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用于可视化比色检测捕获的乳腺癌细胞的3D便携式聚乙二醇二丙烯酸酯微流控芯片的制造与验证

Fabrication and Validation of a 3D Portable PEGDA Microfluidic Chip for Visual Colorimetric Detection of Captured Breast Cancer Cells.

作者信息

Guo Mingyi, Deng Yan, Huang Junqiu, Huang Yanping, Deng Jing, Wu Huachang

机构信息

College of Food Science and Technology, Sichuan Tourism University, Chengdu 610100, China.

College of Bioengineering, Chongqing University, Chongqing 400044, China.

出版信息

Polymers (Basel). 2023 Jul 27;15(15):3183. doi: 10.3390/polym15153183.

Abstract

To guide therapeutic strategies and to monitor the state changes in the disease, a low-cost, portable, and easily fabricated microfluidic-chip-integrated three-dimensional (3D) microchamber was designed for capturing and analyzing breast cancer cells. Optimally, a colorimetric sensor array was integrated into a microfluidic chip to discriminate the metabolites of the cells. The ultraviolet polymerization characteristic of poly(ethylene glycol) diacrylate (PEGDA) hydrogel was utilized to rapidly fabricate a three-layer hydrogel microfluidic chip with the designed structure under noninvasive 365 nm laser irradiation. 2-Hydroxyethyl methacrylate (HEMA) was added to the prepolymer in order to increase the adhesive capacity of the microchip's surface for capturing cells. 1-Vinyl-2-pyrrolidone (NVP) was designed to improve the toughness and reduce the swelling capacity of the hydrogel composite. A non-toxic 3D hydrogel microarray chip (60 mm × 20 mm × 3 mm) with low immunogenicity and high hydrophilicity was created to simulate the real physiological microenvironment of breast tissue. The crisscross channels were designed to ensure homogeneous seeding density. This hydrogel material displayed excellent biocompatibility and tunable physical properties compared with traditional microfluidic chip materials and can be directly processed to obtain the most desirable microstructure. The feasibility of using a PEGDA hydrogel microfluidic chip for the real-time online detection of breast cancer cells' metabolism was confirmed using a specifically designed colorimetric sensor array with 16 kinds of porphyrin, porphyrin derivatives, and indicator dyes. The results of the principal component analysis (PCA), the hierarchical cluster analysis (HCA), and the linear discriminant analysis (LDA) suggest that the metabolic liquids of different breast cells can be easily distinguished with the developed PEGDA hydrogel microfluidic chip. The PEGDA hydrogel microfluidic chip has potential practicable applicability in distinguishing normal and cancerous breast cells.

摘要

为了指导治疗策略并监测疾病状态变化,设计了一种低成本、便携式且易于制造的集成微流控芯片的三维(3D)微腔,用于捕获和分析乳腺癌细胞。理想情况下,将比色传感器阵列集成到微流控芯片中以区分细胞代谢物。利用聚(乙二醇)二丙烯酸酯(PEGDA)水凝胶的紫外光聚合特性,在无创365 nm激光照射下快速制造出具有设计结构的三层水凝胶微流控芯片。向预聚物中添加甲基丙烯酸羟乙酯(HEMA)以提高微芯片表面捕获细胞的黏附能力。设计N-乙烯基-2-吡咯烷酮(NVP)以提高水凝胶复合材料的韧性并降低其溶胀能力。创建了一种具有低免疫原性和高亲水性的无毒3D水凝胶微阵列芯片(60 mm×20 mm×3 mm),以模拟乳腺组织的真实生理微环境。设计交叉通道以确保均匀的接种密度。与传统微流控芯片材料相比,这种水凝胶材料具有优异的生物相容性和可调节的物理性能,并且可以直接加工以获得最理想的微观结构。使用具有16种卟啉、卟啉衍生物和指示剂染料的专门设计的比色传感器阵列,证实了使用PEGDA水凝胶微流控芯片实时在线检测乳腺癌细胞代谢的可行性。主成分分析(PCA)、层次聚类分析(HCA)和线性判别分析(LDA)的结果表明,使用开发的PEGDA水凝胶微流控芯片可以轻松区分不同乳腺细胞的代谢液。PEGDA水凝胶微流控芯片在区分正常和癌性乳腺细胞方面具有潜在的实际应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/123f/10421435/2be9a5e35463/polymers-15-03183-g001.jpg

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