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Antitumor Active Platinum-Blue Complexes

VII. Antitumor Active Platinum-Blue Complexes References... [Pg.375]

Pinacolone, o-(diphenylphosphino)benzoyl-coordination chemistry, 401 Piperidine, IV-hydroxy-metal complexes, 797 pA a values azole ligands, 77 Plant roots amino acids, 962 carboxylic acids, 962 Plastocyanin copper binding site, 557 copper(II) complexes, 772 copper(II) site in, 770 Platinum, dichlorobis(benzonitrile)-IR spectrum, 264 Platinum, cis-dichlorodianunine-antitumor activity, 34, 979 Platinum, ethylenebis(triphenylphosphine)-reactions with 5,6-dimethyl-2,l,3-benzothiadiazole, 194 Platinum blue formation, 265 Platinum complexes acetylacetone reactions, 380 amides, 491 amidines... [Pg.1092]

Since the discovery of the antitumor activity of m-PtCNFhuC (cisplatin, cd-DDP) by Rosenberg et al. [1], the interactions of cisplatin with nucleotides and nucleobases have attracted attention towards gaining an understanding of the mechanism of the antitumor activity of cisplatin at a molecular level. In the course of such studies, dark-blue platinum complexes called platinum blues were obtained when hydrolysis products of cis-... [Pg.455]


See other pages where Antitumor Active Platinum-Blue Complexes is mentioned: [Pg.421]    [Pg.421]    [Pg.422]    [Pg.383]    [Pg.387]    [Pg.456]    [Pg.569]    [Pg.95]    [Pg.224]    [Pg.334]   


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Antitumor activity

Antitumor activity platinum complexes

Antitumor activity, platinum-blue complexes

Antitumor activity, platinum-blue complexes

Antitumor complexes

Antitumoral activity

Blue complex

Complexes antitumor activity

Platinum activation

Platinum antitumor activity

Platinum blues

Platinum-blues antitumor active

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