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12 result(s) for "Kavaz Yüksel, Arzu"
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Phenolic Content Analysis of Two Species Belonging to the Lamiaceae Family: Antioxidant, Anticholinergic, and Antibacterial Activities
The Lamiaceae family are utilized as ornamental, medicinal, and food supplements throughout the world. The current study focuses on a comparative analysis of the phenolic compositions and bioactivities (including antioxidant, anticholinergic, and antibacterial activities) of ethanolic extracts derived from the aerial parts of the two species (Lavandula stoechas L. and Thymus sipyleus Boiss). The presence of phenolic compounds and phytochemicals in the plant extracts was identified using the LC-MS/MS technique. The LC-MS/MS analysis revealed that vanillic acid (125,596.66 µg/L) was the most abundant phytochemical in L. stoechas. Kaempferol (8550.52 µg/L) was the most abundant substance in Thymus sipyleus. The assessment of the antioxidant efficacy of the species extracts was conducted using the DPPH (2.2-diphenyl-1-picryl-hydrazyl-hydrate), ABTS (2.2′-azino-bis (3-ethylbenzothiazoline-6-sulfonic acid)), Fe3+–Fe2+ reducing, and CUPRAC (Cu2+–Cu+ reducing) assays. The anticholinergic activity of the samples was determined using the acetylcholinesterase (AChE) inhibition assay. The results of antioxidant activity were higher in the T. sipyleus than in the L. stoechas ethanol extracts. The extracts of L. stoechas exhibited radical scavenging activity ranging from 15 to 18%, while T. sipyleus had activity effects ranging from 34% to 38%. The AChE inhibition potential for L. stoechas and T. sipyleus extracts as IC50 values were 0.221 ± 0.01 mg/mL and 0.067 ± 0.02 mg/mL, respectively. The antibacterial effects of the ethanolic extracts of these species against pathogenic bacteria isolates were determined using the MIC (minimal inhibitory concentration) method. These findings indicated that the extracts from L. stoechas and T. sipyleus possess the potential to be natural antioxidants in the realm of food preservation. Additionally, their antioxidant, anticholinergic, and antimicrobial properties suggest potential therapeutic utility in the management of certain diseases.
Nutritional Supplementation of Yogurt with Jerusalem Artichoke Tubers: Organic Acid Profiles and Quality Parameters
Jerusalem artichoke (Helianthus tuberosus L.), also called wild sunflower, belongs to the Asteraceae family and is cultivated widely across the temperate zone for its nutritious tuber, which is used as a root vegetable. In this study, the Jerusalem artichoke (JA) was used as a supplementary additive for producing a functional yogurt, with enhanced health benefits and improving the microbiological, rheological, and sensorial quality characteristics of the product. The effects of the three different concentrations (1%, 2%, and 3%, w/w) of JA on the physicochemical properties, bacterial counts, sensorial properties, and organic acid profiles of yogurts were determined after 1, 7, 14, and 21 days of storage at ±4 °C. The results obtained revealed that with the addition of different concentrations of JA the overall parameters were statistically significant (p < 0.01 and p < 0.05) except for apparent viscosity, Streptococcus thermophilus, yeast and mold count, pyruvic ratios, and scores of flavor. Similarly, some parameters (fat ratio, yeast and mold count, concentrations of propionic, acetic, pyruvic, orotic, and lactic acids, and scores of appearance, consistency, and odor) changed depending on the storage time, while some did not show any changes regarding storage time. There was a relationship found between the concentration of JA and organic acid ratio (except for pyruvic acid) concentration in the yogurt samples. In conclusion, the research revealed the effect of JA in yogurt production as a thickener, flavor enhancer, prebiotic agent, and source of organic acids and bioactive compounds. The results indicate that JA has a good potential for enhancing the nutritional and physicochemical properties of the studied yogurt.
Evaluation of Photon Interaction Parameters of Some Antioxidants for Food Irradiation Applications
This study aimed to investigate the interaction parameters of antioxidant molecules in some spices and vegetables with gamma radiation. At first, mass attenuation coefficients (MACs, cm2/g) of gingerol, rosmarinic acid, quercetin, curcumin, eugenol, piperine, allicin, and capsaicin molecules were determined at the photon energies (13–1332 keV) emitted from the radioactive isotopes Am-241, Ba-133, Co-60, and Cs-137 with the help of the EpiXS and WinXCOM programs. The smallest and largest MAC values were found as 1.20 and 8.48 cm2/g at 13 keV and 0.059 and 0.058 cm2/g at 1332 keV for eugenol and allicin, respectively. It was observed that both results support each other. Using the MAC values, the effective atomic number and electron density (Zeff and Neff) values of the molecules were derived. The Zeff values for gingerol and allicin were obtained in the range of 5.79–3.40 and 13.85–4.53, respectively. The variation of the buildup factors of antioxidants in the range of 0.015–15 MeV depending on the chemical composition and penetration depth were also examined. It was noticed that the photon accumulation was the lowest in allicin and the highest in gingerol and eugenol. The results obtained from this study will make an essential contribution to dose calculations in food irradiation studies.
A General Review of Methodologies Used in the Determination of Cholesterol (C27H46O) Levels in Foods
Cholesterol (C27H46O) is a lipid-derived substance found in lipoproteins and cell membranes. It is also one of the main sources for the production of bile acids, vitamin D, and steroid hormones. Today, foods are evaluated by consumers not only according to their taste and nutritional content but also according to their effects on consumer health. For example, many consumers choose foods according to their cholesterol level. The cholesterol in the food can directly affect the blood cholesterol level when consumed, which can lead to cardiovascular diseases. High levels of cholesterol can lead to diet-related human diseases such as cardiac arrest, paralysis, type II diabetes, and cerebral hemorrhage. In societies with high living standards, interest in and consumption of foods that lower or have low cholesterol levels have increased recently. Accordingly, efforts to increase the variety of foods with reduced cholesterol levels are on the rise. This has indirectly led to the accurate measurement of cholesterol levels in blood and food being of great importance. Classical chemical, enzymatic, colorimetric, polarographic, chromatographic, and spectrophotometric methods; enzymatic, nonenzymatic, and electrochemical sensors; and biosensors are used for the determination of cholesterol in foods. The purpose of this review is to reveal and explore current and future trends in cholesterol detection methods in foods. This review will summarize the most appropriate and standard methods for measuring cholesterol in biological components and foods.
Phenolic Profile and Antioxidant, Anticholinergic, and Antibacterial Properties of Corn Tassel
Corn tassel (CT) is a waste part of the corn plant. It is a good co-product and rich in terms of bioactive compounds and phytochemicals. This research tried to show the phenolic profile, antioxidants, anticholinergic activities, and antibacterial properties of CT ethanol extract. The phenolic content analysis of the CT was determined quantitatively by LC-MS/MS, and the antioxidant capacity was measured using ABTS, DPPH, Cu2+–Cu+, and Fe3+–Fe2+ reducing methods. The anticholinergic measurements of CT were detected by inhibition of acetylcholinesterase (AChE). The antibacterial activity was determined by MIC and disc diffusion methods. Many phenolic compounds such as vanillic acid, caffeic acid, fumaric acid, acetohydroxamic acid, butein, myricetin, resveratrol, catechin hydrate, and 4-hydroxybenzoic acid were detected in ethanol extract of CT. The obtained plant ethanol extract had a 7.04% DPPH value, while it showed ABTS activity at 9.45%. Moreover, it had a 0.10 mg/mL inhibition effect on the AChE in terms of IC50 values. The ethanol extract of the CT had an antibacterial property on the investigated bacteria at different ratios. In conclusion, this research aims to consider CT as a source of phenolic compounds and to reveal its bioactive properties and its effects on the treatment of some diseases.
Phytochemical, phenolic profile, antioxidant, anticholinergic and antibacterial properties of Epilobium angustifolium (Onagraceae)
Epilobium angustifolium is widely used in medicine for disease treatments, as well as in the cosmetic and food industries. The aim of this research was to investigate the antioxidant, and anticholinergic properties, phenolics profile and antibacterial activities of the E. angustifolium ethanol extract. The analysis of phenolic compounds was performed with LC–MS/MS. The antioxidant capacity (radical scavenging, metal-reducing power and total antioxidant activity) was assessed by DPPH, ABTS, Cu 2+ –Cu + reducing (CUPRAC), Fe 3+ –Fe 2+ reducing and ferric thiocyanate methods. The antibacterial activity was determined by disc diffusion and MIC (Minimum inhibitory concentration) methods and the anticholinergic property was predicted by inhibition of acetylcholinesterase (AChE). The major phenolic compounds, founding in the plant extract were luteolin, fumaric acid, vanillic acid, and caffeic acid. The ethanol extract of the plant showed DPPH free radical scavenging value of 11.3%, while the ABTS radical scavenging activity was 19.4% and showed moderately metal-reducing power. Also, the extract had 39.3% inhibition on lipid peroxidation of linoleic acid emulsion and showed an inhibition effect on the AChE with IC 50 values (0.14 mg mL −1 ). The ethanol extract of the plant showed antibacterial effect on Staphylococcus aureus , Escherichia coli,  and Salmonella Typhimurium at different levels. These results suggested that E. angustifolium extract might be a suitable natural antioxidant in the preservation of foods by preventing the oxidation of polyunsaturated fatty acids, and might play a role in the treatment of some diseases with its antioxidant, anticholinergic, and antibacterial activity.
An investigation of the volatile compound profiles of probiotic yogurts produced using different inulin and demineralised whey powder combinations
Volatile compound profiles of probiotic yogurt samples prepared using 8 different prebiotic combinations were analyzed using gas chromatography/mass spectrometry (GC-MS) with solid phase micro extraction during 28 days of storage. A total of 40 volatile compounds were identified in yogurt samples during storage consisting of 2 aldehydes, 6 ketones, 4 alcohols, 6 acids, 5 esters, 3 terpenes, 3 aromatic hydrocarbons, and 12 aliphatic hydro-carbons. Acetaldehyde, diacetyl, acetoin, 2-heptanone, ethanol, isoamyl alcohol, acetic acid, caproic acid, caprilic acid, and capric acid were the major volatile compounds in all probiotic yogurt samples.
The electrochemical fabrication of Ag nanoparticles decorated poly(l-cysteine) modifed electrode for non-enzymatic H2O2 sensor
In this study, Ag nanoparticles decorated poly( l -cysteine) (PCs) electrodes (Ag@PCs) were developed for the non-enzymatic determination of H 2 O 2 . Additionally, the electrochemical synthesis of Ag@PCs nanostructures on the pencil graphite electrode surface was achieved for the first time. Different techniques such as X-ray diffraction, X-ray photoelectron spectroscopy, Raman spectroscopy, and field emission scanning electron microscopy were used in the analytical and morphological characterization of the produced Ag@PCs modified electrodes. As-prepared Ag@PCs electrodes were examined as electrode materials in the non-enzymatic determination of H 2 O 2 . Electrochemical determination of H 2 O 2 was investigated using cyclic voltammetry and chronoamperometry techniques. While the detection limit of the sensor was 0.26 µM, its sensitivity and linear range were calculated as 142.47 μA μM −1 and 250−3560 µM, respectively. Moreover, high selectivity towards H 2 O 2 was achieved in the presence of interfering species at the Ag@PCs electrode. Ag@PCs electrodes have great potential for applications involving the electrochemical detection of H 2 O 2 .
Abelmoschus esculentus (Bamya) Çiçeğinin Fitokimyasal Profili, Antioksidan, Antikolinerjik ve Antibakteriyel Özellikleri
Bu araştırmanın amacı, Abelmoschus esculentus’a ait çiçek kısımınlarının etanolik ekstraktının antioksidan ve antikolinerjik özelliklerini, fenolik bileşik profilini ve antibakteriyel aktivitesini araştırmaktır. Fenolik bileşiklerin analizi LC-MS/MS ile gerçekleştirilmiştir. Antioksidan kapasitesi (radikal giderme, metal indirgeme gücü ve toplam antioksidan aktivite) DPPH, ABTS, Cu2+-Cu+ indirgeme (CUPRAC), Fe3+-Fe2+ indirgeme ve ferrik tiyosiyanat yöntemleri ile değerlendirilmiştir. Antibakteriyel aktivite, disk difüzyon ve MIC (Minimum inhibitör konsantrasyonu) yöntemleri ile belirlenmiştir. Antikolinerjik özellik ise, asetilkolinesterazın (AChE) inhibisyonu ile tespit edilmiştir. Bitki özütünde miktar bakımından en fazla bulunan başlıca fenolik bileşiğin asetohidroksamik asit olduğu belirlenmiştir. Ayrıca, sırasıyla kuarsetin, myrisetin, fumarik asit, vanillik asit, ellagik asit, 4-hidroksibenzoik asit, salisilik asit, kafeik asit, kemferol, bütein, protokateşik asit, kateşin hidrat, oleuropein ve diğer bileşenler tespit edilmiştir. Bitkinin etanolik özütü, %29.41 DPPH radikal giderme aktivitesi gösterirken, %20.59 ABTS radikal giderme aktivitesine ve ayrıca orta düzeyde metal indirgeme potansiyeline sahiptir. Ayrıca ekstrakt, 0.18 mg mL-1 IC50 değeri ile AChE üzerinde bir inhibisyon etkisi göstermiştir. Bitkinin etanol özütü, Staphylococcus aureus, Escherichia coli ve Salmonella Typhimurium üzerinde farklı düzeylerde antibakteriyel etki göstermiştir. Elde edilen sonuçlar, A. esculentus çiçek özütünün, sahip olduğu antioksidan, antikolinerjik ve antibakteriyel özellikleri ile bazı hastalıkların tedavisinde rol oynayabileceğini düşündürmektedir. The aim of this research was to investigate the antioxidant, and anticholinergic properties, phenolics profile and antibacterial activities of Abelmoschus esculentus ethanol extract. The analysis of phenolic compounds was performed with LC–MS/MS. The antioxidant capacity (radical scavenging, metal-reducing power and total antioxidant activity) was assessed by DPPH, ABTS, Cu2+–Cu+ reducing (CUPRAC), Fe3+–Fe2+ reducing and ferric thiocyanate methods. The antibacterial activity was determined by disc diffusion and MIC (Minimum inhibitory concentration) methods and the anticholinergic property was predicted by inhibition of acetylcholinesterase (AChE). Acetohydroxamic acid was determined as the main phenolic compound with the highest amount in the flower extract. Also, quercetin, myricetin, fumaric acid, vanillic acid, ellagic acid, 4-hydroxybenzoic acid, salicylic acid, caffeic acid, kaempferol, butein, protocatechic acid, catechin hydrate, oleuropein and other components were detected, respectively. The ethanolic extract of the plant has 29.41% DPPH radical scavenging activity, 20.59% ABTS radical scavenging activity, and also moderate metal reduction potential. Also, the extract showed an inhibition effect on the AChE with IC50 values (0.18 mg mL−1). The ethanol extract of the plant showed antibacterial effect on Staphylococcus aureus, Escherichia coli, and Salmonella Typhimurium at different levels. These results suggested that extract of the flowers of A. esculentus extract might play a role in the treatment of some diseases with its antioxidant, anticholinergic, and antibacterial activity.
The effect of terebinth (Pistacia terebinthus L.) coffee addition on the chemical and physical characteristics, colour values, organic acid profiles, mineral compositions and sensory properties of ice creams
The aim of this research was to evaluate the effect of terebinth ( Pistacia terebinthus L.) coffee addition (0.5, 1 and 2 %) on the chemical and physical properties, colour values, organic acid profiles, mineral contents and sensory characteristics of ice creams. The total solids, fat, titratable acidity, viscosity, first dripping time and complete melting time values, a * and b * colour properties, citric, lactic, acetic and butyric acid levels and Ca, Cu, Mg, Fe, K, Zn and Na concentrations of ice creams showed an increase with the increment of terebinth coffee amount, while protein, pH, L * , propionic acid and orotic acid values decreased. However, Al and malic acid were not detected in any of the samples. The overall acceptability scores of the sensory properties showed that the addition of 1 % terebinth coffee to the ice cream was more appreciated by the panellists.