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一种癌症发生的出现框架。

An Emergence Framework of Carcinogenesis.

作者信息

Sigston Elizabeth A W, Williams Bryan R G

机构信息

Department of Otorhinolaryngology, Head & Neck Surgery, Monash Health, Melbourne, VIC, Australia.

Department of Surgery, Monash Medical Centre, Monash University, Melbourne, VIC, Australia.

出版信息

Front Oncol. 2017 Sep 14;7:198. doi: 10.3389/fonc.2017.00198. eCollection 2017.

Abstract

Experimental paradigms provide the framework for the understanding of cancer, and drive research and treatment, but are rarely considered by clinicians. The somatic mutation theory (SMT), in which cancer is considered a genetic disease, has been the predominant traditional model of cancer for over 50 years. More recently, alternative theories have been proposed, such as tissue organization field theory (TOFT), evolutionary models, and inflammatory models. Key concepts within the various models have led to them being difficult to reconcile. Progressively, it has been recognized that biological systems cannot be fully explained by the physicochemical properties of their constituent parts. There is an increasing call for a 'systems' approach. Incorporating the concepts of 'emergence', 'systems', 'thermodynamics', and 'chaos', a single integrated framework for carcinogenesis has been developed, enabling existing theories to become compatible as alternative mechanisms, facilitating the integration of bioinformatics and providing a structure in which translational research can flow from both 'benchtop to bedside' and 'bedside to benchtop'. In this review, a basic understanding of the key concepts of 'emergence', 'systems', 'system levels', 'complexity', 'thermodynamics', 'entropy', 'chaos', and 'fractals' is provided. Non-linear mathematical equations are included where possible to demonstrate compatibility with bioinformatics. Twelve principles that define the 'emergence framework of carcinogenesis' are developed, with principles 1-10 encapsulating the key concepts upon which the framework is built and their application to carcinogenesis. Principle 11 relates the framework to cancer progression. Principle 12 relates to the application of the framework to translational research. The 'emergence framework of carcinogenesis' collates current paradigms, concepts, and evidence around carcinogenesis into a single framework that incorporates previously incompatible viewpoints and ideas. Any researcher, scientist, or clinician involved in research, treatment, or prevention of cancer can employ this framework.

摘要

实验范式为理解癌症提供了框架,并推动研究与治疗,但临床医生很少考虑这些范式。体细胞突变理论(SMT)认为癌症是一种基因疾病,在过去50多年里一直是占主导地位的传统癌症模型。最近,人们提出了一些替代理论,如组织组织场理论(TOFT)、进化模型和炎症模型。各种模型中的关键概念使得它们难以协调统一。逐渐地,人们认识到生物系统不能仅通过其组成部分的物理化学性质来完全解释。越来越多的人呼吁采用“系统”方法。结合“涌现”“系统”“热力学”和“混沌”等概念,已经开发出一个单一的致癌作用综合框架,使现有理论能够作为替代机制兼容,促进生物信息学的整合,并提供一个结构,使转化研究能够从“实验室到临床”和“临床到实验室”双向进行。在这篇综述中,提供了对“涌现”“系统”“系统层次”“复杂性”“热力学”“熵”“混沌”和“分形”等关键概念的基本理解。尽可能纳入非线性数学方程以证明与生物信息学的兼容性。制定了定义“致癌作用的涌现框架”的十二条原则,原则1至10概括了该框架所基于的关键概念及其在致癌作用中的应用。原则11将该框架与癌症进展联系起来。原则12涉及该框架在转化研究中的应用。“致癌作用的涌现框架”将目前围绕致癌作用的范式、概念和证据整理到一个单一框架中,该框架纳入了以前不兼容的观点和想法。任何参与癌症研究、治疗或预防的研究人员、科学家或临床医生都可以采用这个框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59d7/5603758/3cc3046382be/fonc-07-00198-g001.jpg

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