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Raman spectroscopic analysis for gastric and colorectal cancer in surgical treatment toward molecular-guided surgery

机译:胃癌和大肠癌分子指导手术的拉曼光谱分析

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Raman spectroscopy provides a wealth of diagnostic information to the surgeon with in situ cancer detection and label-free histopathology in intraoperative conditions. Raman spectroscopy is a promising optical technique which can analyze biological tissues with light scattering. The difference in frequencies between the incident light and the scattering light are called Raman shifts, which correspond to the vibrational energy of the molecular bonds. Raman spectrum gives information about the molecular structure and composition in biological specimens. We had been previously reported that Raman spectroscopy could distinguish various histological types of human lung cancer cells from normal cells in vitro, and also confirmed that Raman spectra obtained from cancer cells and their environment including other cells and extracellular matrix in xenograft models and spontaneous metastasis models were distinguishable using Raman spectroscopy combined with fluorescence microscopy and photoluminescence imaging. Malignancy can be characterized not only by the cancer cells but also by the environmental factors including immune cells, stroma cells, secretion vesicles and extracellular matrix, but to identify and detect cancer diagnostic biomarkers in vivo on Raman spectroscopy is still challenging. Here we investigate morphological and molecular dynamics in advanced cancer specimens obtained from patients. We are also constructing a custom-designed Raman spectral imaging system for both in vitro and in vivo assay of tumor tissues to reveal the metastasis process and to evaluate therapeutic effects of anti-cancer drugs and their drug delivery toward the clinical application of the technique.
机译:拉曼光谱术为术中情况下的原位癌检测和无标记的组织病理学提供了丰富的诊断信息。拉曼光谱法是一种有前途的光学技术,可以通过光散射分析生物组织。入射光和散射光之间的频率差称为拉曼位移,其对应于分子键的振动能。拉曼光谱可提供有关生物样本中分子结构和组成的信息。先前我们曾报道过拉曼光谱可以在体外将人类肺癌细胞的多种组织学类型与正常细胞区分开,并且还证实了异种移植模型和自发转移模型中从癌细胞及其周围环境(包括其他细胞和细胞外基质)获得的拉曼光谱使用拉曼光谱结合荧光显微镜和光致发光成像可以区分。恶性肿瘤不仅可以通过癌细胞来表征,而且可以通过包括免疫细胞,基质细胞,分泌囊泡和细胞外基质在内的环境因素来表征,但是在拉曼光谱上鉴定和检测体内癌症诊断生物标志物仍然具有挑战性。在这里,我们研究从患者获得的晚期癌症标本中的形态和分子动力学。我们还将构建定制设计的拉曼光谱成像系统,用于肿瘤组织的体外和体内测定,以揭示转移过程并评估抗癌药物的治疗效果及其在该技术的临床应用中的递送。

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