TAT peptide on the surface of liposomes affords their efficient intracellular delivery even at low temperature and in the presence of metabolic inhibitors
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- 3 July 2001
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 98 (15) , 8786-8791
- https://doi.org/10.1073/pnas.151247498
Abstract
To achieve an efficient intracellular drug and DNA delivery, attempts were made to target microparticulate drug carriers into cytoplasm bypassing the endocytotic pathway. TAT peptides derived from the HIV-1 TAT protein facilitate intracellular delivery of proteins and small colloidal particles. We demonstrated that relatively large drug carriers, such as 200-nm liposomes, can also be delivered into cells by TAT peptide attached to the liposome surface. Liposomes were fluorescently labeled with membranotropic rhodamine-phosphatidylethanolamine or by entrapping FITC-dextran. Incubation of fluorescent TAT liposomes with mouse Lewis lung carcinoma cells, human breast tumor BT20 cells, and rat cardiac myocyte H9C2 results in intracellular localization of certain liposomes. Steric hindrances for TAT peptide⋅cell interaction (attachment of TAT directly to the liposome surface without spacer or the presence of a high MW polyethylene glycol on the liposome surface) abolish liposome internalization, evidencing the importance of direct contact of TAT peptide with the cell surface. Low temperature or metabolic inhibitors, sodium azide or iodoacetamide, have little influence on the translocation of TAT liposomes into cells, confirming the energy-independent character of this process. The approach may have important implications for drug delivery directly into cell cytoplasm.Keywords
This publication has 37 references indexed in Scilit:
- Protein immobilization on the surface of liposomes via carbodiimide activation in the presence of N‐hydroxysulfosuccinimidePublished by Wiley ,2001
- Characterization of a Class of Cationic Peptides Able to Facilitate Efficient Protein Transduction in Vitro and in VivoMolecular Therapy, 2000
- In Vivo Protein Transduction: Delivery of a Biologically Active Protein into the MouseScience, 1999
- A Polyethylene Glycol Copolymer for Carrying and Releasing Multiple Copies of Cysteine-Containing PeptidesBioconjugate Chemistry, 1998
- Cell Internalization of the Third Helix of the Antennapedia Homeodomain Is Receptor-independentJournal of Biological Chemistry, 1996
- Nuclear translocation of an exogenous fusion protein containing HIV Tat requires unfoldingAIDS, 1995
- Activating region of HIV-1 Tat protein: vacuum UV circular dichroism and energy minimizationBiochemistry, 1991
- Cellular uptake of the tat protein from human immunodeficiency virusCell, 1988
- Autonomous functional domains of chemically synthesized human immunodeficiency virus tat trans-activator proteinCell, 1988
- Radioactive Labeling of Antibody: A Simple and Efficient MethodScience, 1983