Souza Ilva de Fátima, Vieira João Paulo de Jesus, Bonifácio Elton Diêgo, Avelar Freitas Bethânia Alves de, Torres Libardo Andres Gonzalez
Institute of Science and Technology, Federal University of the Jequitinhonha and Mucuri Valleys, Diamantina, Brazil.
School of Medicine, Federal University of the Jequitinhonha and Mucuri Valleys, Diamantina, Brazil.
Tissue Eng Part B Rev. 2025 Jun;31(3):266-283. doi: 10.1089/ten.TEB.2024.0088. Epub 2024 Aug 7.
Solid tumors represent the most common type of cancer in humans and are classified into sarcomas, lymphomas, and carcinomas based on the originating cells. Among these, carcinomas, which arise from epithelial and glandular cells lining the body's tissues, are the most prevalent. Around the world, a significant increase in the incidence of solid tumors is observed during recent years. In this context, efforts to discover more effective cancer treatments have led to a deeper understanding of the tumor microenvironment (TME) and its components. Currently, the interactions between cancer cells and elements of the TME are being intensely investigated. Remarkable progress in research is noted, largely owing to the development of advanced models, such as tumor-on-a-chip models that assist in understanding and ultimately discovering new effective treatments for a specific type of cancer. The purpose of this article is to provide a review of the TME and cancer cell components, along with the advances on tumor-on-a-chip models designed to mimic tumors, offering a perspective on the current state of the art. Recent studies using this kind of microdevices that reproduce the TME have allowed a better understanding of the cancer and its treatments. Nevertheless, current applications of this technology present some limitations that must be overcome to achieve a broad application by researchers looking for a deeper knowledge of cancer and new strategies to improve current therapies.
实体瘤是人类最常见的癌症类型,根据起源细胞可分为肉瘤、淋巴瘤和癌。其中,起源于身体组织内衬上皮细胞和腺细胞的癌最为普遍。近年来,全球实体瘤发病率显著上升。在此背景下,探索更有效癌症治疗方法的努力促使人们对肿瘤微环境(TME)及其组成部分有了更深入的了解。目前,癌细胞与TME各要素之间的相互作用正受到深入研究。研究取得了显著进展,这在很大程度上归功于先进模型的发展,如芯片上肿瘤模型,有助于理解并最终发现针对特定类型癌症的新的有效治疗方法。本文旨在综述TME和癌细胞组成部分,以及旨在模拟肿瘤的芯片上肿瘤模型的进展,呈现当前技术水平的概况。最近使用这种能够重现TME的微型设备进行的研究,使人们对癌症及其治疗有了更好的理解。然而,该技术目前的应用存在一些局限性,寻求更深入了解癌症并改进当前治疗方法新策略的研究人员若要广泛应用该技术,必须克服这些局限性。