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The Cancer BioChip System: A Functional Genomic Assay for Anchorage-Independent Three-Dimensional Breast Cancer Cell Growth

机译:巨蟹座的生物芯片系统:功能基因组分析的安克雷奇无关三维乳腺癌细胞生长

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摘要

Advances in genomic research have revealed that each patient has their own unique tumor profile. While silencing RNA (siRNA) screening tests can identify which genes drive tumor cell growth, results obtained from these assays have been limited in their clinical translatability because they employ cell lines growing on flat surfaces. The Cancer BioChip System (CBCS) is a functional screening assay for identification of siRNA capable of inhibiting anchorage-independent three-dimensional (3D) cancer cell growth. Anchorage-independent growth assays are important in vitro predicators of regulators of cancer cell growth. Unique features of the CBCS include a Cancer BioChip, wherein cells incorporate different siRNAs in parallel and grow in a 3D matrix to form colonies that can be quantified using real-time imaging and an image analysis software. Thus, the CBCS can be developed as a tool for personalized identification of targeted cancer therapies.
机译:基因组研究的进步揭示了每位患者都有自己独特的肿瘤概况。虽然沉默的RNA(siRNA)筛选试验可以鉴定哪种基因驱动肿瘤细胞生长,但从这些测定中获得的结果受到限制,因为它们采用在平坦表面上生长的细胞系。癌症生物芯片系统(CBCS)是用于鉴定能够抑制独立于锚定的三维(3D)癌细胞生长的siRNA的功能筛选测定。锚定无关的生长测定是癌细胞生长调节剂的重要组体外序列。 CBCS的独特特征包括癌症Biochip,其中细胞并联掺入不同的siRNA并在3D矩阵中生长以形成可以使用实时成像和图像分析软件量化的菌落。因此,CBC可以作为用于个性化癌症疗法的个性化鉴定的工具。

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