author_facet Gebauer, Sabine
Knütter, Ilka
Hartrodt, Bianka
Brandsch, Matthias
Neubert, Klaus
Thondorf, Iris
Gebauer, Sabine
Knütter, Ilka
Hartrodt, Bianka
Brandsch, Matthias
Neubert, Klaus
Thondorf, Iris
author Gebauer, Sabine
Knütter, Ilka
Hartrodt, Bianka
Brandsch, Matthias
Neubert, Klaus
Thondorf, Iris
spellingShingle Gebauer, Sabine
Knütter, Ilka
Hartrodt, Bianka
Brandsch, Matthias
Neubert, Klaus
Thondorf, Iris
Journal of Medicinal Chemistry
Three-Dimensional Quantitative Structure−Activity Relationship Analyses of Peptide Substrates of the Mammalian H+/Peptide Cotransporter PEPT1
Drug Discovery
Molecular Medicine
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title Three-Dimensional Quantitative Structure−Activity Relationship Analyses of Peptide Substrates of the Mammalian H+/Peptide Cotransporter PEPT1
title_unstemmed Three-Dimensional Quantitative Structure−Activity Relationship Analyses of Peptide Substrates of the Mammalian H+/Peptide Cotransporter PEPT1
title_full Three-Dimensional Quantitative Structure−Activity Relationship Analyses of Peptide Substrates of the Mammalian H+/Peptide Cotransporter PEPT1
title_fullStr Three-Dimensional Quantitative Structure−Activity Relationship Analyses of Peptide Substrates of the Mammalian H+/Peptide Cotransporter PEPT1
title_full_unstemmed Three-Dimensional Quantitative Structure−Activity Relationship Analyses of Peptide Substrates of the Mammalian H+/Peptide Cotransporter PEPT1
title_short Three-Dimensional Quantitative Structure−Activity Relationship Analyses of Peptide Substrates of the Mammalian H+/Peptide Cotransporter PEPT1
title_sort three-dimensional quantitative structure−activity relationship analyses of peptide substrates of the mammalian h<sup>+</sup>/peptide cotransporter pept1
topic Drug Discovery
Molecular Medicine
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spelling Gebauer, Sabine Knütter, Ilka Hartrodt, Bianka Brandsch, Matthias Neubert, Klaus Thondorf, Iris 0022-2623 1520-4804 American Chemical Society (ACS) Drug Discovery Molecular Medicine http://dx.doi.org/10.1021/jm030976x Three-Dimensional Quantitative Structure−Activity Relationship Analyses of Peptide Substrates of the Mammalian H<sup>+</sup>/Peptide Cotransporter PEPT1 Journal of Medicinal Chemistry
spellingShingle Gebauer, Sabine, Knütter, Ilka, Hartrodt, Bianka, Brandsch, Matthias, Neubert, Klaus, Thondorf, Iris, Journal of Medicinal Chemistry, Three-Dimensional Quantitative Structure−Activity Relationship Analyses of Peptide Substrates of the Mammalian H+/Peptide Cotransporter PEPT1, Drug Discovery, Molecular Medicine
title Three-Dimensional Quantitative Structure−Activity Relationship Analyses of Peptide Substrates of the Mammalian H+/Peptide Cotransporter PEPT1
title_full Three-Dimensional Quantitative Structure−Activity Relationship Analyses of Peptide Substrates of the Mammalian H+/Peptide Cotransporter PEPT1
title_fullStr Three-Dimensional Quantitative Structure−Activity Relationship Analyses of Peptide Substrates of the Mammalian H+/Peptide Cotransporter PEPT1
title_full_unstemmed Three-Dimensional Quantitative Structure−Activity Relationship Analyses of Peptide Substrates of the Mammalian H+/Peptide Cotransporter PEPT1
title_short Three-Dimensional Quantitative Structure−Activity Relationship Analyses of Peptide Substrates of the Mammalian H+/Peptide Cotransporter PEPT1
title_sort three-dimensional quantitative structure−activity relationship analyses of peptide substrates of the mammalian h<sup>+</sup>/peptide cotransporter pept1
title_unstemmed Three-Dimensional Quantitative Structure−Activity Relationship Analyses of Peptide Substrates of the Mammalian H+/Peptide Cotransporter PEPT1
topic Drug Discovery, Molecular Medicine
url http://dx.doi.org/10.1021/jm030976x