Literature DB >> 30452236

Combined Numerical and Experimental Investigation of Localized Electroporation-Based Cell Transfection and Sampling.

Prithvijit Mukherjee, S Shiva P Nathamgari, John A Kessler1, Horacio D Espinosa.   

Abstract

Localized electroporation has evolved as an effective technology for the delivery of foreign molecules into cells while preserving their viability. Consequently, this technique has potential applications in sampling the contents of live cells and the temporal assessment of cellular states at the single-cell level. Although there have been numerous experimental reports on localized electroporation-based delivery, a lack of a mechanistic understanding of the process hinders its implementation in sampling. In this work, we develop a multiphysics model that predicts the transport of molecules into and out of the cell during localized electroporation. Based on the model predictions, we optimize experimental parameters such as buffer conditions, electric field strength, cell confluency, and density of nanochannels in the substrate for successful delivery and sampling via localized electroporation. We also identify that cell membrane tension plays a crucial role in enhancing both the amount and the uniformity of molecular transport, particularly for macromolecules. We qualitatively validate the model predictions on a localized electroporation platform by delivering large molecules (bovine serum albumin and mCherry-encoding plasmid) and by sampling an exogeneous protein (tdTomato) in an engineered cell line.

Entities:  

Keywords:  electroporation; microfluidics; molecular transport; sampling; single-cell analysis; transfection

Mesh:

Substances:

Year:  2018        PMID: 30452236      PMCID: PMC6535396          DOI: 10.1021/acsnano.8b05473

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  55 in total

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  21 in total

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2.  An equivalent circuit model for localized electroporation on porous substrates.

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5.  Reply to Nathamgari et al.: Nanopore electroporation for intracellular delivery of biological macromolecules.

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6.  Localized electroporation with track-etched membranes.

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Review 7.  High Throughput and Highly Controllable Methods for In Vitro Intracellular Delivery.

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