The lipid membrane is considered a crucial component of opioid general anesthesia. The main drug used for the induction and maintenance of opioid anesthesia is fentanyl and its various analogues. However, these drugs have different clinical effects, and detailed atomic-level insight into the drug–membrane interactions could lead to a better understanding how these drugs exert their anesthetic properties. In this study, we have used extensive umbrella sampling molecular dynamics simulations to study the permeation process of fentanyl and three of its analogues into a variety of simple phospholipid membrane models. Our simulations show that we can accurately predict the permeability coefficients of these drug molecules, which is an important ...
To gain insights into the molecular level mechanism of drug action at the membrane site, we have car...
The molecular mechanism of general anesthesia is still a controversial issue. Direct effect by linki...
Liposomes are an advanced delivery systems in cancer treatment1. A new generation of pH-sensitive li...
The lipid membrane is considered a crucial component of opioid general anesthesia. The main drug use...
Atomistic molecular dynamics (MD) and steered MD simulations in combination with umbrella sampling m...
Fentanyl is a potent opioid analgesic, which for decades has been used routinely in surgical and the...
Fentanyl is an opioid analgesic, which is routinely used in general surgery to suppress the sensatio...
Fentanyl is an opioid analgesic, which is routinely used in general surgery to suppress the sensatio...
Atomistic molecular dynamics (MD) and steered MD simulations in combination with umbrella sampling m...
The molecular mechanism of general anesthesia is still a controversial issue. Direct effect by linki...
Predicting the permeability coefficient (P) of drugs permeating through the cell membrane is of para...
AbstractAlthough 1-alkanols have long been known to act as penetration enhancers and anesthetics, th...
The molecular mechanism of general anesthesia is still a controversial issue. Direct effect by linki...
Most drugs undergo passive transport during absorption and distribution in the body. It is desirable...
AbstractTo gain insights into the molecular level mechanism of drug action at the membrane site, we ...
To gain insights into the molecular level mechanism of drug action at the membrane site, we have car...
The molecular mechanism of general anesthesia is still a controversial issue. Direct effect by linki...
Liposomes are an advanced delivery systems in cancer treatment1. A new generation of pH-sensitive li...
The lipid membrane is considered a crucial component of opioid general anesthesia. The main drug use...
Atomistic molecular dynamics (MD) and steered MD simulations in combination with umbrella sampling m...
Fentanyl is a potent opioid analgesic, which for decades has been used routinely in surgical and the...
Fentanyl is an opioid analgesic, which is routinely used in general surgery to suppress the sensatio...
Fentanyl is an opioid analgesic, which is routinely used in general surgery to suppress the sensatio...
Atomistic molecular dynamics (MD) and steered MD simulations in combination with umbrella sampling m...
The molecular mechanism of general anesthesia is still a controversial issue. Direct effect by linki...
Predicting the permeability coefficient (P) of drugs permeating through the cell membrane is of para...
AbstractAlthough 1-alkanols have long been known to act as penetration enhancers and anesthetics, th...
The molecular mechanism of general anesthesia is still a controversial issue. Direct effect by linki...
Most drugs undergo passive transport during absorption and distribution in the body. It is desirable...
AbstractTo gain insights into the molecular level mechanism of drug action at the membrane site, we ...
To gain insights into the molecular level mechanism of drug action at the membrane site, we have car...
The molecular mechanism of general anesthesia is still a controversial issue. Direct effect by linki...
Liposomes are an advanced delivery systems in cancer treatment1. A new generation of pH-sensitive li...