Delivering peptides and proteins with intracellular function represents a promising avenue for therapeutics, but remains a challenge due to the selective permeability of the plasma membrane. The successful delivery of cytosolically active proteins would enable many opportunities, including improved vaccine development through major histocompatibility complex (MHC) class I antigen display. Extended research using cell-penetrating peptides (CPPs) has aimed to facilitate intracellular delivery of exogenous proteins with some success. A new class of polymer-based mimics termed protein transduction domain mimics (PTDMs), which maintain the positive charge and amphiphilic nature displayed by many CPPs, was developed using a poly-norbornene-based ...
SummaryProtein transduction domains (PTDs) are reagents that facilitate the delivery of diverse carg...
Protein drugs, including antibodies, are rapidly emerging as the top-selling pharmaceuticals worldwi...
Previous work in the Tew group has demonstrated polymer cell-penetrating peptide mimics (CPPMs) as e...
Currently, most of the commercially available therapeutics are all targeting cell surface receptors ...
Currently, most of the commercially available therapeutics are all targeting cell surface receptors ...
The plasma membrane is a major obstacle in the development and use of biomacromolecules for intracel...
Delivering functional proteins and antibodies into cells can allow researchers to probe the intracel...
A cell delivery system is increasing in use in many areas of cell and molecular biology and bio-medi...
Intracellular protein delivery is an invaluable tool for biomedical research, as it enables fundamen...
One of the main obstacles to most medication administrations (such as the vaccine constructs) is the...
Protein transduction domains (PTDs) are powerful nongenetic tools that allow intracellular delivery ...
Dendritic cell (DC)-based immunotherapy has been hampered by the lack of suitable methods for antige...
The worldwide increase in the incidence of allergic diseases and the limited efficacy of current vac...
Protein transduction domains (PTDs) have been used increasingly to deliver reagents to a variety of ...
Delivering proteins into the intracellular environment is a critical step toward probing vital cellu...
SummaryProtein transduction domains (PTDs) are reagents that facilitate the delivery of diverse carg...
Protein drugs, including antibodies, are rapidly emerging as the top-selling pharmaceuticals worldwi...
Previous work in the Tew group has demonstrated polymer cell-penetrating peptide mimics (CPPMs) as e...
Currently, most of the commercially available therapeutics are all targeting cell surface receptors ...
Currently, most of the commercially available therapeutics are all targeting cell surface receptors ...
The plasma membrane is a major obstacle in the development and use of biomacromolecules for intracel...
Delivering functional proteins and antibodies into cells can allow researchers to probe the intracel...
A cell delivery system is increasing in use in many areas of cell and molecular biology and bio-medi...
Intracellular protein delivery is an invaluable tool for biomedical research, as it enables fundamen...
One of the main obstacles to most medication administrations (such as the vaccine constructs) is the...
Protein transduction domains (PTDs) are powerful nongenetic tools that allow intracellular delivery ...
Dendritic cell (DC)-based immunotherapy has been hampered by the lack of suitable methods for antige...
The worldwide increase in the incidence of allergic diseases and the limited efficacy of current vac...
Protein transduction domains (PTDs) have been used increasingly to deliver reagents to a variety of ...
Delivering proteins into the intracellular environment is a critical step toward probing vital cellu...
SummaryProtein transduction domains (PTDs) are reagents that facilitate the delivery of diverse carg...
Protein drugs, including antibodies, are rapidly emerging as the top-selling pharmaceuticals worldwi...
Previous work in the Tew group has demonstrated polymer cell-penetrating peptide mimics (CPPMs) as e...