Issue 20, 2010

Biomolecular-motor-based autonomous delivery of lipidvesicles as nano- or microscale reactors on a chip

Abstract

We aimed to create an autonomous on-chip system that performs targeted delivery of lipid vesicles (liposomes) as nano- or microscale reactors using machinery from biological systems. Reactor-liposomes would be ideal model cargoes to realize biomolecular-motor-based biochemical analysis chips; however, there are no existing systems that enable targeted delivery of cargo-liposomes in an autonomous manner. By exploiting biomolecular-motor-based motility and DNA hybridization, we demonstrate that single-stranded DNA (ssDNA)-labeled microtubules (MTs), gliding on kinesin-coated surfaces, acted as cargo transporters and that ssDNA-labeled cargo-liposomes were loaded/unloaded onto/from gliding MTs without bursting at loading reservoirs/micropatterned unloading sites specified by DNA base sequences. Our results contribute to the development of an alternative strategy to pressure-driven or electrokinetic flow-based microfluidic devices.

Graphical abstract: Biomolecular-motor-based autonomous delivery of lipid vesicles as nano- or microscale reactors on a chip

Article information

Article type
Paper
Submitted
24 Mar 2010
Accepted
14 Jul 2010
First published
16 Aug 2010

Lab Chip, 2010,10, 2741-2748

Biomolecular-motor-based autonomous delivery of lipid vesicles as nano- or microscale reactors on a chip

S. Hiyama, Y. Moritani, R. Gojo, S. Takeuchi and K. Sutoh, Lab Chip, 2010, 10, 2741 DOI: 10.1039/C004615A

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