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Electrochemical dna sensor based on acridine yellow adsorbed on glassy carbon electrode with dimethylformamide. In optimal conditions, the linear range of doxorubicin concentrations determined was 0.1 pM–1.0 n

Voltammetric Sensor with Replaceable Polyaniline-DNA Layer for Doxorubicin Determination of the cathodic peak current made it possible to determine down to 0.01 nM doxorubicin. After that, DNA can

Electrochemical DNA sensor based on the copolymer of proflavine and Azure B for doxorubicin determination for the determination of doxorubicin by consecutive electropolymerization of an equimolar mixture of Azure B

An Electrochemical DNA Sensor for Doxorubicin Based on a Polyelectrolyte Complex and Aminated Thiacalix[4]Arene sensitive determination of doxorubicin; the signal is charge transfer resistance recorded by electrochemical

Impedimetric DNA Sensor Based on Poly(proflavine) for Determination of Anthracycline Drugs of anthracycline drugs (doxorubicin and daunorubicin) able to intercalate DNA. Redox properties of the proflavine

Tumor micro-environment sensitive release of doxorubicin through chitosan based polymeric nanoparticles: An in-vitro study (175 nm) was determined through Scanning Electron Microscope (SEM). X-Ray Diffractometry (XRD) studies

Loading efficiency of doxorubicin into the micelle-like structures formed by function-spacer-lipid constructs self-assembly depends on constructs' functional part, and the loading efficiency of doxorubicin into the supramers is determined to reveal the influence

Doxorubicin-associated Cardiomyopathy: New Approaches to Pharmacological Correction Using 3-(2,2,2-trimethylhydrazinium) Propionate Derivatives-(2,2,2-trimethylhydrazini- um) propionate) and reference medicine meldonium in the case of doxorubicin (DOX) (20 mg

Electrochemical sensor based on Poly(Azure B)-DNA composite for doxorubicin determination makes it possible to determine between 0.1 µM to 0.1 nM doxorubicin (limit of detection 7×10-11 M

ROLE OF PEROXIREDOXIN IN THE DEVELOPMENT OF DRUG RESISTANCE OF CANCER CELLSRedox-dependent processes to a significant extent determine functional actions of many proteins

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