He Xinyu, Xu Junyan, Wang Xiaoli, Ge Chuang, Li Shunbo, Wang Li, Xu Yi
Key Disciplines Lab of Novel Micro-Nano Devices and System Technology, Key Laboratory of Optoelectronic Technology and Systems, Ministry of Education, Chongqing University, Shapingba, Chongqing, 400044 PR China.
School of Chemistry and Chemical Engineering, Chongqing University, Shapingba, Chongqing, 400044 PR China.
Lab Chip. 2023 May 16;23(10):2469-2476. doi: 10.1039/d3lc00225j.
In this paper, a multifunctional microfluidic chip integrated with a centrifugal separation zone, aqueous two-phase system (ATPS) mixing zone and enrichment detection zone was proposed and fabricated. An automatic and efficient separation and quantitative analysis method for vascular endothelial growth factor 165 (VEGF) in whole blood samples was established with the designed microfluidic chip. A blood sample was divided into blood cells and plasma in the centrifugation zone. In the ATPS mixing zone, plasma was mixed with PEG/KHPO aqueous two-phase solution containing Apt-Au NP nanoprobes. In the enrichment detection zone, the mixture was separated on CN140 modified with a ZnO NP-anti VEGF nanostructure. The VEGF captured by Apt-Au NPs was distributed in the PEG phase, concentrated at the front of CN140 and combined with anti-VEGF to form a sandwich structure. The sensitive detection of VEGF was achieved through fluorescence resonance energy transfer between rhodamine B and Au NPs on the nanoprobe. Under the optimized rotation program, capillary and centrifugal forces propelled the fluid in the whole process of pretreatment and detection. The detection linear range was between 1 pg mL and 50 ng mL, the detection limit of VEGF in blood was 0.22 pg mL and the enrichment efficiency was 983. It was illustrated that a convenient and reliable way for detection of tumor markers based on the multifunctional microfluidic chip was provided and it has a potential value for early screening and prognosis of clinical cancer.
本文提出并制备了一种集成离心分离区、双水相体系(ATPS)混合区和富集检测区的多功能微流控芯片。利用所设计的微流控芯片建立了全血样本中血管内皮生长因子165(VEGF)的自动高效分离及定量分析方法。在离心区将血样分为血细胞和血浆。在ATPS混合区,血浆与含有Apt-Au NP纳米探针的PEG/KHPO双水相溶液混合。在富集检测区,混合物在修饰有ZnO NP-抗VEGF纳米结构的CN140上进行分离。Apt-Au NPs捕获的VEGF分布在PEG相中,在CN140前端富集并与抗VEGF结合形成夹心结构。通过纳米探针上罗丹明B与Au NPs之间的荧光共振能量转移实现对VEGF的灵敏检测。在优化的旋转程序下,毛细管力和离心力在预处理和检测的全过程中推动流体。检测线性范围为1 pg/mL至50 ng/mL,血液中VEGF的检测限为0.22 pg/mL,富集效率为983。结果表明,该多功能微流控芯片为肿瘤标志物检测提供了一种便捷可靠的方法,对临床癌症的早期筛查和预后具有潜在价值。