Anastasia Yu Lokova, Olga V Zaborova Department of Chemistry, M.V. Lomonosov Moscow State University, 119991 Moscow, Russian Federation Purpose: Nowadays, the development of stimuli-sensitive nanocontainers for targeted drug delivery is of great value. Encapsulation of a drug in a pH-sensitive liposomal container not only provides protective and transport functions, but also helps to create a system with a controlled release mechanism.Methods: In this study, we investigated the influence of a cationic polypeptide on the pH-induced release of anticancer drug doxorubicin (DXR) from the anionic fliposomes – liposomes consisting of a neutral lipid, an anionic lipid (prone to interact with a polycation), and a lipid trigger (imparting th...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic confo...
Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic confo...
The traditional anticancer drugs are distributed in vivo through systemic blood circulation with a v...
The traditional anticancer drugs are distributed in vivo through systemic blood circulation with a v...
The formation of complexes from anionic liposomes with a pH-sensitive molecular switch (flipid) and ...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
To explore a potential of pH-sensitive polymer-liposome complexes for the tumor-specific combinatori...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
Design and development of smart nano-sized delivery devices for controlled drug release in response ...
As a promising pH-triggerable molecular switch, trans -2-aminocyclohexanol (TACH) has a variety of a...
Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic confo...
As a promising pH-triggerable molecular switch, trans -2-aminocyclohexanol (TACH) has a variety of a...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic confo...
Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic confo...
The traditional anticancer drugs are distributed in vivo through systemic blood circulation with a v...
The traditional anticancer drugs are distributed in vivo through systemic blood circulation with a v...
The formation of complexes from anionic liposomes with a pH-sensitive molecular switch (flipid) and ...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
To explore a potential of pH-sensitive polymer-liposome complexes for the tumor-specific combinatori...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
Design and development of smart nano-sized delivery devices for controlled drug release in response ...
As a promising pH-triggerable molecular switch, trans -2-aminocyclohexanol (TACH) has a variety of a...
Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic confo...
As a promising pH-triggerable molecular switch, trans -2-aminocyclohexanol (TACH) has a variety of a...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic confo...
Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic confo...