Polylysine copolymers for gene delivery
Polylysine and its copolymers have gained wide application as non-viral gene vectors. Although polylysine itself is toxic to cells, the covalent attachment of p
3,200+ step-by-step lab protocols and SOPs for cell culture, staining, PCR, protein work and microbiology, with reagents, conditions and evaluation criteria.
Polylysine and its copolymers have gained wide application as non-viral gene vectors. Although polylysine itself is toxic to cells, the covalent attachment of p
Fluorescence in situ hybridization (FISH) requires nucleic acid probes, including deoxyribonucleic acid (DNA), ribonucleic acid (RNA), or nucleic acid analogs t
Gene gun technology is a fast and simple technique for delivering genes into cells. This technology has many advantages: it allows direct delivery of plasmids w
A large number of non-viral systems have been used for nucleic acid delivery to cultured cells in vitro or to specific cells in vivo. They vary considerably in
In proteomics research, a key step in all enrichment techniques is the subcellular fractionation, which is particularly important for the analysis of intracellu
The mifepristone-induced gene regulatory system (M I G R S ) is a system for regulating rake gene expression through the antiprogesterone drug, mifepristone (M
Non-viral vector plasmid DNA can be delivered to the human brain via the vascular route across the blood-brain barrier by intravenous injection of DNA encapsula
Biodegradable nanoparticles are colloidal particles, typically around IOOnm in diameter, which can be prepared from biodegradable polymers such as polylactic ac
Efficient delivery of ΦC31 integrase and donor plasmids to recipient tissues or cells of interest remains the most challenging element of this integrative syst