Elena Mihai
CS III - Biologie Celulară și Moleculară
Publicatii
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article
Antioxidant And Antiproliferative Activity Of Small Peptides Isolated From Marine Algae By Green Methods |
Mihai E.; Gaspar-Pintiliescu A.; Tatia R.; Stefan L. M.; Coroiu V.; Craciunescu O. | Scientific Bulletin, Series F. Biotechnologies, 2024 | |
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article
Antioxidant And Antiproliferative Effect Of A Glycosaminoglycan Extract From Rapana Venosa Marine Snail |
Gaspar-Pintiliescu Alexandra; Stefan Laura M.; Mihai Elena; Sanda Catalina; Manoiu Vasile S.; Berger Daniela; Craciunescu Oana | Plos One, 2024 | |
RezumatMarine glycosaminoglycans (GAG) isolated from different invertebrates, such as molluscs, starfish or jellyfish, have been described as unique molecules with important pharmacological applications. Scarce information is available on GAG extract from Rapana venosa marine snail. The aim of this study was to isolate a GAG extract from R. venosa marine snail and to investigate its physicochemical, antioxidant and antiproliferative properties for further biomedical use. The morphology, chemical and elemental composition of the extract were established as well as the sulfate content and N- to O-sulfation ratio. Fourier transform infrared (FTIR) spectra indicated that GAG extract presented similar structural characteristics to bovine heparan sulfate and chondroitin sulfate. The pattern of extract migration in agarose gel electrophoresis and specific digestion with chondroitinase ABC and heparinase III indicated the presence of a mixture of chondroitin sulfate-type GAG, as main component, and heparan sulfate-type GAG. Free radical scavenging and ferric ion reducing assays showed that GAG extract had high antioxidant activity, which slightly decreased after enzymatic treatment. In vitro MTT and Live/Dead assays showed that GAG extract had the ability to inhibit cell proliferation in human Hep-2 cell cultures, at cytocompatible concentrations in normal NCTC clone L929 fibroblasts. This capacity decreased after enzymatic digestion, in accordance to the antioxidant activity of the products. Tumoral cell migration was also inhibited by GAG extract and its digestion products. Overall, GAG extract from R. venosa marine snail exhibited antioxidant and antiproliferative activities, suggesting its potential use as novel bioactive compound for biomedical applications. |
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conference
Exploring The Therapeutic Potential Of Aloe Vera And Honey Formulations For Skin Wound Healing |
Andreea Iosogeanu; Oana Craciunescu; Elena Mihai; Elena-Iulia Oprita; Anișoara Cimpean | 6Th Next-Chem Innovative Cross-Sectorial Technologies, 2024 | |
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conference
Green Biotechnologies For Reduced Immunologic Response Of Collagen Scaffolds Prepared By Jellyfish Valorization For Tissue Engineering |
Oana Craciunescu; Elena Mihai; Rodica Tatia; Andreea Iosageanu; Viorica Coroiu; Elena Iulia Oprita | Biotechnologies: Challenges And Contributions In The Fields Of Health, Climate Change, And Food Security, 2024 | |
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article
In Vitro Wound-Healing Potential Of Phenolic And Polysaccharide Extracts Of Aloe Vera Gel |
Iosageanu A.; Mihai E.; Seciu-Grama A.-M.; Utoiu E.; Gaspar-Pintiliescu A.; Gatea F.; Cimpean A.; Craciunescu O. | Journal Of Functional Biomaterials, 2024 | |
RezumatThe present study aimed to conduct a comparative investigation of the biological properties of phenolic and polysaccharide extracts obtained using an ultrasound-assisted technique from Aloe vera gel and their effects on each stage of the wound healing process in in vitro experimental models. HPLC analysis showed that the phenolic extract contained aloin, ferulic, and caffeic acid, as well as quercetin dihydrate, as major compounds. Capillary zone electrophoresis indicated the prevalence of mannose and glucose in the polysaccharide extract. Cell culture testing revealed the anti-inflammatory properties of the phenolic extract at a concentration of 0.25 mg/mL through significant inhibition of pro-inflammatory cytokines—up to 28% TNF-α and 11% IL-8 secretion—in inflamed THP-1-derived macrophages, while a pro-inflammatory effect was observed at 0.5 mg/mL. The phenolic extract induced 18% stimulation of L929 fibroblast proliferation at a concentration of 0.5 mg/mL, enhanced the cell migration rate by 20%, and increased collagen type I synthesis by 18%. Moreover, the phenolic extract exhibited superior antioxidant properties by scavenging free DPPH (IC50 of 2.50 mg/mL) and ABTS (16.47 mM TE/g) radicals, and 46% inhibition of intracellular reactive oxygen species (ROS) production was achieved. The polysaccharide extract demonstrated a greater increase in collagen synthesis up to 25%, as well as antibacterial activity against Staphylococcus aureus with a bacteriostatic effect at 25 mg/mL and a bactericidal one at 50 mg/mL. All these findings indicate that the phenolic extract might be more beneficial in formulations intended for the initial phases of wound healing, such as inflammation and proliferation, while the polysaccharide extract could be more suitable for use during the remodeling stage. Moreover, they might be combined with other biomaterials, acting as efficient dressings with anti-inflammatory, antioxidant, and antibacterial properties for rapid recovery of chronic wounds. © 2024 by the authors. |
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conference
Anti-inflammatory and antioxidant activity of Aloe vera extract in immortalized human keratinocytes HaCaT |
Iosageanu A., Craciunescu O., Mihai E., Seciu-Grama A-M., Stefan L.M., Cimpean A. | Proceedings 90(1), 2023 | |
RezumatAloe vera leaf pulp has been utilized for over 5000 years as a medicinal plant by various civilizations, including the Egyptians, Romans, and Indigenous peoples of Africa, Asia, and the Americas [1]. In contemporary times, it is employed for the treatment of skin infections and burns, digestive disorders, and immune system enhancement [2]. The objective of this study was to investigate the anti-inflammatory and antioxidant activity of an aqueous extract of Aloe vera leaf pulp in immortalized human keratinocytes HaCaT to evaluate its biomedical potential for wound care management. |
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article
Comparative study on the composition, antioxidant and antimicrobial activity of fennel hydrolates |
Elena Mihai, Alexandra Gaspar-Pintiliescu, Teodora Ciucan, Ana-Maria Prelipcean, Justinian Tomescu, Miruna Neagu, Oana Craciunescu | Scientific Bulletin, Series F. Biotechnologies XXVII(1), 2023 | |
RezumatThe aim of this study was to investigate the composition and biological properties of hydrolates from fennel (Foeniculum vulgare L.) seeds and their usefulness in food and biomedical applications. Hydrolates were obtained by steam- and hydro-distillation of fennel seeds followed by essential oil separation. GC-MS analysis indicated the presence of volatile compounds in the hydrodistilled extract. HPLC analysis of fennel hydrolates showed a higher concentration of phenolic compounds in the steam distilled extract. The antioxidant activity, determined as Trolox equivalent antioxidant capacity (TEAC) and cupric reducing antioxidant capacity (CUPRAC), was correlated to the total phenolic content of fennel hydrolates, being higher in the steam distilled extract. Thus, besides volatiles, the phenolic compounds could significantly increase antioxidant activity. In turn, higher inhibition of bacterial growth was found for the hydrodistilled extract, due to the significant number of volatile compounds. In conclusion, fennel hydrolates represent a waste of significant interest for valorization within the circular bioeconomy and further application in the food and biomedical industry. |
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article
In Vitro Hypoglycemic Potential, Antioxidant And Prebiotic Activity After Simulated Digestion Of Combined Blueberry Pomace And Chia Seed Extracts |
Mihai Elena; Negreanu-Pirjol Bogdan-Stefan; Craciunescu Oana; Ciucan Teodora; Iosageanu Andreea; Seciu-Grama Ana-Maria; Prelipcean Ana-Maria; Utoiu Elena; Coroiu Viorica; Ghenea Ana-Maria; Negreanu-Pirjol Ticuta | Processes, 2023 | |
RezumatThis study aimed to evaluate the hypoglycemic potential, antioxidant activity and prebiotic activity of a hydroalcoholic extract of blueberry pomace (BP), an aqueous extract of chia seeds (CS) and a novel combination of BP-CS extracts (BCM) for further use as ingredient of functional food. Spectrometric and HPLC analyses were used to characterize the total phenolic and flavonoid content and composition of BP, while CS was analyzed for total carbohydrate content. Data showed that the BCM mixture exerted an inhibition of alpha-amylase activity, which was 1.36 times higher than that of BP and 1.25 higher than CS extract. The mixture also showed better scavenging activity of free DPPH radicals than individual extracts, and had an IC50 value of 603.12 mu g/mL. In vitro testing indicated that both serum- and colon-reaching products of simulated intestinal digestion of BCM presented the capacity to protect Caco-2 intestinal cells against oxidative stress by inhibition of reactive oxygen species production. In addition, the colon-reaching product of BCM digestion had the capacity to significantly (p < 0.05) stimulate the growth of Lactobacillus rhamnosus and Lactobacillus acidophilus, revealing a prebiotic potential. All these results indicated that improved biological activity of the novel combination of BP and CS extracts could be due to the synergistic action of constituents. The combination is recommended for further testing and the development of novel functional food for controlling type 2 diabetes and gastrointestinal conditions. |
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article
The Chemical Profile, Antioxidant, And Anti-Lipid Droplet Activity Of Fluid Extracts From Romanian Cultivars Of Haskap Berries, Bitter Cherries, And Red Grape Pomace For The Management Of Liver Steatosis |
Craciunescu Oana; Seciu-Grama Ana-Maria; Mihai Elena; Utoiu Elena; Negreanu-Pirjol Ticuta; Lupu Carmen Elena; Artem Victoria; Ranca Aurora; Negreanu-Pirjol Bogdan-Stefan | International Journal Of Molecular Sciences, 2023 | |
RezumatThis study aimed to investigate, for the first time, the chemical composition and antioxidant activity of fluid extracts obtained from three Romanian cultivars of haskap berries (Lonicera caerulea L.) var. Loni, bitter cherries (Prunus avium var. sylvestris Ser.) var. Silva, and pomace from red grapes (Vitis vinifera L.) var. Mamaia, and their capacity to modulate in vitro steatosis, in view of developing novel anti-obesity products. Total phenolic, flavonoid, anthocyanin, and ascorbic acid content of fluid extracts was spectrophotometrically assessed and their free radical scavenging capacity was evaluated using Trolox Equivalent Antioxidant Capacity (TEAC) and free 2,2-diphenyl-1-picrylhydrazyl (DPPH) radical inhibition assays. The Pearson coefficients showed a moderate correlation between the antioxidant activity of fluid extracts and their phenolic content, but a strong correlation between anthocyanin and ascorbic acid content. HPLC analysis identified and quantified the main phenolic compounds of chlorogenic and syringic acid, catechin, and glycosylated kaempferol, apigenin, and quercetin, in variable proportions. An in vitro experimental model of steatosis was developed in HepG2 hepatocytes treated with a mixture of free fatty acids. Cell culture analyses showed that cytocompatible concentrations of fluid extracts could significantly reduce the lipid accumulation and inhibit the reactive oxygen species, malondialdehyde, and nitric oxide secretion in stressed hepatocytes. In conclusion, these results put an emphasis on the chemical compounds' high antioxidant and liver protection capacity of unstudied fluid extracts obtained from Romanian cultivars of bitter cherries var. Silva and pomace of red grapes var. Mamaia, similar to the fluid extract of haskap berries var. Loni, in particular, the positive modulation of fat deposition next to oxidative stress and the lipid peroxidation process triggered by fatty acids in HepG2 hepatocytes. Consequently, this study indicated that these fluid extracts could be further exploited as hepatoprotective agents in liver steatosis, which provides a basis for the further development of novel extract mixtures with synergistic activity as anti-obesity products. |
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article
Antioxidant And Acetylcholinesterase Inhibition Capacity Of Hyrosols From Lamiaceae Plants For Biopesticide Use: Role Of Phenolics |
Gaspar-Pintiliescu Alexandra; Mihai Elena; Ciucan Teodora; Popescu Adriana Florina; Luntraru Cristina; Tomescu Justinian; Craciunescu Oana | International Journal Of Food Properties, 2022 | |
RezumatThe aim of this study was to investigate the main volatiles and polyphenolic compounds in hydrosols extracted from three Romanian Lamiaceae plants, sage (Salvia officinalis), rosemary (Rosmarinus officinalis) and lavender (Lavandula angustifolia) by steam distillation. The antioxidant and acetylcholinesterase inhibition capacity of hydrosols were assessed for their further use as biopesticides. The results have shown that sage and rosemary hydrosols presented better antioxidant activity than lavender hydrosol in all free radical scavenging and metal chelating assays. A strong relationship between the antioxidant activity of hydrosols' and their total phenolic and flavonoid content was found based on Pearson correlation coefficients. Sage and rosemary hydrosols exerted higher acetylcholinesterase inhibition than lavender hydrosol, but this activity was moderate correlated to phenolic content and low correlated to flavonoid content. These results suggested that volatiles and other compounds present in hydrosols were also involved in this process. In conclusion, Lamiaceae plant hydrosols could be further tested, as such or mixed, as natural products for the control of pests in eco-agrosystems. |
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