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一种利用生物反应器旋转壁血管的新型人类恶性黑色素瘤临床前模型。

A novel preclinical model of human malignant melanoma utilizing bioreactor rotating-wall vessels.

作者信息

Licato L L, Prieto V G, Grimm E A

机构信息

Department of Molecular and Cellular Oncology, The University of Texas M. D. Anderson Cancer Center, Houston 77030, USA.

出版信息

In Vitro Cell Dev Biol Anim. 2001 Mar;37(3):121-6. doi: 10.1290/1071-2690(2001)037<0121:ANPMOH>2.0.CO;2.

Abstract

Malignant melanoma poses a serious health risk which is becoming more crucial as the incidence of this disease steadily increases. The development of appropriate in vitro models that reflect the in vivo tumor environment is a key factor for the study of this malignancy. The local tumor microenvironment plays a critical role in the ability of tumor cells to proliferate and metastasize. While interactions among various cell types are known to be important for tumor growth, most in vitro models utilize only tumor cells, ignoring the importance of tumor-stroma interactions, as well as the contribution of immune cells, which may be important for potential therapies. In addition, the cellular architecture found in vivo, known to be involved in changes in gene expression, is not reflected in standard two-dimensional culture systems. In this study, we have utilized rotating-vessel bioreactors to culture minced human melanoma specimens, allowing the culture of three-dimensional structures which reflect the cellular architecture and heterogeneous composition of the tumor site in vivo. The viability of the pieces in culture can be maintained for 1-2 wk. Immunohistochemical analysis shows multiple cellular types similar to the in vivo situation. Therefore, this system provides a unique model of human melanoma that mimics the in vivo tumor environment much more closely than current culture methods. This novel system may be utilized to determine the mechanism of action of current therapy protocols, as well as to develop new treatment regimens.

摘要

恶性黑色素瘤对健康构成严重风险,且随着该疾病发病率稳步上升,这一风险愈发关键。建立能够反映体内肿瘤环境的合适体外模型是研究这种恶性肿瘤的关键因素。局部肿瘤微环境在肿瘤细胞增殖和转移能力方面起着关键作用。虽然已知多种细胞类型之间的相互作用对肿瘤生长很重要,但大多数体外模型仅使用肿瘤细胞,忽略了肿瘤-基质相互作用以及免疫细胞的作用,而免疫细胞对于潜在治疗可能很重要。此外,体内发现的细胞结构已知与基因表达变化有关,但标准的二维培养系统并未体现这一点。在本研究中,我们利用旋转容器生物反应器培养切碎的人黑色素瘤标本,从而培养出能反映体内肿瘤部位细胞结构和异质组成的三维结构。培养物中组织块的活力可维持1至2周。免疫组织化学分析显示存在多种类似于体内情况的细胞类型。因此,该系统提供了一种独特的人黑色素瘤模型,比目前的培养方法更能紧密模拟体内肿瘤环境。这个新系统可用于确定当前治疗方案的作用机制,以及开发新的治疗方案。

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