Bile acids are the endogenous modulators of the nuclear receptor FXR and the membrane receptor GPBAR1. FXR represents a promising pharmacological target for the treatment of cholestatic liver disorders. Currently available semisynthetic bile acid derivatives cover the same chemical space of bile acids and therefore they are poorly selective toward BA receptors, increasing patient risk for adverse side effects. In this report, we have investigated around the structure of CDCA describing the synthesis and the in vitro and in vivo pharmacological characterization of a novel family of compounds modified on the steroidal tetracyclic core and on the side chain. Pharmacological characterization resulted in the identification of several pote...
Bile acids are signaling molecules interacting with nuclear receptors and membrane G-protein-coupled...
Bile acids are signaling molecules interacting with nuclear receptors and membrane G-protein-coupled...
Bile acids are signaling molecules interacting with nuclear receptors and membrane G-protein-coupled...
Bile acids are the endogenous modulators of the nuclear receptor FXR and the membrane receptor GPBAR...
Bile acids are the endogenous modulators of the nuclear receptor FXR and the membrane receptor GPBAR...
Bile acids are the endogenous modulators of the nuclear receptor FXR and the membrane receptor GPBAR...
Bile acids are the endogenous modulators of the nuclear receptor FXR and the membrane receptor GPBAR...
Bile acids are the endogenous modulators of the nuclear receptor FXR and the membrane receptor GPBAR...
Bile acids are the endogenous modulators of the nuclear receptor FXR and the membrane receptor GPBA...
Bile acids, the end-products of cholesterol catabolism, are signaling molecules activating several c...
Bile acids, the end-products of cholesterol catabolism, are signaling molecules activating several c...
Bile acids, the end-products of cholesterol catabolism, are signaling molecules activating several c...
Bile acids, the end-products of cholesterol catabolism, are signaling molecules activating several c...
Nuclear and G-protein coupled receptors are considered major targets for drug discovery. FXR and GP-...
Bile acids (BAs), the end products of cholesterol catabolism, are able to interact with nuclear and ...
Bile acids are signaling molecules interacting with nuclear receptors and membrane G-protein-coupled...
Bile acids are signaling molecules interacting with nuclear receptors and membrane G-protein-coupled...
Bile acids are signaling molecules interacting with nuclear receptors and membrane G-protein-coupled...
Bile acids are the endogenous modulators of the nuclear receptor FXR and the membrane receptor GPBAR...
Bile acids are the endogenous modulators of the nuclear receptor FXR and the membrane receptor GPBAR...
Bile acids are the endogenous modulators of the nuclear receptor FXR and the membrane receptor GPBAR...
Bile acids are the endogenous modulators of the nuclear receptor FXR and the membrane receptor GPBAR...
Bile acids are the endogenous modulators of the nuclear receptor FXR and the membrane receptor GPBAR...
Bile acids are the endogenous modulators of the nuclear receptor FXR and the membrane receptor GPBA...
Bile acids, the end-products of cholesterol catabolism, are signaling molecules activating several c...
Bile acids, the end-products of cholesterol catabolism, are signaling molecules activating several c...
Bile acids, the end-products of cholesterol catabolism, are signaling molecules activating several c...
Bile acids, the end-products of cholesterol catabolism, are signaling molecules activating several c...
Nuclear and G-protein coupled receptors are considered major targets for drug discovery. FXR and GP-...
Bile acids (BAs), the end products of cholesterol catabolism, are able to interact with nuclear and ...
Bile acids are signaling molecules interacting with nuclear receptors and membrane G-protein-coupled...
Bile acids are signaling molecules interacting with nuclear receptors and membrane G-protein-coupled...
Bile acids are signaling molecules interacting with nuclear receptors and membrane G-protein-coupled...