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Combinatorial Peptide Microarray Synthesis Based on Microfluidic Impact Printing.


ABSTRACT: In this Research Article, a novel inkjet printing technique, micro impact printing (MI printing), is applied for the first time to combinatorial peptide microarray synthesis on amine functionalized microdisc arrays through standard Fmoc chemistry. MI printing shows great advantages in combinatorial peptide microarray synthesis compared with other printing techniques, including (1) a disposable cartridge; (2) a small spot size (80 ?m) increases array density; (3) minimal loading volume (0.6 ?L) and dead volume (<0.1 ?L), reduce chemical waste; and (4) multiplexibility of 5 channels/cartridge and capacity of multiple cartridges. Using this synthesis platform, a tetrapeptide library with 625 permutations was constructed and then applied for the screening of ligands targeting ?4?1 integrin on Jurkat cells.

SUBMITTER: Li J 

PROVIDER: S-EPMC6335607 | biostudies-literature | 2019 Jan

REPOSITORIES: biostudies-literature

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Combinatorial Peptide Microarray Synthesis Based on Microfluidic Impact Printing.

Li Jiannan J   Zhao Siwei S   Yang Gaomai G   Liu Ruiwu R   Xiao Wenwu W   Disano Paolo P   Lam Kit S KS   Pan Tingrui T  

ACS combinatorial science 20181230 1


In this Research Article, a novel inkjet printing technique, micro impact printing (MI printing), is applied for the first time to combinatorial peptide microarray synthesis on amine functionalized microdisc arrays through standard Fmoc chemistry. MI printing shows great advantages in combinatorial peptide microarray synthesis compared with other printing techniques, including (1) a disposable cartridge; (2) a small spot size (80 μm) increases array density; (3) minimal loading volume (0.6 μL) a  ...[more]

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