Barriers to Non-Viral Vector-Mediated Gene Delivery in the Nervous System
Open Access
- 12 January 2011
- journal article
- review article
- Published by Springer Nature in Pharmaceutical Research
- Vol. 28 (8), 1843-1858
- https://doi.org/10.1007/s11095-010-0364-7
Abstract
Efficient methods for cell line transfection are well described, but, for primary neurons, a high-yield method different from those relying on viral vectors is lacking. Viral transfection has several drawbacks, such as the complexity of vector preparation, safety concerns, and the generation of immune and inflammatory responses when used in vivo. However, one of the main problems for the use of non-viral gene vectors for neuronal transfection is their low efficiency when compared with viral vectors. Transgene expression, or siRNA delivery mediated by non-viral vectors, is the result of multiple processes related to cellular membrane crossing, intracellular traffic, and/or nuclear delivery of the genetic material cargo. This review will deal with the barriers that different nanoparticles (cationic lipids, polyethyleneimine, dendrimers and carbon nanotubes) must overcome to efficiently deliver their cargo to central nervous system cells, including internalization into the neurons, interaction with intracellular organelles such as lysosomes, and transport across the nuclear membrane of the neuron in the case of DNA transfection. Furthermore, when used in vivo, the nanoparticles should efficiently cross the blood-brain barrier to reach the target cells in the brain.Keywords
This publication has 130 references indexed in Scilit:
- Nanoparticle-Mediated Brain-Specific Drug Delivery, Imaging, and DiagnosisPharmaceutical Research, 2010
- Lipid-mediated delivery of RNA is more efficient than delivery of DNA in non-dividing cellsInternational Journal of Pharmaceutics, 2010
- Endosomal Leakage and Nuclear Translocation of Multiwalled Carbon Nanotubes: Developing a Model for Cell UptakeNano Letters, 2009
- Nonviral Approaches for Neuronal Delivery of Nucleic AcidsPharmaceutical Research, 2007
- Endocytic mechanisms for targeted drug delivery☆Advanced Drug Delivery Reviews, 2007
- Biodegradable nanoparticles for cytosolic delivery of therapeutics☆Advanced Drug Delivery Reviews, 2007
- Neuron‐specific delivery of nucleic acids mediated by Tet1‐modified poly(ethylenimine)The Journal of Gene Medicine, 2007
- Live dynamic imaging of caveolae pumping targeted antibody rapidly and specifically across endothelium in the lungNature Biotechnology, 2007
- Enhanced transfection of tumor cellsin vivousing “Smart” pH-sensitive TAT-modified pegylated liposomesJournal of Drug Targeting, 2007
- Clathrin-Dependent and Clathrin-Independent Retrieval of Synaptic Vesicles in Retinal Bipolar CellsNeuron, 2005