Non-invasive microfluidic gap junction assay

被引:24
作者
Chen, Sisi [1 ]
Lee, Luke P. [1 ]
机构
[1] Univ Calif Berkeley, Dept Bioengn, Berkeley Sensor & Actuator Ctr, Biomol Nanotechnol Ctr, Berkeley, CA 94720 USA
基金
美国国家卫生研究院;
关键词
DYE TRANSFER; COMMUNICATION; ELECTROPORATION; INHIBITION; PERMEABILITY; LIMITATIONS; CELLS; CA2+;
D O I
10.1039/b919392h
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Gap junctions are protein channels between cells that allow direct electrical and metabolic coupling via the exchange of biomolecules and ions. Their expression, though ubiquitous in most mammalian cell types, is especially important for the proper functioning of cardiac and neuronal systems. Many existing methods for studying gap junction communication suffer from either unquantifiable data or difficulty of use. Here, we measure the extent of dye spread and effective diffusivities through gap junction connected cells using a quantitative microfluidic cell biology platform. After loading dye by hydrodynamic focusing of calcein/AM, dye transfer dynamics into neighboring, unexposed cells can be monitored via timelapse fluorescent microscopy. By using a selective microfluidic dye loading over a confluent layer of cells, we found that high expression of gap junctions in C6 cells transmits calcein across the monolayer with an effective diffusivity of 3.4 x 10(-13) m(2)/s, which are highly coupled by Cx43. We also found that the gap junction blocker 18 alpha-GA works poorly in the presence of serum even at high concentrations (50 mu M); however, it is highly effective down to 2.5 mu M in the absence of serum. Furthermore, when the drug is washed out, dye spread resumes rapidly within 1 min for all doses, indicating the drug does not affect transcriptional regulation of connexins in these Cx43+ cells, in contrast to previous studies. This integrated microfluidic platform enables the in situ monitoring of gap junction communication, yielding dynamic information about intercellular molecular transfer and pharmacological inhibition and recovery.
引用
收藏
页码:130 / 138
页数:9
相关论文
共 28 条
[1]   Advantages and limitations of commonly used methods to assay the molecular permeability of gap junctional intercellular communication [J].
Abbaci, Muriel ;
Barberi-Heyob, Muriel ;
Blondel, Walter ;
Guillemin, Francois ;
Didelon, Jacques .
BIOTECHNIQUES, 2008, 45 (01) :33-+
[2]   Examination of gap junctional, intercellular communication by in situ electroporation on two co-planar indium-tin oxide electrodes [J].
Anagnostopoulou, Aikaterini ;
Cao, Jun ;
Vultur, Adina ;
Firth, Kevin ;
Raptis, Leda .
MOLECULAR ONCOLOGY, 2007, 1 (02) :226-231
[3]   Quantitative study of electroporation-mediated molecular uptake and cell viability [J].
Canatella, PJ ;
Karr, JF ;
Petros, JA ;
Prausnitz, MR .
BIOPHYSICAL JOURNAL, 2001, 80 (02) :755-764
[4]   Shrinky-Dink microfluidics: 3D polystyrene chips [J].
Chen, Chi-Shuo ;
Breslauer, David N. ;
Luna, Jesus I. ;
Grimes, Anthony ;
Chin, Wei-Chun ;
Leeb, Luke P. ;
Khine, Michelle .
LAB ON A CHIP, 2008, 8 (04) :622-624
[5]  
Clair C, 2001, J CELL SCI, V114, P1999
[6]   LAMP, a new imaging assay of gap junctional communication unveils that Ca2+ influx inhibits cell coupling [J].
Dakin, K ;
Zhao, YR ;
Li, WH .
NATURE METHODS, 2005, 2 (01) :55-62
[7]   REVERSIBLE INHIBITION OF INTERCELLULAR JUNCTIONAL COMMUNICATION BY GLYCYRRHETINIC ACID [J].
DAVIDSON, JS ;
BAUMGARTEN, IM ;
HARLEY, EH .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1986, 134 (01) :29-36
[8]   In situ bipolar Electroporation for localized cell loading with reporter dyes and investigating gap junctional coupling [J].
De Vuyst, Elke ;
De Bock, Marijke ;
Decrock, Elke ;
Van Moorhem, Marijke ;
Naus, Christian ;
Mabilde, Cyriel ;
Leybaert, Luc .
BIOPHYSICAL JOURNAL, 2008, 94 (02) :469-479
[9]   Gap-junctional single-channel permeability for fluorescent tracers in mammalian cell cultures [J].
Eckert, Reiner .
BIOPHYSICAL JOURNAL, 2006, 91 (02) :565-579
[10]   SCRAPE-LOADING AND DYE TRANSFER - A RAPID AND SIMPLE TECHNIQUE TO STUDY GAP JUNCTIONAL INTERCELLULAR COMMUNICATION [J].
ELFOULY, MH ;
TROSKO, JE ;
CHANG, CC .
EXPERIMENTAL CELL RESEARCH, 1987, 168 (02) :422-430