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一种用于模拟胰腺导管腺癌的3D生物启发式高孔隙率聚合物支架系统。

A 3D bioinspired highly porous polymeric scaffolding system for simulation of pancreatic ductal adenocarcinoma.

作者信息

Totti Stella, Allenby Mark C, Dos Santos Susana Brito, Mantalaris Athanasios, Velliou Eirini G

机构信息

Bioprocess and Biochemical Engineering Group (BioProChem), Department of Chemical and Process Engineering, University of Surrey Guildford GU2 7XH UK

Biological Systems Engineering Laboratory (BSEL), Department of Chemical Engineering, Imperial College London London SW7 2AZ UK.

出版信息

RSC Adv. 2018 Jun 7;8(37):20928-20940. doi: 10.1039/c8ra02633e. eCollection 2018 Jun 5.

Abstract

Pancreatic ductal adenocarcinoma is an aggressive disease with an extremely low survival rate. This is due to the (i) poor prognosis and (ii) high resistance of the disease to current treatment options. The latter is partly due to the very complex and dense tissue/tumour microenvironment of pancreatic cancer, which contributes to the disease's progression and the inhibition of apoptotic pathways. Over the last years, advances in tissue engineering and the development of three-dimensional (3D) culture systems have shed more light into cancer research by enabling a more realistic recapitulation of the niches and structure of the tumour microenvironment. Herein, for the first time, 3D porous polyurethane scaffolds were fabricated and coated with fibronectin to mimic features of the structure and extracellular matrix present in the pancreatic cancer tumour microenvironment. The developed 3D scaffold could support the proliferation of the pancreatic tumour cells, which was enhanced with the presence of fibronectin, for a month, which is a significantly prolonged culturing duration. Furthermore, imaging of cellular and biomarker distribution showed the formation of dense cellular masses, the production of collagen-I by the cells and the formation of environmental stress gradients ( HIF-1α) with similar heterogeneity trends to the ones reported in studies. The results obtained in this study suggest that this bioinspired porous polyurethane based scaffold has great potential for high throughput studies of pancreatic cancer including drug and treatment screening.

摘要

胰腺导管腺癌是一种侵袭性疾病,生存率极低。这归因于:(i)预后较差;(ii)该疾病对当前治疗方案具有高度抗性。后者部分归因于胰腺癌极其复杂且致密的组织/肿瘤微环境,这促进了疾病进展并抑制了凋亡途径。在过去几年中,组织工程学的进展以及三维(3D)培养系统的开发,通过更真实地再现肿瘤微环境的生态位和结构,为癌症研究提供了更多启示。在此,首次制备了3D多孔聚氨酯支架并用纤连蛋白进行包被,以模拟胰腺癌肿瘤微环境中存在的结构和细胞外基质特征。所开发的3D支架能够支持胰腺肿瘤细胞增殖,在纤连蛋白存在的情况下,细胞增殖可增强并持续一个月,这是显著延长的培养持续时间。此外,细胞和生物标志物分布成像显示形成了致密的细胞团块,细胞产生了I型胶原蛋白,并形成了与研究报告中具有相似异质性趋势的环境应激梯度(HIF-1α)。本研究获得的结果表明,这种受生物启发的基于多孔聚氨酯的支架在胰腺癌的高通量研究(包括药物和治疗筛选)方面具有巨大潜力。

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