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首页> 外文期刊>Surgery >Metabolomics approach to thyroid nodules: A high-resolution magic-angle spinning nuclear magnetic resonance-based study
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Metabolomics approach to thyroid nodules: A high-resolution magic-angle spinning nuclear magnetic resonance-based study

机译:甲状腺结节的代谢组学方法:基于高分辨率魔角旋转核磁共振的研究

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摘要

Background: Proton magnetic resonance spectroscopy of operative specimens has been reported to successfully differentiate normal tissue from malignant thyroid tissue. We used a new high-resolution magnetic resonance spectroscopy technique for the differentiation of benign and malignant thyroid neoplasms. Methods: Histological specimens from 72 patients undergoing a total thyroidectomy were processed into a 4-mm ZrO2 high-resolution magic angle spinning (HRMAS) rotor with 5 μL of D2O. A Bruker Avance spectrometer operating at 400 MHz for the 1H frequency and equipped with a 1H/13C/31P HRMAS probe was used. Results: Normal and neoplastic thyroid tissues could be discriminated from each other by different relative concentrations of several amino acids and lipids, as well as benign and malignant neoplasms, that differed in terms of a greater lactate and taurine and a lesser lipid choline, phosphocholine, myo-inositol, and scyllo-inositol levels in malignant samples. A statistical analysis with a receiver operating characteristic curve revealed that 77% of the samples were accurately predicted. Similar results were obtained with specimens obtained from ex vivo aspirates. Conclusion: A further development of this project will be to use the metabolomics approach on specimens obtained from aspirates in vivo after the resolution of technical problems attributable to possible contamination.
机译:背景:据报道,手术标本的质子磁共振波谱能够成功区分正常组织和甲状腺恶性组织。我们使用了一种新的高分辨率磁共振波谱技术来区分甲状腺良恶性肿瘤。方法:将来自72例行全甲状腺切除术的患者的组织学标本加工成4毫米ZrO2高分辨率魔角旋转(HRMAS)转子,其中含5μLD2O。使用的Bruker Avance光谱仪在1H频率下以400 MHz运行,并配备了1H / 13C / 31P HRMAS探针。结果:正常甲状腺和赘生性甲状腺组织可通过几种氨基酸和脂质的相对相对浓度以及良性和恶性肿瘤的不同相对浓度彼此区分开,其中乳酸和牛磺酸含量较高,脂质胆碱,磷胆碱含量较低,恶性样品中的肌醇和鞘氨醇水平。带有接收器工作特性曲线的统计分析表明,准确预测了77%的样本。从离体吸出物获得的标本获得了相似的结果。结论:该项目的进一步发展将是在解决可能由污染引起的技术问题后,对从体内吸出物获得的标本使用代谢组学方法。

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