Roy Mithun, Pathak Biswarup, Patra Ashis K, Jemmis Eluvathingal D, Nethaji Munirathinam, Chakravarty Akhil R
Department of Inorganic and Physical Chemistry, Indian Institute of Science, Bangalore, India.
Inorg Chem. 2007 Dec 24;46(26):11122-32. doi: 10.1021/ic701450a. Epub 2007 Nov 29.
Dipyridoquinoxaline (dpq) complexes of bivalent 3d-metal ions, viz., FeII(dpq)32 (1), CoII(dpq)32 (2), NiII(dpq)32 (3), CuII(dpq)2(H2O)2 (4), ZnII(dpq)32 (5), and ZnII(dpq)2(DMF)22 (5a) (DMF = N,N-dimethylformamide), are prepared and their photoinduced DNA cleavage activity studied. Structural characterization for the complexes 1 and 5a is done by single-crystal X-ray crystallography. All the complexes show efficient binding propensity to calf thymus DNA with a binding constant (K) value of approximately 10(5) M(-1). Complexes 1, 2, and 4 show metal-based cyclic voltammetric responses at 1.2, 0.4, and 0.09 V (vs SCE) in DMF 0.1 M Bun4N assignable to the respective FeIII/FeII, CoIII/CoII, and CuII/CuI couples. The NiII and ZnII complexes do not show any metal-based redox process. The dpq-based reductions are observed in the potential range of -1.0 to -1.7 V vs SCE. DNA melting and viscosity data indicate the groove-binding nature of the complexes. Control experiments using distamycin-A suggest a minor groove-binding propensity of the complexes. The complexes exhibit photoinduced cleavage of supercoiled pUC19 DNA in UV light of 365 nm. The diamagnetic d6-FeII and d10-ZnII complexes are cleavage-inactive on irradiation with visible light. The paramagnetic d7-CoII and d9-CuII complexes exhibit efficient DNA cleavage activity on photoirradiation at their respective d-d band. The paramagnetic d8-NiII complex displays only minor DNA cleavage activity on irradiation at its d-d band. The DNA cleavage reactions at visible light under aerobic conditions involve the formation of hydroxyl radical. The CoII complex shows photocleavage of DNA under an argon atmosphere. Theoretical calculations on the complexes suggest a photoredox pathway in preference to a type-2 process forming singlet oxygen for the visible-light-induced DNA cleavage activity of the 3d-metal complexes. The theoretical data also predict that the photoredox pathway is favorable for the 3d7-CoII and 3d9-CuII complexes to exhibit DNA cleavage activity, while the analogous 3d6-FeII and 3d8-NiII complexes are energetically unfavorable for the exhibition of such activity under visible light. The CoII and CuII complexes are better suited for designing and developing new metal-based PDT agents than their cleavage-inactive FeII, NiII, and ZnII analogues.
制备了二价3d金属离子的二吡啶并喹喔啉(dpq)配合物,即FeII(dpq)32(1)、CoII(dpq)32(2)、NiII(dpq)32(3)、CuII(dpq)2(H2O)2(4)、ZnII(dpq)32(5)和ZnII(dpq)2(DMF)22(5a)(DMF = N,N-二甲基甲酰胺),并研究了它们的光诱导DNA切割活性。通过单晶X射线晶体学对配合物1和5a进行了结构表征。所有配合物对小牛胸腺DNA都表现出有效的结合倾向,结合常数(K)值约为10(5) M(-1)。配合物1、2和4在0.1 M Bun4N的DMF中,于1.2、0.4和0.09 V(相对于SCE)处显示出基于金属的循环伏安响应,分别归因于各自的FeIII/FeII、CoIII/CoII和CuII/CuI电对。NiII和ZnII配合物未显示任何基于金属的氧化还原过程。在相对于SCE为-1.0至-1.7 V的电位范围内观察到基于dpq的还原。DNA熔解和粘度数据表明配合物的沟槽结合性质。使用distamycin-A进行的对照实验表明配合物具有小沟结合倾向。这些配合物在365 nm紫外光下表现出超螺旋pUC19 DNA的光诱导切割。抗磁性的d6-FeII和d10-ZnII配合物在可见光照射下无切割活性。顺磁性的d7-CoII和d9-CuII配合物在其各自的d-d带进行光照射时表现出有效的DNA切割活性。顺磁性的d8-NiII配合物在其d-d带照射时仅表现出轻微的DNA切割活性。有氧条件下可见光下的DNA切割反应涉及羟基自由基的形成。CoII配合物在氩气氛下显示出DNA的光切割。对配合物的理论计算表明,对于3d金属配合物的可见光诱导DNA切割活性,光氧化还原途径优于形成单线态氧的2型过程。理论数据还预测,光氧化还原途径有利于3d7-CoII和3d9-CuII配合物表现出DNA切割活性,而类似的3d6-FeII和3d8-NiII配合物在可见光下表现出这种活性在能量上是不利的。与无切割活性的FeII、NiII和ZnII类似物相比,CoII和CuII配合物更适合设计和开发新型金属基光动力疗法药物。