Biomod/2013/Fukuoka

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(Sponsor)
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=Sponsor=
=Sponsor=
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[[Image:JPK_logo2013.jpg|none| JPK Instruments AG (JPKインスツルメンツ)]]
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[[Image:JPK_logo2013.jpg|none|200px|JPK Instruments AG (JPKインスツルメンツ)]]
*http://japan.jpk.com/index.2.ja.html
*http://japan.jpk.com/index.2.ja.html
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[[Image:level5-logo2013.jpg|none|200px|株式会社 レベルファイブ]]
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*http://www.level-five.jp/
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[[Image:RIBM_logo2013.jpg|none|200px| 株式会社 生体分子計測研究所 (RIBM)]]
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*http://www.ribm.co.jp/
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[[Image:和泉テック_logo2013.jpg|none|200px| 株式会社 和泉テック]]
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*http://www.izumi-tech.com/index.html

Revision as of 11:09, 30 August 2013

Contents

Abstract

  • Recent years, the technology of DNA origami is attracting keen interest in the synthesis of various nanostructures has been reported. If we integrate movable structures in a DNA origami various applications such as molecular detection device, molecular motor device, drug delivery system are expected. However, only a few examples of such a movable system have been reported so far.Other problem is that the synthesis of DNA origami in larger amount is not so easy that in is unrealistic to make the macroscopic-scale device which output or input the macroscopic signal such as a mechanical and one only with DNA origami. Therefore in this study, we tried to fabricate the device in which an inorganic porous substrate is combined with DNA origami. We synthesize the “DNA weathercock” which has a shaft, a blade, and a fluorescence molecule made of DNA origami. We then attach the weathercock onto the inorganic porous substrate (anodizing alumina) with regularly arranged perpendicular pores, so that the weathercock can freely rotate. We incorporate fluorescence quencher molecules on to a part of the substrate, so that the device emit fluorescence only when the liquid on the substrate flows along a specific direction.

Introduction

Background

Problems

Solution

This study

Design

Member

Sponsor

JPK Instruments AG (JPKインスツルメンツ)
株式会社 レベルファイブ
株式会社 生体分子計測研究所 (RIBM)
株式会社 和泉テック
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