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MITOCHONDRIAL CORRELATION AS A BIOPHOTONIC MARKER FOR DETECTING CANCER IN A SINGLE CELL

机译:线粒体相关性作为检测单细胞癌的双光分子标记

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Currently, pathologists rely on labor-intensive microscopic examination of tumor cells using century-old staining methods that can give false readings. Emerging BioMicroNanotechnologies1 have the potential to provide accurate, realtime, high throughput screening of tumor cells without invasive chemical reagents. These techniques are critical to advancing early detection, diagnosis, and treatment of disease. Using our award-winning Hyperspectral Inceptor™ to rapidly assess the properties of cells flown through a microano semiconductor device, we discovered a method to rapidly assess the health of a single mammalian cell. The key discovery was the elucidation of biophotonic differences in normal and cancer cells by using intracellular mitochondria as biomarkers for disease. This technique holds promise for detecting cancer at a very early stage and could nearly eliminate delays in diagnosis and treatment.
机译:当前,病理学家依靠劳动密集型显微镜检查肿瘤细胞,而这种方法使用的世纪染色方法会产生错误的读数。新兴的BioMicroNanotechnologies1有潜力提供无需侵入性化学试剂的准确,实时,高通量的肿瘤细胞筛查。这些技术对于促进疾病的早期发现,诊断和治疗至关重要。使用我们屡获殊荣的Hyperspectral Inceptor™快速评估流经微/纳米半导体器件的细胞的特性,我们发现了一种快速评估单个哺乳动物细胞健康的方法。关键发现是通过使用细胞内线粒体作为疾病的生物标记物来阐明正常细胞和癌细胞中的生物光子差异。该技术有望在早期发现癌症,几乎可以消除诊断和治疗的延迟。

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