Gene expression within cells can be altered through gene delivery approaches, which have tremendous potential for gene therapy, tissue engineering, and diagnostics. Substrate-mediated gene delivery describes the delivery of plasmid DNA or DNA complexed with nonviral vectors to cells from a surface, with the DNA immobilized to a substrate through specific or nonspecific interactions. In this work, DNA-nanoparticle (DNA–NP) adsorption to substrates is evaluated using combinatorial, in situ spectroscopic ellipsometry and quartz crystal microbalance with dissipation (SE/QCM-D), to evaluate the basic dynamic processes involved in the adsorption and immobilization of DNA–NP complexes to substrates. The concentration of DNA–NP solutions influences...
Although strategies for the immobilization of DNA oligonucleotides onto surfaces for bioanalytical a...
Efficient gene delivery is a fundamental goal of biotechnology and has numerous applications in both...
Efficient gene delivery is a fundamental goal of biotechnology and has numerous applications in both...
Gene expression within cells can be altered through gene delivery approaches, which have tremendous ...
Gene expression within cells can be altered through gene delivery approaches, which have tremendous ...
Gene transfer has many potential applications in basic and applied sciences. In vitro, DNA delivery ...
Gene transfer has many potential applications in basic and applied sciences. In vitro, DNA delivery ...
Controlling Nonviral Gene Delivery through the Cell-Biomaterial Interface Beth Ann Duensing, M.S. U...
Controlling Nonviral Gene Delivery through the Cell-Biomaterial Interface Beth Ann Duensing, M.S. U...
Controlling Nonviral Gene Delivery through the Cell-Biomaterial Interface Beth Ann Duensing, M.S. U...
Controlling Nonviral Gene Delivery through the Cell-Biomaterial Interface Beth Ann Duensing, M.S. U...
Gene transfer has many potential applications in basic and applied sciences, including functional ge...
Understanding the relationship between material surface properties and cellular responses to these p...
Gene transfer has many potential applications in basic and applied sciences, including functional ge...
Understanding the relationship between material surface properties and cellular responses to these p...
Although strategies for the immobilization of DNA oligonucleotides onto surfaces for bioanalytical a...
Efficient gene delivery is a fundamental goal of biotechnology and has numerous applications in both...
Efficient gene delivery is a fundamental goal of biotechnology and has numerous applications in both...
Gene expression within cells can be altered through gene delivery approaches, which have tremendous ...
Gene expression within cells can be altered through gene delivery approaches, which have tremendous ...
Gene transfer has many potential applications in basic and applied sciences. In vitro, DNA delivery ...
Gene transfer has many potential applications in basic and applied sciences. In vitro, DNA delivery ...
Controlling Nonviral Gene Delivery through the Cell-Biomaterial Interface Beth Ann Duensing, M.S. U...
Controlling Nonviral Gene Delivery through the Cell-Biomaterial Interface Beth Ann Duensing, M.S. U...
Controlling Nonviral Gene Delivery through the Cell-Biomaterial Interface Beth Ann Duensing, M.S. U...
Controlling Nonviral Gene Delivery through the Cell-Biomaterial Interface Beth Ann Duensing, M.S. U...
Gene transfer has many potential applications in basic and applied sciences, including functional ge...
Understanding the relationship between material surface properties and cellular responses to these p...
Gene transfer has many potential applications in basic and applied sciences, including functional ge...
Understanding the relationship between material surface properties and cellular responses to these p...
Although strategies for the immobilization of DNA oligonucleotides onto surfaces for bioanalytical a...
Efficient gene delivery is a fundamental goal of biotechnology and has numerous applications in both...
Efficient gene delivery is a fundamental goal of biotechnology and has numerous applications in both...