| نویسندگان | حیدر رئیسی |
| نشریه | RSC Advances |
| شماره صفحات | 44533-44544 |
| شماره سریال | ۱۰ |
| شماره مجلد | ۲ |
| نوع مقاله | Full Paper |
| تاریخ انتشار | ۲۰۲۰ |
| رتبه نشریه | ISI |
| نوع نشریه | چاپی |
| کشور محل چاپ | ایران |
| نمایه نشریه | ISI،JCR،Scopus |
| کلید واژه ها | smart drug delivery, zeolitic imidazole frameworks, Doxorubicin |
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چکیده مقاله
Due to the extreme pore volume and valuable surface area, zeolitic imidazole frameworks (ZIFs) are
promising vehicles that enhance the delivery of therapeutic agents to tissues. Furthermore, these
nanoporous materials have high stability in the pH and temperature of the surrounding healthy cells
(37 C and pH ¼ 7) and an exotic potential to deform in carcinogenic environment (T > 37 C and pH
5.5), which make them perfect smart drug delivery vehicle candidates. In this work, a series of molecular
dynamics (MD) and metadynamics simulations have been performed to gain molecular insight into the
mechanisms involved in the process of co-loading of doxorubicin (DOX) and EpiGalloCatechin-3 Gallate
(EGCG) on ZIF-8, which form a smart drug delivery system (SDDS). The obtained results revealed that
DOX was adsorbed on the carrier mostly through electrostatic interactions (Ecoul ¼ 1200 kJ mol1,
Etot ¼ 1700 kJ mol1), and EGCG was stacked on ZIF-8 mainly via van der Waals interactions (EL-J ¼
600 kJ mol1, Etot ¼ 1200 kJ mol1). It is worth mentioning that the drug–drug L-J interactions
(EL-J ¼ 500 kJ mol1) were also important in the co-loading process. The insertion of DOX and EGCG
as additive agents to the initial ZIF-8/EGCG and ZIF-8/DOX systems led to the enhancement of the
drug–carrier pair interactions to about 2300 kJ mol1 and 2000 kJ mol1, respectively. This
finding implied that the drug–drug interactions had a complementary role in the development of SDDS
via ZIF-8. From the metadynamics simulation, it was found that the geometry of the drugs is
a determining factor in an efficient co-loading SDDS