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Using Spheroids as Building Blocks Towards 3D Bioprinting of Tumor Microenvironment

机译:使用球状体作为肿瘤微环境 3D 生物打印的构建块

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摘要

Cancer still ranks as a leading cause of mortality worldwide. Although considerable efforts have been dedicated to anticancer therapeutics, progress is still slow, partially due to the absence of robust prediction models. Multicellular tumor spheroids, as a major three-dimensional (3D) culture model exhibiting features of avascular tumors, gained great popularity in pathophysiological studies and high throughput drug screening. However, limited control over cellular and structural organization is still the key challenge in achieving in vivo like tissue microenvironment. 3D bioprinting has made great strides toward tissue/organ mimicry, due to its outstanding spatial control through combining both cells and materials, scalability, and reproducibility. Prospectively, harnessing the power from both 3D bioprinting and multicellular spheroids would likely generate more faithful tumor models and advance our understanding on the mechanism of tumor progression. In this review, the emerging concept on using spheroids as a building block in 3D bioprinting for tumor modeling is illustrated. We begin by describing the context of the tumor microenvironment, followed by an introduction of various methodologies for tumor spheroid formation, with their specific merits and drawbacks. Thereafter, we present an overview of existing 3D printed tumor models using spheroids as a focus. We provide a compilation of the contemporary literature sources and summarize the overall advancements in technology and possibilities of using spheroids as building blocks in 3D printed tissue modeling, with a particular emphasis on tumor models. Future outlooks about the wonderous advancements of integrated 3D spheroidal printing conclude this review.
机译:癌症仍然是全球死亡的主要原因。尽管人们在抗癌治疗方面投入了大量精力,但进展仍然缓慢,部分原因是缺乏强大的预测模型。多细胞肿瘤球体作为一种表现出无血管肿瘤特征的主要三维 (3D) 培养模型,在病理生理学研究和高通量药物筛选中得到了极大的普及。然而,对细胞和结构组织的有限控制仍然是实现体内组织微环境的关键挑战。3D 生物打印在组织/器官模拟方面取得了长足的进步,因为它通过结合细胞和材料、可扩展性和可重复性实现了出色的空间控制。展望未来,利用 3D 生物打印和多细胞球体的力量可能会产生更忠实的肿瘤模型,并促进我们对肿瘤进展机制的理解。在这篇综述中,说明了使用 soloids 作为 3D 生物打印构建块进行肿瘤建模的新兴概念。我们首先描述肿瘤微环境的背景,然后介绍肿瘤球状体形成的各种方法,以及它们的具体优点和缺点。此后,我们概述了以球状体为重点的现有 3D 打印肿瘤模型。我们提供了当代文献来源的汇编,并总结了技术的整体进步以及在 3D 打印组织建模中使用球状体作为构建块的可能性,特别强调肿瘤模型。关于集成 3D 球体打印惊人进步的未来展望总结了这篇评论。

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