Suppr超能文献

空气中生产 3D 共培养肿瘤球体水凝胶用于加速药物筛选。

In-air production of 3D co-culture tumor spheroid hydrogels for expedited drug screening.

机构信息

Department of Chemistry, CICECO, University of Aveiro, Campus Universitário de Santiago, 3810-193 Aveiro, Portugal.

Department of Chemistry, CICECO, University of Aveiro, Campus Universitário de Santiago, 3810-193 Aveiro, Portugal.

出版信息

Acta Biomater. 2019 Aug;94:392-409. doi: 10.1016/j.actbio.2019.06.012. Epub 2019 Jun 12.

Abstract

Three-dimensional (3D) in vitro tumor spheroids are becoming popular as pre-clinical platforms for testing the performance of existing drugs or for discovery of innovative anti-cancer therapeutics. This focus is correlated with in vitro 3D tumor models ability to mimic the multicellular compact structure and spatial architecture of human solid tumors. However, these microphysiological systems generally lack the pre-existence of tumor-ECM, a critical aspect that can affect the overall therapeutic performance and the decision of advancing candidate drugs to later stages of the pipeline. Aiming to face this drawback and mimic tumors-ECM, herein we rapidly fabricated in-air hyaluronan-methacrylate (HA-MA) and gelatin-methacrylate (GelMA) photocrosslinkable 3D spheroid microgels by using superhydrophobic surfaces. These platforms were used for establishing heterotypic 3D co-culture models of prostate cancer cells (PC-3) and human osteoblasts (hOB) to mimic prostate cancer-to-bone metastasis cellular heterogeneity and the tumor-ECM microenvironment. 3D microgel microtumors morphology, size and cell number were easily controlled via digital droplet generation on polystyrene superhydrophobic surfaces and under solvent-free conditions when compared to microfluidics or electrospray. Co-culture 3D microgels formed by 2.5%HA-MA-5%GelMA and 5%HA-MA-5%GelMA ratios showed the highest calcium deposition after 14 days of culture, evidencing osteoblasts viability and the establishment of functional mineralization in the 3D hydrogel matrix. Cisplatin cytotoxicity evaluation showed that 3D microgels are more resistant to platin chemotherapeutics than single or co-culture 3D multicellular spheroid counterparts. Overall, our findings indicate that solvent-free, in-air produced 3D microgel microenvironments are cost-effective and robust tumor mimicking platforms for in vitro high-throughput screening of therapeutics targeted to prostate-to-bone metastasis microenvironments. STATEMENT OF SIGNIFICANCE: The generation of robust microphysiological systems that recapitulate the complexity of the metastatic prostate-to-bone tumor microenvironment is crucial for pre-clinical evaluation of new therapeutics that can eradicate these secondary tumors. In this study, we employed superhydrophobic (SH) surfaces to rapidly fabricate photocrosslinkable hyaluronan-methacrylate/gelatin-methacrylate 3D spheroid microgels for prostate cancer cells and human osteoblasts co-culture models that simultaneously mimic the cellular and ECM tumor components. The use of SH platforms overcomes the issues of standard in-liquid microgel production technologies by providing a robust control over 3D microgels size/morphology and cell-cell co-encapsulation numbers, while avoiding the use of oil-based microgel droplets generation. Overall, SH surfaces allowed a solvent-free, cost-effective, reproducible and adaptable fabrication of heterotypic 3D spherical microgels for high throughput drug screening.

摘要

三维(3D)体外肿瘤球体作为测试现有药物性能或发现创新抗癌疗法的临床前平台越来越受欢迎。这一焦点与体外 3D 肿瘤模型模拟人类实体瘤的多细胞紧密结构和空间结构的能力有关。然而,这些微生理系统通常缺乏肿瘤细胞外基质(ECM)的预先存在,这是一个关键方面,可能会影响整体治疗效果和候选药物进入管道后期阶段的决策。为了应对这一缺点并模拟肿瘤-ECM,我们在此使用超疏水表面快速制备了空气中透明质酸-甲基丙烯酰胺(HA-MA)和明胶-甲基丙烯酰胺(GelMA)光交联 3D 球体微凝胶。这些平台用于建立前列腺癌细胞(PC-3)和人成骨细胞(hOB)的异型 3D 共培养模型,以模拟前列腺癌骨转移细胞异质性和肿瘤-ECM 微环境。与微流控或电喷雾相比,通过在聚苯乙烯超疏水表面上进行数字液滴生成,可以轻松控制 3D 微凝胶微肿瘤的形态、大小和细胞数量,并且在无溶剂条件下进行。当 2.5%HA-MA-5%GelMA 和 5%HA-MA-5%GelMA 比例的共培养 3D 微凝胶培养 14 天时,钙沉积最高,证明了成骨细胞的活力和在 3D 水凝胶基质中建立功能矿化。顺铂细胞毒性评估表明,3D 微凝胶对顺铂化疗药物的抵抗力强于单培养或共培养的 3D 多细胞球体对照物。总体而言,我们的研究结果表明,无溶剂、空气产生的 3D 微凝胶微环境是具有成本效益的、强大的肿瘤模拟平台,可用于针对前列腺癌骨转移微环境的治疗药物的体外高通量筛选。意义声明:生成能够再现转移性前列腺癌骨肿瘤微环境复杂性的稳健微生理系统对于新治疗方法的临床前评估至关重要,这些新治疗方法可以根除这些继发性肿瘤。在这项研究中,我们使用超疏水(SH)表面快速制备光交联透明质酸-甲基丙烯酰胺/明胶-甲基丙烯酰胺 3D 球体微凝胶,用于前列腺癌细胞和人成骨细胞共培养模型,同时模拟细胞和 ECM 肿瘤成分。SH 平台的使用通过提供对 3D 微凝胶大小/形态和细胞-细胞共包封数量的稳健控制,克服了标准液相微凝胶生产技术的问题,同时避免了使用油基微凝胶液滴生成。总体而言,SH 表面允许无溶剂、具有成本效益、可重复且适应性强的异型 3D 球形微凝胶制造,用于高通量药物筛选。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验