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1.
Sci Rep ; 8(1): 12538, 2018 08 22.
Article in English | MEDLINE | ID: mdl-30135446

ABSTRACT

Cell penetrating peptides (CPPs) offer great potential to deliver therapeutic molecules to previously inaccessible intracellular targets. However, many CPPs are inefficient and often leave their attached cargo stranded in the cell's endosome. We report a versatile platform for the isolation of peptides delivering a wide range of cargos into the cytoplasm of cells. We used this screening platform to identify multiple "Phylomer" CPPs, derived from bacterial and viral genomes. These peptides are amenable to conventional sequence optimization and engineering approaches for cell targeting and half-life extension. We demonstrate potent, functional delivery of protein, peptide, and nucleic acid analog cargos into cells using Phylomer CPPs. We validate in vivo activity in the cytoplasm, through successful transport of an oligonucleotide therapeutic fused to a Phylomer CPP in a disease model for Duchenne's muscular dystrophy. This report thus establishes a discovery platform for identifying novel, functional CPPs to expand the delivery landscape of druggable intracellular targets for biological therapeutics.


Subject(s)
Cell-Penetrating Peptides/pharmacology , Drug Delivery Systems/methods , Drug Evaluation, Preclinical/methods , Animals , Bacteriophage T7 , Biotinylation , CHO Cells , Carbon-Nitrogen Ligases/genetics , Carbon-Nitrogen Ligases/metabolism , Cell-Penetrating Peptides/genetics , Cell-Penetrating Peptides/toxicity , Circular Dichroism , Cricetulus , Disease Models, Animal , Escherichia coli Proteins/genetics , Escherichia coli Proteins/metabolism , HEK293 Cells , Humans , Male , Mice, Inbred C57BL , Microscopy, Fluorescence , Muscular Dystrophy, Duchenne/drug therapy , Peptide Library , Repressor Proteins/genetics , Repressor Proteins/metabolism
2.
Biomolecules ; 8(3)2018 07 11.
Article in English | MEDLINE | ID: mdl-29997382

ABSTRACT

The ability of cell penetrating peptides (CPPs) to deliver biologically relevant cargos into cells is becoming more important as targets in the intracellular space continue to be explored. We have developed two assays based on CPP-dependent, intracellular delivery of TEM-1 ß-lactamase enzyme, a functional biological molecule comparable in size to many protein therapeutics. The first assay focuses on the delivery of full-length ß-lactamase to evaluate the internalization potential of a CPP sequence. The second assay uses a split-protein system where one component of ß-lactamase is constitutively expressed in the cytoplasm of a stable cell line and the other component is delivered by a CPP. The delivery of a split ß-lactamase component evaluates the cytosolic delivery capacity of a CPP. We demonstrate that these assays are rapid, flexible and have potential for use with any cell type and CPP sequence. Both assays are validated using canonical and novel CPPs, with limits of detection from <500 nM to 1 µM. Together, the ß-lactamase assays provide compatible tools for functional characterization of CPP activity and the delivery of biological cargos into cells.


Subject(s)
Cell-Penetrating Peptides/chemistry , Cytosol/chemistry , beta-Lactamases/pharmacology , Animals , CHO Cells , Cell Line , Cricetulus , Drug Delivery Systems , High-Throughput Screening Assays , Humans , beta-Lactamases/chemistry , beta-Lactamases/genetics
3.
Sci Rep ; 5: 18329, 2015 Dec 16.
Article in English | MEDLINE | ID: mdl-26671759

ABSTRACT

Efficient cargo uptake is essential for cell-penetrating peptide (CPP) therapeutics, which deliver widely diverse cargoes by exploiting natural cell processes to penetrate the cell's membranes. Yet most current CPP activity assays are hampered by limitations in assessing uptake, including confounding effects of conjugated fluorophores or ligands, indirect read-outs requiring secondary processing, and difficulty in discriminating internalization from endosomally trapped cargo. Split-complementation Endosomal Escape (SEE) provides the first direct assay visualizing true cytoplasmic-delivery of proteins at biologically relevant concentrations. The SEE assay has minimal background, is amenable to high-throughput processes, and adaptable to different transient and stable cell lines. This split-GFP-based platform can be useful to study transduction mechanisms, cellular imaging, and characterizing novel CPPs as pharmaceutical delivery agents in the treatment of disease.


Subject(s)
Cell-Penetrating Peptides , Drug Delivery Systems/methods , Endosomes/metabolism , Green Fluorescent Proteins , Animals , CHO Cells , Cell-Penetrating Peptides/chemistry , Cell-Penetrating Peptides/pharmacokinetics , Cell-Penetrating Peptides/pharmacology , Cricetinae , Cricetulus , Green Fluorescent Proteins/chemistry , Green Fluorescent Proteins/pharmacokinetics , Green Fluorescent Proteins/pharmacology , HEK293 Cells , Humans
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