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1.
Chem Pharm Bull (Tokyo) ; 72(5): 512-517, 2024.
Article in English | MEDLINE | ID: mdl-38811213

ABSTRACT

Cell-penetrating peptides (CPPs) serve as potent vehicles for delivering membrane-impermeable compounds, including nucleic acids, into cells. In a previous study, we reported the successful intracellular delivery of small interfering RNAs (siRNAs) with negligible cytotoxicity using a peptide containing an unnatural amino acid (dipropylglycine). In the present study, we employed the same seven peptides as the previous study to evaluate their efficacy in delivering plasmid DNA (pDNA) intracellularly. Although pDNA and siRNA are nucleic acids, they differ in size and biological function, which may influence the optimal peptide sequences for their delivery. Herein, three peptides demonstrated effective pDNA transfection abilities. Notably, only one of the three peptides previously exhibited efficient gene-silencing effect with siRNA. These findings validate our hypothesis and offer insights for the personalized design of CPPs for the delivery of pDNA and siRNA.


Subject(s)
Cell-Penetrating Peptides , DNA , Plasmids , RNA, Small Interfering , Cell-Penetrating Peptides/chemistry , Humans , DNA/chemistry , RNA, Small Interfering/chemistry , RNA, Small Interfering/administration & dosage , Glycine/chemistry , Transfection , HeLa Cells , Cell Survival/drug effects
2.
Chem Pharm Bull (Tokyo) ; 71(3): 250-256, 2023.
Article in English | MEDLINE | ID: mdl-36858531

ABSTRACT

Amphipathic peptides composed of cationic amino acids and hydrophobic amino acids have cell-penetrating ability and are often used as a delivery tool for membrane-impermeable compounds. Small interfering RNA (siRNAs) are one of the delivery targets for such cell-penetrating peptides (CPPs). Cationic CPPs can associate with anionic siRNAs by electrostatic interactions resulting in the formation of nano-sized complexes, which can deliver siRNAs intracellularly. CPPs containing unnatural amino acids offer promising tools to siRNA delivery. However, the detailed structure-activity relationship in siRNA delivery has been rarely studied. In the current study, we designed peptides containing dipropylglycine (Dpg) and explored the cellular uptake and cytotoxicity of peptide/siRNA complexes. The amphipathic structure of the peptides played a key role in complexation with siRNAs and intracellular siRNA delivery. In the amphipathic peptides, cellular uptake of siRNA increased with increasing peptide length, but cytotoxicity was reduced. A peptide containing four Dpg exhibited an effective gene-silencing effect with small amounts of peptides without cytotoxicity in medium containing serum. These findings will be helpful for the design of novel CPPs for siRNA delivery.


Subject(s)
Cell-Penetrating Peptides , Valine , RNA, Small Interfering , Amino Acids
3.
Nanoscale ; 13(45): 18941-18946, 2021 Nov 25.
Article in English | MEDLINE | ID: mdl-34664600

ABSTRACT

Prolonging the duration of protein expression from mRNA is a major challenge in the development of mRNA nanomedicines. mRNA complexed with helix foldamer oligopeptides consisting of arginine and α-aminoisobutyric acids showed higher intracellular stability than that complexed with oligoarginines, thereby maintaining efficient protein translation for three days.


Subject(s)
Oligopeptides , RNA, Messenger/genetics
4.
Org Lett ; 23(11): 4358-4362, 2021 06 04.
Article in English | MEDLINE | ID: mdl-33978426

ABSTRACT

A chiral cyclic α,α-disubstituted α-amino acid, (S)-(-)-cucurbitine, which has a pyrrolidine ring with a chiral center at the α-position, was synthesized, and its homopeptides were prepared. (S)-(-)-Cucurbitine homopeptides with a Boc-protecting group formed helical structures with slight control of the helical screw sense to the left-handed form. The state of the pyrrolidine ring in (S)-(-)-cucurbitine was important for the control of the helical structures and helical screw sense of its homopeptides.


Subject(s)
Amino Acids/chemistry , Amino Acids/chemical synthesis , Molecular Structure , Stereoisomerism
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