| 1 |
M. S. Brown, S. K. Basu, J. R. Falck, Y. K. Ho, J. L. Goldstein, “The scavenger cell pathway for lipoprotein degradation: Specificity of the binding site that mediates the uptake of negatively- charged LDL by macrophages” J. Supramol. Struct, Vol.13, No.1, pp.67–81, 1980. DOI: http://doi.org/10.1002/jss.400130107 |
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| 2 |
J. L. Goldstein, Y. K. Ho, S. K. Basu, M. S. Brown, “Binding site on macrophages that mediates uptake and degradation of acetylated low density lipoprotein, producing massive cholesterol deposition” Proc. Natl. Acad .Sci. USA, Vol.76, No.1, pp.333-337, Jan. 1979. DOI: http://doi.org/10.1073/pnas.76.1.333 |
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| 3 |
Purification and Characterization of a Bovine Acetyl Low Density Lipoprotein Receptor  |
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| 4 |
Overexpression of scavenger receptor and infiltration of macrophage in epicardial adipose tissue of patients with ischemic heart disease and diabetes  |
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| 5 |
The membrane-type collectin CL-P1 is a scavenger receptor on vascular endothelial cells.  |
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| 6 |
Scavenger receptor collectin placenta 1 is a novel receptor involved in the uptake of myelin by phagocytes.  |
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| 7 |
Two distinct classes of carbohydrate-recognition domains in animal lectins.  |
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| 8 |
K. Nakamura, H. Funakoshi, K. Miyamoto, F. Tokunaga, T. Nakamura, “Molecular cloning and functional characterization of a human scavenger receptor with C-type lectin (SRCL), a novel member of a scavenger receptor family”, Biochem. Biophys. Res. Commun, Vol.280, No.4, pp.1028–1035, Feb. 2001. DOI: http://doi.org/10.1006/bbrc.2000.4210 |
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| 9 |
Isolation and characterization of the human pulmonary surfactant apoprotein gene.  |
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| 10 |
Purification and biochemical characterization of CP4 (SP-D), a collagenous surfactant-associated protein.  |
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| 11 |
K. Ohtani, Y. Suzuki, S. Eda, T. Kawai, T. Kase, “Molecular cloning of a novel human collectin from liver (CL-L1)”, J. Biol. Chem, Vol.274, No.19, pp.1368113689, May 1999. DOI: http://doi.org/10.1074/jbc.274.19.13681 |
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| 12 |
H. Keshi, T. Sakamoto, T. Kawai, K. Ohtani, T. Katoh, “Identification and characterization of a novel human collectin CL-K1”, Microbiol Immunol , Vol.50, No.12, pp.1001–1013, 2006. DOI:https://doi.org/10.1111/j.1348-0421.2006.tb03868.x| |
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| 13 |
Scavenger receptor collectin placenta 1 (CL-P1) predominantly mediates zymosan phagocytosis by human vascular endothelial cells.  |
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| 14 |
N. Roy, K. Ohtani, Y. Matsuda, K. Mori, I. Hwang, “Collectin CL-P1 utilizes C-reactive protein for complement activation”, Biochim Biophys Acta , Vol.1860, No6, pp.1118-1128. Jun. 2016. DOI: http://doi.org/10.1016/j.bbagen.2016.02.012 |
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| 15 |
Y. U. Kim, K. Ohtani, K. Mori, S. J. Jang, · Y. Suzuki, “Gene Regulation Function of the Three Specificity Protein‐1 (Sp1) within the Human Collectin Placenta‐1Proximal Promoter”, Genes & Genomics, Vol.33, No.3, pp.275-283, Jun 2011. DOI: http://doi.org/10.1007/s13258-011-0001-9 |
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| 16 |
Flavonoids: antioxidants or signalling molecules?  |
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| 17 |
Quercetin: a pleiotropic kinase inhibitor against cancer.  |
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| 18 |
G. Juergenliemk, K. Boje, S. Huewel, C. Lohmann, H. J. Galla, "In vitro studies indicate that miquelianin (quercetin 3-O-beta-D-glucuronopyranoside) is able to reach the CNS from the small intestine", Planta Medica, Vol.69 No.11, pp.1013–1017, Nov. 2003. DOI: http://doi.org/10.1055/s-2003-45148 |
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| 19 |
A. Massi, O. Bortolini, D. Ragno, T. Bernardi, G. Sacchetti, “Research Progress in the Modification of Quercetin Leading to Anticancer Agents”, Molecules. Vol.29, No.22, pii: E1270, Aug. 2017. DOI: http://doi.org/10.3390/molecules22081270 , Review. |
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| 20 |
CK2 and PI3K are direct molecular targets of quercetin in chronic lymphocytic leukaemia.  |
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| 21 |
Isolation and Expression of a cDNA Encoding Renilla reniformis Luciferase  |
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| 22 |
A pitfall of using a second plasmid to determine transfection efficiency.  |
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