Creation of Artificial Cell-Like Structures Promoted by Microfluidics Technologies

The creation of artificial cells is an immensely challenging task in science. Artificial cells contribute to revealing the mechanisms of biological systems and deepening our understanding of them. The progress of versatile biological research fields has clarified many biological phenomena, and vario...

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Main Authors: Yusuke Sato, Masahiro Takinoue
Format: Article
Language:English
Published: MDPI AG 2019-03-01
Series:Micromachines
Subjects:
Online Access:https://www.mdpi.com/2072-666X/10/4/216
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author Yusuke Sato
Masahiro Takinoue
author_facet Yusuke Sato
Masahiro Takinoue
author_sort Yusuke Sato
collection DOAJ
description The creation of artificial cells is an immensely challenging task in science. Artificial cells contribute to revealing the mechanisms of biological systems and deepening our understanding of them. The progress of versatile biological research fields has clarified many biological phenomena, and various artificial cell models have been proposed in these fields. Microfluidics provides useful technologies for the study of artificial cells because it allows the fabrication of cell-like compartments, including water-in-oil emulsions and giant unilamellar vesicles. Furthermore, microfluidics also allows the mimicry of cellular functions with chip devices based on sophisticated chamber design. In this review, we describe contributions of microfluidics to the study of artificial cells. Although typical microfluidic methods are useful for the creation of artificial-cell compartments, recent methods provide further benefits, including low-cost fabrication and a reduction of the sample volume. Microfluidics also allows us to create multi-compartments, compartments with artificial organelles, and on-chip artificial cells. We discuss these topics and the future perspective of microfluidics for the study of artificial cells and molecular robotics.
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spelling doaj.art-d11c3e5abc064309b7c73f9e8e674dec2022-12-22T00:52:36ZengMDPI AGMicromachines2072-666X2019-03-0110421610.3390/mi10040216mi10040216Creation of Artificial Cell-Like Structures Promoted by Microfluidics TechnologiesYusuke Sato0Masahiro Takinoue1Department of Computer Science, Tokyo Institute of Technology, Kanagawa 226-8502, JapanDepartment of Computer Science, Tokyo Institute of Technology, Kanagawa 226-8502, JapanThe creation of artificial cells is an immensely challenging task in science. Artificial cells contribute to revealing the mechanisms of biological systems and deepening our understanding of them. The progress of versatile biological research fields has clarified many biological phenomena, and various artificial cell models have been proposed in these fields. Microfluidics provides useful technologies for the study of artificial cells because it allows the fabrication of cell-like compartments, including water-in-oil emulsions and giant unilamellar vesicles. Furthermore, microfluidics also allows the mimicry of cellular functions with chip devices based on sophisticated chamber design. In this review, we describe contributions of microfluidics to the study of artificial cells. Although typical microfluidic methods are useful for the creation of artificial-cell compartments, recent methods provide further benefits, including low-cost fabrication and a reduction of the sample volume. Microfluidics also allows us to create multi-compartments, compartments with artificial organelles, and on-chip artificial cells. We discuss these topics and the future perspective of microfluidics for the study of artificial cells and molecular robotics.https://www.mdpi.com/2072-666X/10/4/216microfluidicswater-in-oil emulsionliposomelipid vesiclechemical communicationartificial cellson-chip artificial cellsartificial molecular systemsmolecular robotics
spellingShingle Yusuke Sato
Masahiro Takinoue
Creation of Artificial Cell-Like Structures Promoted by Microfluidics Technologies
Micromachines
microfluidics
water-in-oil emulsion
liposome
lipid vesicle
chemical communication
artificial cells
on-chip artificial cells
artificial molecular systems
molecular robotics
title Creation of Artificial Cell-Like Structures Promoted by Microfluidics Technologies
title_full Creation of Artificial Cell-Like Structures Promoted by Microfluidics Technologies
title_fullStr Creation of Artificial Cell-Like Structures Promoted by Microfluidics Technologies
title_full_unstemmed Creation of Artificial Cell-Like Structures Promoted by Microfluidics Technologies
title_short Creation of Artificial Cell-Like Structures Promoted by Microfluidics Technologies
title_sort creation of artificial cell like structures promoted by microfluidics technologies
topic microfluidics
water-in-oil emulsion
liposome
lipid vesicle
chemical communication
artificial cells
on-chip artificial cells
artificial molecular systems
molecular robotics
url https://www.mdpi.com/2072-666X/10/4/216
work_keys_str_mv AT yusukesato creationofartificialcelllikestructurespromotedbymicrofluidicstechnologies
AT masahirotakinoue creationofartificialcelllikestructurespromotedbymicrofluidicstechnologies