Fluoropolymer Functionalization of Organ-on-Chip Platform Increases Detection Sensitivity for Cannabinoids

被引:1
|
作者
Tong, Ziqiu [1 ]
Esser, Lars [2 ]
Galettis, Peter [3 ,4 ]
Thissen, Helmut [2 ]
Rudd, David [1 ]
Easton, Christopher D. [2 ]
Nilghaz, Azadeh [1 ,5 ]
Peng, Bo [1 ,6 ]
Zhu, Douer [1 ]
Martin, Jennifer H. [3 ,4 ]
Voelcker, Nicolas H. [1 ,7 ,8 ]
机构
[1] Monash Univ, Monash Inst Pharmaceut Sci, Drug Delivery Disposit & Dynam, Parkville, Vic 3052, Australia
[2] Commonwealth Sci & Ind Res Org CSIRO, Clayton, Vic 3168, Australia
[3] Univ Newcastle, Fac Hlth Med & Wellbeing, Ctr Drug Repurposing & Med Res, Sch Med & Publ Hlth, Callaghan, NSW 2308, Australia
[4] Ctr Hunter Med Res Inst, New Lambton Hts, NSW 2305, Australia
[5] Deakin Univ, Inst Frontier Mat, Waurn Pounds, Vic 3216, Australia
[6] Northwestern Polytech Univ, Xian Inst Biomed Mat & Engn, Xian 710072, Peoples R China
[7] Victorian Node Australian Natl Fabricat Facil, Melbourne Ctr Nanofabricat, Clayton, Vic 3168, Australia
[8] Monash Univ, Mat Sci & Engn, Clayton, Vic 3168, Australia
来源
BIOSENSORS-BASEL | 2023年 / 13卷 / 08期
关键词
cannabinoids; cannabidiol; microfluidics; organ-on-chip systems; detection sensitivity; tetrafluoroethylene; CELLS; LIVER;
D O I
10.3390/bios13080779
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Microfluidic technology is applied across various research areas including organ-on-chip (OOC) systems. The main material used for microfluidics is polydimethylsiloxane (PDMS), a silicone elastomer material that is biocompatible, transparent, and easy to use for OOC systems with welldefined microstructures. However, PDMS-based OOC systems can absorb hydrophobic and small molecules, making it difficult and erroneous to make quantitative analytical assessments for such compounds. In this paper, we explore the use of a synthetic fluoropolymer, poly(4,5-difluoro-2,2bis(trifluoromethyl)-1,3-dioxole-co-tetrafluoroethylene) (Teflon(TM) AF 2400), with excellent "non-stick" properties to functionalize OOC systems. Cannabinoids, including cannabidiol (CBD), are classes of hydrophobic compounds with a great potential for the treatment of anxiety, depression, pain, and cancer. By using CBD as a testing compound, we examined and systematically quantified CBD absorption into PDMS by means of an LC-MS/MS analysis. In comparison to the unmodified PDMS microchannels, an increase of approximately 30 Chi in the CBD signal was detected with the fluoropolymer surface modification after 3 h of static incubation. Under perfusion conditions, we observed an increase of nearly 15 Chi in the CBD signals from the surface-modified microchannels than from the unmodified microchannels. Furthermore, we also demonstrated that fluoropolymermodified microchannels are compatible for culturing hCMEC/D3 endothelial cells and for CBD perfusion experiments.
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页数:16
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