Lopez-Vince Elliot, Simon-Yarza Teresa, Wilhelm Claire
Université Paris Cité, Université Sorbonne Paris Nord, LVTS Inserm U1148, 75018, Paris, France.
Laboratoire Physico Chimie Curie, PCC, Institut Curie, CNRS UMR168, Sorbonne University, PSL University, 75005, Paris, France.
Sci Rep. 2025 Feb 4;15(1):4213. doi: 10.1038/s41598-025-87896-7.
Extracellular matrix mimics are still needed to grow cancer cells in 3D environments and study their evolution in vitro while precisely controlling relevant features. Most models currently use collagen, which is biomimetic but degrades quickly, or artificial polymers, which can be chemically modified but remain stiff. Herein we introduced a soft, non-adhesive, and resistant hydrogel platform for tumor spheroid production using a polysaccharide-based formulation. To ensure micro-structuring of the hydrogel and enable spheroid formation, 3D printed molds consisting of a network of 200-µm-diameter micropillars were used to generate microstructured hydrogel constructs that fit into a multi-well plate. This platform was validated for drug testing using three cancer cell lines (A673, MCF7 and U87) and 2 anticancer drugs (doxorubicin and paclitaxel). Drug response was assessed through bright-field microscopy monitoring and viability measurements after 48 h of treatment. This study validates the use of pullulan-dextran hydrogels for spheroid formation, combined with in situ drug screening.
在三维环境中培养癌细胞并在精确控制相关特征的同时研究其体外进化,仍然需要细胞外基质模拟物。目前大多数模型使用胶原蛋白(具有仿生特性但降解迅速)或人工聚合物(可进行化学修饰但质地坚硬)。在此,我们介绍了一种基于多糖配方的用于肿瘤球体生成的柔软、非粘性且耐用的水凝胶平台。为确保水凝胶的微观结构并实现球体形成,使用了由直径200微米的微柱网络组成的3D打印模具来生成适合微孔板的微观结构水凝胶构建体。该平台使用三种癌细胞系(A673、MCF7和U87)和两种抗癌药物(阿霉素和紫杉醇)进行了药物测试验证。通过明场显微镜监测和处理48小时后的活力测量来评估药物反应。本研究验证了支链淀粉-葡聚糖水凝胶用于球体形成并结合原位药物筛选的用途。