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The dinuclear Cu(I) complex [Cu2(1,2-bis(2'-pyridylmethyleneamino)ethane)(PPh3)2I2] features a chelating bis(Schiff base) ligand (L6) that coordinates two Cu(I) centers via pyridyl and imine nitrogen atoms, forming a dimeric structure. It exhibits potential DNA-binding capabilities through partial intercalation and groove binding at AT-rich regions, driven by enthalpy-favored interactions involving van der Waals and hydrophobic forces. The complex also demonstrates notable cytotoxicity against breast cancer cells (MCF-7), surpassing cisplatin in efficacy. Additionally, structurally similar Cu(I) complexes with analogous ligands exhibit photoluminescence attributed to intraligand π-π* transitions mixed with metal-to-ligand charge transfer (MLCT) character.

884482-55-7

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884482-55-7 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 884482-55-7 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 8,8,4,4,8 and 2 respectively; the second part has 2 digits, 5 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 884482-55:
(8*8)+(7*8)+(6*4)+(5*4)+(4*8)+(3*2)+(2*5)+(1*5)=217
217 % 10 = 7
So 884482-55-7 is a valid CAS Registry Number.

884482-55-7Downstream Products

884482-55-7Relevant academic research and scientific papers

The role of both intercalation and groove binding at AT-rich DNA regions in the interaction process of a dinuclear Cu(I) complex probed by spectroscopic and simulation analysis

Shahabadi, Nahid,Shiri, Farshad,Hadidi, Saba,Farshadfar, Kaveh,Darbemamieh, Maryam,Mark Roe

, (2021)

In this research paper, the synthesis process and characterization of a dinuclear Cu(I) phosphine complex, as well as spectroscopic and simulation analysis of its interaction with DNA helix, are presented. The monoclinic phase [Cu(PPh3)(L0.5)(I)]2 with a tetrahedral molecular geometry was elucidated based on X-ray single-crystal diffraction data. The significant association constant (6.88 × 105) and remarkable hyperchromism as obtained from UV–Visible spectra indicated a high binding affinity of the Cu(I) complex for DNA, which is in accordance with both intercalation and groove binding modes. The results of competitive fluorescence experiments along with molecular docking simulation proved that the planar part of the complex can insert into the core of adenine nucleobases and compete with methylene blue for the intercalative binding sites, while the bulky substituent binds in the minor groove of DNA via replacement of Hoechst molecules at A-T rich regions. According to thermodynamic parameters (the negative values of ΔH° and ΔS°), it is quite clear that the interaction process is enthalpy-favored while disfavored by entropy and van der Walls and hydrophobic forces play a major role in stabilization of right-handed B-DNA form during the interaction, as shown in the circular dichroism spectra. Based on the above findings partial intercalation mode at A-T rich region of DNA was proposed. The cytotoxicity and apoptosis results on MCF-7 cell line indicated positive effect of the Cu(I) complex in controlling growth and viability of breast cancer more than cisplatin.

Structural variations and spectroscopic properties of copper(I) complexes with bis(schiff base) ligands

Zhou, Xin-Hui,Wu, Tao,Li, Dan

, p. 1442 - 1448 (2006)

Six copper(I) complexes {[Cu2(L1)(PPh3) 2I2]·2CH2Cl2}n (1), {[Cu2(L2)(PPh3)2]BF4} n (2), [Cu2(L3)(PPh3)4I 2]·2CH2Cl2 (3), [Cu2(L4) (PPh3)4I2] (4), [Cu2(L5)(PPh 3)2I2] (5) and [Cu2(L6)(PPh 3)2I2] (6) have been prepared by reactions of bis(schiff base) ligands: pyridine-4-carbaldehyde azine (L1), 1,2-bis(4′-pyridylmethyleneamino)ethane (L2), pyridine-3-carbaldehyde azine (L3), 1,2-bis(3′-pyridylmethyleneamino)ethane (L4), pyridine-2-carbaldehyde azine (L5), 1,2-bis(2′-pyridylmethyleneamino) ethane (L6) with PPh3 and copper(I) salt, respectively. Ligand L1 or L2 links (PPh3)2Cu2(μ-I)2 units to form an infinite coordination polymer chain. Ligand 3 or 4 acts as a monodentate ligand to coordinate two copper(I) atoms yielding a dimer. Ligand 5 or 6 chelates two copper(I) atoms using pyridyl nitrogen and imine nitrogen to form a dimer. Complexes 1-4 exhibit photoluminescence in the solid state at room temperature. The emission has been attributed to be intraligand π-π* transition mixed with MLCT characters.

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