Literature DB >> 28355059

Membrane Oxidation in Cell Delivery and Cell Killing Applications.

Ting-Yi Wang1, M Daben J Libardo2, Alfredo M Angeles-Boza2, Jean-Philippe Pellois1,3.   

Abstract

Cell delivery or cell killing processes often involve the crossing or disruption of cellular membranes. We review how, by modifying the composition and properties of membranes, membrane oxidation can be exploited to enhance the delivery of macromolecular cargoes into live human cells. We also describe how membrane oxidation can be utilized to achieve efficient killing of bacteria by antimicrobial peptides. Finally, we present recent evidence highlighting how membrane oxidation is intimately engaged in natural biological processes such as antigen delivery in dendritic cells and in the killing of bacteria by antimicrobial peptides. Overall, the insights that have been recently gained in this area should facilitate the development of more effective delivery technologies and antimicrobial therapeutic approaches.

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Year:  2017        PMID: 28355059      PMCID: PMC5905413          DOI: 10.1021/acschembio.7b00237

Source DB:  PubMed          Journal:  ACS Chem Biol        ISSN: 1554-8929            Impact factor:   5.100


  124 in total

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7.  Membrane damage efficiency of phenothiazinium photosensitizers.

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8.  Photodamage of lipid bilayers by irradiation of a fluorescently labeled cell-penetrating peptide.

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9.  Electroporating fields target oxidatively damaged areas in the cell membrane.

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10.  Protein delivery into live cells by incubation with an endosomolytic agent.

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2.  Inactivation effects and mechanisms of plasma-activated water combined with sodium laureth sulfate (SLES) against Saccharomyces cerevisiae.

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6.  Numerical simulation of intracellular drug delivery via rapid squeezing.

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7.  Delivery and expression of plasmid DNA into cells by a novel non-thermal plasma source.

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8.  RNA Externalized by Neutrophil Extracellular Traps Promotes Inflammatory Pathways in Endothelial Cells.

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9.  Heat stress-mediated effects on the morphophysiological, biochemical, and ultrastructural parameters of germinating Melanoxylon brauna Schott. seeds.

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Review 10.  Gamma irradiation-mediated inactivation of enveloped viruses with conservation of genome integrity: Potential application for SARS-CoV-2 inactivated vaccine development.

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