يعرض 1 - 13 نتائج من 13 نتيجة بحث عن '"Gutiérrez Cuesta, Richard"', وقت الاستعلام: 0.62s تنقيح النتائج
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    المصدر: Revista Colombiana de Biotecnología; Vol. 21 Núm. 2 (2019); 109-117 ; Revista Colombiana de Biotecnología; Vol. 21 No. 2 (2019); 109-117 ; 1909-8758 ; 0123-3475

    وصف الملف: application/pdf; application/xml

    Relation: https://revistas.unal.edu.co/index.php/biotecnologia/article/view/74552/pdf; https://revistas.unal.edu.co/index.php/biotecnologia/article/view/74552/73970; British Pharmacopoeia. (2010). Vol IV (Appendix XI M) Tannins in Herbal Drugs. The Stationery Office; Londres; Inglaterra (www.pharmacopoeia.co.uk).; Christian; Zidorn. (2016). Secondary metabolites of seagrasses (Alismatales and Potamogetonales; Alismatidae): Chemical diversity; bioactivity; and ecological function. Phytochemistry; 124; 5-28.; de la Torre Núñez; E.; Rodeiro Guerra; I.; Menéndez Soto del Valle; R.; & Pérez Carrasco; D. (2012). Thalassia testudinum; una planta marina con potencialidades de uso terapéutico. Revista Cubana de Plantas Medicinales; 17(3); 288-296.; Garateix; A.; Salceda; E.; Menéndez; R.; Regalado; E.L.; López; O.; García; T.; Morales; R.A.; Laguna; A.; Thomas; O.P.; & Soto; E. (2011). Antinociception produced by Thalassia testudinum extract BM-21 is mediated by the inhibition of acid sensing ionic channels by the phenolic compound thalassiolin B. Molecular Pain; 7; 10.; García; T.; Menéndez; R.; Rivera; F.; Garateix; A.; Morales; R.A.; Regalado; E.; Rodríguez; J.C; & Dajas; F. (2017). Neuroprotective effects of Thalassia testudinum leaf extract BM-21 on focal ischemia in rats. Journal of Pharmacy & Pharmacognosy Research; 5(3); 174-186.; González; K.L.; Gutierrez; R.; Hernandez; Y.; Valdes-Iglesias; O.; Rodriguez; M. (2016). Determination of the antioxidant capacity of two seagrass species according to the extraction method. J Pharm Pharmacogn Res.; 4(5); 199-205.; Gutiérrez; R.; Núñez; R.; Quintana; L.; Valdés; O.; González; K.; Rodríguez; M.; Hernández; Y.; & Ortiz; E. (2017). Optimization of the extraction process of phenolic compounds from the brown algae Sargassum fluitans Børgesen (Børgesen). Biotecnología Aplicada; 34(3); 3301-3304.; Jiménez; J.; Guardia-Puebla; Y.; Cisneros-Ortiz; M.E.; Morgan-Sagastume; J.M.; Guerra; & G.; Noyola; A. (2015). Optimization of the specific methanogenic activity during the anaerobic co-digestion of pig manure and rice straw; using industrial clay residues as inorganic additive. Chemical Engineering Journal; 259; 703–714.; Menéndez; R.; García; T.; Garateix; A.; Morales; R. A.; Regalado; E. L.; Laguna; A.; & Fernández; M. D. (2014). Neuroprotective and antioxidant effects of Thalassia testudinum extract BM-21; against acrylamide-induced neurotoxicity in mice. Journal of Pharmacy & Pharmacognosy Research; 2(3).; Miranda; M.; Cuellar; A. (2001). Farmacognosia y Productos Naturales. Editorial Félix Varela. La Habana; 53;1723.; Nuñez; R.; Garateix; A.; Laguna; A.; Fernández; M.D.; Ortiz; E.; Llanio; M.; Valdés; O.; Rodríguez; A.; & Menéndez; R. (2006). Caribbean marine biodiversity as a source of new compounds of biomedical and others industrial applications. Pharmacologyonline; 3; 111-119.; Pinelo; M.; Ruiz-Rodríguez; A.; Sineiro; J.; Señoráns; F.J.; Reglero; G.; Núñez; M.J. (2007) Supercritical fluid and solid–liquid extraction of phenolic antioxidants from grape pomace: a comparative study. Eur. Food Res. Technol; 226; 199-205.; Pino; J. A.; & Regalado; E. L. (2010). Volatile constituents of Thalassia testudinum Banks ex König leaves. Journal of Essential Oil Research; 22(5); 421-423.; Regalado; E.L.; Menendez; R.; Valdés; O.; Morales; R.A.; Laguna; A.; Thomas; O.P.; Hernandez; Y.; Nogueiras; C.; & Kijjoa; A. (2012). Phytochemical analysis and antioxidant capacity of BM-21; a bioactive extract rich in polyphenolic metabolites from the sea Grass Thalassia testudinum. Natural Product Communications; 7(1); 47-50; Rodeiro; I.; Gómez-Lechón; M.J.; Tolosa; L.; Perez; G.; Hernandez; I.; Menendez; R.; Regalado; E.L.; Castell; J.V.; & Donato; M.T. (2011). Modulation of biotransformation and elimination systems by BM-21; an aqueous ethanolic extract from Thalassia testudinum; and thalassiolin B on human hepatocytes. Journal of Functional Foods; 4; 167-176.; Rodeiro-Guerra; I.; Hernández-Ojeda; S. L.; Herrera-Isidrón; J.A.; Hernández-Balmaseda; I.; Padrón-Yaquis; S.; del Rosario Olguín-Reyes; S.; Alejo-Rodríguez; P.L; Ronquillo-Sánchez; M.D.; Camacho-Carranza; R.; Menéndez-Soto del Valle; R.; Fernández-Pérez; M. D. & Espinosa-Aguirre; J.J. (2017). Study of the interaction of an extract obtained from the marine plant Thalassia testudinum with phase i metabolism in rats. Revista Internacional de Contaminación Ambiental; 33(4); 547-557.; Rowley; D. C.; Hansen; M. S.; Rhodes; D.; Sotriffer; C. A.; Ni; H.; McCammon; J. A.; & Fenical; W. (2002). Thalassiolins A–C: new marine-derived inhibitors of HIV cDNA integrase. Bioorganic & medicinal chemistry; 10(11); 3619-3625.; Srivastava; N.; Saurav; K.; Mohanasrinivasan; V.; Kannabiran; K.; & Singh; M. (2010). Antibacterial Potential of Macroalgae Collected from the Madappam Coast; India. British Journal of Pharmacology and Toxicology; 1(2); 72-76.; Subhashini; P.; Dilipan; E.; Thangaradjou; T.; & Papenbrock; J. (2013). Bioactive natural products from marine angiosperms: abundance and functions. Nat. Prod. Bioprospect; 3; 129–136.; Trevathan-Tackett; S. M.; Lane; A. L.; Bishop; N.; & Ross; C. (2015). Metabolites derived from the tropical seagrass Thalassia testudinum are bioactive against pathogenic Labyrinthula sp. Aquatic botany; 122; 1-8.; Usama; W. Hawas; & Lamia; T. Abou El-Kassem. (2017). Thalassiolin D: a new flavone O-glucoside Sulphate from the seagrass Thalassia hemprichii. Natural Product Research; 31.; Valdés Iglesias; O.R.; Hernández; Y.; Garateix; A.; Fernández; M.D.; Ortiz; E.; García; T.; et al. (2009). Informe Final del Proyecto No. 10010015 de la Agencia de Medio Ambiente “Uso sostenible de las algas marinas del archipiélago cubano con fines nutracéuticos”. http://repositorio.geotech.cu/jspui/handle/1234/179 .; Voko; Z.; Hollander; M.; Hofman; A.; Koudstaal; P.J.; & Breteler; M.M. (2003). Dietary antioxidants and the risk of ischemic stroke: the Rotterdam Study. Neurology; 61(9); 1273-1275.; Wang; L. & Weller; C.L. (2006). Recent advances in extraction of nutraceuticals from plants. Trends Food Sci. Technol; 17; 300-312.; Wang; Y.; & Wu; H. (2008). Improvement of biodiesel production by lipozyme TL IM catalyzed methanolysis using response surface methodology and acyl migration enhancer. Bioresour. Technol; 99; 7232–7237.; https://revistas.unal.edu.co/index.php/biotecnologia/article/view/74552

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    Additional Titles: Optimización del proceso de extracción de compuestos fenólicos de la angiosperma marina Thalassia testudinum

    المصدر: Revista Colombiana de Biotecnología; Vol. 21 Núm. 2 (2019); 109-117; Revista Colombiana de Biotecnología; Vol. 21 No. 2 (2019); 109-117; 1909-8758; 0123-3475

    URL: https://revistas.unal.edu.co/index.php/biotecnologia/article/view/74552/pdf
    https://revistas.unal.edu.co/index.php/biotecnologia/article/view/74552/73970
    https://revistas.unal.edu.co/index.php/biotecnologia/article/view/74552/pdf
    https://revistas.unal.edu.co/index.php/biotecnologia/article/view/74552/73970
    *ref*/British Pharmacopoeia. (2010). Vol IV (Appendix XI M) Tannins in Herbal Drugs. The Stationery Office; Londres; Inglaterra (www.pharmacopoeia.co.uk).
    *ref*/Christian; Zidorn. (2016). Secondary metabolites of seagrasses (Alismatales and Potamogetonales; Alismatidae): Chemical diversity; bioactivity; and ecological function. Phytochemistry; 124; 5-28.
    *ref*/de la Torre Núñez; E.; Rodeiro Guerra; I.; Menéndez Soto del Valle; R.; & Pérez Carrasco; D. (2012). Thalassia testudinum; una planta marina con potencialidades de uso terapéutico. Revista Cubana de Plantas Medicinales; 17(3); 288-296.
    *ref*/Garateix; A.; Salceda; E.; Menéndez; R.; Regalado; E.L.; López; O.; García; T.; Morales; R.A.; Laguna; A.; Thomas; O.P.; & Soto; E. (2011). Antinociception produced by Thalassia testudinum extract BM-21 is mediated by the inhibition of acid sensing ionic channels by the phenolic compound thalassiolin B. Molecular Pain; 7; 10.
    *ref*/García; T.; Menéndez; R.; Rivera; F.; Garateix; A.; Morales; R.A.; Regalado; E.; Rodríguez; J.C; & Dajas; F. (2017). Neuroprotective effects of Thalassia testudinum leaf extract BM-21 on focal ischemia in rats. Journal of Pharmacy & Pharmacognosy Research; 5(3); 174-186.
    *ref*/González; K.L.; Gutierrez; R.; Hernandez; Y.; Valdes-Iglesias; O.; Rodriguez; M. (2016). Determination of the antioxidant capacity of two seagrass species according to the extraction method. J Pharm Pharmacogn Res.; 4(5); 199-205.
    *ref*/Gutiérrez; R.; Núñez; R.; Quintana; L.; Valdés; O.; González; K.; Rodríguez; M.; Hernández; Y.; & Ortiz; E. (2017). Optimization of the extraction process of phenolic compounds from the brown algae Sargassum fluitans Børgesen (Børgesen). Biotecnología Aplicada; 34(3); 3301-3304.
    *ref*/Jiménez; J.; Guardia-Puebla; Y.; Cisneros-Ortiz; M.E.; Morgan-Sagastume; J.M.; Guerra; & G.; Noyola; A. (2015). Optimization of the specific methanogenic activity during the anaerobic co-digestion of pig manure and rice straw; using industrial clay residues as inorganic additive. Chemical Engineering Journal; 259; 703–714.
    *ref*/Menéndez; R.; García; T.; Garateix; A.; Morales; R. A.; Regalado; E. L.; Laguna; A.; & Fernández; M. D. (2014). Neuroprotective and antioxidant effects of Thalassia testudinum extract BM-21; against acrylamide-induced neurotoxicity in mice. Journal of Pharmacy & Pharmacognosy Research; 2(3).
    *ref*/Miranda; M.; Cuellar; A. (2001). Farmacognosia y Productos Naturales. Editorial Félix Varela. La Habana; 53;1723.
    *ref*/Nuñez; R.; Garateix; A.; Laguna; A.; Fernández; M.D.; Ortiz; E.; Llanio; M.; Valdés; O.; Rodríguez; A.; & Menéndez; R. (2006). Caribbean marine biodiversity as a source of new compounds of biomedical and others industrial applications. Pharmacologyonline; 3; 111-119.
    *ref*/Pinelo; M.; Ruiz-Rodríguez; A.; Sineiro; J.; Señoráns; F.J.; Reglero; G.; Núñez; M.J. (2007) Supercritical fluid and solid–liquid extraction of phenolic antioxidants from grape pomace: a comparative study. Eur. Food Res. Technol; 226; 199-205.
    *ref*/Pino; J. A.; & Regalado; E. L. (2010). Volatile constituents of Thalassia testudinum Banks ex König leaves. Journal of Essential Oil Research; 22(5); 421-423.
    *ref*/Regalado; E.L.; Menendez; R.; Valdés; O.; Morales; R.A.; Laguna; A.; Thomas; O.P.; Hernandez; Y.; Nogueiras; C.; & Kijjoa; A. (2012). Phytochemical analysis and antioxidant capacity of BM-21; a bioactive extract rich in polyphenolic metabolites from the sea Grass Thalassia testudinum. Natural Product Communications; 7(1); 47-50
    *ref*/Rodeiro; I.; Gómez-Lechón; M.J.; Tolosa; L.; Perez; G.; Hernandez; I.; Menendez; R.; Regalado; E.L.; Castell; J.V.; & Donato; M.T. (2011). Modulation of biotransformation and elimination systems by BM-21; an aqueous ethanolic extract from Thalassia testudinum; and thalassiolin B on human hepatocytes. Journal of Functional Foods; 4; 167-176.
    *ref*/Rodeiro-Guerra; I.; Hernández-Ojeda; S. L.; Herrera-Isidrón; J.A.; Hernández-Balmaseda; I.; Padrón-Yaquis; S.; del Rosario Olguín-Reyes; S.; Alejo-Rodríguez; P.L; Ronquillo-Sánchez; M.D.; Camacho-Carranza; R.; Menéndez-Soto del Valle; R.; Fernández-Pérez; M. D. & Espinosa-Aguirre; J.J. (2017). Study of the interaction of an extract obtained from the marine plant Thalassia testudinum with phase i metabolism in rats. Revista Internacional de Contaminación Ambiental; 33(4); 547-557.
    *ref*/Rowley; D. C.; Hansen; M. S.; Rhodes; D.; Sotriffer; C. A.; Ni; H.; McCammon; J. A.; & Fenical; W. (2002). Thalassiolins A–C: new marine-derived inhibitors of HIV cDNA integrase. Bioorganic & medicinal chemistry; 10(11); 3619-3625.
    *ref*/Srivastava; N.; Saurav; K.; Mohanasrinivasan; V.; Kannabiran; K.; & Singh; M. (2010). Antibacterial Potential of Macroalgae Collected from the Madappam Coast; India. British Journal of Pharmacology and Toxicology; 1(2); 72-76.
    *ref*/Subhashini; P.; Dilipan; E.; Thangaradjou; T.; & Papenbrock; J. (2013). Bioactive natural products from marine angiosperms: abundance and functions. Nat. Prod. Bioprospect; 3; 129–136.
    *ref*/Trevathan-Tackett; S. M.; Lane; A. L.; Bishop; N.; & Ross; C. (2015). Metabolites derived from the tropical seagrass Thalassia testudinum are bioactive against pathogenic Labyrinthula sp. Aquatic botany; 122; 1-8.
    *ref*/Usama; W. Hawas; & Lamia; T. Abou El-Kassem. (2017). Thalassiolin D: a new flavone O-glucoside Sulphate from the seagrass Thalassia hemprichii. Natural Product Research; 31.
    *ref*/Valdés Iglesias; O.R.; Hernández; Y.; Garateix; A.; Fernández; M.D.; Ortiz; E.; García; T.; et al. (2009). Informe Final del Proyecto No. 10010015 de la Agencia de Medio Ambiente “Uso sostenible de las algas marinas del archipiélago cubano con fines nutracéuticos”. http://repositorio.geotech.cu/jspui/handle/1234/179 .
    *ref*/Voko; Z.; Hollander; M.; Hofman; A.; Koudstaal; P.J.; & Breteler; M.M. (2003). Dietary antioxidants and the risk of ischemic stroke: the Rotterdam Study. Neurology; 61(9); 1273-1275.
    *ref*/Wang; L. & Weller; C.L. (2006). Recent advances in extraction of nutraceuticals from plants. Trends Food Sci. Technol; 17; 300-312.
    *ref*/Wang; Y.; & Wu; H. (2008). Improvement of biodiesel production by lipozyme TL IM catalyzed methanolysis using response surface methodology and acyl migration enhancer. Bioresour. Technol; 99; 7232–7237.

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    Alternate Title: Marine algae, potential source of macronutrients.

    المصدر: Revista de Investigaciones Marinas. jul-dic2017, Vol. 37 Issue 2, p16-28. 13p. 1 Chart.