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Dive into the research topics where Cigdem Karaaslan is active.

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Featured researches published by Cigdem Karaaslan.


Current Topics in Medicinal Chemistry | 2015

Antioxidant Properties of Melatonin and its Potential Action in Diseases

Cigdem Karaaslan; Sibel Suzen

In recent years, relationship between free radicals and oxidative stress with aging, cancer, atherosclerosis, neurodegenerative disorders, diabetes, and inflammatory diseases became increasingly clear. Confirming the role of oxidants in numerous pathological conditions such as cancer, the antioxidants developed as therapeutics have been proven ineffective. It is well established that melatonin (MLT) and its metabolites are able to function as endogenous free-radical scavengers and broadspectrum antioxidants. Numerous studies also proved the role of MLT and its derivatives in many physiological processes and therapeutic functions, such as the regulation of circadian rhythm and immune functions. The aim of this review is to arouse attention to MLT as a potentially valuable agent in the prevention and/or treatment of some diseases.


Bioorganic & Medicinal Chemistry | 2016

Novel indole-based melatonin analogues: Evaluation of antioxidant activity and protective effect against amyloid β-induced damage

Hande Gurer-Orhan; Cigdem Karaaslan; Senem Ozcan; Omidreza Firuzi; Marjan Tavakkoli; Luciano Saso; Sibel Suzen

Oxidative stress has been recognized as a contributing factor in ageing and various diseases including cancer and neuropathological disorders. Indole derivatives such as the neurohormone melatonin (MLT) constitute an important class of therapeutic agent in medicinal chemistry. MLT can scavenge different reactive oxygen species and can also stimulate the synthesis of antioxidant enzymes. As a part of our ongoing studies, a series of new indole-based hydrazide/hydrazone derivatives were synthesized as MLT analogues. Their antioxidant activity was investigated in human erythrocytes by evaluating their reducing effect against oxidation of a redox-sensitive fluorescent probe. Possible inherent cytotoxicity of the compounds was investigated in CHO-K1 cells by lactate dehydrogenase leakage test. Protection of neuronal PC12 cells against amyloid β-induced damage was examined by MTT assay and their ability in reduction of ROS generation induced by amyloid β was tested. MLT analogues having an o-halogenated aromatic moiety exhibited effective antioxidant properties without having any membrane-damaging effect. Moreover, derivatives having o-halogenated and dihalogenated aromatic side chain significantly protected neuronal cells at concentrations of 10 and 100 μM. In conclusion, MLT derivatives represent promising scaffolds for discovery of effective antioxidant and neuroprotective agents.


Bioorganic & Medicinal Chemistry Letters | 2013

Synthesis and antioxidant properties of substituted 2-phenyl-1H-indoles

Cigdem Karaaslan; Hachemi Kadri; Tülay Çoban; Sibel Suzen; Andrew D. Westwell

In this study, we report the design, synthesis and antioxidant activity of a series of substituted 2-(4-aminophenyl)-1H-indoles and 2-(methoxyphenyl)-1H-indoles. The new compounds are structurally related to the known indole-based antioxidant lead compound melatonin (MLT), and the antitumour 2-(4-aminophenyl)benzothiazole and 2-(3,4-dimethoxyphenyl)benzothiazole series. Efficient access to the target 2-phenylindoles was achieved via Fischer indole synthesis between substituted phenylhydrazines and acetophenones. 2-(4-Aminophenyl)indoles (such as the 6-fluoro analogue 3b) in particular showed potent antioxidant activity in the DPPH and superoxide radical scavenging assays (80% and 81% inhibition at 1mM concentration of 3b, respectively), at a level comparable with the reference standard MLT (98% and 75% at 1 mM).


International journal of electrochemistry | 2011

Electrochemical Behavior of Biologically Important Indole Derivatives

Cigdem Karaaslan; Sibel Suzen

Voltammetric techniques are most suitable to investigate the redox properties of a new drug. Use of electrochemistry is an important approach in drug discovery and research as well as quality control, drug stability, and determination of physiological activity. The indole nucleus is an essential element of a number of natural and synthetic products with significant biological activity. Indole derivatives are the well-known electroactive compounds that are readily oxidized at carbon-based electrodes, and thus analytical procedures, such as electrochemical detection and voltammetry, have been developed for the determination of biologically important indoles. This paper explains some of the relevant and recent achievements in the electrochemistry processes and parameters mainly related to biologically important indole derivatives in view of drug discovery and analysis.


Chemical Biology & Drug Design | 2016

Synthesis and In Vitro Activity of Polyhalogenated 2-phenylbenzimidazoles as a New Class of anti-MRSA and Anti-VRE Agents.

Hakan Goker; Cigdem Karaaslan; Mustafa Orhan Püsküllü; Sulhiye Yıldız; Yalçın Duydu; Aylin Üstündağ; C. Yalçın

A series of novel polyhalogenated 2‐phenylbenzimidazoles have been synthesized and evaluated for in vitro antistaphylococcal activity against drug‐resistant bacterial strains (methicillin‐resistant Staphylococcus aureus, and vancomycin‐resistant Enterococcus faecium. Certain compounds inhibit bacterial growth perfectly. 11 was active than vancomycin (0.78 μg/mL) with the lowest MIC values with 0.19 μg/mL against methicillin‐resistant Staphylococcus aureus, 8 and 35 exhibited best inhibitory activity against vancomycin‐resistant Enterococcus faecium (1.56 μg/mL). The mechanism of action for this class of compounds appears to be different than clinically used antibiotics. These polyhalogenated benzimidazoles have potential for further investigation as a new class of potent anti‐methicillin‐resistant Staphylococcus aureus and anti‐vancomycin‐resistant Enterococcus faecium agents.


Chemistry of Heterocyclic Compounds | 2015

Synthesis and potent cytotoxicity of some novel imidazopyridine derivatives against MCF-7 human breast adenocarcinoma cell line

Mustafa Orhan Püsküllü; Cigdem Karaaslan; Filiz Bakar; Hakan Goker

A series of novel 2-phenyl-3H-imidazo[4,5-b]pyridines and 2-phenyl-3H-imidazo[4,5-c]pyridines and their precursors were synthesized. Their in vitro cytotoxicity against MCF-7 human breast adenocarcinoma cell line has been investigated, and some of the tested compounds have shown high cytotoxic activity against MCF-7 cells. N-Hydroxy-4-(3H-imidazo[4,5-b]pyridin-2-yl)benzenecarboximidamide was the most active compound with IC50 equal to 0.082 μM, which is an activity almost as high as that of a commonly used anticancer drugs docetaxel and imatinib mesylate.


Bioorganic & Medicinal Chemistry | 2016

Synthesis and potent antiprotozoal activity of mono/di amidino 2-anilinobenzimidazoles versus Plasmodium falciparum and Trypanosoma brucei rhodesiense.

Cigdem Karaaslan; Marcel Kaiser; Reto Brun; Hakan Goker

A series of mono and dicationic new 2-anilinobenzimidazole carboxamidines were prepared in a four step process starting from 4-amino-3-nitrobenzonitrile and corresponding o-phenylenediamines. Their antiparasitic activity against Plasmodium falciparum (P. falciparum) and Trypanosoma brucei rhodesiense (T.b. rhodesiense) were evaluated in vitro. Some of the dicationic compounds (10,12,14) showed equal or very close activity against T.b. rhodesiense with melarsoprol and also showed promising activity against P. falciparum as compared to chloroquine. Among the monocationic derivatives compound 21 exhibited best inhibitory activity against P. falciparum.


Zeitschrift für Naturforschung C | 2018

Antiproliferative activity of synthesized some new benzimidazole carboxamidines against MCF-7 breast carcinoma cells

Cigdem Karaaslan; Filiz Bakar; Hakan Goker

Abstract Breast cancer is the most endemic cause of cancer among women in both developed and developing countries. Benzimidazole derivatives exemplify one of the chemical classes that show strong cytotoxic activity especially against breast cancer cells (MCF-7). Aromatic amidine derivatives are known as a group of DNA interactive compounds that bind minor groove of the genome, especially A-T base pairs, and show significant in vitro and in vivo toxicity toward cancer cells. In light of these studies, some new mono/dicationic amidino benzimidazole derivatives were synthesized and evaluated for cytotoxic activity on cultured MCF-7 breast cancer cells. Some of these compounds have strongly inhibited MCF-7 cell viability in a dose-dependent manner compared with clinically used reference compounds, imatinib mesylate and docetaxel. Among them, 4-[(5(6)-bromo-1H-benzimidazole-2-yl)amino]benzene-1-carboxamidine (30) showed the best inhibitory activity with IC50 value of 4.6 nM.


Zeitschrift für Naturforschung C | 2012

Potent antifungal and antistaphylococcal 2-anilinobenzimidazoles.

Hakan Goker; Cigdem Karaaslan; Sulhiye Yıldız


Medicinal Chemistry | 2018

Synthesis & Anticancer Evaluation of New Substituted 2-(3,4-Dimethoxyphenyl)benzazoles

Cigdem Karaaslan; Yalçın Duydu; Aylin Üstündağ; C. Yalçın; Banu Kaskatepe; Hakan Goker

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