Novel phenoxyisobutyric acid compounds and methods for synthesis
申请人:Lalezari Iraj
公开号:US20120071502A1
公开(公告)日:2012-03-22
The present invention provides a process for the synthesis of substituted phenoxymethylpropionic acid and related compounds. The compounds are useful for inhibiting the formation of AGEs (Advanced Glycation End Products).
A family of compounds has been found to be useful for right-shifting hemoglobin towards a low oxygen affinity state. The compounds are capable of acting on hemoglobin in whole blood. In addition, the compounds can maintain the oxygen affinity in blood during storage and can restore the oxygen affinity of outdated blood.
Allosteric hemoglobin modifiers to decrease oxygen affinity in blood
申请人:The Center for Innovative Technology
公开号:US05432191A1
公开(公告)日:1995-07-11
A family of compounds has been found to be useful for right-shifting hemoglobin towards a low oxygen affinity state. The compounds are capable of acting on hemoglobin in whole blood. In addition, the compounds can maintain the oxygen affinity in blood during storage and can restore the oxygen affinity of outdated blood.
Using allosteric hemoglobin modifiers to decrease oxygen affinity in
申请人:Virginia Commonwealth University
公开号:US05248785A1
公开(公告)日:1993-09-28
A family of compounds has been found to be useful for right-shifting hemoglobin towards a low oxygen affinity state. The compounds are capable of acting on hemoglobin in whole blood. In addition, the compounds can maintain the oxygen affinity in blood during storage and can restore the oxygen affinity of outdated blood.
Allosteric hemoglobin modifiers which decrease oxygen affinity in blood
申请人:Center for Innovative Technology
公开号:US05250701A1
公开(公告)日:1993-10-05
A family of compounds has been found to be useful for right-shifting hemoglobin towards a low oxygen affinity state. The compounds are capable of acting on hemoglobin in whole blood. In addition, the compounds can maintain the oxygen affinity in blood during storage and can restore the oxygen affinity of outdated blood.