Crystallography Open Database
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Result: there are 9 entries in the selection
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Searching journal of publication like 'Journal of medicinal chemistry' volume of publication is 65
COD ID | Links | Formula | Space group | Cell parameters | Cell volume | Bibliography |
---|---|---|---|---|---|---|
1566548 | CIF | C33 H39 Cl Cu N8 O3 | C 1 2/c 1 | 37.667; 10.5159; 19.22 90; 118.948; 90 | 6661.9 | Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B. Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile. Journal of medicinal chemistry, 2022, 65, 2238-2261 |
1566549 | CIF | C26 H23 Br N6 O | P -1 | 12.22; 12.7328; 16.424 76.485; 82.598; 67.698 | 2296.6 | Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B. Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile. Journal of medicinal chemistry, 2022, 65, 2238-2261 |
1566550 | CIF | C12 H16 N2 O2 | P -1 | 7.7366; 7.9072; 10.7395 99.872; 102.594; 113.64 | 562.21 | Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B. Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile. Journal of medicinal chemistry, 2022, 65, 2238-2261 |
1566736 | CIF | C15 H14 O3 | P 21 21 21 | 5.5437; 8.4551; 52.42 90; 90; 90 | 2457.06 | Müller, Christoph; Gleixner, Jakob; Tahk, Maris-Johanna; Kopanchuk, Sergei; Laasfeld, Tõnis; Weinhart, Michael; Schollmeyer, Dieter; Betschart, Martin U.; Lüdeke, Steffen; Koch, Pierre; Rinken, Ago; Keller, Max Structure-Based Design of High-Affinity Fluorescent Probes for the Neuropeptide Y Y<sub>1</sub> Receptor. Journal of medicinal chemistry, 2022, 65, 4832-4853 |
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