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Etiologic Field Effect: Reappraisal of the Field Effect Concept in Cancer Predisposition and Progression

机译:病因场效应:对癌症易感性和进展中场效应概念的重新评估

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摘要

The term “field effect” (also known as field defect, field cancerization, or field carcinogenesis) has been used to describe a field of cellular and molecular alteration, which predisposes to the development of neoplasms within that territory. We explore an expanded, integrative concept, “etiologic field effect”, which asserts that various etiologic factors (the exposome including dietary, lifestyle, environmental, microbial, hormonal, and genetic factors) and their interactions (the interactome) contribute to a tissue microenvironmental milieu that constitutes a “field of susceptibility” to neoplasia initiation, evolution, and progression. Importantly, etiological fields predate the acquisition of molecular aberrations commonly considered to indicate presence of filed effect. Inspired by molecular pathological epidemiology (MPE) research, which examines the influence of etiologic factors on cellular and molecular alterations during disease course, an etiologically-focused approach to field effect can: 1) broaden the horizons of our inquiry into cancer susceptibility and progression at molecular, cellular, and environmental levels, during all stages of tumor evolution; 2) embrace host-environment-tumor interactions (including gene-environment interactions) occurring in the tumor microenvironment; and, 3) help explain intriguing observations, such as shared molecular features between bilateral primary breast carcinomas, and between synchronous colorectal cancers, where similar molecular changes are absent from intervening normal colon. MPE research has identified a number of endogenous and environmental exposures which can influence not only molecular signatures in the genome, epigenome, transcriptome, proteome, metabolome and interactome, but also host immunity and tumor behavior. We anticipate that future technological advances will allow the development of in vivo biosensors capable of detecting and quantifying “etiologic field effect” as abnormal network pathology patterns of cellular and microenvironmental responses to endogenous and exogenous exposures. Through an “etiologic field effect” paradigm, and holistic systems pathology (systems biology) approaches to cancer biology, we can improve personalized prevention and treatment strategies for precision medicine.
机译:术语“场效应”(也称为场缺陷,场癌变或场致癌作用)已被用来描述一个细胞和分子改变的领域,这容易导致该地区肿瘤的发展。我们探索了一个扩展的综合概念“病原学场效应”,该概念断言各种病因(包括饮食,生活方式,环境,微生物,激素和遗传因素在内的暴露物)及其相互作用(相互作用组)有助于组织的微环境。构成肿瘤形成,发展和进展的“易感性领域”的环境。重要的是,病因学领域早于通常被认为表明有作用的分子畸变的获得。受到分子病理流行病学(MPE)研究的启发,该研究检查了病因对疾病过程中细胞和分子变化的影响,以病因学为重点的场效应研究方法可以:1)拓宽我们对癌症易感性和进展的研究范围在肿瘤进化的所有阶段中的分子,细胞和环境水平; 2)包含在肿瘤微环境中发生的宿主-环境-肿瘤相互作用(包括基因-环境相互作用); 3)帮助解释有趣的观察结果,例如双侧原发性乳腺癌之间以及同步大肠癌之间的共有分子特征,而正常结肠之间没有相似的分子变化。 MPE研究已经确定了许多内源性和环境暴露,这些暴露不仅会影响基因组,表观基因组,转录组,蛋白质组,代谢组和相互作用组中的分子特征,而且还会影响宿主的免疫力和肿瘤行为。我们预计,未来的技术进步将允许开发能够检测和量化“病因场效应”的体内生物传感器,作为对内源性和外源性暴露的细胞和微环境响应的异常网络病理模式。通过“病因场效应”范例和癌症生物学的整体系统病理学(系统生物学)方法,我们可以改善精准医学的个性化预防和治疗策略。

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