4-Aminophenyl α-D-mannopyranoside is used to modify the surface of liposomes to increase uptake kinetics.
Other Notes
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To circumvent the problem of transporting anticancer drugs across the blood-brain barrier (BBB) to target brain tumors, we have previously developed dual-targeting daunorubicin liposomes modified with 4-aminophenyl-α-D-manno-pyranoside and transferrin molecules. The objective of the present study was to evaluate the
Journal of controlled release : official journal of the Controlled Release Society, 141(2), 183-192 (2009-10-06)
Chemotherapy for brain glioma has been of limited value due to the inability of transport of drug across the blood-brain barrier (BBB) and poor penetration of drug into the tumor. For overcoming these hurdles, the dual-targeting daunorubicin liposomes were developed
Antiserum was raised against an aminophenyl derivative of D-mannose grafted on to a liposomal surface. As characterized by immunodiffusion, quantitative precipitation and hapten inhibition, the antiserum was found to contain mannose specific antibodies in addition to antibodies against the aromatic
Journal of immunology (Baltimore, Md. : 1950), 164(9), 4908-4915 (2000-04-26)
Secretory phospholipases A2 (sPLA2s) are a group of extracellular enzymes that release fatty acids at the sn-2 position of phospholipids. Group IIA sPLA2 has been detected in inflammatory fluids, and its plasma level is increased in inflammatory diseases. To investigate
Drug development and industrial pharmacy, 36(1), 102-107 (2009-08-07)
The effect of surface-mannose modification on aerosolized liposomal delivery to alveolar macrophages (AMs) was evaluated in vitro and in vivo. 4-Aminophenyl-α-D-mannopyranoside (Man) was used for surface-mannose modification, and mannosylated liposomes with various mannosylation rates (particle size: 1000 nm) were prepared.
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