie University Graduate School of Medicine, Mie 514-8507, Japan.

出版信息

Oncol Rep. 2009 Nov;22(5):997-1003. doi: 10.3892/or_00000527.

Abstract

Osteosarcoma (OS) is the most common primary malignant tumor of the bone and often forms pulmonary metastases, which are the most important prognostic factor. For further elucidation of the mechanism underlying the progression and metastasis of human OS, a culture system mimicking the microenvironment of the tumor in vivo is needed. We report a novel three-dimensional (3D) alginate spheroid culture system of murine osteosarcoma. Two different metastatic clones, the parental Dunn and its derivative line LM8, which has a higher metastatic potential to the lungs, were encapsulated in alginate beads to develop the 3D culture system. The beads containing murine OS cells were also transplanted into mice to determine their metastatic potential in vivo. In this culture system, murine OS cells encapsulated in alginate beads were able to grow in a 3D structure with cells detaching from the alginate environment. The number of detaching cells was higher in the LM8 cell line than the Dunn cell line. In the in vivo alginate bead transplantation model, the rate of pulmonary metastasis was higher with LM8 cells compared with that of Dunn cells. The cell characteristics and kinetics in this culture system closely reflect the original malignant potential of the cells in vivo.

摘要

骨肉瘤(OS)是最常见的原发性骨恶性肿瘤,常形成肺转移,这是最重要的预后因素。为了进一步阐明人类骨肉瘤进展和转移的潜在机制,需要一种模拟体内肿瘤微环境的培养系统。我们报告了一种新型的小鼠骨肉瘤三维(3D)海藻酸盐球体培养系统。将两个不同的转移克隆,即亲本邓恩细胞及其具有更高肺转移潜能的衍生系LM8,封装在海藻酸盐珠中以建立3D培养系统。含有小鼠骨肉瘤细胞的珠子也被移植到小鼠体内,以确定它们在体内的转移潜能。在这个培养系统中,封装在海藻酸盐珠中的小鼠骨肉瘤细胞能够在3D结构中生长,细胞从海藻酸盐环境中脱离。LM8细胞系中脱离的细胞数量高于邓恩细胞系。在体内海藻酸盐珠移植模型中,与邓恩细胞相比,LM8细胞的肺转移率更高。这个培养系统中的细胞特征和动力学密切反映了体内细胞的原始恶性潜能。

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