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Engineered Paper‐Based Cell Culture Platforms
Advanced Healthcare Materials ( IF 10.0 ) Pub Date : 2017-10-27 , DOI: 10.1002/adhm.201700619
Darlin Lantigua 1 , Yan Ni Kelly 2 , Baris Unal 3 , Gulden Camci-Unal 4
Affiliation  

Paper is used in various applications in biomedical research including diagnostics, separations, and cell cultures. Paper can be conveniently engineered due to its tunable and flexible nature, and is amenable to high‐throughput sample preparation and analysis. Paper‐based platforms are used to culture primary cells, tumor cells, patient biopsies, stem cells, fibroblasts, osteoblasts, immune cells, bacteria, fungi, and plant cells. These platforms are compatible with standard analytical assays that are typically used to monitor cell behavior. Due to its thickness and porous nature, there are no mass transport limitations to/from the cells in paper scaffolds. It is possible to pattern paper in different scales (micrometer to centimeter), generate modular configurations in 3D, fabricate multicellular and compartmentalized tissue mimetics for clinical applications, and recover cells from the scaffolds for further analysis. 3D paper constructs can provide physiologically relevant tissue models for personalized medicine. Layer‐by layer strategies to assemble tissue‐like structures from low‐cost and biocompatible paper‐based materials offer unique opportunities that include understanding fundamental biology, developing disease models, and assembling different tissues for organ‐on‐paper applications. Paper‐based platforms can also be used for origami‐inspired tissue engineering. This work provides an overview of recent progress in engineered paper‐based biomaterials and platforms to culture and analyze cells.

中文翻译:

工程纸质细胞培养平台

纸被用于生物医学研究的各种应用中,包括诊断,分离和细胞培养。纸张具有可调性和灵活性,可以方便地进行工程设计,并且适合高通量样品的制备和分析。纸质平台用于培养原代细胞,肿瘤细胞,活检组织,干细胞,成纤维细胞,成骨细胞,免疫细胞,细菌,真菌和植物细胞。这些平台与通常用于监测细胞行为的标准分析方法兼容。由于其厚度和多孔性,到/从纸支架中的细胞的传质没有限制。可以对不同比例(微米到厘米)的纸张进行图案化,以3D格式生成模块化配置,制造用于临床应用的多细胞和分隔组织模拟物,并从支架中回收细胞以进行进一步分析。3D纸质构造可以为个性化医学提供生理相关的组织模型。从低成本且生物相容的纸质材料组装组织状结构的分层策略提供了独特的机会,其中包括了解基础生物学,开发疾病模型以及为纸上器官应用组装不同的组织。纸基平台也可用于折纸启发的组织工程。这项工作概述了工程化纸质生物材料和培养和分析细胞平台的最新进展。3D纸质构造可以为个性化医学提供生理相关的组织模型。从低成本且生物相容的纸质材料组装组织状结构的分层策略提供了独特的机会,其中包括了解基础生物学,开发疾病模型以及为纸上器官应用组装不同的组织。纸基平台也可用于折纸启发的组织工程。这项工作概述了工程化纸质生物材料和培养和分析细胞平台的最新进展。3D纸质构造可以为个性化医学提供生理相关的组织模型。从低成本且生物相容的纸质材料组装组织状结构的分层策略提供了独特的机会,其中包括了解基础生物学,开发疾病模型以及为纸上器官应用组装不同的组织。纸基平台也可用于折纸启发的组织工程。这项工作概述了工程化纸质生物材料和培养和分析细胞平台的最新进展。开发疾病模型,并为纸上应用组装不同的组织。纸基平台也可用于折纸启发的组织工程。这项工作概述了工程化纸质生物材料和培养和分析细胞平台的最新进展。开发疾病模型,并为纸上应用组装不同的组织。纸基平台也可用于折纸启发的组织工程。这项工作概述了工程化纸质生物材料和培养和分析细胞平台的最新进展。
更新日期:2017-10-27
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