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Supramolecular self assembly of nanodrill-like structures for intracellular delivery
- Source :
- Journal of Controlled Release. 282:76-89
- Publication Year :
- 2018
- Publisher :
- Elsevier BV, 2018.
-
Abstract
- Despite recent advances in the supramolecular assembly of cell-penetrating peptide (CPP) nanostructures, the tuning of size, shape, morphology and packaging of drugs in these materials still remain unexplored. Herein, through sequential ligation of peptide building blocks, we create cell-penetrating self-assembling peptide nanomaterials (CSPNs) with the capability to translocate inside cells. We devised a triblock array of Tat(48–59) [HIV-1 derived transactivator of transcription(48–59)] based CPPs, conjugated to up to four Phenylalanine (Phe) residues through an amphiphilic linker, (RADA)(2). We observed that the sequential addition of Phe leads to the transition of CSPN secondary structures from a random coil, to a distorted α-helix, a β-sheet, or a pure α-helix. This transition occurs due to formation of a heptad by virtue of even number of Phe. Atomic force microscopy revealed that CSPNs form distinct shapes reminiscent of a “drill-bit”. CSPNs containing two, three or four Phe, self-assemble into “nanodrill-like structures” with a coarse-twisted, non-twisted or fine-twisted morphology, respectively. These nanodrills had a high capacity to encapsulate hydrophobic guest molecules. In particular, the coarse-twisted nanodrills demonstrate higher internalization and are able to deliver rapamycin, a hydrophobic small molecule that induced autophagy and are capable of in vivo delivery. Molecular dynamics studies provide microscopic insights into the structure of the nanodrills that can contribute to its morphology and ability to interact with cellular membrane. CSPNs represent a new modular drug delivery platform that can be programmed into exquisite structures through sequence-specific fine tuning of amino acids.
- Subjects :
- Phenylalanine
Supramolecular chemistry
Pharmaceutical Science
Cell-Penetrating Peptides
02 engineering and technology
Molecular Dynamics Simulation
Microscopy, Atomic Force
010402 general chemistry
01 natural sciences
Protein Structure, Secondary
Article
Supramolecular assembly
Drug Delivery Systems
Amphiphile
Humans
Drug Carriers
Chemistry
021001 nanoscience & nanotechnology
Small molecule
Random coil
Nanostructures
0104 chemical sciences
Drug delivery
Biophysics
tat Gene Products, Human Immunodeficiency Virus
Self-assembly
0210 nano-technology
Linker
HeLa Cells
Subjects
Details
- ISSN :
- 01683659
- Volume :
- 282
- Database :
- OpenAIRE
- Journal :
- Journal of Controlled Release
- Accession number :
- edsair.doi.dedup.....1d3338f001032d9de34f880f0522f385