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首页> 外文期刊>International Journal of Molecular Sciences >Chick Chorioallantoic Membrane (CAM) Assay as an In Vivo Model to Study the Effect of Newly Identified Molecules on Ovarian Cancer Invasion and Metastasis
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Chick Chorioallantoic Membrane (CAM) Assay as an In Vivo Model to Study the Effect of Newly Identified Molecules on Ovarian Cancer Invasion and Metastasis

机译:鸡绒囊尿囊膜(CAM)检测作为体内模型,以研究新鉴定的分子对卵巢癌侵袭和转移的影响

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The majority of ovarian cancer patients present with advanced disease and despite aggressive treatment, prognosis remains poor. Significant improvement in ovarian cancer survival will require the development of more effective molecularly targeted therapeutics. Commonly, mouse models are used for the in vivo assessment of potential new therapeutic targets in ovarian cancer. However, animal models are costly and time consuming. Other models, such as the chick embryo chorioallantoic membrane (CAM) assay, are therefore an attractive alternative. CAM assays have been widely used to study angiogenesis and tumor invasion of colorectal, prostate and brain cancers. However, there have been limited studies that have used CAM assays to assess ovarian cancer invasion and metastasis. We have therefore developed a CAM assay protocol to monitor the metastatic properties of ovarian cancer cells (OVCAR-3, SKOV-3 and OV-90) and to study the effect of potential therapeutic molecules in vivo. The results from the CAM assay are consistent with cancer cell motility and invasion observed in in vitro assays. Our results demonstrate that the CAM assay is a robust and cost effective model to study ovarian cancer cell metastasis. It is therefore a very useful in vivo model for screening of potential novel therapeutics.
机译:大多数卵巢癌患者均患有晚期疾病,尽管进行了积极的治疗,但预后仍然很差。卵巢癌存活率的显着提高将需要开发更有效的分子靶向疗法。通常,将小鼠模型用于体内评估卵巢癌中潜在的新治疗靶标。但是,动物模型既昂贵又费时。因此,其他模型,例如鸡胚绒膜尿囊膜(CAM)分析,是一种有吸引力的选择。 CAM分析已广泛用于研究大肠癌,前列腺癌和脑癌的血管生成和肿瘤侵袭。但是,很少有研究使用CAM分析来评估卵巢癌的侵袭和转移。因此,我们已经开发了一种CAM检测方案,以监测卵巢癌细胞(OVCAR-3,SKOV-3和OV-90)的转移特性,并研究体内潜在治疗分子的作用。 CAM分析的结果与在体外分析中观察到的癌细胞运动性和侵袭性一致。我们的结果表明,CAM分析是研究卵巢癌细胞转移的可靠且经济高效的模型。因此,它对于筛选潜在的新疗法是非常有用的体内模型。

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