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(사)한국바이오칩학회 The Korean BioChip Society





BT+IT+NT융합시대의 리더 : 한국바이오칩학회

학술지 열람

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Info. Vol.1 - No.2 (2007.06.20)
Title Use of a Microvalve-controlled Microfluidic Device in a Chemotaxis Assay of Tetrahymena pyriformis in Response to Amino Acids Released from Bacteria
Authors Seong-Won Nam1, Danny van Noort1, Yoonsun Yang1, So Hyun Kim1 & Sungsu Park1
Institutions 1Division of Nano Sciences (BK21 program), Ewha Womans University, Daehyundong, Seodaemun-gu, Seoul 120-750, Korea Correspondence and requests for materials should be addressed to S. Park (nanopark@ewha.ac.kr)
Abstract In this study, we introduce a microfluidic device equipped with pneumatically-actuated valves, generating a linear gradient of chemoeffectors to quantify the chemotactic response of Tetrahymena pyriformis, a freshwater ciliate to amino acids excreted from bacteria. The microfluidic device was fabricated from an elastomer, polydimethylsiloxane (PDMS), using multi-layer soft lithography. The components of the device include electronically-controlled pneumatic microvalves, microchannels and microchambers. The linear gradient of the chemoeffectors was established by releasing a chemical from a ciliatefree microchamber into a microchamber containing the ciliate. The ciliate showed chemotactic behaviours by either swimming toward or avoiding the gradient. By counting the number of ciliate residing in each microchamber, we obtained a precise timeresponse curve. The ciliate in the microfluidic device were sensitive enough to be attracted to 0.1 femtomolar aspartate, suggesting that ciliates as a predator can track down food patches composed of a few bacterial cells. With the use of receptor inhibitors, such as tetraethyl ammonium (TEA) or the grape polyphenol resveratol, we have also demonstrated that the calcium signalling plays an important role in motility and following chemotactic behaviours.
Keyword Chemotaxis, Ciliate, Microvalve, Microfluidic device, Amino acids
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