| نویسندگان | Mohammad Yahya Hanafi‑Bojd,Milad Iranshahy,Asghar Zarban |
| نشریه | Scientific Reports |
| شماره صفحات | 1-20 |
| شماره سریال | 13 |
| شماره مجلد | 1 |
| ضریب تاثیر (IF) | 4.259 |
| نوع مقاله | Full Paper |
| تاریخ انتشار | 2023 |
| نوع نشریه | چاپی |
| کشور محل چاپ | ایران |
| نمایه نشریه | JCR،Scopus |
چکیده مقاله
Although nature is a rich source of potential drugs and drug leads, the widespread application of
natural products (NPs) is limited due to their poor absorption when administered orally. A strategy of
using phytosome has emerged as a promising technique to increase the bioavailability of NPs. Here,
a comprehensive computational investigation is performed to explore the nature of interactions in
the formation of phytosomes between phosphatidylcholine (PC) and a series of polyphenols (PP),
including epigallocatechin‑3‑gallate (Eg), luteolin (Lu), quercetin (Qu), and resveratrol (Re). Our
quantum mechanical calculation revealed that the intermolecular hydrogen bonds (HBs) of phosphate
and glycerol parts of PC with the polyphenol compounds are the main driving force in the formation
of phytosomes. The strongest HB (with energy HB = − 108.718 kJ/mol) is formed between the Eg
molecule and PC. This hydrogen bond results from the flexible structure of the drug which along
with several van der Waals (vdW) interactions, makes Eg‑PC the most stable complex (adsorption
energy = − 164.93 kJ/mol). Energy decomposition analysis confirms that the electrostatic interactions
(hydrogen bond and dipole‑diploe interactions) have a major contribution to the stabilization of
the studied complexes. The obtained results from the molecular dynamics simulation revealed
that the formation of phytosomes varies depending on the type of polyphenol. It is found that the
intermolecular hydrogen bonds between PP and PC are a key factor in the behavior of the PP‑PC
complex in the self‑aggregation of phytosome. In Eg‑PC, Lu‑PC, and Qu‑PC systems, the formation
of strong hydrogen bonds (HBCP < 0 and ∇2ρBCP > 0) between PP and PC protects the PP‑PC complexes
from degradation. The steered molecular dynamics simulation results have a good agreement
with experimental data and confirm that the phytosome platform facilitates the penetration of PP
compounds into the membrane cells.
لینک ثابت مقاله