利用口香糖癌细胞DNA/RNA的13C-NMR光谱研究口香糖癌细胞、组织和肿瘤的内部结构和动力学,是口香糖癌细胞发育综合研究的重要结构工具

A. Heidari, R. Gobato
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引用次数: 15

摘要

本文将利用口香糖癌细胞DNA/RNA的13C-NMR光谱研究口香糖癌细胞、组织和肿瘤的内部结构和动力学,作为口香糖癌细胞发育综合研究的重要结构工具。通过树胶癌细胞DNA/RNA的13C-NMR光谱分析树胶癌细胞、组织和肿瘤的内部结构和动力学,作为树胶癌细胞发育诊断和成像综合研究的基本结构工具,与常规临床技术相比具有许多优点无创性,不需要组织切除,最小的样品处理,不需要标记,不需要预先了解目标分子(如抗体),安全性,使用非电离电磁场,不需要外部染料/造影剂产生人体器官图像。该方法更快,更便宜,这将导致更快的患者诊断,更少的时间延误,更少的痛苦和患者的创伤,更少的医院成本。通过牙龈癌细胞DNA/RNA的13C-NMR谱来研究牙龈癌细胞、组织和肿瘤的内部结构和动力学,作为牙龈癌细胞发育综合研究的重要结构工具,其在体内和体外测量的灵敏度和特异性超过90%,可能应用于临床实践,由于减少假活检和肿瘤不完全切除的风险,具有积极的经济影响。
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Investigation of the internal structure and dynamics of gum cancer cells, tissues and tumors by 13C–NMR spectra of DNA/RNA of gum cancer cells as an essential structural tool for integrative studies of gum cancer cells development
In the current paper, investigation of the internal structure and dynamics of gum cancer cells, tissues and tumors by 13C–NMR spectra of DNA/RNA of gum cancer cells as an essential structural tool for integrative studies of gum cancer cells development are studied. Internal structure and dynamics of gum cancer cells, tissues and tumors by 13C–NMR spectra of DNA/RNA of gum cancer cells as an essential structural tool for integrative studies of gum cancer cells development–based diagnostics and imaging offer many advantages over the routine clinical techniques non–invasiveness, tissue removing is not required, minimal sample processing, labeling is not required, no prior knowledge to target molecules (e.g. antibodies) is required, safety, non–ionizing electromagnetic field is used, no external dyes/ contrast agents are needed to produce human organs images. The method is faster and cheaper to perform, which will result in quicker patient diagnosis, fewer time delays, less pain, and trauma of patients, less cost to the hospital. Investigation of the internal structure and dynamics of gum cancer cells, tissues and tumors by 13C–NMR spectra of DNA/RNA of gum cancer cells as an essential structural tool for integrative studies of gum cancer cells development based methods with the sensitivity and specificity of over 90% for in vivo and ex vivo measurements might be applied to clinical practice with a positive economic impact due to reducing of false biopsy and risk of incomplete tumor resection.
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