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FEBS Letters|May 7, 1984
In vitro studies on origin and site of action of enzyme activity responsible for conversion of human proapoprotein A-I into apoprotein A-IT Kooistra, V van Hinsbergh, L Havekes, et al.The Biochemical Journal|September 15, 1983
The metabolism in vitro of human low-density lipoprotein by the human hepatoma cell line Hep G2L Havekes, V van Hinsbergh, H J Kempen, et al.The Journal of Investigative Dermatology|December 1, 1984
Defective low-density lipoprotein metabolism in cultured, normal, transformed, and malignant keratinocytesM Ponec, L Havekes, J Kempenaar, et al.Biochimica Et Biophysica Acta|August 14, 1986
Role of endothelial cells and their products in the modification of low-density lipoproteinsV W van Hinsbergh, M Scheffer, L Havekes, et al.Biochemical and Biophysical Research Communications|June 15, 1989
Functional analogy between lipoprotein(a) and plasminogen in the binding to the kringle 4 binding protein, tetranectinC Kluft, A F Jie, P Los, et al.Biochimica Et Biophysica Acta|October 26, 1995
Genomic and cDNA cloning of a novel mouse lipoxygenase geneK W van Dijk, K Steketee, L Havekes, et al.FEBS Letters|June 4, 1984
In vivo and in vitro catabolism of native and biologically modified LDLJ F Nagelkerke, L Havekes, V W van Hinsbergh, et al.Arteriosclerosis (Dallas, Tex.)|May 1, 1984
In vivo catabolism of biologically modified LDLJ F Nagelkerke, L Havekes, V W van Hinsbergh, et al.Cell Biology International Reports|March 1, 1989
The competence of transformed keratinocytes to differentiate is accompanied by amplification of the LDL- and EGF-receptor genes but not of the insulin receptor geneM F te Pas, J Boonstra, L Havekes, et al.Arteriosclerosis (Dallas, Tex.)|November 1, 1983
Low density lipoprotein metabolism by endothelial cells from human umbilical cord arteries and veinsV W van Hinsbergh, L Havekes, J J Emeis, et al.Pageof 7