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1
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0030049794
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The emerging technique of molecular imprinting and its future impact on biotechnology
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Mosbach K., Ramström O. The emerging technique of molecular imprinting and its future impact on biotechnology. Biotechnology. 14:1996;163-170.
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(1996)
Biotechnology
, vol.14
, pp. 163-170
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Mosbach, K.1
Ramström, O.2
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2
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0028873867
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Molecular imprinting in cross-linked materials with the aid of molecular templates - A way towards artificial antibodies
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Wulff G. Molecular imprinting in cross-linked materials with the aid of molecular templates - a way towards artificial antibodies. Angew Chem Int Ed. 34:1995;1812-1832.
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(1995)
Angew Chem Int Ed
, vol.34
, pp. 1812-1832
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Wulff, G.1
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3
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0000969608
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Molecular imprinting of synthetic network polymers: The de novo synthesis of macromolecular binding and catalytic sites
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Shea K.J. Molecular imprinting of synthetic network polymers: the de novo synthesis of macromolecular binding and catalytic sites. Trends Polym Sci. 2:1994;166-173.
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(1994)
Trends Polym Sci
, vol.2
, pp. 166-173
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Shea, K.J.1
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5
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0028913526
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Molecular imprinting used for chiral separations
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Kempe M., Mosbach K. Molecular imprinting used for chiral separations. J Chromatogr A. 694:1995;3-13.
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(1995)
J Chromatogr a
, vol.694
, pp. 3-13
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Kempe, M.1
Mosbach, K.2
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6
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0028227323
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Direct drug determination by selective sample enrichment on an imprinted polymer
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Sellergren B. Direct drug determination by selective sample enrichment on an imprinted polymer. Anal Chem. 66:1994;1578-1582.
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(1994)
Anal Chem
, vol.66
, pp. 1578-1582
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Sellergren, B.1
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7
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0031044627
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Molecularly imprinted solid phase extraction of atrazine from beef liver extracts
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Muldoon M.T., Stanker L.H. Molecularly imprinted solid phase extraction of atrazine from beef liver extracts. Anal Chem. 69:1997;803-808.
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(1997)
Anal Chem
, vol.69
, pp. 803-808
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Muldoon, M.T.1
Stanker, L.H.2
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8
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0000329874
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Screening of a combinatorial steroid library using molecularly imprinted polymers
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Ramström O., Ye L., Krook M., Mosbach K. Screening of a combinatorial steroid library using molecularly imprinted polymers. Anal Commun. 35:1998;9-11.
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(1998)
Anal Commun
, vol.35
, pp. 9-11
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Ramström, O.1
Ye, L.2
Krook, M.3
Mosbach, K.4
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9
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0027447855
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Drug assay using antibody mimics made by molecular imprinting
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Vlatakis G., Andersson L.I., Muller R., Mosbach K. Drug assay using antibody mimics made by molecular imprinting. Nature. 361:1993;645-647.
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(1993)
Nature
, vol.361
, pp. 645-647
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Vlatakis, G.1
Andersson, L.I.2
Muller, R.3
Mosbach, K.4
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10
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0029783339
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Towards artificial antibodies prepared by molecular imprinting
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Ansell R.J., Ramström O., Mosbach K. Towards artificial antibodies prepared by molecular imprinting. Clin Chem. 42:1996;1506-1512.
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(1996)
Clin Chem
, vol.42
, pp. 1506-1512
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Ansell, R.J.1
Ramström, O.2
Mosbach, K.3
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11
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21544458376
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Molecular imprinting: New possibilities for sensor technology
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Kriz D., Ramström O., Mosbach K. Molecular imprinting: new possibilities for sensor technology. Anal Chem. 69:1997;345-349.
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(1997)
Anal Chem
, vol.69
, pp. 345-349
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Kriz, D.1
Ramström, O.2
Mosbach, K.3
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12
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0025730616
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At the crossroads of chemistry and immunology: Catalytic antibodies
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Lerner R.A., Benkovic S.J., Schultz P.G. At the crossroads of chemistry and immunology: catalytic antibodies. Science. 252:1991;659-667.
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(1991)
Science
, vol.252
, pp. 659-667
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Lerner, R.A.1
Benkovic, S.J.2
Schultz, P.G.3
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13
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0028071561
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Catalytic antibodies
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Hilvert D. Catalytic antibodies. Curr Opin Struct Biol. 4:1994;612-617.
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(1994)
Curr Opin Struct Biol
, vol.4
, pp. 612-617
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Hilvert, D.1
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17
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0000433547
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Enzyme-analogue built polymers. 26. Enantioselective synthesis of amino acids using polymers possessing chiral cavities obtained by an imprinting procedure with template molecules
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Wulff G., Vietmeier J. Enzyme-analogue built polymers. 26. Enantioselective synthesis of amino acids using polymers possessing chiral cavities obtained by an imprinting procedure with template molecules. Makromol Chem. 190:1989;1727-1735.
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(1989)
Makromol Chem
, vol.190
, pp. 1727-1735
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Wulff, G.1
Vietmeier, J.2
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18
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0033591862
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Imprinted polymers as protecting groups for regioselective modification of polyfunctional substrates
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A highly selective polymer-assisted steroid acetylation is described
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Alexander C., Smith C.R., Whitcombe M.J., Vulfson E.N. Imprinted polymers as protecting groups for regioselective modification of polyfunctional substrates. J Am Chem Soc. 121:1999;6640-6651. A highly selective polymer-assisted steroid acetylation is described.
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(1999)
J Am Chem Soc
, vol.121
, pp. 6640-6651
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Alexander, C.1
Smith, C.R.2
Whitcombe, M.J.3
Vulfson, E.N.4
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19
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0033588808
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Use of molecularly imprinted polymers in a biotransformation process
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The use of imprinted matrices to drive unfavourable equilibria is described
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Ye L., Ramström O., Ansell R.J., Mansson M.-O., Mosbach K. Use of molecularly imprinted polymers in a biotransformation process. Biotech Bioeng. 64:1999;650-655. The use of imprinted matrices to drive unfavourable equilibria is described.
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(1999)
Biotech Bioeng
, vol.64
, pp. 650-655
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Ye, L.1
Ramström, O.2
Ansell, R.J.3
Mansson, M.-O.4
Mosbach, K.5
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20
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0000546426
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Enzyme-mimicking polymers exhibiting specific substrate binding and catalytic functions
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Leonhardt A., Mosbach K. Enzyme-mimicking polymers exhibiting specific substrate binding and catalytic functions. React Polym. 6:1987;285-290.
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(1987)
React Polym
, vol.6
, pp. 285-290
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Leonhardt, A.1
Mosbach, K.2
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21
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0000047711
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Molecularly imprinted polymers facilitating a β-elimination reaction
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Mü1ler R., Andersson L.I., Mosbach K. Molecularly imprinted polymers facilitating a β-elimination reaction. Makromol Chem Rapid Commun. 14:1993;637-641.
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(1993)
Makromol Chem Rapid Commun
, vol.14
, pp. 637-641
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Müller, R.1
Andersson, L.I.2
Mosbach, K.3
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22
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0028231548
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Designed catalysts. A synthetic network polymer that catalyzes the dehydrofluorination of 4-fluoro-4-(p-nitrophenyl)butan-2-one
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Beach J.V., Shea K.J. Designed catalysts. A synthetic network polymer that catalyzes the dehydrofluorination of 4-fluoro-4-(p-nitrophenyl)butan-2-one. J Am Chem Soc. 116:1994;379-380.
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(1994)
J Am Chem Soc
, vol.116
, pp. 379-380
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Beach, J.V.1
Shea, K.J.2
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23
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0032276354
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Catalysis of benzisoxazole isomerization by molecularly imprinted polymers
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This paper describes the molecularly imprinted material displaying the highest rate enhancement to date
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Liu X.-C., Mosbach K. Catalysis of benzisoxazole isomerization by molecularly imprinted polymers. Macromol Rapid Commun. 19:1999;671-674. This paper describes the molecularly imprinted material displaying the highest rate enhancement to date.
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(1999)
Macromol Rapid Commun
, vol.19
, pp. 671-674
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Liu, X.-C.1
Mosbach, K.2
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24
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37049081498
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Enzyme-like enantioselective catalysis over chiral 'molecular footprint' cavities on a silica (alumina) gel surface
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Morihara K., Kurokawa M., Kamata Y., Shimada T. Enzyme-like enantioselective catalysis over chiral 'molecular footprint' cavities on a silica (alumina) gel surface. Chem Commun. 1992;358-360.
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(1992)
Chem Commun
, pp. 358-360
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Morihara, K.1
Kurokawa, M.2
Kamata, Y.3
Shimada, T.4
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25
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37049079901
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Molecular imprinting of a transition state analogue leads to a polymer exhibiting esterolytic activity
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Robinson D.K., Mosbach K. Molecular imprinting of a transition state analogue leads to a polymer exhibiting esterolytic activity. Chem Commun. 1989;969-970.
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(1989)
Chem Commun
, pp. 969-970
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Robinson, D.K.1
Mosbach, K.2
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26
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0028517465
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Homogenous esterolytic catalysis of a polymer prepared by molecular imprinting of a transition state analogue
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Ohkubo K., Urata Y., Hirota S., Honda Y., Fujishita Y., Sagawa T. Homogenous esterolytic catalysis of a polymer prepared by molecular imprinting of a transition state analogue. J Mol Catal. 93:1994;189-193.
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(1994)
J Mol Catal
, vol.93
, pp. 189-193
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Ohkubo, K.1
Urata, Y.2
Hirota, S.3
Honda, Y.4
Fujishita, Y.5
Sagawa, T.6
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27
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0007145594
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Catalytic properties of novel L-histidyl group-introduced polymers imprinted by a transition state analogue in the hydrolysis of amino acid esters
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Ohkubo K., Urata Y., Hirota S., Funakoshi Y., Sagawa T., Usui S., Yoshinaga K. Catalytic properties of novel L-histidyl group-introduced polymers imprinted by a transition state analogue in the hydrolysis of amino acid esters. J Mol Catal A. 101:1995;L111-L114.
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(1995)
J Mol Catal a
, vol.101
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Ohkubo, K.1
Urata, Y.2
Hirota, S.3
Funakoshi, Y.4
Sagawa, T.5
Usui, S.6
Yoshinaga, K.7
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28
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37049074498
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High esterolytic activity of a novel water-soluble polymer catalyst imprinted by a transition-state analogue
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Ohkubo K., Funakoshi Y., Urata Y., Hirota S., Usui S., Sagawa T. High esterolytic activity of a novel water-soluble polymer catalyst imprinted by a transition-state analogue. Chem Commun. 1995;2143-2144.
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(1995)
Chem Commun
, pp. 2143-2144
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Ohkubo, K.1
Funakoshi, Y.2
Urata, Y.3
Hirota, S.4
Usui, S.5
Sagawa, T.6
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29
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0028030733
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Enantioselective ester hydrolysis catalysed by imprinted polymers
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Sellergren B., Shea K. Enantioselective ester hydrolysis catalysed by imprinted polymers. Tetrahedron - Asymmetry. 5:1994;1403-1406.
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(1994)
Tetrahedron - Asymmetry
, vol.5
, pp. 1403-1406
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Sellergren, B.1
Shea, K.2
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30
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0001166036
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Molecularly imprinted hydrogels exhibit chymotrypsin-like activity
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Karmalkar R.N., Kulkarni M.G., Mashelkar R.A. Molecularly imprinted hydrogels exhibit chymotrypsin-like activity. Macromolecules. 29:1996;1366-1368.
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(1996)
Macromolecules
, vol.29
, pp. 1366-1368
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Karmalkar, R.N.1
Kulkarni, M.G.2
Mashelkar, R.A.3
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31
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0030821034
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Enzyme models based on molecularly imprinted polymers with strong esterase activity
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Wulff G., Gross T., Schonfeld R. Enzyme models based on molecularly imprinted polymers with strong esterase activity. Angew Chem Int Ed. 36:1997;1962-1964.
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(1997)
Angew Chem Int Ed
, vol.36
, pp. 1962-1964
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Wulff, G.1
Gross, T.2
Schonfeld, R.3
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32
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0031513552
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Studies towards a tailor made catalyst for the Diels Alder reaction using the technique of molecular imprinting
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Liu X.C., Mosbach K. Studies towards a tailor made catalyst for the Diels Alder reaction using the technique of molecular imprinting. Macromol Rapid Commun. 18:1997;609-615.
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(1997)
Macromol Rapid Commun
, vol.18
, pp. 609-615
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Liu, X.C.1
Mosbach, K.2
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33
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0000843617
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Molecular imprinting of the coenzyme-substrate analogue N-pyridoxyl-L-phenylalaninanilide
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Andersson L.I., Mosbach K. Molecular imprinting of the coenzyme-substrate analogue N-pyridoxyl-L-phenylalaninanilide. Makromol Chem Rapid Commun. 10:1989;491-495.
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(1989)
Makromol Chem Rapid Commun
, vol.10
, pp. 491-495
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Andersson, L.I.1
Mosbach, K.2
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34
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0029742633
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Carbon carbon bond formation using substrate selective catalytic polymers prepared by molecular imprinting: An artificial class II aldolase
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Matsui J., Nicholls I.A., Karube I., Mosbach K. Carbon carbon bond formation using substrate selective catalytic polymers prepared by molecular imprinting: an artificial class II aldolase. J Org Chem. 61:1996;5414-5417.
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(1996)
J Org Chem
, vol.61
, pp. 5414-5417
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Matsui, J.1
Nicholls, I.A.2
Karube, I.3
Mosbach, K.4
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35
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85031620163
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WO9414835-A
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Mosbach, K., Nicholls, I.A., Ramström, O.: Use of molecularly imprinted polymers for stere o- and regioselective synthesis, especially useful for peptide synthesis. 1994; WO9414835-A.
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(1994)
Use of Molecularly Imprinted Polymers for Stere O- And Regioselective Synthesis, Especially Useful for Peptide Synthesis
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Mosbach, K.1
Nicholls, I.A.2
Ramström, O.3
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