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The Art and Science of Thyroid Surgery in the Age of Genomics: 100 years after Theodor Kocher

机译:基因组学时代的甲状腺外科艺术与科学:西奥多·科彻(Theodor Kocher)诞辰100年

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Cancer is a disorder of the genome. The thyroid cancer genome is being decoded. Recent studies have identified a mutation or a genetic alteration in 95% of thyroid cancers. The National Cancer Institute initiated the Cancer Genome Atlas project in 2006 to catalogue genetic mutations associated with cancer, using genome sequencing and bioinformatics. The project has expanded to carry out genomic characterization and sequence analysis of thyroid cancer. The concept of risk stratification based on traditional parameters will soon vacate their role for clear molecular markers of non-invasive/focal, invasive/metastatic and systemic stages/phases of neoplastic disorder. A refined classification scheme based on genomics and its phenotypic expressions will accurately reflect the biologic differences between the different morphologic definitions we use today. Tumor differentiation/de-differentiation, and clinical behavior of an individual cancer will be defined by molecular markers, in addition to standard morpho-pathology. Empiricism in science of medicine and surgery has acquired a new method for testing the appropriate treatment for individual patients; that is molecular pathology, governed by genomics. The technology is present and rapidly evolving. The surgeons will determine the extent of interventions with molecular evidence and guidance.
机译:癌症是基因组疾病。甲状腺癌基因组正在解码。最近的研究已经发现95%的甲状腺癌具有突变或遗传变异。美国国家癌症研究所于2006年启动了癌症基因组图谱项目,以利用基因组测序和生物信息学对与癌症相关的基因突变进行分类。该项目已经扩大到可以进行甲状腺癌的基因组表征和序列分析。基于传统参数的风险分层概念将很快摆脱其作用,成为肿瘤性疾病的非侵入性/局灶性,侵入性/转移性和系统性阶段/阶段的明确分子标记。基于基因组学及其表型表达的改进分类方案将准确反映我们今天使用的不同形态学定义之间的生物学差异。除标准形态病理学外,还将通过分子标记物定义肿瘤分化/去分化以及个别癌症的临床行为。医学和外科医学的经验主义获得了一种新的方法来测试针对个别患者的适当治疗方法。即分子病理学,受基因组学控制。该技术已经存在并且正在迅速发展。外科医生将在分子证据和指导下确定干预的程度。

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