Determinación de los efectos antihipertensivos de fracciones aisladas de Passiflora quadrangularis L. en murinos

dc.contributor.advisorGuerrero Pabón, Mario Franciscospa
dc.contributor.authorBareño Ariza, Lesly Lizethspa
dc.contributor.corporatenameUniversidad Nacional de Colombiaspa
dc.contributor.researchgroupPrincipios Bioactivos en Plantas Medicinalesspa
dc.date.accessioned2020-08-28T23:33:57Zspa
dc.date.available2020-08-28T23:33:57Zspa
dc.date.issued2020-08-28spa
dc.description.abstractEl objetivo del presente trabajo fue establecer el efecto cardiovascular de fracciones y compuestos aislados de Passiflora quadrangularis L. Para ello se realizó el fraccionamiento e identificación de compuestos del extracto etanólico mediante cromatografía flash en columna como técnica de separación y RMN como técnica de identificación estructural. Posteriormente se estudió la actividad antihipertensiva in vivo a través de la administración oral de E, FD, FM a 75mg/kg/día y C (sin tratamiento) en ratas SHR. Los valores PAS se obtuvieron con el método de maguito en cola durante 6 semanas. El peso de cada animal fue registrado semanalmente. Los órganos (corazón, aorta, mesenterio, riñón y plasma) de las ratas SHR tratadas fueron retirados después del sacrificio para realizar ensayos de funcionalidad (curvas concentración respuesta de ACh, NPS y PE), estudios morfométricos e histológicos, peroxidación lipídica y determinación de anión superóxido. Finalmente, las fracciones y compuestos obtenidos del fraccionamiento químico son evaluadas en órgano aislado con ratas normotensas Wistar. El mecanismo de acción de los compuestos con efecto vasodilatador es estudiado con antagonistas específicos como: L-NAME (100 µM), ODQ (30 µM), indometacina (1 µM), propranolol (1 µM) y atropina (30 µM) en anillos íntegros y los compuestos con efecto vasoconstrictor con: verapamilo (10 y 100 µM), yohimbina (1 y 100 µM), fentolamina (1µM) y prazosina (1 µM) en anillos sin endotelio. El efecto endotelio dependiente e independiente se evaluó con curvas concentración respuesta de ACh y NPS en anillos íntegros. En el fraccionamiento fitoquímico se identificaron 9 compuestos: (1) Estigmasterol, (2) linolenato de glicerilo, (3) ácido 3-O--D-glucopiranosilestigmasterol, (4) 3-O-β-Dglucopiranosil oleanólico, (5) ácido 3-O-β-D-glucopiranosil-(1→2)- β -D-glucopiranosil oleanólico, (6) 2’’-O-xilopiranosil vitexina, (7) 9,19-ciclolanost-24Z-eno-1β, 3β, 21, 26tetraol-3, (8) 26-di-O-β-glucósido, 9,19-ciclolanost-24Z-eno-3β,21,26β-triol-3-O-βgentibiósido-26-O-β-glucopiranósido, (9) ácido Ɣ-aminobutírico. A nivel in vivo todos los tratamientos administrados demostraron ser efectivos en el control de la presión arterial y en los estudios de funcionalidad mejoraron la capacidad relajante de ACh en aorta, mesenterio y riñón. De los estudios histológicos se observó disminución de la fibrosis cardiaca y vascular, así como tendencia a disminuir la producción de ROS ocasionadas por la hipertensión. Los compuestos 4 y 5 tiene efecto vasoconstrictor relacionado con la activación de VOCC a nivel extracelular y receptores α2 y el compuesto 6 y FD-8 tienen efecto vasodilatador dependiente de la vía NO/cGMP y activación de receptores muscarínicos.spa
dc.description.abstractEstablishing the cardiovascular effect of fractions and isolated compounds of Passiflora quadrangularis L., was the aim of this work. For this purpose, fractionation and identification methods of ethanolic extract compounds were performed by flash column chromatography as a separation technique and NMR as a structural identification technique. Subsequently, in vivo antihypertensive activity was studied through oral administration of E, FD, FM at 75mg / kg / day and C (without treatment) in SHR rats. PAS values were obtained by tailcuff method carried out for 6 weeks. The weight of each animal was recorded weekly. Treated SHR rats´ organs (heart, aorta, mesentery, kidney and plasma) were removed after sacrifice for functional tests (response curves of ACh, NPS and PE), morphometric and histological studies, lipid peroxidation and superoxide anion´s determination. Finally, both fractions and compounds obtained from chemical fractionation are evaluated by isolated organ of normotensive Wistar rats. The mechanism of action of vasodilator compounds is studied using specific antagonists such as: L-NAME (100 µM), ODQ (30 µM), indomethacin (1 µM), propranolol (1 µM) and atropine (30 µM) in rings in full rings (with endothelium), and the mechanism of actions of vasoconstrictor compounds is studied using: verapamil (10 and 100 µM), yohimbine (1 and 100 µM), phentolamine (1 µM) and 1µM prazosin) in rings without endothelium. Independent and dependent endothelial effect was evaluated with Ach and NPS concentration- response curves in full rings. In the phytochemical fractionation 9 compounds were identified: (1) Stigmasterol, (2) glyceryl linoleate, (3) 3-O-β-D-glucopyranosyl stigmasterol acid, (4) 3-O-β-D-glucopyranosyl oleanolic acid, (5) 3-O-β-D-glucopyranosyl- (1→ 2) - β-D-glucopyranosyl oleanolic acid, (6) 2 '' - O-xylopyranosyl vitexin, (7) 9,19-cyclolanost-24Z-eno -1β, 3β, 21,26-tetraol-3, (8) 26-di-O-β-glucoside, 9,19-cyclolanost-24Z-eno-3β, 21,26β-triol-3-O-β-gentibioside-26-O-β-glucopyranoside, (9) amino-aminobutyric acid. At in vivo level, all administered treatments demonstrated be effective in blood pressure´s control, and moreover, in functional studies they improved the ACh´s relaxing capacity in the aorta, mesentery and kidney. Histological studies showed a decrease in cardiac and vascular fibrosis, as well as a tendency to reduce ROS´ production caused by hypertension. Compounds 4 and 5 have vasoconstrictor effect related to the activation of extracellular VOCC, and α2 receptors. In addition, both compound 6 and FD-8 have vasodilator effect which relies on the NO / cGMP pathway and muscarinic receptors´ activation.spa
dc.description.additionalLínea de Investigación: Farmacología Experimental Cardiovascular en Productos Naturalesspa
dc.description.degreelevelDoctoradospa
dc.description.projectCONVOCATORIA 727 DE 2015 - DOCTORADOS NACIONALES - COLCIENCIASspa
dc.description.sponsorshipCOLCIENCIAS Y UNIVERSIDAD NACIONAL DE COLOMBIAspa
dc.format.extent171spa
dc.format.mimetypeapplication/pdfspa
dc.identifier.urihttps://repositorio.unal.edu.co/handle/unal/78327
dc.language.isospaspa
dc.publisher.branchUniversidad Nacional de Colombia - Sede Bogotáspa
dc.publisher.departmentDepartamento de Farmaciaspa
dc.publisher.programBogotá - Ciencias - Doctorado en Ciencias Farmacéuticasspa
dc.relation.referencesAiello, E. A., Villa-abrille, C., Escudero, E. M., Portiansky, E. L., Villa-abrille, C., & Escu-, E.M. (2004). Myocardial hypertrophy of normotensive Wistar-Kyoto rats. American Journal of Physiology Heart and Circulatory, 286, 1229–1235.spa
dc.relation.referencesAlvarado Cárdenas, L. O. (2007). Flora del valle de Tehuacán-Cuicatlán. 48, Passifloraceae L. Universidad Nacional Autónoma de México, Instituto de Biología.spa
dc.relation.referencesAmina, M., Alarfaj, N. A., El-tohamy, M. F., Musayeib, N. M. Al, Oraby, H. F., Amina, M., Al, N. M. (2018). Sequential injection-chemiluminescence evaluation of stigmasterol glucoside and luteolin via green synthesis of silver nanoparticles using biomass of plectranthus asirensis. Green Chemistry Letters and Reviews, 11(4), 523–533.spa
dc.relation.referencesAníbal, J., & Carabetti, M. (2012). Endotelio , inflamación e hipertensión arterial. Revista Uruguaya de Cardiología, 27(10), 413–417.spa
dc.relation.referencesAntognoni, F., Zheng, S., Pagnucco, C., Baraldi, R., Poli, F., & Biondi, S. (2007). Induction of flavonoid production by UV-B radiation in Passiflora quadrangularis callus cultures. Fitoterapia, 78, 345–352.spa
dc.relation.referencesAvula, B., Wang, Y.-H., Rumalla, C., Smillie, T. J., & Khan, I. A. (2012). Simultaneous Determination of Alkaloids and Flavonoids from Aerial Parts os Passiflora Species and Dietary Supplements using UPLC-UV-MS and HPTLC. Natural Product Communications, 7(9), 1177–1180.spa
dc.relation.referencesAziz, A., Ahsan, M., Hasan, C. M., & Masud, M. M. (2017). Tocopherols , Polyprenols and Steroids from Passiflora edulis and Bioactivities of its Extractives. Dhaka University Journal of Pharmaceutical Sciences, 16(1), 55–60.spa
dc.relation.referencesBai, R. R., Wu, X. M., & Xu, J. Y. (2015). Current natural products with antihypertensive activity. Chinese Journal of Natural Medicines, 13(10), 721–729.spa
dc.relation.referencesBareño, L. L., Puebla, P., Guerra, C. M., San Feliciano, A., Isaza, G., & Guerrero, M. F. (2017). Passiflora quadrangularis L. prevents experimental hypertension and vascular remodelling in rats exposed to nitric oxide deficit. Vitae, 24(3), 186–195.spa
dc.relation.referencesBeevers, G., Lip, G. Y. H., & Brien, E. O. (2001). The pathophysiology of hypertension Cardiac output and peripheral resistance Renin-angiotensin system Autonomic nervous system. British Medical Journal, 322(14), 912–916.spa
dc.relation.referencesBolívar, J. J. (2013). Essential Hypertension : An Approach to Its Etiology and Neurogenic Pathophysiology. International Journal of Hypertension, 2013, 1–11.spa
dc.relation.referencesBombardelli, E., Bonati, A., Gabetta, B., Martinelli, E. M., Mustich, G., & Danieli, B. (1975). Passiflorine, a new glycoside from Passiflora edulis. Phytochemistry, 14(12), 2661–2665.spa
dc.relation.referencesBonaventura, D., Lunardi, C. N., Rodrigues, G. J., Neto, A., & Bendhack, L. M. (2008). A novel mechanism of vascular relaxation induced by sodium nitroprusside in the isolated rat aorta. Nitric Oxide, 18, 287–295.spa
dc.relation.referencesCatterall, W. A. (2011). Voltage-Gated Calcium Channels. Cold Spring Harb Perspect Biol,1–24.spa
dc.relation.referencesCerón, A. F., Osorio, O., & Hurtado, A. (2012). Identificacón de acidos grasos contenidos en los aceites extraídos a partir d semillas de tres diferentes especies de frutas. Acta Agronómica, 61(2), 126–132.spa
dc.relation.referencesChen, Guifa, Suzuki, H., & Weston, A. H. (1988). Acetylcholine releases endotheliumderived hyperpolarizing factor and EDRF from rat blood vessels. British Journal of Pharmacology, 95(4), 1165–1174.spa
dc.relation.referencesChen, Guo-ping, Ye, Y., Li, L., Yang, Y., Qian, A., & Hu, S. (2009). Endotheliumindependent vasorelaxant effect of sodium ferulate on rat thoracic aorta. Life Sciences, 84(3–4),81–88.spa
dc.relation.referencesChen, M., Long, Z., Wang, Y., Liu, J., Pian, H. A. I., Wang, L., & Chen, Z. (2013). Protective effects of saponin on a hypertension target organ in spontaneously hypertensive rats. Experimental and Therapeutic Medicine, 5, 429–432.spa
dc.relation.referencesClark, J. L., Zahradka, P., & Taylor, C. G. (2015). Lead article Efficacy of flavonoids in the management of high blood pressure. Nutrition Reviews, 0(0), 1–24.spa
dc.relation.referencesClaro, J., Prínce, A., Tortoló, I. I. S., Iria, I. I. D., Salabert, A., Díaz, I. M. M., … Dra, I. (2017). La hipertensión arterial : un problema de salud internacional Arterial hypertension : an international health problem. Revista Médica Electrónica, 39(4), 987–994.spa
dc.relation.referencesClaro, J., Prínce, A., Tortoló, I. I. S., Iria, I. I. D., Salabert, A., Díaz, I. M. M., … Dra, I. (2017). La hipertensión arterial : un problema de salud internacional Arterial hypertension : an international health problem. Revista Médica Electrónica, 39(4), 987–994.spa
dc.relation.referencesCorneo, A., Modesti, G., Maria, S., Castellanos, L., Alejandro, F., Christina, T., Paulo, E. (2018). The sedative activity of fl avonoids from Passi flora quadrangularis is mediated through the GABAergic pathway. Biomedicine & Pharmacotherapy, 100(43), 388–393.spa
dc.relation.referencesCosta, Geison M, Gazola, A. C., Madóglio, F. A., Zucolotto, S. M., Reginatto, F. H., Castellanos, L., Schenkel, E. P. (2013). Vitexin derivates as chemical market in the differentation of the closely related species Passiflora alata curtis and Passiflora quadrangularis Linn. Journal of Liquid Chromatography & Related Technologies, 36(August 2016), 1697–1707.spa
dc.relation.referencesCosta, Geison Modesti. (2013). Estudo Químico de espécies Brasileiras e Colombianas do Gênero Passiflora. Universidade Federal de Santa Catarina.spa
dc.relation.referencesde Castro, P. C. F., Hoshino, A., da Silva, J. C., & Mendes, F. R. (2007). Possible anxiolytic effect of two extracts of Passiflora quadrangularis L. in experimental models. Phytotherapy Research : PTR, 21(5), 481–484.spa
dc.relation.referencesDhakal, R., Bajpai, V. K., Baek, K., & Korea, R. (2012). Production of gaba ( γ - aminobutyric acid ) by microorganisms : A review abstract gaba ( γ -aminobutyric acid ) is a four carbon non-protein amino acid that is widely distributed in plants , animals and microorganisms . As a metabolic product of plants a. Brazilian Journal of Microbiology, 1230–1241.spa
dc.relation.referencesDhawan, K., Dhawan, S., & Sharma, A. (2004). Passiflora: A review update. Journal of Ethnopharmacology, 94(1), 1–23.spa
dc.relation.referencesDias, D. A., Urban, S., & Roessner, U. (2012). A Historical Overview of Natural Products in Drug Discovery. Metabolites, 2(4), 303–336.spa
dc.relation.referencesDorans, K. S., Mills, K. T., Liu, Y., & He, J. (2018). Trends in Prevalence and Control of Hypertension According to the 2017 American College of Cardiology/American Heart Association (ACC/AHA) Guideline. Journal of the American Heart Association, 1–11.spa
dc.relation.referencesDoyama, J. T., Rodrigues, H. G., Novelli, E. L. B., Cereda, E., & Vilegas, W. (2005). Chemical investigation and effects of the tea of Passiflora alata on biochemical parameters in rats. Journal of Ethnopharmacology, 96(3), 371–374.spa
dc.relation.referencesDuboscq, C. (2017). Endotelio vascular. Hematología, 21, 19–30.spa
dc.relation.referencesDuque B., C. Duque B., & Morales P., A. L. Morales P. (2005). El aroma frutal de Colombia. Universidad Nacional de Colombia, Facultad de Ciencias, Departamento de Química.spa
dc.relation.referencesEl-askary, H. I. (2005). Terpenoids from Cleome droserifolia (Forssk.) Del. Molecules, 10, 971–977.spa
dc.relation.referencesElgendy, E. M., & Al-Ghamdy, H. (2007). Thermal and photooxidation reactions of the steroids: β-sitosterol, stigmasterol and diosgenin. Taiwan Pharmaceutical Journal, 59(3), 113–132.spa
dc.relation.referencesEsh, H., Agabiti, E., France, M. A., Uk, A. D., Germany, F. M., Kerins, M., France, I. D. (2018). 2018 ESC / ESH Guidelines for the management of arterial hypertension The Task Force for the management of arterial hypertension of the European Society of Cardiology ( ESC ) and the European Society of Hypertension (ESH).spa
dc.relation.referencesFauaz, G., Feres, T., Borges, A. C. R., & Paiva, T. B. (2000). Alpha-2 adrenoceptors are present in rat aorta smooth muscle cells, and their action is mediated by ATP-sensitive K(+) channels. British Journal of Pharmacology, 131, 788–794.spa
dc.relation.referencesFerreres, F., Gil-Izquierdo, A., Andrade, P. B., Valentão, P., & Tomás-Barberán, F. A. (2007). Characterization of C-glycosyl flavones O-glycosylated by liquid chromatography-tandem mass spectrometry. Journal of Chromatography A, 1161(1– 2), 214–223.spa
dc.relation.referencesFigueiredo, D., Colomeu, T. C., Schumacher, N. S. G., Stivanin-Silva, L. G., Cazarin, C. B. B., Meletti, L. M. M., Zollner, R. L. (2016). Aqueous leaf extract of Passiflora alata Curtis promotes antioxidant and anti-inflammatory effects and consequently preservation of NOD mice beta cells (non-obese diabetic). International Immunopharmacology, 35, 127–136.spa
dc.relation.referencesFinley, J. W. (2001). The Chemistry , Processing , and Health Benefits of Highly Unsaturated Fatty Acids : An Overview. American Chemical Society, 2–11.spa
dc.relation.referencesFraser, B. H., Perlmutter, P., & Wijesundera, C. (2007). Practical syntheses of triacylglycerol regioisomers containing long-chain polyunsaturated fatty acids. JAOCS, Journal of the American Oil Chemists’ Society, 84(1), 11–21.spa
dc.relation.referencesFreire, V. F., Silva, G. R., & Yariwake, J. H. (2018). Targeted-Analysis of β -Carboline Alkaloids in Passionfruit (“Maracujá”) by SBSE(PDMS)-LC/Flu and UHPLC-MS, 29(4), 775–781.spa
dc.relation.referencesFuchs Cordon, J. R. (2005). Hipertensión arterial. Acta Médica Costarricense, 47(3).spa
dc.relation.referencesGao, Y. (2017). Biology of vascular smooth muscle: Vasoconstriction and dilatation. Biology of Vascular Smooth Muscle: Vasoconstriction and Dilatation.spa
dc.relation.referencesGazola, A. C., Costa, G. M., Castellanos, L., Ramos, F. a., Reginatto, F. H., Lima, T. C. M. De, & Schenkel, E. P. (2015). Involvement of GABAergic pathway in the sedative activity of apigenin, the main flavonoid from Passiflora quadrangularis pericarp. Revista Brasileira de Farmacognosia, 25(2), 158–163.spa
dc.relation.referencesGil, I., Ferreres, F., & Toma, F. a. (2012). Effect of Modified Atmosphere Packaging on the Flavonoids and Vitamin C Content of Minimally Processed Swiss Chard ( Beta vulgaris Subspecies cycla ). Journal of Agricultural and Food Chemistry, 46(500 mL), 2007–2012.spa
dc.relation.referencesGiovannitti, J. A., Thoms, S. M., & Crawford, J. J. (2015). Alpha-2 Adrenergic Receptor Agonists : A Review of Current Clinical Applications. Anesthesia Progress, 62(15), 31–38.spa
dc.relation.referencesGiuffre, A. M. (2007). Chemical composition of purple passion fruit ( Passiflora edulis Sims var . edulis ) seed oil. Rivista Italiana Delle Sostanze Grasse, 84(2), 87–93.spa
dc.relation.referencesGnus, J., Rusiecka, A., Czerski, A., Zawadzki, W., Witkiewicz, W., & Hauzer, W. (2013). Comparison of the effect of alpha1- and alpha2-adrenoceptor agonists and antagonists on muscle contractility of the rabbit abdominal aorta in vitro. Folia Biologica, 61(1–2), 79–85.spa
dc.relation.referencesGoetz Moro, M., Vargas Sanchez, P. K., Lupepsa, A. C., Baller, E. M., & Nobre Franco, G. C. (2017). Biología de la ciclooxigenasa en la función renal – Revisión de la literatura. Revista Colombiana de Nefrología, 4(1), 27.spa
dc.relation.referencesGómez Roso, M. (2008). Efectos de zofenopril, sobre el estrés oxidativo y el remodelado cardiovascular en ratas hipertensas. Universidad de Salamanca.spa
dc.relation.referencesGonzalo Andrade-C, M. (2011). Estado del conocimiento de la biodiversidad en Colombia y sus amenazas. Consideraciones para fortalecer la interacción ciencia-política. Revista Académica Colombiana de Ciencias, 34(137), 491–507.spa
dc.relation.referencesGrau, P. W. (2018). Redefinition of high blood pressure Pathophysiology of hypertension : New concepts. Revista Peruana de Ginecología y Obstetricia, 64(2), 175–184.spa
dc.relation.referencesGuillén, M. D., & Ruiz, A. (2003). 1H nuclear magnetic resonance as a fast tool for determining the composition of acyl chains in acylglycerol mixtures. European Journal of Lipid Science and Technology, 105(9), 502–507.spa
dc.relation.referencesHayakawa, H., Hirata, Y., Suzuki, E., Kakoki, M., & Kikuchi, K. (1995). Endothelium-derived relaxing factors in the kidney of spontaneously hypertensive rats. Life Sciences, 56(21), 401–408.spa
dc.relation.referencesHe, M., Min, J., Kong, W., He, X., Li, J., & Peng, B. (2016). Fitoterapia A review on the pharmacological effects of vitexin and isovitexin. Fitoterapia, 115, 74–85.spa
dc.relation.referencesHernández, A., & Bernal, R. (2000). Lista de Especies de Passifloraceae de Colombia. Biota Colombiana, 1(3), 320–335.spa
dc.relation.referencesHouston, M. C. (2009). Handbook of hypertension. Wiley-Blackwell.spa
dc.relation.referencesIllingworth, D. R., & Naylor, I. L. (1982). An improved, ultrasonic auxotonic transducer for use with isolated tissues. Journal of Pharmacological Methods, 8(1), 59–71.spa
dc.relation.referencesJespersen, B., Tykocki, N. R., Watts, S. W., & Cobbett, P. J. (2015). Measurement of Smooth Muscle Function in the Isolated Tissue Bath- applications to Pharmacology Research. Journal of Visualized Experiments, 95(January), 1–9.spa
dc.relation.referencesJong, S. De, Veen, T. A. B. Van, & Bakker, J. M. T. De. (2012). Monitoring cardiac fibrosis : a technical challenge. Neth Heart Journal, 20, 44–48.spa
dc.relation.referencesKang, K. (2014). Endothelium-derived Relaxing Factors of Small Resistance Arteries in Hypertension. Official Journal of Korean Society of Toxicoloy, 30(3), 141–148.spa
dc.relation.referencesKapoor, R., & Patil, U. . (2011). MiniReview Importance and production of omega-3 fatty acids from natural sources. International Food Research Journal, 499, 493–499.spa
dc.relation.referencesKassan, M. (2010). Efectos de pravastatina en la disfunción endotelial, estrés oxidativo y otros parámetros cardiovasculares. Universidad de Salamanca.spa
dc.relation.referencesKaur, N., Chaudhary, J., Jain, A., & Lalit, K. (2011). Stigmasterol: A comprehensive review. International Journal of Pharmaceutical Sciences and Research, 2(9), 2259–2265.spa
dc.relation.referencesKhabazian, I., Bains, J. S., Williams, D. E., Cheung, J., Wilson, J. M. B., Pasqualotto, B. A., Shaw, C. A. (2002). Isolation of various forms of sterol b - D -glucoside from the seed of Cycas circinalis : neurotoxicity and implications for ALS-parkinsonism dementia complex. Journal of Neurochemistry, 82, 516–528.spa
dc.relation.referencesKumar, J. (2013). Epidemiology of hypertension. Clinical Queries Nephrology, 2(2), 56–61.spa
dc.relation.referencesLeong, X.-F., Ng, C.-Y., & Jaarin, K. (2015). Animal Models in Cardiovascular Research: Hypertension and Atherosclerosis. BioMed Research International, 2015, 1–11.spa
dc.relation.referencesLi, X., Chen, G., Li, L., Wang, K., Zhang, B., & Hu, S. (2010). Dual effects of sodium aescinate on vascular tension in rat thoracic aorta. Microvascular Research, 79(1), 63–69.spa
dc.relation.referencesLim, T. K. (2013). Passiflora quadrangularis. In Edible Medicinal And Non-Medicinal Plants (Vol. 4, pp. 181–186).spa
dc.relation.referencesLuiking, Y. C., Engelen, K. J., & Nicolaas, E. P. (2010). Regulation of nitric oxide production in health and disease. Current Opinion in Clinical Nutrition and Metabolic Care, 13, 97–104.spa
dc.relation.referencesMan, S., Gao, W., Zhang, Y., Huang, L., & Liu, C. (2010). Chemical study and medical application of saponins as anti-cancer agents. Fitoterapia, 81, 703–714.spa
dc.relation.referencesMarín, M. M., Caetano, C. M., & Posada Tique, C. A. (2009). Caracterización morfológica de especies del género Passiflora. Acta Agronómica, 58, 1–9.spa
dc.relation.referencesMills, K. T., Bundy, J. D., Kelly, T. N., Reed, J. E., Kearney, P. M., Reynolds, K., … He, J. (2016). Global Disparities of Hypertension Prevalence and Control: A Systematic Analysis of Population-Based Studies From 90 Countries. Circulation, 134(6), 441– 450.spa
dc.relation.referencesMinSalud. (2019). Retrieved November 27, 2019, from https://www.minsalud.gov.co/sites/rid/Lists/BibliotecaDigital/RIDE/INEC/IETS/GPC_Completa_HTA.pdfspa
dc.relation.referencesMoloudizargari, M., Mikaili, P., Aghajanshakeri, S., Asghari, M., & Shayegh, J. (2013, July). Pharmacological and Therapeutic effects of Peganum harmala and its main alkaloids. Pharmacognosy Reviews.spa
dc.relation.referencesMota, F., Gane, P., Hampden-Smith, K., Allerston, C. K., Garthwaite, J., & Selwood, D. L. (2015). A new small molecule inhibitor of soluble guanylate cyclase. Bioorganic and Medicinal Chemistry, 23(17), 5303–5310.spa
dc.relation.referencesNgo, D.-H., & Vo, T. S. (2019). An Updated Review on Pharmaceutical Properties of Gamma-Aminobutyric Acid. Molecules, 24.spa
dc.relation.referencesO’Brien, S. F. O., McKendrick, J. D., Radomski, M. W., Davidge, S. T., & Russell, J. C. (1998). Vascular wall reactivity in conductance and resistance arteries : differential effects of insulin resistance. Canadian Journal of Physiology and Pharmacology, 76, 72–75.spa
dc.relation.referencesOcampo, J. (2013). Diversity and Distribution of Passifloraceae in the Department of Huila in Colombia. Acta Biológica Colombiana (Vol. 18). Universidad Nacional de Colombia, Facultad de Ciencias, Departamento de Biología.spa
dc.relation.referencesOk, S., Bae, S. Il, Shim, H. S., & Sohn, J. (2012). Dexmedetomidine-induced contraction of isolated rat aorta is dependent on extracellular calcium concentration. Korean Journal Anesthesiology, 63(3), 253–259.spa
dc.relation.referencesOkamoto, K., & Aoki, K. (1963). Development of strain of spontaneously hypertensive rats. Japanese Circulation Journal, 27, 282–293.spa
dc.relation.referencesOMS | Hipertensión. (n.d.). Retrieved November 27, 2019, from https://www.who.int/topics/hypertension/es/spa
dc.relation.referencesOrsini, F., Pelizzoni, F., & Verotta, L. (1985). Quadranguloside, a cycloartane triterpene glycoside from Passiflora quadrangularis. Phytochemistry, 25(1), 191–193.spa
dc.relation.referencesOrsini, F., Pellizzoni, F., Ricca, G., & Verotta, L. (1987). Triterpene glycosides related to quadranguloside from Passiflora quadrangularis. Phytochemistry, 26(4), 1101–1105.spa
dc.relation.referencesOrsini, F., & Verotta, L. (1985). Separation of natural polar substances by reversed-phase high-performance liquid chromatography, centrifugal thin-layer chromatography and droplet counter-current chromatography. Journal of Chromatography, 349(1), 69–75.spa
dc.relation.referencesOsorio, C., Duque, C., & Fujimoto, Y. (2000). Oxygenated monoterpenoids from badea (Passiflora quadrangularis) fruit pulp. Phytochemistry, 53(1), 97–101.spa
dc.relation.referencesOsorio, C., Duque, C., Koami, T., & Fujimoto, Y. (1999). Stereochemistry of (3E)-3,7dimethyl-3-octene-1,2,6,7-tetraol isolated from Passiflora quadrangularis. Tetrahedron Asymmetry, 10(22), 4313–4319.spa
dc.relation.referencesOsorio, C., Duque, C., Suárez, M., Salamanca, L. E., & Urueña, F. (2002). Free, glycosidically bound, and phosphate bound flavor constituents of badea (Passiflora quadrangularis) fruit pulp. Journal of Separation Science, 25(3), 147–154.spa
dc.relation.referencesOzkor, M. A., & Quyyumi, A. A. (2011). Endothelium-Derived Hyperpolarizing Factor and Vascular Function. Cardiology Research and Practice, 2011.spa
dc.relation.referencesPáez, M. T., Rodríguez, D. C., López, D. F., Castañeda, J. A., Buitrago, D. M., Cuca, L. E., & Guerrero, M. F. (2013). Croton schiedeanus schltd prevents experimental hypertension in rats induced by nitric oxide deficit. Brazilian Journal of Pharmaceutical Sciences, 49(4), 865–871.spa
dc.relation.referencesPapyrus, E. E. (2002). Current Protocols in Pharmacology (John Wiley).spa
dc.relation.referencesPedraza Chaverri, J., & Cárdenas Rodríguez, N. (2018). Especies reactivas de oxígeno y sistemas antioxidantes. Aspectos básicos. Educación Química, 17(2), 164.spa
dc.relation.referencesPereira, C., Rodrigues, T. R., & Yariwake, J. H. (2014). Quantification of Harman Alkaloids in Sour Passion Fruit Pulp and Seeds by a Novel Dual SBSE-LC/Flu (Stir Bar Sorptive Extraction-Liquid Chromatography with Fluorescence Detector) Method. Journal Brazilian Chemical Society, 25(8), 1472–1483.spa
dc.relation.referencesPérez, J. O., Coppens, G., Restrepo, M., Jarvis, A., & Salazar, M. (2007). Diversity of Colombian Passifloraceae : biogeography and an updated list for conservation. Biota Colombiana, 8(1), 1–45.spa
dc.relation.referencesRamaiya, S. D., Bujang, J. S., & Zakaria, M. H. (2014). Assessment of total phenolic, antioxidant, and antibacterial activities of passiflora species. The Scientific World Journal, 2014.spa
dc.relation.referencesRameshrad, M., Babaei, H., Azarmi, Y., & Fadaei, D. (2016). Rat aorta as a pharmacological tool for in vitro and in vivo studies. Life Sciences, 145, 190–204.spa
dc.relation.referencesReginatto, F. H., Kauffmann, C., Schripsema, J., Guillaume, D., Gosmann, G., & Schenkef, E. P. (2001). Steroidal and Triterpenoidal Glucosides from Passiflora alata. Journal of the Brazilian Chemical Society, 12(1), 32–36.spa
dc.relation.referencesRenna, N. F., Heras, N. De, & Miatello, R. M. (2013). Pathophysiology of Vascular Remodeling in Hypertension. International Journal of Hypertension, 2013.spa
dc.relation.referencesRojas Armas, J., Arroyo Acevedo, J., & Alfonso Valiente, M. A. (2009). Actividad diurética del extracto metanólico de hojas de maracuyá (Passiflora edulis Sims) en ratas. Revista Cubana de Plantas Medicinales (Vol. 14). Editorial Ciencias Médicas.spa
dc.relation.referencesRojas, J., Ronceros, S., Palomino, R., Tomás, G., Chenguayen, J., & Chenguayen, J. (2006). Efecto antihipertensivo y dosis letal 50 del jugo del fruto y del extracto etanólico de las hojas de Passiflora edulis (maracuyá), en ratas. Anales de La Facultad de Medicina, 67(3), 206.spa
dc.relation.referencesRosas, M. M. (2006). Remodelación cardíaca e inflamación. Archivos de Cardiologia de Mexico, 76(SUPPL. 4), 58–66.spa
dc.relation.referencesRosendorff, C., Lackland, D. T., Allison, M., Aronow, W. S., Black, H. R., Blumenthal, R. S., White, W. B. (2015). Treatment of hypertension in patients with coronary artery disease A scientific statement from the American Heart Association , American College of Cardiology , and American Society of Hypertension American Heart Association , American College of Cardiolo. Journal of the American Society of Hypertension, 9(6), 453–498.spa
dc.relation.referencesSaeki, D., Yamada, T., Kajimoto, T., Muraoka, O., & Tanaka, R. (2011). A set of two diastereomers of cyanogenic glycosides from Passiflora quadrangularis. Natural Products Communications, 6(8), 1091–1094.spa
dc.relation.referencesSakalem, M. E., Negri, G., & Tabach, R. (2011). Chemical composition of hydroethanolic extracts from fi ve species of the Passifl ora genus. Revista Brasileira de Farmacognosia, 22(6), 1219–1232.spa
dc.relation.referencesSan Feliciano Martín, A., Pérez, A. L., Olmo, E. del, Martínez, J. C., Bravo, J. A., Castro, F., Colman, T. (2008). Manual de determinación estructural de compuestos naturales. Programa Iberoamericano de Ciencias y Tecnologia para el desarrollo (CYTED).spa
dc.relation.referencesSánchez, D., Kassan, M., Contreras, M. del M., Carrón, R., Recio, I., Montero, M.-J., & Sevilla, M.-Á. (2011). Long-term intake of a milk casein hydrolysate attenuates the development of hypertension and involves cardiovascular benefits. Pharmacological Research, 63(5), 398–404.spa
dc.relation.referencesSenejoux, F., Girard, C., Kerram, P., Akber, H., Berthelot, A., Bévalot, F., & Demougeot, C. (2010). Mechanisms of vasorelaxation induced by Ziziphora clinopodioides Lam . (Lamiaceae ) extract in rat thoracic aorta Franc. Journal of Ethnopharmacology, 132, 268–273.spa
dc.relation.referencesSharifi, A. M., Akbarloo, N., & Darabi, R. (2005). Investigation of local ACE activity and structural alterations during development of L-NAME-induced hypertension. Pharmacological Research, 52(5), 438–444.spa
dc.relation.referencesShi, C., Chen, S., Wang, G., Liao, J., & Chen, C. (2000). Vasorelaxant effect of harman. European Journal of Pharmacology, 390, 319–325.spa
dc.relation.referencesSilva, M., David, J. P., Silva, L. C. R. C., Santos, R. A. F., David, J. M., Lima, L. S., Fontana, R. (2012). Bioactive Oleanane, Lupane and Ursane Triterpene Acid Derivatives. Molecules, 17(10), 12197–12205.spa
dc.relation.referencesSingh, S., & Pradesh, U. (2016). A pharmacological review: Passiflora species.International Journal of Pharmacognosy, 3(1), 10–18.spa
dc.relation.referencesSomova, L. O., Nadar, A., Rammanan, P., & Shode, F. O. (2003). Cardiovascular , antihyperlipidemic and antioxidant effects of oleanolic and ursolic acids in experimental. Phytomedicine, 10, 115–121.spa
dc.relation.referencesSriraman, S., Ramanujam, G. M., Ramasamy, M., & Dubey, G. P. (2015). Journal of Pharmaceutical and Biomedical Analysis Identification of beta-sitosterol and stigmasterol in Bambusa bambos ( L .) Voss leaf extract using HPLC and its estrogenic effect in vitro. Journal of Pharmaceutical and Biomedical Analysis, 115, 55–61.spa
dc.relation.referencesSultana, N., & Ata, A. (2008). Oleanolic acid and related derivatives as medicinally important compounds. Journal of Enzyme Inhibition and Medicinal Chemistry, 23(6), 739–756.spa
dc.relation.referencesTangsucharit, P., Takatori, S., Zamami, Y., & Goda, M. (2016). Muscarinic acetylcholine receptor M1 and M3 subtypes mediate acetylcholine-induced endotheliumindependent vasodilatation in rat mesenteric arteries. Journal of Pharmacological Science, 130(1), 24–32.spa
dc.relation.referencesTe Riet, L., Esch, J. H. M. Van, Roks, A. J. M., & Danser, A. H. J. (2015). Hypertension Renin–Angiotensin–Aldosterone System Alterations. Circulation Research, 116, 960–975.spa
dc.relation.referencesTimmermans, P. B. M. W. ., Chiu, A. T., & Thoolen, M. J. M. . (1987). Calcium handling in vasoconstriction to stimulation of alpha 1 and alpha 2-adrenoceptors. Canadian Journal of Physiology and Pharmacology, 65, 1649–1657.spa
dc.relation.referencesTripoodo, N., & Frohlich, E. (1981). Controversies in cardiovascular research. Journal of the American Heart Association, 48(3).spa
dc.relation.referencesTrujillo, M. C. B., & Tovar, A. P. (2008). Oxido nítrico: implicaciones fisiopatológicas. Revista Colombiana de Anestesiología, 36(1), 45–52.spa
dc.relation.referencesVan Zwieten, P., Timmermans, P., Thoolen, M. J. M. C., Wilffert, B. O. B., & De Jonge, A. (1986). Inhibitory Effect of Calcium Antagonist Drugs on Vasocotistriction Induced by Vascular Alpha 2-Adrenoceptor Stimulation. American Journal of Cardiology, 57, 11D-15D.spa
dc.relation.referencesWang, X., Wang, M., Xu, M., Wang, Y., Tang, H., & Sun, X. (2014). Cytotoxic OleananeType Triterpenoid Saponins from the Rhizomes of Anemone rivularis var. flore-minore. Molecules, 60(19),2121–2134.spa
dc.relation.referencesWatanabe, S., Matsumoto, T., Ando, M., & Adachi, T. (2016). Multiple activation mechanisms of serotonin-mediated contraction in the carotid arteries obtained from spontaneously hypertensive rats. European Journal of Physiology, 2–4.spa
dc.relation.referencesWohlmuth, H., Penman, K. K. G., Pearson, T., & Lehmann, R. P. (2010). Pharmacognosy and chemotypes of passionflower (Passiflora incarnata L.). Biological and Pharmaceutical Bulletin, 33(6), 1015–1018.spa
dc.relation.referencesWright, J. L. C., Mcinnes, a G., Shimizu, S., & Khalil, D. I. a N. D. W. (1978). Identification of C-24 alkyl epimers of marine sterols by I3C nuclear magnetic resonance spectroscopy. Canadian Journal of Chemistry, 56(14), 1898–1903.spa
dc.relation.referencesWynne, B. M., Chiao, C., & Webb, R. C. (2009). Vascular smooth muscle cell signaling mechanisms for contraction to angiotensin II and endothelin-1. Journal of the American Society of Hypertension, 3(2), 84–95.spa
dc.relation.referencesYu, L., Tang, X., Chen, L., Wang, M., Jian, J., Cao, S., … Qiu, F. (2012). Oleanane-type triterpenoid saponins from Xanthoceras sorbifolia Bunge. Fitoterapia, 83(8), 1636–1642.spa
dc.relation.referencesYu, T., & Yc, W. (2012). Comparative effectiveness of different drug-eluting coronary, 15,2012.spa
dc.relation.referencesYuldasheva, L. N., Carvalho, E. B., Catanho, M. T. J. A., & Krasilnikov, O. V. (2005). Cholesterol-dependent hemolytic activity of Passiflora quadrangularis leaves. Brazilian Journal of Medical and Biological Research, 38(7), 1061–1070.spa
dc.relation.referencesZahmanov, G., Alipieva, K., Simova, S., & Georgiev, M. I. (2015). Metabolic differentiations of dwarf elder by NMR-based metabolomics. Phytochemistry Letters, 11, 404–409.spa
dc.relation.referencesZeng, Y., Zhang, Y., Weng, Q., Hu, M., & Zhong, G. (2010). Cytotoxic and Insecticidal Activities of Derivatives of Harmine, a Natural Insecticidal Component Isolated from Peganum harmala. Molecules, 15, 7775–7791.spa
dc.relation.referencesZhang, H., Samadi, A. K., Rao, K. V., Cohen, M. S., & Timmermann, B. N. (2011). Cytotoxic Oleanane-Type Saponins from Albizia inundata. Journal of Natural Products, 74(3), 477–482.spa
dc.relation.referencesZucolotto, S. M., Fagundes, C., Reginatto, F. H., Ramos, F. A., Castellanos, L., Duque, C., & Schenkel, E. P. (2012). Analysis of C-glycosyl flavonoids from South American Passiflora species by HPLC-DAD and HPLC-MS. Phytochemical Analysis, 23(3), 232–239.spa
dc.rightsDerechos reservados - Universidad Nacional de Colombiaspa
dc.rights.accessrightsinfo:eu-repo/semantics/openAccessspa
dc.rights.licenseAtribución-SinDerivadas 4.0 Internacionalspa
dc.rights.spaAcceso abiertospa
dc.rights.urihttp://creativecommons.org/licenses/by-nd/4.0/spa
dc.subject.ddc610 - Medicina y saludspa
dc.subject.ddc547 - Química orgánicaspa
dc.subject.ddc540 - Química y ciencias afinesspa
dc.subject.ddc581 - Temas específicos en historia natural de las plantasspa
dc.subject.proposalP. quadrangularis L.eng
dc.subject.proposalP. quadrangularis L.spa
dc.subject.proposalhypertension,eng
dc.subject.proposalhipertensiónspa
dc.subject.proposalisolated organeng
dc.subject.proposalórgano aisladospa
dc.subject.proposaloleanane saponinseng
dc.subject.proposalsaponinas oleananospa
dc.subject.proposalβ- carboline alkaloidseng
dc.subject.proposalalcaloides β- carbolínicosspa
dc.subject.proposalnitric oxideeng
dc.subject.proposalóxido nítricospa
dc.subject.proposalα 2 receptoreng
dc.subject.proposalreceptor α 2spa
dc.titleDeterminación de los efectos antihipertensivos de fracciones aisladas de Passiflora quadrangularis L. en murinosspa
dc.typeTrabajo de grado - Doctoradospa
dc.type.coarhttp://purl.org/coar/resource_type/c_db06spa
dc.type.coarversionhttp://purl.org/coar/version/c_ab4af688f83e57aaspa
dc.type.contentTextspa
dc.type.driverinfo:eu-repo/semantics/doctoralThesisspa
dc.type.versioninfo:eu-repo/semantics/acceptedVersionspa
oaire.accessrightshttp://purl.org/coar/access_right/c_abf2spa

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