Searched for: subject%3A%22LDL%255C%2Breceptor%255C-related%255C%2Bprotein%22
(1 - 15 of 15)
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TNO Kwaliteit van Leven (author), Hu, L. (author), van der Hoogt, C.C. (author), Espirito Santo, S.M.S. (author), Out, R. (author), Kypreos, K.E. (author), van Vlijmen, B.J.M. (author), van Berkel, T.J.C. (author), Romijn, J.A. (author), Havekes, L.M. (author), van Dijk, K.W. (author), Rensen, P.C.N. (author)LPL activity plays an important role in preceding the VLDL remnant clearance via the three major apolipoprotein E (apoE)-recognizing receptors: the LDL receptor (LDLr), LDL receptor-related protein (LRP), and VLDL receptor (VLDLr). The aim of this study was to determine whether LPL activity is also important for VLDL remnant clearance...article 2008
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- Hu, L. (author), Bovenschen, N. (author), Havekes, L.M. (author), van Vlijmen, B.J.M. (author), Tamsma, J.T. (author), TNO Kwaliteit van Leven (author) article 2007
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Hu, L. (author), Boesten, L.S.M. (author), May, P. (author), Herz, J. (author), Bovenschen, N. (author), Huisman, M.V. (author), Berbée, J.F.P. (author), Havekes, L.M. (author), van Vlijmen, B.J.M. (author), Tamsma, J.T. (author), TNO Kwaliteit van Leven (author)OBJECTIVE - In vitro studies implicate that the low-density lipoprotein receptor (LDLR)-related protein (LRP) in macrophages has a pro-atherogenic potential. In the present study, we investigated the in vivo role of macrophage specific LRP in atherogenesis independent of its role in the uptake of lipoproteins. METHODS AND RESULTS - We generated...article 2006
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Bovenschen, N. (author), van Dijk, K.W. (author), Havekes, L.M. (author), Mertens, K. (author), van Vlijmen, B.J.M. (author), Gaubius Instituut TNO (author)Low-density lipoprotein receptor-related protein (LRP) contributes to factor VIII (FVIII) catabolism in vivo. Besides LRP, FVIII also interacts with very low-density lipoprotein receptor (VLDLR) in vitro. We investigated the physiological role of VLDLR in FVIII catabolism, using knockout mouse models for VLDLR and LRP, alone and in combination....article 2004
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Espirito Santo, S.M.S. (author), Pires, N.M.M. (author), Boesten, L.S.M. (author), Gerritsen, G. (author), Bovenschen, N. (author), van Dijk, K.W. (author), Jukema, J.W. (author), Princen, H.M.G. (author), Bensadoun, A. (author), Li, W.P. (author), Herz, J. (author), Havekes, L.M. (author), van Vlijmen, B.J.M. (author), Gaubius Instituut TNO (author)The low-density lipoprotein (LDL) receptor-related protein (LRP) has a well-established role in the hepatic removal of atherogenic apolipoprotein E (APOE)-rich remnant lipoproteins from plasma. In addition, LRP recognizes multiple distinct pro- and antiatherogenic ligands in vitro. Here, we investigated the role of hepatic LRP in atherogenesis...article 2004
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Goedde, M.F. (author), Grimbergen, J.M. (author), Toet, K.H. (author), Sitter, T. (author), Quax, P.H. (author), Kooistra, T. (author), Gaubius Instituut TNO (author)Background. The mesothelium has an important role in maintaining an adequate fibrinolytic capacity in the peritoneal cavity and thus in preventing the formation of fibrinous peritoneal adhesions by secreting the fibrinolytic enzyme tissue-type plasminogen activator (t-PA). The fibrinolytic activity of human mesothelial cells (HMCs) is...article 2001
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van Dijk, K.W. (author), van Vlijmen, B.J.M. (author), de Winther, M.P.J. (author), van 't Hof, B. (author), van der Zee, A. (author), van der Boom, H. (author), Havekes, L.M. (author), Hofker, M.H. (author), Gaubius instituut TNO (author)To investigate the relative roles of the LDL receptor- and non-LDL receptor-mediated pathways in the clearance of apolipoprotein E (apoE) variants in vivo, we have generated apoE2(Arg158-Cys) (apoE2) and apoE3- Leiden transgenic mice deficient for the endogenous mouse Apoe and Ldl receptor genes (Apoe-/-.Ldlr-/- mice). Unexpectedly, on the Apoe-...article 1999
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Sitter, T. (author), Toet, K. (author), Quax, P. (author), Kooistra, T. (author), Gaubius instituut TNO (author)Background. Human mesothelial cells (HMCs) have an important role in maintaining an adequately functioning fibrinolytic system in the peritoneal cavity by secreting the fibrinolytic enzymes tissue-type and urokinase-type plasminogen activator (t-PA and u-PA), as well as a specific PA inhibitor, PA inhibitor type 1 (PAI-1). In this study, we...article 1999
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Gaubius instituut TNO (author), van Vlijmen, B.J.M. (author), Rohlmann, A. (author), Page, S.T. (author), Bensadoun, A. (author), Bos, I.S.T. (author), van Berkel, T.J.C. (author), Havekes, L.M. (author), Herz, J. (author)We have used adenovirus-mediated gene transfer in mice to investigate low density lipoprotein receptor (LDLR) and LDLR-related protein (LRP)- independent mechanisms that control the metabolism of chylomicron and very low density lipoprotein (VLDL) remnants in vivo. Overexpression of receptor- associated protein (RAP) in mice that lack both LRP...article 1999
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TNO Preventie en Gezondheid (author), van Dijk, K.W. (author), van Vlijmen, B.J.M. (author), van 't Hof, H.B. (author), van der Zee, A. (author), Santamarina-Fojo, S. (author), van Berkel, T.J.C. (author), Havekes, L.M. (author), Hofker, M.H. (author)To investigate the quantitative requirement for apolipoprotein (apo) E in the clearance of lipoproteins via the non-low density lipoprotein (LDL) receptor mediated pathway, human APOE was overexpressed at various levels in the livers of mice deficient for both the endogenous Apoe and Ldlr genes (Apoe-/- · Ldlr-/-) using adenovirus-mediated gene...article 1999
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Leppänen, P. (author), Luoma, J.S. (author), Hofker, M.H. (author), Havekes, L.M. (author), Ylä-Herttuala, S. (author), Gaubius Instituut TNO (author)Apo E3-leiden transgenic mice express human dysfunctional apo E variant and develop hyperlipidemia and atherosclerosis on a high fat/high cholesterol diet. We characterized diet-induced atherosclerotic lesions in apo E3-leiden transgenic mice using immunocytochemical methods in order to examine foam cell formation and determine whether advanced...article 1998
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van der Kaaden, M.E. (author), Rijken, D.C. (author), Kruijt, J.K. (author), van Berkel, T.J.C. (author), Kuiper, J. (author), TNO Preventie en Gezondheid (author)Urokinase-type plasminogen activator (u-PA) is used as a thrombolytic agent in the treatment of acute myocardial infarction. In vitro, recombinant single-chain u-PA (rscu-PA) expressed in E. coli is recognized by the Low-Density Lipoprotein Receptor-related Protein (LRP) on rat parenchymal liver cells. In this study we investigated the role of...article 1997
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de Vries, T.J. (author), Verheijen, J.H. (author), de Bart, A.C.W. (author), Weidle, U.H. (author), Ruiter, D.J. (author), van Muijen, G.N.P. (author), Gaubius Instituut TNO (author)We recently found that the proteins of the proteolytic system of plasminogen activation emerge in late stages of melanocytic tumor progression. A large body of evidence suggests a role for two proteins, the low-density lipoprotein receptor-related protein (LRP)/α2-macroglobulin receptor and its receptor-associated protein (RAP), in the...article 1996
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Noorman, F. (author), Braat, E.A.M. (author), Rijken, D.C. (author), TNO Preventie en Gezondheid (author)The balance of tissue-type plasminogen activator (t-PA) production and degradation determines its concentration in blood and tissues. Disturbance of this balance may result in either increased or decreased proteolysis. In the present study, we identified the receptor systems involved in the degradation of t-PA by human monocytes/macrophages in...article 1995
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Gaubius Instituut TNO (author), Mulder, M. (author), Lombardi, P. (author), Jansen, H. (author), van Berkel, T.J.C. (author), Frants, R.R. (author), Havekes, L.M. (author)We found that LPL enhances the binding to HepG2 cells and fibroblasts of both VLDL and apoE free LDL. In the presence of 1.7 μg/ml of purified bovine LPL, the binding of LDL and VLDL was up to 60 fold increased as compared to the control binding. In addition, LPL enhances the binding in LDL-receptor negative fibroblasts to the same extent as it...article 1992
Searched for: subject%3A%22LDL%255C%2Breceptor%255C-related%255C%2Bprotein%22
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