Anticancer peptides are promising drug candidates for cancer treatment, but the short circulation time and low delivery efficiency limit their clinical applications. Herein, we designed several lasso-like self-assembling anticancer peptides (LASAPs) integrated with multiple functions by a computer-aided approach. Among these LASAPs, LASAP1 (CRGDKGPDCGKAFRRFLGALFKALSHLL, 1–9 disulfide bond) was determined to be superior to the others because it can self-assemble into homogeneous nanoparticles and exhibits improved stability in serum. Thus, LASAP1 was chosen for proving the design idea. LASAP1 can self-assemble into nanoparticles displaying iRGD on the surface because of its amphiphilic structure and accumulate to the tumor site after...
Self-assembled peptides and proteins possess tremendous potential as targeted drug delivery systems ...
Cell penetrating peptides (CPPs) are peptides that can directly adapt to cell membranes and then per...
Molecular self-assembly offers unique features for the development of novel supramolecular structure...
Peptide-tuned self-assembly of macromolecular agents (>500 Da) such as therapeutic peptides offers a...
Despite scientific progress, cancer still remains a challenge and therapies on the market present se...
Developing a sophisticated nanomedicine platform to deliver therapeutics effectively and safely into...
Combination therapeutic regimen is becoming a primary direction for current cancer immunotherapy to ...
Cell-penetrating peptides (CPPs), also called “Trojan-Horse” peptides, have been used for facilitati...
Cancer metastasis, the ability of cancer cell to change position within the tissue through migration...
The use of smart drug carriers to realize cancer-targeted drug delivery is a promising method to imp...
Personalized cancer vaccines (PCVs) are receiving attention as an avenue for cancer immunotherapy. P...
Over the past three decades, a variety of carrier-based drug delivery systems have been developed, a...
Recently, self-assembled nanostructures have received considerable attention due to their potential ...
\u3cp\u3eMost drug delivery systems have been developed for efficient delivery to tumor sites via ta...
Self-assembling peptides could be considered a novel class of agents able to harvest an array of mic...
Self-assembled peptides and proteins possess tremendous potential as targeted drug delivery systems ...
Cell penetrating peptides (CPPs) are peptides that can directly adapt to cell membranes and then per...
Molecular self-assembly offers unique features for the development of novel supramolecular structure...
Peptide-tuned self-assembly of macromolecular agents (>500 Da) such as therapeutic peptides offers a...
Despite scientific progress, cancer still remains a challenge and therapies on the market present se...
Developing a sophisticated nanomedicine platform to deliver therapeutics effectively and safely into...
Combination therapeutic regimen is becoming a primary direction for current cancer immunotherapy to ...
Cell-penetrating peptides (CPPs), also called “Trojan-Horse” peptides, have been used for facilitati...
Cancer metastasis, the ability of cancer cell to change position within the tissue through migration...
The use of smart drug carriers to realize cancer-targeted drug delivery is a promising method to imp...
Personalized cancer vaccines (PCVs) are receiving attention as an avenue for cancer immunotherapy. P...
Over the past three decades, a variety of carrier-based drug delivery systems have been developed, a...
Recently, self-assembled nanostructures have received considerable attention due to their potential ...
\u3cp\u3eMost drug delivery systems have been developed for efficient delivery to tumor sites via ta...
Self-assembling peptides could be considered a novel class of agents able to harvest an array of mic...
Self-assembled peptides and proteins possess tremendous potential as targeted drug delivery systems ...
Cell penetrating peptides (CPPs) are peptides that can directly adapt to cell membranes and then per...
Molecular self-assembly offers unique features for the development of novel supramolecular structure...