Department of Chemistry, CICECO - Aveiro Institute of Materials, University of Aveiro, Campus Universitário de Santiago, 3810-193, Aveiro, Portugal.
Biomater Sci. 2020 Mar 31;8(7):1855-1864. doi: 10.1039/c9bm02075f.
Hydrogel-based 3D in vitro models comprising tumor ECM-mimetic biomaterials exhibit superlative potential as preclinical testing platforms for drug discovery and bioperformance screening. However, during hydrogel design and testing stages, the ideal selection between cancer cell laden 3D models or spheroid embedded hydrogel platforms remains to be elucidated. Selecting a disease-mimicking cellular arrangement within ECM hydrogels is paramount for anti-cancer therapeutics performance evaluation and may lead to differential outcomes. To investigate the effects assigned to varying cellular-arrangement, we developed dense 3D spheroid microtumors and cell-laden MG-63 osteosarcoma platforms embedded in GelMA and Matrigel ECM-mimetic scaffolds. These platforms enabled cancer cells/3D microtissues maturation and lorlatinib drug performance screening. Initial 3D spheroids assembly via the liquid overlay technique, resulted in the fabrication of dense cellular aggregates with reproducible size, morphology and necrotic core formation, thus mimicking the native tumor. Upon in vitro maturation, MG-63 spheroids encapsulated in hydrogel scaffolds exhibited significantly higher invasion and drug resistance than their cell laden hydrogel counterparts. Such data reveals inherent physiological and drug response variances among randomly distributed osteosarcoma cells and 3D spheroid-laden hydrogels. Overall, this highlights the importance of evaluating different cellular aggregation states when designing ECM-mimetic hydrogels for in vitro tumor modeling and high-throughput screening of anti-cancer therapeutics.
基于水凝胶的 3D 体外模型,包含肿瘤细胞外基质模拟生物材料,具有作为药物发现和生物性能筛选的临床前测试平台的卓越潜力。然而,在水凝胶设计和测试阶段,仍然需要阐明在富含癌细胞的 3D 模型或球体嵌入水凝胶平台之间进行理想的选择。在细胞外基质水凝胶中选择疾病模拟的细胞排列对于评估抗癌治疗效果至关重要,并且可能导致不同的结果。为了研究赋予不同细胞排列的效果,我们开发了致密的 3D 球体微肿瘤和嵌入 GelMA 和 Matrigel 细胞外基质模拟支架中的细胞负载 MG-63 骨肉瘤平台。这些平台使癌细胞/3D 微组织成熟和 lorlatinib 药物性能筛选成为可能。通过液层覆盖技术进行初始 3D 球体组装,导致具有可重复大小、形态和坏死核心形成的致密细胞聚集体的制造,从而模拟天然肿瘤。在体外成熟过程中,嵌入水凝胶支架中的 MG-63 球体比其细胞负载的水凝胶对应物表现出更高的侵袭性和耐药性。这些数据揭示了随机分布的骨肉瘤细胞和 3D 球体负载的水凝胶之间固有的生理和药物反应差异。总体而言,这强调了当设计用于体外肿瘤建模和抗癌治疗高通量筛选的细胞外基质模拟水凝胶时,评估不同细胞聚集状态的重要性。