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  1. 8121
    “…The efficacy of combined treatment with natural product-derived and chemotherapy agents including curcumin combined with 5-fluorouracil, resveratrol combined with cisplatin and epigallocatechin-3-gallate (EGCG) combined with cisplatin in preventing cancer progression and killing cancer cells has emerged. …”
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  2. 8122
    “…Objective: Here, we addressed the role of a new signaling axis involved in the regulation of in vitro spheroids formation and assessed the chemopreventive ability of diet-derived epigallocatechin gallate (EGCG) to impact the processes that govern the acquisition of spheroids CSC stemness traits. …”
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  3. 8123
    “…Emesis castigata diringeri Gallard 2008 is a subjective junior synonym of E. opaca, new status. …”
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  4. 8124
    por Lee, Mina, Sung, Sang Hyun
    Publicado 2016
    “…Abbreviations used: DMEM: Dulbecco's modified Eagle's medium, FBS: fetal bovine serum, ORO: Oil Red O, PBS: phosphate buffered saline, RT: room temperature, PPAR: peroxisome proliferator-activated receptor, C/EBP: CCAAT/enhancer-binding protein, SREBP1: sterol regulatory element binding protein 1, SCD-1: steroyl-coenzyme A desaturase 1, LPL: lipoprotein lipase, aP2: adipocyte fatty acid binding protein, FAS: fatty acid synthase, HSL: hormone sensitive lipase, Giα(1): GPT binding protein, PDE3B: phosphodiesterase 3B, TNFα: tumor necrosis factor α, GAPDH: glyceraldehyde 3-phosphate dehydrogenase, SD: standard deviation, EGCG: epigallocatechin-3-gallate, TZD: thiazolidinediones…”
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  5. 8125
    “…We demonstrated that epigallocatechin-3 gallate (EGCG) was found to be capable of restoring the coupled relationship between Ca(2+)-sensitivity and TnI phosphorylation in mutant thin filaments to normal in vitro, independent of the mutation (15 mutations tested). …”
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  6. 8126
    “…The aim of this study was to evaluate the efficacy of five-year maintenance therapy with indole-3-carbinol (I3C) as well as I3C and epigallocatechin-3-gallate (EGCG) conducted before, during, and after combined treatment compared with combined treatment alone in advanced ovarian cancer. …”
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  7. 8127
    por Eisenhut, Michael
    Publicado 2019
    “…The experiments will be repeated with prior application of the inhibitors of epigenetic programming of innate immunity histone methyltransferase inhibitor 5’-deoxy-5’-methylthio-adenosine and histone acetyl transferase inhibitor epigallocatechin-3-gallate. The influence of BCG on innate immunity is further corroborated by a prospective observational study in human infants. …”
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  8. 8128
    “…On the basis of HPLC-ESI-QTOF-MS profiling of metabolites, we identified major compounds such as Bergenin, Catechin, Arbutin, Gallic acid, Protocatechuic acid, Syringic acid, Hyperoside, Afzelechin, Methyl gallate, Paashaanolactone, Astilbin, Quercetin, Kaempferol-7-O-glucoside, Diosmetin, Phloretin, and Morin in methanol extract which has reported beneficial bioactivities. …”
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  9. 8129
    “…Phytochemical analysis performed through HPLC resulted in the identification of nine possible compounds (malic acid, epigallocatechin gallate, quercetin, morin, ellagic acid, catechin hydrate, rutin, pyrogallol, and mandelic acid) in various germplasm of oat. …”
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  10. 8130
    por Mashraqi, Abdullah
    Publicado 2023
    “…In contrast, low contents of cinnamic acid, methyl gallate, apigenin, daidzein, quercetin, syringic acid, and kaempferol were detected. …”
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  11. 8131
    “…MH significantly induced (p < 0.05) the occurrence of most compounds at high concentrations of 5655.89 µg/mL, 3967.65 µg/mL, 224.80 µg/mL, 887.83 µg/mL, 2979.14 µg/mL, 203.02 µg/mL, 284.65 µg/mL, 1893.66 µg/mL, and 187.88 µg/mL, unlike the detection at low concentrations of 3461.19 µg/mL, 196.96 µg/mL, 664.12 µg/mL, 2835.09 µg/mL, 153.26 µg/mL, 254.43 µg/mL, 1605.00 µg/mL, 4486.02 µg/mL, and 195.60 µg/mL using UMH, for naringenin, methyl gallate, caffeic acid, rutin, ellagic acid, coumaric acid, vanillin, ferulic acid, and hesperetin, respectively. …”
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  12. 8132
    “…Following this analysis, we scrutinized the available literature on broadly acting anti-angiogenic natural products, with a focus on finding qualitative information on phytochemicals which could inhibit these targets and came up with 10 prototypical phytochemical compounds: (1) oleanolic acid, (2) tripterine, (3) silibinin, (4) curcumin, (5) epigallocatechin-gallate, (6) kaempferol, (7) melatonin, (8) enterolactone, (9) withaferin A and (10) resveratrol. …”
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  13. 8133
    “…All flavonoids increased with ripening except for rutin, gallocatechin and gallocatechin gallate. There were no significant differences (p < 0.05) in flavonoid contents between both varieties. …”
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  14. 8134
    “…RNA‐sequencing, histological changes, gene expression, lipid metabolism, mitochondrial function and the effect of dietary factor epigallocatechin‐3‐gallate (EGCG) treatment (100 mg/kg) on IMAT infiltration were studied. …”
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  15. 8135
    “…The screening results demonstrate relative few valid hits with anti-inflammatory effects at < 250μg/ml for the following: Bay Leaf (Laurus nobilis), Elecampagne Root (Inula helenium), Tansy (Tanacetum vulgare),Yerba (Eriodictyon californicum) and Centipeda (Centipeda minima), Ashwagandha (Withania somnifera), Feverfew (Tanacetum parthenium), Rosemary (Rosmarinus officinalis), Turmeric Root (Curcuma Longa), Osha Root (Ligusticum porteri), Green Tea (Camellia sinensis) and constituents: cardamonin, apigenin, quercetin, biochanin A, eupatorin, (-)-epigallocatechin gallate (EGCG) and butein. Natural products lethal against [E. coli 0157:H7] where the LC(50) < 100 μg/ml included bioactive silver hydrosol-Argentyn 23, green tea (its constituents EGCG > Polyphenon 60 > (-)-Gallocatechin > Epicatechin > (+)-Catechin), Grapeseed Extract (Vitis vinifera), Chinese Gallnut (its constituents gallic acid > caffeic acid) and gallic acid containing plants such as Babul Chall Bark (Acacia Arabica), Arjun (Terminalia Arjuna) and Bayberry Root Bark (Morella Cerifera). …”
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  16. 8136
    “…Molecular docking confirmed that the 6 critical active phytochemicals of F. dibotrys, such as luteolin, (+) -epicatechin, quercetin, isorhamnetin, (+) -catechin, and (−) -catechin gallate, can combine with kernel therapeutic targets NEDD8, SRPK1, DCUN1D1, and PARP1. …”
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  17. 8137
  18. 8138
    “…SAKAMAKON: An gudanar da abubuwa tara wanda jimlar mutane 550 suka halarta. Daga cikin mahalarta 339 (61.6%) da suka kammala tambayoyin, 325 daga cikin mahalarta (95.1%) sun ba da rahoton ingantacciyar fahimta, kuma 236 (67.0%) sun nuna ƙarin ta'aziyya wajen raba abinci da yin magana da mai cutar. …”
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  19. 8139
    “…Abbreviations : CVD: cardiovascular disease; BP: blood pressure; HTN: hypertension, lncRNAs: long noncoding RNAs; p38-MAPK: p38-mitogenactivated protein kinase; OPCs: oligomeric procyanidins; GTP: guanosine triphosphate; ROS: reactive oxygen species; cGMP: cyclic guanosine monophosphate; SGC: soluble guanylate cyclase; PI3K: phosphatidylinositol 3-kinase; cGMP: Cyclic GMP; eNOS: endothelial NO synthase; ERK ½: extracellular signal-regulated kinase ½; L-Arg: L-Arginine; MAPK: mitogen-activated protein kinases; NO: Nitric oxide; P: Phosphorus; PDK1: Phosphoinositide-dependent kinase 1; PI3-K: Phosphatidylinositol 3-kinase; PIP2: Phosphatidylinositol diphosphate; ncRNAs: non-protein-coding RNA; miRNAs: microRNAs; OPCs: oligomeric procyanidins; RES: resveratrol; GE: grape extract; T2DM: type 2 diabetes mellitus; IL: interleukin; TNF-α: tumour necrosis factor-alpha; NF-κB: nuclear factor NF-kappa-B; ALP: alkaline phosphatase; PARP1: poly [ADP-ribose] polymerase 1; HIF1a: Hypoxia-inducible-factor 1A; NFATc2: nuclear factor of activated T cells 2; PAD: peripheral artery disease; SHR: spontaneously hypertensive rat; RAAS: renin-angiotensin-aldosterone system; AT(1)R: angiotensin type-1 receptor; Nox: NADPH oxidase; HO-1: haem oxygenase-1; JAK/STAT: Janus kinase/signal transducers/activators of the transcription; PNS: panax notoginseng saponin; snoRNA: small nucleolar RNA; hnRNA: heterogeneous nuclear RNA; VSMCs: vascular smooth muscle cells; irf7: interferon regulatory factor 7; limo2: LIM only domain 2; GWAS: genome-wide association study; GAS5: Growth arrest-specific 5; Asb3, Ankyrin repeat and SPCS box containing 3; Chac2: cation transport regulator homolog 2; Pex11b: peroxisomal membrane 11B; Sp5: Sp5 transcription factor; EGCG: epigallocatechin gallate; ApoE: Apo lipoprotein E; ERK-MAP kinase: extracellular signal-regulated kinases-mitogen-activated protein kinase; PAH: pulmonary artery hypertension; PAP: pulmonary arterial pressure; HIF1a: hypoxia-inducible-factor 1A; NFATc2: nuclear factor of activated T cells 2; HMEC-1: Human microvascular endothelial cells; stat2: signal transducers and activators of transcription 2; JNK: c-Jun N-terminal kinase; iNOS: inducible NO synthase. …”
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  20. 8140
    por Parent, Eric, Richter, Alan, Aulisa, Angelo Gabriele, Guzzanti, Vincenzo, Pizzetti, Paolo, Poscia, Andrea, Aulisa, Lorenzo, Simony, Ane, Christensen, Steen Bach, Andersen, Mikkel O., Negrini, Alessandra, Donzelli, Sabrina, Maserati, Laura, Zaina, Fabio, Villafane, Jorge H, Negrini, Stefano, Fortin, Carole, Grunstein, Erin, Labelle, Hubert, Parent, Stefan, Feldman, Debbie Ehrmann, Lou, Edmond, Zheng, Rui, Hill, Doug, Donauer, Andreas, Tilburn, Melissa, Raso, Jim, Schreiber, Sanja, Parent, Eric, Kawchuk, Greg, Hedden, Douglas, Sánchez-Raya, Judith, Adrover, Antonia Matamalas, D’Agata, Elisabetta, Granell, Joan Bagó, Kluszczynski, Marek, Kluszczyńska, Anna, Wąsik, Jacek, Motow-Czyż, Marta, Kluszczyński, Adam, Simony, Ane, Hansen, Karen Hojmark, Thomsen, Hanne, Andersen, Mikkel Meyer, Vuust, Morten, Blicharska, Irmina, Durmała, Jacek, Wnuk, Bartosz, Matyja, Małgorzata, Szopa, Andrzej, Domagalska-Szopa, Małgorzata, Gallert-Kopyto, Weronika, Łosień, Tomasz, Plintla, Ryszard, Landauer, Franz, Vanas, Karl, Gur, Gozde, Altun, Necdet Sukru, Yakut, Yavuz, Gawda, Piotr, Majcher, Piotr, Sulam, Lior Neuhaus, Bradley, Michael, Glynn, David, Hughes, Alex, Maude, Erika, Pilcher, Christine, Lebel, Andrea, Lebel, Victoria Ashley, Orbán, Judit, Stępień, Agnieszka, Graff, Krzysztof, Speers, D., Aulisa, Angelo Gabriele, Guzzanti, Vincenzo, Mastantuoni, Giuseppe, Poscia, Andrea, Aulisa, Lorenzo, Aulisa, Angelo Gabriele, Guzzanti, Vincenzo, Falciglia, Francesco, Poscia, Andrea, Aulisa, Lorenzo, Karavidas, Nikos, Etemadifar, Mohammadreza, Donzelli, Sabrina, Zaina, Fabio, Lusini, Monia, Minnella, Salvatore, Balzarini, Luca, Respizzi, Stefano, Negrini, Stefano, Güttinger, Kathrin, Durmała, Jacek, Blicharska, Irmina, Drosdzol–Cop, Agnieszka, Skrzypulec–Plinta, Violetta, D’Agata, Elisabetta, Sánchez-Raya, Judith, Sánchez-Raya, Judith, D’Agata, Elisabetta, Paśko, Sławomir, Glinkowski, Wojciech, Michoński, Jakub, Walesiak, Katarzyna, Pakuła, Anna, Sitnik, Robert, Glinkowski, Wojciech, Diers, Helmut, Majcher, Piotr, Gawda, Piotr, Lebel, Andrea, Lebel, Victoria Ashley, van Loon, Piet, van Erve, Ruud, Grotenhuis, Andre, Zapata, Karina, Parent, Eric, Sucato, Dan, Korbel, Krzysztof, Kozinoga, Mateusz, Stoliński, Łukasz, Kotwicki, Tomasz, Lebel, Andrea, Lebel, Victoria Ashley, Diers, Helmut, Berdishevsky, Hagit, Berdishevsky, Hagit
    Publicado 2016
    “…Judith Sánchez-Raya, Antonia Matamalas Adrover, Elisabetta D’Agata, Joan Bagó Granell O9 Magnitude of the Cobb angle on an X-ray in relation to the angle of trunk rotation in children who come to the “Troniny” Scoliosis Treatment Centre Marek Kluszczynski, Anna Kluszczyńska, Jacek Wąsik, Marta Motow-Czyż, Adam Kluszczyński O10 Cobb angel measurement without X-ray, a novel method Ane Simony, Karen Hojmark Hansen; Hanne Thomsen; Mikkel Meyer Andersen; Morten Vuust O11 The postural tone magnitude and distribution in patients diagnosed with an adolescent idiopathic scoliosis: a preliminary study Irmina Blicharska, Jacek Durmała, Bartosz Wnuk, Małgorzata Matyja O12 From studies on the function of the respiratory system in children with body posture defects Andrzej Szopa, Małgorzata Domagalska-Szopa, Weronika Gallert-Kopyto, Tomasz Łosień, Ryszard Plintla O13 Scoliosis as the “first” sign of various diseases Franz Landauer, Karl Vanas O14 The effectiveness of core stabilization exercises versus conventional exercises in addition to brace wearing in patients with adolescent idiopathic acoliosis Gozde Gur, Necdet Sukru Altun, Yavuz Yakut O15 The effect of physiotherapy techniques on the body balance in patients with scoliosis treated with corrective appliances Piotr Gawda, Piotr Majcher O16 New combine method treating AIS – preliminary results Lior Neuhaus Sulam O17 Does a 4-week intensive course of ScolioGold therapy reduce angle of trunk rotation in scoliotic patients: a retrospective case series. …”
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