The synthetic chemical nuclease, [Cu(1,10-phenanthroline)<sub>2</sub>]<sup>2+</sup>, has stimulated research within metallonuclease development and in the area of cytotoxic metallodrug design. Our analysis reveals, however, that this agent is “promiscuous” as it binds both dsDNA and protein biomolecules, without specificity, and induces general toxicity to a diversity of cell lineages. Here, we describe the synthesis and characterization of small-molecule metallonucleases containing the redox-active cation, [Cu(RCOO)(1,10-phen)<sub>2</sub>]<sup>+</sup>, where 1,10-phen = 1,10-phenanthroline and R = −H, −CH<sub>3</sub>, −C<sub>2</sub>H<sub>5</sub>, −CH(CH<sub>3</sub>)<sub>2</sub>, and −C(CH<sub>3</sub>)<sub>3</sub>. The presence of coor...
Copper complexes of 1,10-phenanthroline (phen) are chemical nucleases employed as footprinting reage...
Redox active mononuclear and binuclear copper(II) complexes have been prepared and structurally char...
Schwarzbich S, Horstmann Nee Gruschka C, Simon J, et al. Stronger Cytotoxicity for Cancer Cells Than...
In order to expand the current repertoire of cancer treatments and to help circumvent limitations as...
Jany T, Moreth A, Gruschka C, et al. Rational design of a cytotoxic dinuclear Cu2 complex that binds...
Gene editing has emerged as an important tool for altering the genomes of living cells with unpreced...
Dinuclear Cu2+ and Mn2+ bis-phenanthroline octanedioate compounds exhibit rapid, unprecedented nano...
The mechanism of the cytotoxic function of cisplatin and related anticancer drugs is based on their ...
The quest for new metal-based anticancer agents, alternative to clinically established chemotherapeu...
The <i>in cellulo</i> catalytic production of reactive oxygen species (ROS) by copper(II) and iron...
Dinuclear CuII and MnII bis-phenanthroline octanedioate complexes exhibit rapid, unprecedented nano ...
Since the structural elucidation of duplex DNA, the construction of small molecules that recognise a...
Dinuclear CuII and MnII bis-phenanthroline octanedioate complexes exhibit rapid, unprecedented nano ...
Free radical generation is an inevitable consequence of aerobic existence and is implicated in a wid...
Cancer remains a global health challenge. There is an urgent need to develop innovative therapeutics...
Copper complexes of 1,10-phenanthroline (phen) are chemical nucleases employed as footprinting reage...
Redox active mononuclear and binuclear copper(II) complexes have been prepared and structurally char...
Schwarzbich S, Horstmann Nee Gruschka C, Simon J, et al. Stronger Cytotoxicity for Cancer Cells Than...
In order to expand the current repertoire of cancer treatments and to help circumvent limitations as...
Jany T, Moreth A, Gruschka C, et al. Rational design of a cytotoxic dinuclear Cu2 complex that binds...
Gene editing has emerged as an important tool for altering the genomes of living cells with unpreced...
Dinuclear Cu2+ and Mn2+ bis-phenanthroline octanedioate compounds exhibit rapid, unprecedented nano...
The mechanism of the cytotoxic function of cisplatin and related anticancer drugs is based on their ...
The quest for new metal-based anticancer agents, alternative to clinically established chemotherapeu...
The <i>in cellulo</i> catalytic production of reactive oxygen species (ROS) by copper(II) and iron...
Dinuclear CuII and MnII bis-phenanthroline octanedioate complexes exhibit rapid, unprecedented nano ...
Since the structural elucidation of duplex DNA, the construction of small molecules that recognise a...
Dinuclear CuII and MnII bis-phenanthroline octanedioate complexes exhibit rapid, unprecedented nano ...
Free radical generation is an inevitable consequence of aerobic existence and is implicated in a wid...
Cancer remains a global health challenge. There is an urgent need to develop innovative therapeutics...
Copper complexes of 1,10-phenanthroline (phen) are chemical nucleases employed as footprinting reage...
Redox active mononuclear and binuclear copper(II) complexes have been prepared and structurally char...
Schwarzbich S, Horstmann Nee Gruschka C, Simon J, et al. Stronger Cytotoxicity for Cancer Cells Than...