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泛癌与多组学:癌症复杂遗传和分子领域中的诊断、预后及治疗的先进策略

Pan-cancer and multiomics: advanced strategies for diagnosis, prognosis, and therapy in the complex genetic and molecular universe of cancer.

作者信息

Campanharo Camilly Victória, Dos Santos Silveira Lívia Valle, Meira Débora Dummer, Casotti Matheus Correia, Altoé Lorena Souza Castro, Louro Iúri Drumond, Gonçalves André Felipe Monteiro, Machado André Manhães, Paiva Breno Sousa, de Souza Inocencio Ester, Rocha Fabio Victor Vieira, Pesente Fellipe, de Castro Giulia de Souza Cupertino, da Paixão João Pedro Dos Santos, Bourguignon José Henrique Borges, Carneiro Júlia Salarini, de Oliveira Juliana Ribeiro, de Souza Freire Pâmela, Zamprogno Sophia Bridi, Dos Santos Uchiya Taissa, de Paula Rezende Thais, de Pádua Sanders Medeiros Vinícius

机构信息

Núcleo de Genética Humana e Molecular, Universidade Federal do Espírito Santo (UFES), Av. Fernando Ferrari, N. 514, Prédio Ciências Biológicas, Bloco A, Sala 106, Vitória, Espírito Santo, Brasil.

出版信息

Clin Transl Oncol. 2024 Dec 26. doi: 10.1007/s12094-024-03819-4.

Abstract

The pan-cancer and multi-omics approach is motivated by the genetic and molecular complexity inherent in the varied types of cancer. This method presents itself as a crucial resource for advancing early diagnosis, defining prognoses and identifying treatments that share common bases between different forms of tumors. The aim of this article is to explore pan-cancer analysis in conjunction with multi-omics strategies, evaluating laboratory, computational, clinical procedures and their consequences, as well as examining the tumor microenvironment, epigenetics and future directions of these technologies in patient management. To this end, a literature review was conducted using PUBMED, resulting in the selection of 260 articles, of which 81 were carefully chosen to support this analysis. The pan-cancer methodology is applied to the study of this microenvironment with the aim of investigating its common characteristics through multiomics data. The development of new therapies depends on understanding the oncogenic pathways associated with different cancers. Thus, the integration of multi-omics and pan-cancer analyzes offers an innovative perspective in the search for new control points, metabolic pathways and markers, in addition to facilitating the identification of patterns common to multiple cancer types, allowing the development of targeted treatments. In this way, the convergence of multiomics and clinical approaches promotes a broad view of cancer biology, leading to more effective and personalized therapies.

摘要

泛癌和多组学方法的产生是由于不同类型癌症中固有的遗传和分子复杂性。这种方法是推进早期诊断、确定预后以及识别不同形式肿瘤之间具有共同基础的治疗方法的关键资源。本文的目的是结合多组学策略探索泛癌分析,评估实验室、计算、临床程序及其后果,以及研究肿瘤微环境、表观遗传学以及这些技术在患者管理中的未来方向。为此,使用PUBMED进行了文献综述,筛选出260篇文章,其中81篇被精心挑选以支持本分析。泛癌方法应用于该微环境的研究,旨在通过多组学数据研究其共同特征。新疗法的开发取决于对与不同癌症相关的致癌途径的理解。因此,多组学和泛癌分析的整合为寻找新的控制点、代谢途径和标志物提供了创新视角,此外还有助于识别多种癌症类型共有的模式,从而开发靶向治疗。通过这种方式,多组学和临床方法的融合促进了对癌症生物学的全面认识,从而带来更有效和个性化的治疗。

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