4.6 Article

Deterministic transfection drives efficient nonviral reprogramming and uncovers reprogramming barriers

期刊

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.nano.2015.11.015

关键词

Induced neuron; Nuclear reprogramming; Transfection; Nanochannel electroporation

资金

  1. NCATS NIH HHS [UL1 TR001070, 8UL1TR000090-05, UL1 TR000090, UL1TR001070] Funding Source: Medline
  2. NIBIB NIH HHS [1R21EB017539-01A1, 3R21EB017539-01A1S1, R21 EB017539] Funding Source: Medline
  3. NIGMS NIH HHS [R01 GM069589, R01 GM108014, GM077185, GM108014, R01 GM077185, GM069589] Funding Source: Medline
  4. NINDS NIH HHS [R01 NS042617, P30 NS045758, NS42617] Funding Source: Medline
  5. NINR NIH HHS [R01 NR013898, NR 013898] Funding Source: Medline

向作者/读者索取更多资源

Safety concerns and/or the stochastic nature of current transduction approaches have hampered nuclear reprogramming's clinical translation. We report a novel non-viral nanotechnology-based platform permitting deterministic large-scale transfection with single-cell resolution. The superior capabilities of our technology are demonstrated bymodification of the well-established direct neuronal reprogramming paradigm using overexpression of the transcription factors Brn2, Ascl1, and Myt1l (BAM). Reprogramming efficiencies were comparable to viral methodologies (up to similar to 9-12%) without the constraints of capsid size and with the ability to control plasmid dosage, in addition to showing superior performance relative to existing non-viralmethods. Furthermore, increased neuronal complexity could be tailored by varying BAM ratio and by including additional proneural genes to the BAM cocktail. Furthermore, high-throughput NEP allowed easy interrogation of the reprogramming process. We discovered that BAM-mediated reprogramming is regulated by AsclI dosage, the S-phase cyclin CCNA2, and that some induced neurons passed through a nestin-positive cell stage. From the Clinical Editor: In the field of regenerative medicine, the ability to direct cell fate by nuclear reprogramming is an important facet in terms of clinical application. In this article, the authors described their novel technique of cell reprogramming through overexpression of the transcription factors Brn2, Ascl1, and Myt1l (BAM) by in situ electroporation through nanochannels. This new technique could provide a platform for further future designs. (c) 2016 Elsevier Inc. All rights reserved.

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