Showing results (1-10 of 708) with videos related to
Sort By:
Pageof 71
Prostaglandins, Leukotrienes, and Essential Fatty Acids|October 26, 2000
Why is glycated LDL more sensitive to oxidation than native LDL? A comparative studyG Sobal, J Menzel, H SinzingerBiochemical Pharmacology|February 15, 2001
Calcium antagonists as inhibitors of in vitro low density lipoprotein oxidation and glycationG Sobal, E J Menzel, H SinzingerLife Sciences|March 28, 2003
Troglitazone-binding to LDL and its glycated modifications: its role in cell-catalysed and Cu-mediated LDL-oxidationG Sobal, H Sinzinger, E J MenzelJournal of Receptor and Signal Transduction Research|March 11, 1999
Binding of long-term glycated low density lipoprotein and AGE-albumin by peripheral monocytes and endothelial cellsG Sobal, H Sinzinger, E J MenzelProstaglandins, Leukotrienes, and Essential Fatty Acids|July 6, 2000
The effects of glycation/glycoxidation on the liberation of 8-epi-PGF2alpha from low density lipoprotein during its in vitro oxidationG Sobal, E J Menzel, H SinzingerCurrent Pharmaceutical Design|April 3, 2001
Prostaglandins and lipid modificationG Sobal, H SinzingerApplied Radiation and Isotopes : Including Data, Instrumentation and Methods for Use in Agriculture, Industry and Medicine|February 28, 2001
Methylene blue-enhanced stability of (99mTc)HMPAO and simplified quality control--a comparative investigationG Sobal, H SinzingerJournal of Receptor and Signal Transduction Research|December 31, 2002
Binding of [99mTc]chondroitin sulfate to scavenger receptors on human chondrocytes as compared to binding of oxidized [125I]LDL on human macrophagesG Sobal, H SinzingerLife Sciences|September 30, 1999
Effects of PGI2 and analogues (taprostene, iloprost) on oxidation of native and glycated LDLG Sobal, H SinzingerFree Radical Research|April 15, 2000
The role of antioxidants in the long-term glycation of low density lipoprotein and its Cu2+-catalyzed oxidationG Sobal, J MenzelPageof 71