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13
result(s) for
"Rotar, Ancuța Mihaela"
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Biotics (Pre-, Pro-, Post-) and Uremic Toxicity: Implications, Mechanisms, and Possible Therapies
by
Pop, Carmen-Rodica
,
Mitrea, Laura
,
Medeleanu, Mădălina
in
Accumulation
,
Bioactive compounds
,
Biocompatibility
2023
In recent years, more scientific data have pointed out the close connection between intestinal microbial community, nutritional habits, lifestyle, and the appearance of various affections located at certain anatomical systems. Gut dysbiosis enhances the formation and accumulation of specific metabolites with toxic potential that induce the appearance of kidney-associated illnesses. Intestinal microbes are involved in the degradation of food, drugs, or other ingested products that lead to the formation of various metabolites that end up in renal tissue. Over the last few years, the possibilities of modulating the gut microbiota for the biosynthesis of targeted compounds with bioactive properties for reducing the risk of chronic illness development were investigated. In this regard, the present narrative review provides an overview of the scientific literature across the last decade considering the relationship between bioactive compounds, pre-, pro-, and post-biotics, uremic toxicity, and kidney-associated affections, and the possibility of alleviating the accumulation and the negative effects of uremic toxins into the renal system.
Journal Article
Antibacterial activity and interactions of plant essential oil combinations against Gram-positive and Gram-negative bacteria
by
Rotar, Ancuţa Mihaela
,
Semeniuc, Cristina Anamaria
,
Pop, Carmen Rodica
in
Alcohol
,
antagonistic effect
,
Anti-Bacterial Agents - pharmacology
2017
The aim of this study was to compare the antibacterial effects of several essential oils (EOs) alone and in combination against different Gram-positive and Gram-negative bacteria associated with food products. Parsley, lovage, basil, and thyme EOs, as well as their mixtures (1:1, v/v), were tested against Bacillus cereus, Staphylococcus aureus, Pseudomonas aeruginosa, Escherichia coli, and Salmonella typhimurium. The inhibitory effects ranged from strong (thyme EO against E. coli) to no inhibition (parsley EO against P. aeruginosa). Thyme EO exhibited strong (against E. coli), moderate (against S. typhimurium and B. cereus), or mild inhibitory effects (against P. aeruginosa and S. aureus), and basil EO showed mild (against E. coli and B. cereus) or no inhibitory effects (against S. typhimurium, P. aeruginosa, and S. aureus). Parsley and lovage EOs revealed no inhibitory effects against all tested strains. Combinations of lovage/thyme and basil/thyme EOs displayed antagonistic effects against all bacteria, parsley/thyme EOs against B. cereus, S. aureus, P. aeruginosa, and E. coli, and lovage/basil EOs against B. cereus and E. coli. Combinations of parsley/lovage and parsley/basil EOs exhibited indifferent effects against all bacteria. The combination of lovage/basil EO showed indifferent effect against S. aureus, P. aeruginosa, and S. typhimurium, and the combination parsley/thyme EO against S. typhimurium. Thyme EO has the highest percentage yield and antibacterial potential from all tested formulations; its combination with parsley, lovage, and basil EOs determines a reduction of its antibacterial activity. Hence, it is recommended to be used alone as the antibacterial agent.
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Journal Article
Unraveling the Potential of Organic Oregano and Tarragon Essential Oils: Profiling Composition, FT-IR and Bioactivities
2023
Oregano and tarragon are widely cultivated culinary herbs used for food seasoning, having familiar characteristic aromas appreciated by the wide public. The aim of this research was to characterize essential oils (EOs) from locally sourced organic oregano and tarragon (Cluj, Romania) and study their bioactivity potential. Results showed that oregano EO had a sesquiterpene dominant profile responsible for strong bands between 2800 and 3000 cm−1 on the Fourier transform infrared spectroscopy (FT-IR) spectrum and a composition consistent with reports from similar climatic regions. The tarragon EO profile was defined by phenylpropanoids responsible for the strong sharp peaks between 1000 and 1600 cm−1 on the FT-IR spectrum. In oregano EO, 22 compounds were identified with β-caryophyllene as a major constituent. In tarragon EO, 20 compounds were identified with eugenol as a major constituent. Oregano EO had a stronger antibacterial effect against both Gram-negative and Gram-positive bacterial strains, while tarragon EO had a slightly stronger cytotoxic effect on three types of cancer cell lines tested (skin melanoma, prostate carcinoma, and colorectal adenocarcinoma). It was concluded that, given the fact that a sufficient supply of high-quality plant material can be available for EO extraction, culinary herbs can become reliable candidates for many industries without the risk of discontinued supply. Therefore, research aiming to widen their potential applications is welcome and worth pursuing.
Journal Article
The Influence of Physical Fields (Magnetic and Electric) and LASER Exposure on the Composition and Bioactivity of Cinnamon Bark, Patchouli, and Geranium Essential Oils
by
Criveanu, Horia Radu
,
Zăhan, Marius
,
Pop, Viorel Cornel
in
Anesthesia
,
antibiotic resistance
,
Antifungal activity
2024
In recent years, essential oils (EOs) have received increased attention from the research community, and the EOs of cinnamon, patchouli, and geranium have become highly recognized for their antibacterial, antifungal, antiviral, and antioxidant effects. Due to these properties, they have become valuable and promising candidates for addressing the worldwide threat of antimicrobial resistance and other diseases. Simultaneously, studies have revealed promising new results regarding the effects of physical fields (magnetic and electric) and LASER (MEL) exposure on seed germination, plant growth, biomass accumulation, and the yield and composition of EOs. In this frame, the present study aims to investigate the influence of MEL treatments on cinnamon, patchouli, and geranium EOs, by specifically examining their composition, antimicrobial properties, and antioxidant activities. Results showed that the magnetic influence has improved the potency of patchouli EO against L. monocytogenes, S. enteritidis, and P. aeruginosa, while the antimicrobial activity of cinnamon EO against L. monocytogenes was enhanced by the electric and laser treatments. All exposures have increased the antifungal effect of geranium EO against C. albicans. The antioxidant activity was not modified by any of the treatments. These findings could potentially pave the way for a deeper understanding of the efficiency, the mechanisms of action, and the utilization of EOs, offering new insights for further exploration and application.
Journal Article
Chemometric Comparison and Classification of Some Essential Oils Extracted from Plants Belonging to Apiaceae and Lamiaceae Families Based on Their Chemical Composition and Biological Activities
by
Rotar, Ancuţa Mihaela
,
Semeniuc, Cristina Anamaria
,
Socaci, Sonia Ancuţa
in
Anti-Bacterial Agents - chemistry
,
Anti-Bacterial Agents - pharmacology
,
antibacterial activity
2018
This study is focused on the comparison and classification of parsley, lovage, basil, and thyme essential oils (EOs) based on their chemical composition, total phenolic content, antioxidant and antibacterial activities by using appropriate chemometric methods: Principal component analysis (PCA) and hierarchical cluster analysis (HCA). The results showed that parsley, lovage, and thyme EOs are rich in monoterpene hydrocarbons, but basil EO is rich in oxygenated monoterpenes and phenylpropanoids, and that both PCA and HCA separated essential oils into two main groups of which one contains two sub-groups. β-Phellandrene was the major component identified in parsley and lovage EOs, estragole was the major component in basil EO, and p-cymene was the major component in thyme EO. Thyme EO showed the highest level of total phenolics, the highest antioxidant capacity, and exhibited the stronger antibacterial activity, results that were emphasized by both chemometric methods used. Among tested essential oils, the one of parsley was distinguished by a low total TPC, weak antioxidant activity, and weak antibacterial activity against S. enteritidis (ATCC 13076); lovage EO by low TPC, weak antioxidant activity, but moderate antibacterial activity; and basil EO by low TPC, moderate antioxidant activity, and weak antibacterial activity against L. monocytogenes (ATCC 19114).
Journal Article
Functional Characterisation of Rosemary‐Enhanced Alginate Films for Strawberry Preservation
by
Călinoiu, Lavinia-Florina
,
Pop, Carmen-Rodica
,
Ştefănescu, Bianca-Eugenia
in
Algae
,
Alginic acid
,
Antimicrobial agents
2026
This study developed alginate‐based edible films enriched with rosemary extract (RE), obtained from distillation by‐products and evaluated their physicochemical, functional and preservation performance in strawberries. RE (9% v / v ) was incorporated into 2% ( w / v ) sodium alginate film‐forming solutions, which were applied both as coatings and cast into standalone films. The incorporation of RE increased film thickness (from ~0.056 to ~0.068 mm), density (from ~1.05 to ~1.12 g/cm 3 ) and solution viscosity, while reducing moisture content (from ~12% to ~8.5%). RE also enhanced UV–Vis light protection and slightly increased water vapour permeability (from ~2.75 to ~3.0 × 10 −11 g · s −1 · m −1 · Pa −1 ). When applied to fresh strawberries stored at 5°C, RE‐enriched coatings significantly inhibited microbial growth. Total bacterial counts remained below 4.9 log10 CFU/g after 14 days compared with higher levels in uncoated controls, whereas total yeast and mould counts decreased from ~3.7 to ~3.1 log10 CFU/g. These results demonstrate that RE‐infused alginate films effectively slow microbial proliferation and help maintain fruit quality during refrigerated storage. The findings point out the efficacy of rosemary distillation by‐products as sustainable, natural additives for biodegradable edible coatings in fresh produce preservation.
Journal Article
Development of a Ready-to-Drink (RTD) Beverage Formulated with Whey and Beetroot Juice
by
Michiu, Delia
,
Rotar, Ancuţa Mihaela
,
Semeniuc, Cristina Anamaria
in
Acidity
,
beetroot juice
,
Beverages
2024
Whey, a large by-product of cheese manufacturing, is nutritionally valuable, mainly because of its whey proteins. Beetroot juice, purple–red in colour, has numerous benefits for human health; if used as an ingredient in a whey-based RTD beverage, it could mask whey’s less pleasant organoleptic characteristics. This research aimed to develop such a beverage by mixing whey with beetroot juice in a ratio that would yield a nutritionally valuable product with acceptable sensory characteristics. To this end, three RTD beverage formulations, prepared with beetroot juice and whey in different ratios (10:90, 15:85, and 20:80 v/v), were subjected to sensory analysis. The one with a 20:80 v/v ratio of beetroot juice and whey was found to be preferred by consumers, registering the highest overall score (7.8). Next, this formula was prepared with (RTD20:80a) and without citric acid (RTD20:80a) and analysed physiochemically and microbiologically. RTD20:80a was also sensory tested and proved to be the optimum one (with an overall score of 8.1); it showed a content of 1.18 g/100 mL fat, 1.07 g/100 mL protein, 0.56 g/100 mL ash, 9.90 g/100 mL carbohydrate, total soluble solids of 11.69 °Brix, an energy value of 54.44 kcal/100 mL, titratable acidity of 0.77% lactic acid, pH of 3.75, content of 1.16 mg/mL betacyanins, 0.86 mg/mL betaxanthins, and 0.36 mg GAE/mL total phenolics. Based on the microbiological results, RTD20:80a revealed a shelf-life of 14 days. By producing this beverage, a dairy plant could reduce its whey-related losses while increasing its profitability through selling it.
Journal Article
Impact of Lavender Flower Powder as a Flavoring Ingredient on Volatile Composition and Quality Characteristics of Gouda-Type Cheese during Ripening
2023
This study aimed to formulate a Gouda-type cheese from cow’s milk, flavored with lavender flower powder (0.5 g/L matured milk), ripened for 30 days at 14 °C and 85% relative humidity. Physicochemical, microbiological, and textural characteristics, as well as the volatile composition of the control (CC—cheese without lavender) and lavender cheese (LC), were assessed at 10-day intervals of ripening. Consumers’ perception, acceptance, and purchase intention were only evaluated for ripened cheeses. Moisture and carbohydrate contents, the pH, cohesiveness, indexes of springiness and chewiness decreased during ripening in both CC and LC; however, protein, ash, and sodium chloride contents, titratable acidity, hardness, lactobacilli, streptococci, and volatiles increased. Fat and fat in dry matter contents, respectively, the energy value did not vary with ripening time in LC and increased in CC; gumminess decreased in CC and did not change in LC. Lavender flower powder significantly affected the cheese’s microbiological and sensory characteristics and volatile composition but did not considerably impact physicochemical and textural ones. Populations of lactobacilli and streptococci were substantially higher in LC compared to CC. The volatile profile of LC was dominated by terpene and terpenoids, and that of CC by haloalkanes. Sensory scores were slightly lower for LC than CC, even if it did not considerably affect consumers’ acceptance and purchase intention.
Journal Article
Brown beer vinegar: A potentially functional product based on its phenolic profile and antioxidant activity
by
Mudura, Elena
,
Pasqualone, Antonella
,
Ranga, Floricuţa
in
acetic fermentation
,
Antioxidants
,
brewing
2018
The aim of the present study was to create a functional, enriched in polyphenols and free of alcohol product obtained by acetic fermentation of beer. Beer and vinegar were tested first for their phenolic content and antioxidant activity, by the Folin Ciocalteu and the free radical scavenging activity by the 1,1-diphenyl-2-picrylhydrazyl free-radical scavenging assay, respectively. Then, the separation and identification of the 30 phenolic compounds was realized by high-performance liquid chromatography coupled with positive electrospray ionisation and diode array detection (HPLC-DAD?ESI(+)-MS) analysis. Identification of the phenolic compounds data was realized based on the UV spectra of each compound. Based on a calibration curve (R2 = 0.9985), the amounts of the phenolic compounds, expressed as mg cathechin equivalents (CE)/L, were calculated. The total phenolic content of the beer and vinegar samples determined using Folin?Ciocalteu reagent were of 428.9?1.58 and 661.5?7.69 mg GAE L-1, respectively, which contributed to the high antioxidant activity in the vinegar sample of 82.18 %. Statistically significant differences were observed after acetic fermentation between each parameter (p < 0.05). Brown beer vinegar represents a rich source of polyphenols and phenolic derivatives, compared to beer. By its increased phenolic content and antioxidant activity, brown beer vinegar could be considered another source of valuable compounds to beer, which could also be of interest in special diets. nema
Journal Article
Formulation and Characterization of Antimicrobial Edible Films Based on Whey Protein Isolate and Tarragon Essential Oil
by
Vodnar, Dan Cristian
,
Semeniuc, Cristina Anamaria
,
Mureşan, Vlad
in
Antiinfectives and antibacterials
,
Antimicrobial agents
,
Antioxidants
2020
The effects of heat treatment and the addition of tarragon essential oil on physical and mechanical properties of films prepared with 5% whey protein isolate (WPI) and 5% glycerol were investigated in this study. Heat treatment of the film-forming solution caused increases in thickness, moisture content, swelling degree, water vapor permeability (WVP), b*-value, ΔE*-value, transmittance values in the 200–300-nm region, transparency, and puncture resistance of the film, but decreases in water solubility, L*-value, a*-value, transmittance values in the 350–800-nm region, and puncture deformation. When incorporated with tarragon essential oil, heat-treated films have the potential to be used as antimicrobial food packaging. The addition of tarragon essential oil in film-forming solution caused increases in moisture content, solubility in water, WVP, a*-value, b*-value, ΔE*-value, and transparency of the film; decreases in transmittance values in the range of 600–800 nm; and variations in swelling degree, L*-value, transmittance values in the range of 300–550 nm, puncture resistance, and puncture deformation. Nevertheless, different tendencies were noticed in UNT (untreated) and HT (heat-treated) films with regards to transparency, light transmittance, puncture resistance, and puncture deformation. Based on these findings, HT films show improved physical and mechanical properties and, therefore, are more suitable for food-packaging applications.
Journal Article