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Microscale Symmetrical Electroporator Array as a Versatile Molecular Delivery System.


ABSTRACT: Successful developments of new therapeutic strategies often rely on the ability to deliver exogenous molecules into cytosol. We have developed a versatile on-chip vortex-assisted electroporation system, engineered to conduct sequential intracellular delivery of multiple molecules into various cell types at low voltage in a dosage-controlled manner. Micro-patterned planar electrodes permit substantial reduction in operational voltages and seamless integration with an existing microfluidic technology. Equipped with real-time process visualization functionality, the system enables on-chip optimization of electroporation parameters for cells with varying properties. Moreover, the system's dosage control and multi-molecular delivery capabilities facilitate intracellular delivery of various molecules as a single agent or in combination and its utility in biological research has been demonstrated by conducting RNA interference assays. We envision the system to be a powerful tool, aiding a wide range of applications, requiring single-cell level co-administrations of multiple molecules with controlled dosages.

SUBMITTER: Ouyang M 

PROVIDER: S-EPMC5357946 | biostudies-literature | 2017 Mar

REPOSITORIES: biostudies-literature

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Microscale Symmetrical Electroporator Array as a Versatile Molecular Delivery System.

Ouyang Mengxing M   Hill Winfield W   Lee Jung Hyun JH   Hur Soojung Claire SC  

Scientific reports 20170320


Successful developments of new therapeutic strategies often rely on the ability to deliver exogenous molecules into cytosol. We have developed a versatile on-chip vortex-assisted electroporation system, engineered to conduct sequential intracellular delivery of multiple molecules into various cell types at low voltage in a dosage-controlled manner. Micro-patterned planar electrodes permit substantial reduction in operational voltages and seamless integration with an existing microfluidic technol  ...[more]

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