` 학술지 열람 - 학술지(BCJ) : (사)한국바이오칩학회 (The Korean BioChip Society)
Go to contents

(사)한국바이오칩학회 The Korean BioChip Society





BT+IT+NT융합시대의 리더 : 한국바이오칩학회

학술지 열람

논문 정보 자세히 보기

Info. Vol.12 - No.2 (2018.06.20)
Title A Microfluidic Hydrogel Chip with Orthogonal Dual Gradients of Matrix Stiffness and Oxygen for Cytotoxicity Test
Authors Weixing Wang1, Lili Li1,2,*, Mingyu Ding1, Guoan Luo1 & Qionglin Liang1,*
Institutions 1Beijing Key Lab of Microanalytical Methods & Instrumentation, Key Lab of Bioorganic Phosphorus Chemistry & Chemical Biology (Ministry of Education), Department of Chemistry, Tsinghua University, Beijing 100084, P. R. China
2Department of Pharmacy, Beijing Pharmaceutical University of Staff and Workers, Beijing 100079, P. R. China
*Correspondence and requests for materials should be addressed to L. Li (lilili1104@yahoo.com) and Q. Liang (liangql@tsinghua.edu.cn)
Abstract The oxygen tensions and matrix stiffness play important roles in regulating cell response to cytotoxic drugs. In recent years, single spatiotemporal oxygen or matrix stiffness gradient has been established by various technologies for cell studies. However, the synergistic effects of the two factors on tumor cells remained elusive. In this study, we created a highly integrated and easy-to-operate microfluidic device. It was capable of generating more continuous, linear, stable and diffusive hydrogel stiffness gradient over a well-defined oxygen gradient. Sodium hydroxide and pyrogallol were used to scavenge oxygen and generate oxygen gradient, skillfully avoiding the utilization of bulky pressurized gas cylinders and sophisticated flow control by conventional methods. Utilizing the newly developed microfluidic device, we successfully performed drug test with a hypoxia sensitive anti-cancer drug, triapazamine (TPZ), on A549 cells under perpendicular construction of oxygen and spatially hydrogel stiffness gradients. The cell experiment results demonstrated the matrix stiffness-dependent cell drug resistance and hypoxia-induced cytotoxicity of TPZ. In summary, the developed microfluidic device exhibits high potential in the study of matrix stiffness-dependent cell responses and oxygen-sensitive drug cytotoxicity. Furthermore, the design principle can be functionally extended to other dual factors system and will facilitate the study of cell response in complex physiological and pathological conditions.
Keyword Microfluidic device, Hydrogel stiffness gradient, Oxygen gradient, Drug resistance, Oxygendependent cytotoxicity
PDF File
# 2010년도 발행분 부터는 Springer 의 BioChip Journal 페이지에서 전문을 열람하실 수 있습니다.
# 학회회원 로그인 후 [ Springer BioChip Journal 열람하기 ] 버튼을 클릭하시면 새창으로 열립니다.
→ 전체 목록 보기

(사)한국바이오칩학회 (The Korean BioChip Society)
총괄/후원/부스/저널/학술대회
전화 : 070-7767-9855
전자우편 : biochip@biochip.or.kr
등록/초록/학술대회/e-컨퍼런스/
회원정보/홈페이지
전화 : 070-7767-9867
전자우편 : biochip2@biochip.or.kr
주소 : (우)06130, 서울특별시 강남구 테헤란로7길 22 과학기술회관 1관 804호    대표자 : 박현규   고유번호 : 206-82-65403   팩스 : 02-921-9856
웹사이트 : https://www.biochips.or.kr Copyright © The Korean BioChip Society. All Rights Reserved.