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763 results for “Antioxidant”
Fig. 1. Rickenyl A–E in Rickenyls A-E, antioxidative terphenyls from the fungus Hypoxylon rickii (Xylariaceae, Ascomycota)
Fig. 1. Rickenyl A–E (1–5) isolated from a single cultivation of the fungus Hypoxylon rickii.
DETERMINATION OF ANTIOXIDANT ACTIVITY OF ADRENALIN IN IN VITRO CONDITIONS OF INULA HELENIUM L. (BLACK ANDIZ) PLANT ROOT POWDER AND EXTRACT.
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USE OF NEW CARBON CLUSTER FULLERENES AS ANTIOXIDANTS IN PROTEIN STORAGE COMPOUNDS USED IN STROKE PREVENTION
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STUDYING INDICATORS OF THE ANTIOXIDANT SYSTEM FOR HASHIMOTO'S DISEASE IN ADOLESCENTS
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Antioxidant and anti-inflammatory function of walnut green husk aqueous extract (WNGH-AE) on human hepatocellular carcinoma cells (HepG2) treated with t-BHP
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Figure 1 from: Kachur O, Fira L, Lykhatskyі P, Fira D, Stechyshyn I (2021) The state of pro- and antioxidant systems in rats with DMH-induced colon carcinogenesis on the background of extracorporeal detoxification. Pharmacia 68(4): 941-946. https://doi.org/10.3897/pharmacia.68.e71840
Figure 1 Dynamics of the content of OMP products in the blood serum and liver homogenate of the rats with adenocarcinoma of the colon on the background of the enterosorbent AUT-M use. Note: * – significant differences in comparison to control animals; ** – significant differences between the indices of carcinogenic animals and carcinogenic animals that received enterosorbent.
Figure 3 from: Aluani D, Kondeva-Burdina M, Tosheva A, Yoncheva K, Tzankova V (2022) Improvement of in vitro antioxidant activity of kaempferol by encapsulation in copolymer micelles. Pharmacia 69(1): 25-29. https://doi.org/10.3897/pharmacia.69.e77678
Figure 3 Effect of empty PDMAEMA-PPO-PDMAEMA (PPO) and kaempferol (KF) loaded PDMAEMA-PPO-PDMAEMA (PPO-KF) micelles (25, 50, 75 μg/ml) on the level of malondialdehyde (MDA) in non-treated rat microsomes.
Figure 5 from: Aluani D, Kondeva-Burdina M, Tosheva A, Yoncheva K, Tzankova V (2022) Improvement of in vitro antioxidant activity of kaempferol by encapsulation in copolymer micelles. Pharmacia 69(1): 25-29. https://doi.org/10.3897/pharmacia.69.e77678
Figure 5 Protective effects of free kaempferol (KF) (25, 50, 75 μg/ml) and kaempferol loaded PDMAEMA-PPO-PDMAEMA (PPO-KF) micelles on the level of malondialdehyde (MDA) in iron/ascorbic acid (Fe2+/AA) treated microsomes. Mean values ± SN (n = 6). *** p < 0.001 compared to untreated control group; +++ < 0.001 vs Fe2+/AA is considered to be statistically significant.
Figure 2 from: Aluani D, Kondeva-Burdina M, Tosheva A, Yoncheva K, Tzankova V (2022) Improvement of in vitro antioxidant activity of kaempferol by encapsulation in copolymer micelles. Pharmacia 69(1): 25-29. https://doi.org/10.3897/pharmacia.69.e77678
Figure 2 Effect of empty PDMAEMA-PCL-PDMAEMA (PCL) and kaempferol (KF) loaded PDMAEMA-PCL-PDMAEMA (KF-PCL) micelles (25, 50, 75 μg/ml) on the level of malondialdehyde (MDA) in non-treated rat microsomes.
Figure 1 from: Aluani D, Kondeva-Burdina M, Tosheva A, Yoncheva K, Tzankova V (2022) Improvement of in vitro antioxidant activity of kaempferol by encapsulation in copolymer micelles. Pharmacia 69(1): 25-29. https://doi.org/10.3897/pharmacia.69.e77678
Figure 1 Mean diameter of both types of kaempferol loaded micelles – PDMAEMA-PCL-PDMAEMA (KF-PCL) and PDMAEMA-PPO-PDMAEMA (KF-PPO).
Figure 4 from: Aluani D, Kondeva-Burdina M, Tosheva A, Yoncheva K, Tzankova V (2022) Improvement of in vitro antioxidant activity of kaempferol by encapsulation in copolymer micelles. Pharmacia 69(1): 25-29. https://doi.org/10.3897/pharmacia.69.e77678
Figure 4 Protective effects of free kaempferol (KF) (25, 50, 75 μg/ml) and kaempferol loaded PDMAEMA-PCL-PDMAEMA (KF-PCL) micelles on the level of malondialdehyde (MDA) in iron/ascorbic acid (Fe2+/AA) treated microsomes.
Figure 5 from: Dovbnya DV, Kaplaushenko AH, Frolova YS, Pruglo ES (2022) Synthesis and antioxidant properties of new (2,4- and 3,4-dimethoxyphenyl)-1,2,4-triazoles. Pharmacia 69(1): 135-142. https://doi.org/10.3897/pharmacia.69.e74107
Figure 5 Mass spectra of 2-((5-(2,4-dimethoxyphenyl)-3H-1,2,4-triazole-3-yl)thio)acetonitrile (2.1).
Figure 4 from: Dovbnya DV, Kaplaushenko AH, Frolova YS, Pruglo ES (2022) Synthesis and antioxidant properties of new (2,4- and 3,4-dimethoxyphenyl)-1,2,4-triazoles. Pharmacia 69(1): 135-142. https://doi.org/10.3897/pharmacia.69.e74107
Figure 4 Mass spectra of 4-((5-(2,4-dimethoxyphenyl)-3H-1,2,4-triazole-3-yl)thio)butanenitrile (2.3).
Figure 2 from: Dovbnya DV, Kaplaushenko AH, Frolova YS, Pruglo ES (2022) Synthesis and antioxidant properties of new (2,4- and 3,4-dimethoxyphenyl)-1,2,4-triazoles. Pharmacia 69(1): 135-142. https://doi.org/10.3897/pharmacia.69.e74107
Figure 2 Scheme of the synthesis of ((5-(2,4- and 3,4-dimethoxyphenyl)-3H-1,2,4-triazole-3-yl)thio)aceto(propanoic, benzoic)acids (compounds 2.12–2.14).
Figure 1 from: Dovbnya DV, Kaplaushenko AH, Frolova YS, Pruglo ES (2022) Synthesis and antioxidant properties of new (2,4- and 3,4-dimethoxyphenyl)-1,2,4-triazoles. Pharmacia 69(1): 135-142. https://doi.org/10.3897/pharmacia.69.e74107
Figure 1 Scheme of the synthesis of ((5-(2,4- and 3,4-dimethoxyphenyl)-3H-1,2,4-triazole-3-yl)thio)aceto(propano-, butano-, benzo)nitriles (compounds 2.1–2.11).
Figure 3 from: Dovbnya DV, Kaplaushenko AH, Frolova YS, Pruglo ES (2022) Synthesis and antioxidant properties of new (2,4- and 3,4-dimethoxyphenyl)-1,2,4-triazoles. Pharmacia 69(1): 135-142. https://doi.org/10.3897/pharmacia.69.e74107
Figure 3 IR spectra of 2-(((5-(3,4-dimethoxyphenyl)-3H-1,2,4-triazole-3-yl)thio)methyl)benzonitrile (2.9).
Figure 1 from: Fouad AA, Moussa NA, Kareem MMA, Akl UI, Abdelghany MI, Abdel-Aziz AM (2022) Thymol exerts antioxidant, anti-inflammatory, and anti-apoptotic protective effects against gentamicin nephrotoxicity in rats. Pharmacia 69(1): 181-186. https://doi.org/10.3897/pharmacia.69.e77338
Figure 1 Results of thymol (TML) on: A. Serum creatinine and neutrophil gelatinase-associated lipocalin (NGAL); B. Renal malondialdehyde (MDA), nitric oxide (NO), and total antioxidant capacity (TAC); C. Renal tumor necrosis factor-α (TNF-α) and interleukin-18 (IL-18); D. Renal Bax; E. Renal caspase-3, and caspase-9 in gentamicin (GN)-challenged rats. Results are mean ± S.E.M., *p < 0.05 vs. control, ≠p < 0.05 vs GN.
Figure 2 from: Fouad AA, Moussa NA, Kareem MMA, Akl UI, Abdelghany MI, Abdel-Aziz AM (2022) Thymol exerts antioxidant, anti-inflammatory, and anti-apoptotic protective effects against gentamicin nephrotoxicity in rats. Pharmacia 69(1): 181-186. https://doi.org/10.3897/pharmacia.69.e77338
Figure 2 H&E (200×) of rat kidneys of: A. Control showing normal renal architecture; B. Gentamicin (GN) group demonstrating marked distortion of kidney architecture, renal tubular necrosis and dilatation, desquamation of lining epithelium (white arrow), cytoplasmic vacuolization (black arrow), interstitial edema, coagulative necrosis (black head), and inflammatory cell infiltration (white head); C. Thymol (TML) + GN showing preservation of the normal kidney histological picture; D. Score of tubular injury. Results are mean ± S.E.M., *p < 0.05 vs. control, ≠p < 0.05 vs. GN.
Figure 4 from: Fouad AA, Moussa NA, Kareem MMA, Akl UI, Abdelghany MI, Abdel-Aziz AM (2022) Thymol exerts antioxidant, anti-inflammatory, and anti-apoptotic protective effects against gentamicin nephrotoxicity in rats. Pharmacia 69(1): 181-186. https://doi.org/10.3897/pharmacia.69.e77338
Figure 4 Immunohistochemistry (200×) of kidney injury molecule-1 (KIM-1) of rat kidneys of: A. Control showing no staining (NS); B. Gentamicin (GN) group demonstrating a significant increment of KIM-1 immunopositivity in brown color; C. Thymol (TML) + GN showing a significant decrement of KIM-1 immunoreactivity; D. Immunoreactive area (µm2). Results are mean ± S.E.M., *p < 0.05 vs. control, ≠p < 0.05 vs. GN.
Figure 3 from: Fouad AA, Moussa NA, Kareem MMA, Akl UI, Abdelghany MI, Abdel-Aziz AM (2022) Thymol exerts antioxidant, anti-inflammatory, and anti-apoptotic protective effects against gentamicin nephrotoxicity in rats. Pharmacia 69(1): 181-186. https://doi.org/10.3897/pharmacia.69.e77338
Figure 3 Immunohistochemistry (200×) of nuclear factor-κB p65 (NF-κB p65) of rat kidneys of: A. Control showing no staining (NS); B. Gentamicin (GN) group demonstrating a significant increment of NF-κB p65 immunopositivity in brown color; C. Thymol (TML) + GN showing a significant decrement of NF-κB p65 immunoreactivity; D. Immunoreactive area (µm2). Results are mean ± S.E.M., *p < 0.05 vs. control, ≠p < 0.05 vs. GN.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.