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Synthesis and characterisation of platinum(II) complexes with the antiviral agents Ftorafur and Furavir

机译:具有抗病毒药Ftorafur和Furavir的铂(II)配合物的合成和表征

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Novel hybrid drugs, [Pt(NH_3)_2(Ftorafur-H_2] (1) and [Pt(NH_3)_2(Furavir)_2](NO_3)_2 (2), have been prepared by reaction of Ftorafur (Ft) and Furavir (Fr) with cisplatin. Ftorafur, a prodrug of 5-fluorouracil containing a2-tetrahydrofuranyl radical linked to N(1), is stable when coordinated to platinum through N(3) but the N(1)-furanyl bond is hydrolysed by platinum substrates (such as [Pt(NH_3)_2(H_2O)_2]~(2+) and [Pt(dien)_2(H_2O)_2]~(2+)) in the free state. In contrast, Furavir, a derivative of N(2)-acetyl-acyclovir carrying a 2-tetrahydroffuranyl radical lined to the terminal part of the (2-oxy)-ethoxymethyl chain bound to N(9), when coordinated to platinum through N(7), readily undergoes hydrolysis of the O-furanyl bond releasing 2-hydroxytetrahdrofuran and leaving N(2)-acetyl-acyclovir coordinated to platinum. It is suggested that the hydrolysis of the X-furanyl bond (X = N or O for Ftorafur and Furavir, respectively), which is catalysed by Lewis acids, is favoured in the latter case by the long and flexible (2-oxy)-ethoxymethyl chain which allows the metal centre to reach over the furanyl moiety. This is not possible in the case of the Ftorafur derivative. This investigation has demonstrated the possibility of controlling the hydrolysis of a coordinated substrate in a multifunctional platinum drug by a suitable choice of the position of the breakable bond with respect to the metal centre.
机译:通过Ftorafur(Ft)和Furavir的反应制备了新型杂种药物[Pt(NH_3)_2(Ftorafur-H_2](1)和[Pt(NH_3)_2(Furavir)_2](NO_3)_2(2)。 (Fr)与顺铂Ftorafur,一种含有与N(1)连接的a2-四氢呋喃基的5-氟尿嘧啶的前药,当通过N(3)与铂配位时是稳定的,但N(1)-呋喃基键被铂水解游离态的底物(例如[Pt(NH_3)_2(H_2O)_2]〜(2+)和[Pt(dien)_2(H_2O)_2]〜(2+))。相反,Furavir是一种衍生物N(2)-乙酰基-阿昔洛韦带有2-四氢呋喃基的内衬,该基团衬里结合到N(9)的(2-氧基)-乙氧基甲基链的末端,当通过N(7)与铂配位时,很容易水解的O-呋喃基键释放2-羟基四氢呋喃并留下N(2)-乙酰基-阿昔洛韦与铂配位,这表明X-呋喃基键的水解(对于Ftorafur和Furavir,分别为X = N或O),在路易斯酸的催化下,后者受到青睐在这种情况下,通过长且柔性的(2-氧基)-乙氧基甲基链可以使金属中心到达呋喃基部分。在Ftorafur衍生物的情况下,这是不可能的。该研究表明,通过适当选择易断裂键相对于金属中心的位置,可以控制多功能铂药物中配位底物的水解。

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