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    Bis(pyrazolyl) palladium(II), platinum(II) and gold(III) complexes: Syntheses, molecular structures and substitution reactions with L-cysteine

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    Keter_ICA_2009.pdf (1.182Mb)
    Date
    2009
    Author
    Keter, F.K.
    Ojwach, S.O.
    Oyetunji, O.A.
    Guzei, I.A.
    Darkwa, J.
    Publisher
    Elsevier Science Ltd, www.elsevier.com/locate/ica
    Link
    http://ac.els-cdn.com/S0020169308006993/1-s2.0-S0020169308006993-main.pdf?_tid=6ba78650-136f-11e2-a410-00000aab0f02&acdnat=1349938184_2795d7e8cd597c5022ef689c82b51682
    Type
    Published Article
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    Abstract
    A series of pyrazolyl palladium(II), platinum(II) and gold(III) complexes, [PdCl2(3,5-R2bpza)] {R = H (1), R = Me (2), bpza = bis-pyrazolyl acetic acid}, [PtCl2(3,5-R2bpza)] {R = H (3a), R = Me (4)}, [AuCl2(3,5- R2bpza)]Cl {R = H (5a), R = Me (6a)} and [PdCl2(3,5-R2bpzate)] {R = Me (7)} have been synthesised and structurally characterised. Single crystal X-ray crystallography showed that the pyrazolyl ligands exhibit N^N-coordination with the metals. Anticancer activities of six complexes 1–6a were investigated against CHO cells and were found to have low activities. Substitution reactions of selected complexes 1, 2, 3a and 5a with L-cysteine show that the low anticancer activities compounds and that the rate of substitution with sulfur-containing compounds is not the cause of the low anticancer activities.
    URI
    http://hdl.handle.net/10311/1032
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    • Research articles (Dept of Chemistry) [85]

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