| Literature DB >> 21687343 |
Fatemeh Madani1, Staffan Lindberg, Ulo Langel, Shiroh Futaki, Astrid Gräslund.
Abstract
Recently, much attention has been given to the problem of drug delivery through the cell-membrane in order to treat and manage several diseases. The discovery of cell penetrating peptides (CPPs) represents a major breakthrough for the transport of large-cargo molecules that may be useful in clinical applications. CPPs are rich in basic amino acids such as arginine and lysine and are able to translocate over membranes and gain access to the cell interior. They can deliver large-cargo molecules, such as oligonucleotides, into cells. Endocytosis and direct penetration have been suggested as the two major uptake mechanisms, a subject still under debate. Unresolved questions include the detailed molecular uptake mechanism(s), reasons for cell toxicity, and the delivery efficiency of CPPs for different cargoes. Here, we give a review focused on uptake mechanisms used by CPPs for membrane translocation and certain experimental factors that affect the mechanism(s).Entities:
Year: 2011 PMID: 21687343 PMCID: PMC3103903 DOI: 10.1155/2011/414729
Source DB: PubMed Journal: J Biophys ISSN: 1687-8000
Some CPPs and their physical properties. aHydrophobicity calculated according to the values from von Heijne scale [10].
| Peptide | No. of arginines | No. of lysines | Hydrophobicitya | No. of residues | Sequence | Total charge |
|---|---|---|---|---|---|---|
| R9 [ | 9 | — | 2.58 | 9 | RRRRRRRRR | +9 |
| TAT(48–60) [ | 6 | 2 | 2.37 | 13 | GRKKRRQRRRPPQ | +8 |
| Penetratin [ | 3 | 4 | 1.52 | 16 | RQIKIWFQNRRMKWKK | +7 |
| Pen-Arg [ | 7 | — | 1.49 | 16 | RQIRIWFQNRRMRWRR | +7 |
| pVEC [ | 4 | 2 | 1.10 | 18 | LLIILRRRIRKQAHAHSK | +8 |
| M918 [ | 7 | — | 0.93 | 22 | MVTVLFRRLRIRRACGPPRVRV | +7 |
| TP10 [ | — | 4 | 0.53 | 21 | AGYLLGKINLKALAALAKKIL | +4 |
Figure 1Scheme for different suggested uptake pathways for CPPs.