Novel concept microarray enabling PCR and multistep reactions through pipette-free aperture-to-aperture parallel transfer

<p>Abstract</p> <p>Background</p> <p>The microarray has contributed to developing the omic analysis. However, as it depends basically on the surface reaction, it is hard to perform bulk reactions and sequential multistep reactions. On the other hand, the popular micropl...

Full description

Bibliographic Details
Main Authors: Uchida Hidekazu, Salimullah Md, Kitamura Koichiro, Tayama Takahiro, Kinoshita Yasunori, Suzuki Miho, Husimi Yuzuru, Nishigaki Koichi
Format: Article
Language:English
Published: BMC 2010-10-01
Series:BMC Biotechnology
Online Access:http://www.biomedcentral.com/1472-6750/10/71
id doaj-ab517879a5de4bc88e5662a8d9d79475
record_format Article
spelling doaj-ab517879a5de4bc88e5662a8d9d794752020-11-25T01:43:57ZengBMCBMC Biotechnology1472-67502010-10-011017110.1186/1472-6750-10-71Novel concept microarray enabling PCR and multistep reactions through pipette-free aperture-to-aperture parallel transferUchida HidekazuSalimullah MdKitamura KoichiroTayama TakahiroKinoshita YasunoriSuzuki MihoHusimi YuzuruNishigaki Koichi<p>Abstract</p> <p>Background</p> <p>The microarray has contributed to developing the omic analysis. However, as it depends basically on the surface reaction, it is hard to perform bulk reactions and sequential multistep reactions. On the other hand, the popular microplate technology, which has a great merit of being able to perform parallel multistep reactions, has come to its limit in increasing the number of wells (currently, up to 9600) and reducing the volume to deal with due to the difficulty in operations.</p> <p>Results</p> <p>Here, we report a novel microarray technology which enables us to explore advanced applications, termed <it>microarray-with-manageable volumes </it>(MMV). The technical essence is in the pipette-free direct parallel transfer from well to well performed by centrifugation, evading the evaporation and adsorption-losses during handling. By developing the MMV plate, accompanying devices and techniques, generation of multiple conditions (256 kinds) and performance of parallel multistep reactions, including PCR and <it>in vitro tr</it>anslation reactions, have been made possible. These were demonstrated by applying the MMV technology to searching lysozyme-crystallizing conditions and selecting peptides aimed for Aβ-binding or cathepsin E-inhibition.</p> <p>Conclusions</p> <p>With the introduction of a novel concept microarray (MMV) technology, parallel and multistep reactions in sub-μL scale have become possible.</p> http://www.biomedcentral.com/1472-6750/10/71
collection DOAJ
language English
format Article
sources DOAJ
author Uchida Hidekazu
Salimullah Md
Kitamura Koichiro
Tayama Takahiro
Kinoshita Yasunori
Suzuki Miho
Husimi Yuzuru
Nishigaki Koichi
spellingShingle Uchida Hidekazu
Salimullah Md
Kitamura Koichiro
Tayama Takahiro
Kinoshita Yasunori
Suzuki Miho
Husimi Yuzuru
Nishigaki Koichi
Novel concept microarray enabling PCR and multistep reactions through pipette-free aperture-to-aperture parallel transfer
BMC Biotechnology
author_facet Uchida Hidekazu
Salimullah Md
Kitamura Koichiro
Tayama Takahiro
Kinoshita Yasunori
Suzuki Miho
Husimi Yuzuru
Nishigaki Koichi
author_sort Uchida Hidekazu
title Novel concept microarray enabling PCR and multistep reactions through pipette-free aperture-to-aperture parallel transfer
title_short Novel concept microarray enabling PCR and multistep reactions through pipette-free aperture-to-aperture parallel transfer
title_full Novel concept microarray enabling PCR and multistep reactions through pipette-free aperture-to-aperture parallel transfer
title_fullStr Novel concept microarray enabling PCR and multistep reactions through pipette-free aperture-to-aperture parallel transfer
title_full_unstemmed Novel concept microarray enabling PCR and multistep reactions through pipette-free aperture-to-aperture parallel transfer
title_sort novel concept microarray enabling pcr and multistep reactions through pipette-free aperture-to-aperture parallel transfer
publisher BMC
series BMC Biotechnology
issn 1472-6750
publishDate 2010-10-01
description <p>Abstract</p> <p>Background</p> <p>The microarray has contributed to developing the omic analysis. However, as it depends basically on the surface reaction, it is hard to perform bulk reactions and sequential multistep reactions. On the other hand, the popular microplate technology, which has a great merit of being able to perform parallel multistep reactions, has come to its limit in increasing the number of wells (currently, up to 9600) and reducing the volume to deal with due to the difficulty in operations.</p> <p>Results</p> <p>Here, we report a novel microarray technology which enables us to explore advanced applications, termed <it>microarray-with-manageable volumes </it>(MMV). The technical essence is in the pipette-free direct parallel transfer from well to well performed by centrifugation, evading the evaporation and adsorption-losses during handling. By developing the MMV plate, accompanying devices and techniques, generation of multiple conditions (256 kinds) and performance of parallel multistep reactions, including PCR and <it>in vitro tr</it>anslation reactions, have been made possible. These were demonstrated by applying the MMV technology to searching lysozyme-crystallizing conditions and selecting peptides aimed for Aβ-binding or cathepsin E-inhibition.</p> <p>Conclusions</p> <p>With the introduction of a novel concept microarray (MMV) technology, parallel and multistep reactions in sub-μL scale have become possible.</p>
url http://www.biomedcentral.com/1472-6750/10/71
work_keys_str_mv AT uchidahidekazu novelconceptmicroarrayenablingpcrandmultistepreactionsthroughpipettefreeaperturetoapertureparalleltransfer
AT salimullahmd novelconceptmicroarrayenablingpcrandmultistepreactionsthroughpipettefreeaperturetoapertureparalleltransfer
AT kitamurakoichiro novelconceptmicroarrayenablingpcrandmultistepreactionsthroughpipettefreeaperturetoapertureparalleltransfer
AT tayamatakahiro novelconceptmicroarrayenablingpcrandmultistepreactionsthroughpipettefreeaperturetoapertureparalleltransfer
AT kinoshitayasunori novelconceptmicroarrayenablingpcrandmultistepreactionsthroughpipettefreeaperturetoapertureparalleltransfer
AT suzukimiho novelconceptmicroarrayenablingpcrandmultistepreactionsthroughpipettefreeaperturetoapertureparalleltransfer
AT husimiyuzuru novelconceptmicroarrayenablingpcrandmultistepreactionsthroughpipettefreeaperturetoapertureparalleltransfer
AT nishigakikoichi novelconceptmicroarrayenablingpcrandmultistepreactionsthroughpipettefreeaperturetoapertureparalleltransfer
_version_ 1725030583042572288