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An Evolutionary Explanation for the Perturbation of the Dynamics of Metastatic Tumors Induced by Surgery and Acute Inflammation

机译:手术和急性炎症引起的转移性肿瘤动态变化的进化解释。

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摘要

Surgery has contributed to unveil a tumor behavior that is difficult to reconcile with the models of tumorigenesis based on gradualism. The postsurgical patterns of progression include unexpected features such as distant interactions and variable rhythms. The underlying evidence can be summarized as follows: (1) the resection of the primary tumor is able to accelerate the evolution of micrometastasis in early stages, and (2) the outcome is transiently opposed in advanced tumors. The objective of this paper is to give some insight into tumorigenesis and surgery-related effects, by applying the concepts of the evolutionary theory in those tumor behaviors that gompertzian and tissular-centered models are unable to explain. According to this view, tumors are the consequence of natural selection operating at the somatic level, which is the basic mechanism of tumorigenesis, notwithstanding the complementary role of the intrinsic constrictions of complex networks. A tumor is a complicated phenomenon that entails growth, evolution and development simultaneously. So, an evo-devo perspective can explain how and why tumor subclones are able to translate competition from a metabolic level into neoangiogenesis and the immune response. The paper proposes that distant interactions are an extension of the ecological events at the local level. This notion explains the evolutionary basis for tumor dormancy, and warns against the teleological view of tumorigenesis as a process directed towards the maximization of a concrete trait such as aggressiveness.
机译:外科手术有助于揭示一种难以与基于渐进性的肿瘤发生模型相协调的肿瘤行为。进展的术后模式包括意想不到的特征,例如远距离的相互作用和变化的节奏。基本证据可概括如下:(1)切除原发性肿瘤能够在早期阶段加速微转移的发展,(2)在晚期肿瘤中,其结果短暂地相反。本文的目的是通过将进化论的概念应用于贡普尔兹模型和以组织为中心的模型无法解释的那些肿瘤行为中,从而对肿瘤发生和与手术相关的影响提供一些见识。根据这种观点,尽管复杂网络的固有收缩具有互补作用,但肿瘤是自然选择在体细胞水平上运行的结果,这是肿瘤发生的基本机制。肿瘤是复杂的现象,需要同时生长,进化和发展。因此,evo-devo观点可以解释肿瘤亚克隆如何以及为何能够将竞争从代谢水平转化为新血管生成和免疫反应。本文提出,远距离的相互作用是局部水平上生态事件的延伸。该概念解释了肿瘤休眠的进化基础,并警告不要将目的论视为一种旨在最大化具体特征(例如侵略性)的过程的肿瘤发生的目的论观点。

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