Challenges and Opportunities Modeling the Dynamic Tumor Matrisome.

IF 5 Q1 ENGINEERING, BIOMEDICAL BME frontiers Pub Date : 2023-01-16 eCollection Date: 2023-01-01 DOI:10.34133/bmef.0006
Shelly R Peyton, Manu O Platt, Edna Cukierman
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Abstract

We need novel strategies to target the complexity of cancer and, particularly, of metastatic disease. As an example of this complexity, certain tissues are particularly hospitable environments for metastases, whereas others do not contain fertile microenvironments to support cancer cell growth. Continuing evidence that the extracellular matrix (ECM) of tissues is one of a host of factors necessary to support cancer cell growth at both primary and secondary tissue sites is emerging. Research on cancer metastasis has largely been focused on the molecular adaptations of tumor cells in various cytokine and growth factor environments on 2-dimensional tissue culture polystyrene plates. Intravital imaging, conversely, has transformed our ability to watch, in real time, tumor cell invasion, intravasation, extravasation, and growth. Because the interstitial ECM that supports all cells in the tumor microenvironment changes over time scales outside the possible window of typical intravital imaging, bioengineers are continuously developing both simple and sophisticated in vitro controlled environments to study tumor (and other) cell interactions with this matrix. In this perspective, we focus on the cellular unit responsible for upholding the pathologic homeostasis of tumor-bearing organs, cancer-associated fibroblasts (CAFs), and their self-generated ECM. The latter, together with tumoral and other cell secreted factors, constitute the "tumor matrisome". We share the challenges and opportunities for modeling this dynamic CAF/ECM unit, the tools and techniques available, and how the tumor matrisome is remodeled (e.g., via ECM proteases). We posit that increasing information on tumor matrisome dynamics may lead the field to alternative strategies for personalized medicine outside genomics.

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动态肿瘤基质建模的挑战与机遇。
我们需要新的策略来针对癌症的复杂性,特别是转移性疾病。作为这种复杂性的一个例子,某些组织是特别适合转移的环境,而其他组织不包含支持癌症细胞生长的肥沃微环境。不断有证据表明,组织的细胞外基质(ECM)是支持癌症细胞在原发和继发组织部位生长所必需的一系列因素之一。癌症转移的研究主要集中在肿瘤细胞在二维组织培养聚苯乙烯板上的各种细胞因子和生长因子环境中的分子适应。相反,活体内成像改变了我们实时观察肿瘤细胞侵袭、浸润、外渗和生长的能力。由于支持肿瘤微环境中所有细胞的间质ECM在典型活体内成像的可能窗口之外随时间变化,生物工程师正在不断开发简单和复杂的体外控制环境,以研究肿瘤(和其他)细胞与该基质的相互作用。从这个角度来看,我们关注的是负责维持荷瘤器官病理稳态的细胞单位、癌症相关成纤维细胞(CAFs)及其自身产生的ECM。后者与肿瘤和其他细胞分泌因子一起构成了“肿瘤母体”。我们分享了建模这种动态CAF/ECM单元的挑战和机会,可用的工具和技术,以及肿瘤基质是如何重塑的(例如,通过ECM蛋白酶)。我们认为,越来越多的关于肿瘤基质动力学的信息可能会引导该领域在基因组学之外寻找个性化医学的替代策略。
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CiteScore
7.10
自引率
0.00%
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0
审稿时长
16 weeks
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