14 results on '"Sigel, H"'
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2. Stabilities of complexes formed between lead(II) and simple phosphonate or phosphate monoester ligands including some pyrimidine-nucleoside 5′-monophosphates (CMP2–, UMP2–, dTMP2–)
3. Magnesium complexes of the antiviral 9-[2-(phosphonomethoxy)ethyl]adenine (PMEA) and of its 1-, 3-, and 7-deaza analogues in aqueous solution
4. Cis-diammineplatinum(II) forms a macrochelate with 2′-deoxycytidine 5′-monophosphate (dCMP2–)! Reactivity and acid-base properties of cis-Pt(NH3)2(dCMP)
5. Stability of metal ion complexes formed with methyl phosphate and hydrogen phosphate
6. Facilitated formation of high-molecular-weight associates of adenosine 5′-triphosphate (ATP)
7. Radionuclide ventriculography and hemodynamic evaluation by right heart catheterization with exercise for assessing the functional significance of coronary artery stenoses: A Comparative Study
8. The effect of AR-L 115 BS on left ventricular function in patients with coronary heart disease and dilated cardiomyopathy
9. Cu2+-Adeninring-Wechselwirkung in den Cu2+-Komplexen von Adenosin-5′- und Adenosin-3′-monophosphat
10. Über Struktur und Aktivität der den H2O2-Zerfall katalysierenden Cu2+-Komplexe. — VI. Differenzierung von nativer RNS und nativer DNS bzw. denaturierter DNS auf Grund der katalytischen Eigenschaften
11. Strukturspezifischer Abbau von Polypeptid-Metall-Komplexen. V. Abbau des Cu2+-Polymyxin-B-Komplexes durch NH2OH
12. Strukturspezifischer Abbau von Polypeptid-Metall-Komplexen III 1. Abbau des Ni2+-Angiotensin II-Komplexes durch H2O2 2
13. Strukturspezifischer oxydativer abbau von peptid-metall-komplexen
14. Stability of metal ion-thioether complexes
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