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Publicaciones internacionales

Publicado 2 dic. 2015

LOMONTE B, GUTIERREZ J. M., FURTADO M. F., OTERO R., ROSSO J.P., VARGAS O., et al.  (1990). Isolation of basic myotoxins from Bothrops moojeni and Bothrops atrox snake venoms.  Toxicon 28, (10): 1137 - 1146. https://www.sciencedirect.com/science/article/abs/pii/004101019090114M?via%3Dihub


OTERO R., OSORIO R. G., VALDERRAMA R. and GIRALDO C.A.  (1992). Efectos farmacológicos y enzimáticos de los venenos de serpientes de Antioquia y Chocó (Colombia).  Toxicon 30, (5-6): 611- 620. http://www.sciencedirect.com/science/article/pii/004101019290855Y


OTERO R., NUÑEZ V., OSORIO R. G., GUTIERREZ J. M., GIRALDO C.A. and POSADA L. E.  (1995). Ability of six Latin American antivenoms to neutralize the venom of mapaná equis (Bothrops atrox) from Antioquia and Chocó (Colombia).  Toxicon 33, (6): 809 - 815. http://www.ncbi.nlm.nih.gov/pubmed/7676472


OTERO R., GUTIERREZ J. M., NUÑEZ V., ROBLES A., ESTRADA R., SEGURA E., et al.  (1996).  A randomized double-blind clinical trial of two antivenoms in patients bitten by Bothrops atrox bites in Colombia.  Transactions of the Royal Society of Tropical Medicine and Hygiene 90, 696 - 700
http://www.ncbi.nlm.nih.gov/pubmed/9015522


OTERO R., NUÑEZ V., GUTIERREZ J. M., ROBLES A., ESTRADA R., OSORIO R.G., et al.  (1997). Neutralizing capacity of a new monovalent anti-Bothrops atrox antivenom: comparison with two commercial antivenoms.  Brazilian Journal of Medical and Biological Research 30, 375 - 379. http://www.scielo.br/pdf/bjmbr/v30n3/2497C.pdf 


LOURENCO W. R. and OTERO-PATIÑO R. (1998).  Tityus antioquensis sp. n., a new species of scorpion from the Department Antioquia, Central Cordillera of Colombia (Scorpiones, Buthidae), with a checklist and key for the Colombian species of the genus.  Entomologische Mitteilungen aus dem Zoologischen Museum Hamburg 12, (158): 298 - 307. http://bionames.org/references/7f33a2e67bd53162209b9d5b43c95632


OTERO-PATIÑO R., CARDOSO J. L. C., HIGASHI H. G., NÚÑEZ V., DÍAZ A., TORO M.F., et al. (1998).  A randomized, blinded, comparative trial of one pepsin-digested and two whole IgG antivenoms in Bothrops snake bites in Urabá, Colombia.  American Journal of Tropical Medicine and Hygiene 58, (2): 183 - 189. http://www.ajtmh.org/content/58/2/183.full.pdf


OTERO R., FURTADO M. F., GONÇALVES L. R. C., NÚÑEZ V., GARCÍA M.E., OSORIO R.G., et al. (1998). Comparative study of the venoms of three subspecies of Lachesis muta (Bushmaster) from Brazil, Colombia and Costa Rica.  Toxicon 36, (12): 2021 - 2027. http://www.ncbi.nlm.nih.gov/pubmed/9839685


BOGARIN G., ROMERO M., ROJAS G., LUTSCH C., CASADAMONT M., LANG J., OTERO R., and GUTIERREZ J.M.  (1999). Neutralization, by a monospecific Bothrops lanceolatus antivenom, of toxic activities induced by homologous and heterologous Bothírops snake venoms.  Toxicon 37, 551 - 557. http://www.ncbi.nlm.nih.gov/pubmed/10080358


OTERO R., GUTIÉRREZ J. M., ROJAS G., NÚÑEZ V., DÍAZ A., MIRANDA E., et al.  (1999).  A randomized blind clinical trial of two antivenoms, prepared by caprylic acid or ammonium sulphate fractionation of IgG, in Bothrops and Porthidium snake bites in Colombia:  correlation between safety and biochemical characteristics of antivenoms.  Toxicon 37, 895 - 908. http://www.ncbi.nlm.nih.gov/pubmed/10340829


OTERO R., FONNEGRA R., JIMENEZ S., NÚÑEZ V., EVANS N., ALZATE S.P., et al.  (2000). Snakebites and ethnobotany in the northwest region of Colombia.  Part I:  Traditional use of plants. Journal of Ethnopharmacology 71, 493 - 504. http://www.ncbi.nlm.nih.gov/pubmed/10940589


OTERO R., NUÑEZ V., JIMENEZ S., FONNEGRA R., OSORIO R.G., GARCÍA M.E., DÍAZ A. (2000).  Snakebites and ethnobotany in the northwest region of Colombia.  Part II: Neutralization of lethal and enzymatic effects of Bothrops atrox venom.  Journal of Ethnopharmacology 71, 505 - 511.
http://www.ncbi.nlm.nih.gov/pubmed/10940590


OTERO R., NÚÑEZ V., BARONA J., FONNEGRA R., JIMENEZ S., OSORIO R.G., et al.  (2000). Snakebites and ethnobotany in the northwest region of Colombia.  Part III:  Neutralization of the haemorrhagic effect of Bothrops atrox venom.  Journal of Ethnopharmacology 73, 233 - 241. http://www.ncbi.nlm.nih.gov/pubmed/11025161


OTERO R., GUTIÉRREZ J., MESA M.B., DUQUE E., RODRÍGUEZ O., ARANGO J.L., et al. (2002). Complications of Bothrops, Porthidium and Botriechis snakebites in Colombia.  A clinical and epidemiological study of 39 cases attended in a university hospital.  Toxicon 40, 1107 - 1114. http://www.ncbi.nlm.nih.gov/pubmed/12165312


SALDARRIAGA M.M., OTERO R., NÚÑEZ V., TORO M.F., DÍAZ A., GUTIÉRREZ J.M. (2003).  Ontogenetic variability of Bothrops atrox and Bothrops asper snake venoms from Colombia. Toxicon 42, 405 - 411. http://www.ncbi.nlm.nih.gov/pubmed/14505941


NÚÑEZ V., OTERO R., BARONA J., SALDARRIAGA M., OSORIO R.G., FONNEGRA R., et al., (2004).  Neutralization of edema – forming, defibrinating and coagulant effects of Bothrops asper venom by extracts of plants used by healers in Colombia.  Brazilian Journal of Medical and Biological Research 37, 969 - 977. http://www.ncbi.nlm.nih.gov/pubmed/15264003


NÚÑEZ V., OTERO R., BARONA J., FONNEGRA R., JIMÉNEZ S.L., OSORIO R.G., et al., (2004).  Inhibition of the toxic effects of Lachesis muta, Crotalus durissus cumanensis and Micrurus mipartitus snake venoms by plant extracts.  Pharmaceutical Biology 42, (1): 49 - 54. https://www.tandfonline.com/doi/pdf/10.1080/13880200490505483?needAccess=true


OTERO R., NAVÍO E., CÉSPEDES F. A., NÚÑEZ M. J., LOZANO L., MOSCOSO E. R., et al., (2004).  Scorpion envenoming in two regions of Colombia:  clinical, epidemiological and therapeutic aspects.  Transactions of the Royal Society of Tropical Medicine and Hygiene 98, 742 – 750. http://www.ncbi.nlm.nih.gov/pubmed/15485705


NÚÑEZ V., ARCE V., GUTIÉRREZ J.M., LOMONTE B. (2004).  Structural and functional characterization of myotoxin I, a Lys49 phospholipase A2 homologue from the venom of the snake Bothrops atrox.  Toxicon 44, 91 - 101. http://www.ncbi.nlm.nih.gov/pubmed/15225567


NUÑEZ V., CASTRO V., MURILLO R., PONCE-SOTO L.A., MERFORT I., LOMONTE B. (2005). Inhibitory effects of Piper umbellatum and Piper peltatum extracts towards myotoxic phospholipases A2 from Bothrops snake venom: isolation of 4-nerolydilcatechol as active principle. Phytochemistry 66, 1017-1025. https://pubmed.ncbi.nlm.nih.gov/15896371/


BARONA J., BATISTA V.F.C., ZAMUDIO Z.F., GÓMEZ-LAGUNA F., WANKE E., OTERO R., POSSANI D. (2006).  Proteomic analysis of the venom and characterization of toxins specific for Na+ – and K+ – channels from the Colombian scorpion Tityus pachyurus.  Biochimica et Biophysica Acta 1764, 76-84. http://www.ncbi.nlm.nih.gov/pubmed/16309982


OTERO-PATIÑO R., LEÓN G., GUTIÉRREZ J.M., ROJAS G., TORO M.F., BARONA J., et al.  (2006). Efficacy and safety of two whole IgG polyvalent antivenoms, refined by caprylic acid fractionation, in the treatment of Bothrops asper bites in Colombia. Transactions of the Royal Society of Tropical Medicine and Hygiene 100, 1173-1182. http://www.ncbi.nlm.nih.gov/pubmed/16698053


ÁLVAREZ-GÓMEZ A.M., CARDONA-MAYA WD, CASTRO-ÁLVAREZ JF, SILVIA JIMÉNEZ, CADAVID A. (2007).  Nuevas opciones en anticoncepción: posible uso espermicida de plantas colombianas.  Actas Urol Esp. 2007; 31(4):372-381. http://scielo.isciii.es/pdf/aue/v31n4/v31n4a10.pdf


SALDARRIAGA-CÓRDOBA M., SASA M., PARDO R., MÉNDEZ M.A. (2009).  Phenotypic differences in a cryptic predator: factors influencing morphological variation in the terciopelo Bothrops asper (Garman, 1884; Serpentes: Viperidae).  Toxicon 54 (7): 923-937. http://www.ncbi.nlm.nih.gov/pubmed/19505490


PEREAÑEZ J.A., NÚÑEZ V., HUANCAHUIRE-VEGA S., MARANGONI S., PONCE-SOTO L.A. (2009).  Biochemical and biological characterization of a PLA2 from crotoxin complex of Crotalus durissus cumanensis.  Toxicon 53: 534-542. http://www.ncbi.nlm.nih.gov/pubmed/19673100


LOMONTE B., LEÓN G., ANGULO Y., RUCAVADO A. AND NÚÑEZ V. (2009). Neutralization of Bothrops asper venom by antibodies, natural products and synthetic drugs: Contributions to understanding snakebite envenomings and their treatment.  Toxicon 54 (7): 1012-1028. http://www.ncbi.nlm.nih.gov/pubmed/19324064


NÚÑEZ V., CID P., SANZ L., DE LA TORRE P., ANGULO Y., LOMONTE B., GUTIÉRREZ J. M., CALVETE J. J. (2009). Snake venomics and antivenomics of Bothrops atrox venoms from Colombia and the Amazon regions of Brazil, Perú and Ecuador suggest the occurrence of geographic variation of venom phenotype by a trend towards paedomorphism.  Journal of Proteomics 73: 57 – 78.  http://www.ncbi.nlm.nih.gov/pubmed/19665598


ESTRADA S., JIMENEZ S.L., ALARCON J.C., VARGAS L. (2010). Application of ultrasound in the dissolution of potential antiophidian compounds from two ethanolics extracts of two species of Heliconias.  Ultrasonics Sonochemistry 17 (5): 756-759. http://www.ncbi.nlm.nih.gov/pubmed/20189865


PATIÑO A.C., PEREAÑEZ J.A., NÚÑEZ V., BENJUMEA D.M., FERNANDEZ M., RUCAVADO A., SANZ L., CALVETE J.J. (2010). Isolation and biological characterization of Batx-I, a weak hemorrhagic and fibrinogenolytic PI metalloproteinase from Colombian Bothrops atrox venom. Toxicon. 56(6): 936- 943. http://www.ncbi.nlm.nih.gov/pubmed/20600221


PEREAÑEZ J. A., LOBO-ECHEVERRI T., ROJANO B., VARGAS L., FERNÁNDEZ M., GAVIRIA C. A., NÚÑEZ V. (2010).  Correlation of the inhibitory activity of phospholipase A2 snake venom and the antioxidant activity of Colombian plant extracts.  Revista Brasileira de Farmacognosia. 20 (6) 910 -916.  http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0102-695X2010000600014


SEGURA A., CASTILLO M.C., NÚÑEZ V., YARLEQUÉ A., GONÇALVES L.R.C., VILLALTA M., BONILLA C., HERRERA M., VARGAS M., FERNÁNDEZ M, YANO M.Y., ARAÚJO H.P., BOLLER M.A.A., LEÓN P., TINTAYA B., SANO-MARTINS I.S., GÓMEZ A., FERNÁNDEZ G.P., GEOGHEGAN P., HIGASHI H.G., LEÓN G., GUTIÉRREZ J.M. (2010). Preclinical assessment of the neutralizing capacity of antivenoms produced in six Latin American countries against medically-relevant Bothrops snake venoms. Toxicon 56 (6), 980-989. http://www.ncbi.nlm.nih.gov/pubmed/20621114


PEREAÑEZ J. A., NÚÑEZ V., PATIÑO A.C. (2011).  Inhibitory effects of bile acids on enzymatic and pharmacological activities of a snake venom phospholipase A2 from Group IIA.  Protein J. 30, 253- 261. http://www.ncbi.nlm.nih.gov/pubmed/21499855


REY-SUAREZ P., NÚÑEZ V., GUTIÉRREZ J. M., LOMONTE B. (2011). Proteomic and biological characterization of the venom of the redtail coral snake, Micrurus mipartitus (Elapidae), from Colombia and Costa Rica. Journal of Proteomics 75, 655- 667. http://www.ncbi.nlm.nih.gov/pubmed/21963438


VARGAS L.J., LONDOÑO M., QUINTANA J.C., RUA C., SEGURA C., LOMONTE B., NÚÑEZ V. (2012). An acidic phospholipase A (2) with antibacterial activity from Porthidium nasutum snake venom. Comparative Biochemistry and Physiology, Part B 161, 341 -347. http://www.ncbi.nlm.nih.gov/pubmed/22251437


CIRO G. G., QUINTANA C. J.C., ALARCÓN P. J.C., ZAPATA M. J.E. (2012). Ethanolic extract from leaves of Bixa orellana L.: A potential natural food preservative.  Interciencia 2012, 37 (7):547-551.  http://www.interciencia.org/v37_07/546.pdf


HENAO C. I.C., PEREAÑEZ J. A., JIOS J.L. (2012). Substituted thiobenzoic acid S-benzyl esters as potential inhibitors of a snake venom phospholipase A2: Synthesis, spectroscopic and computational studies. Journal of Molecular Structure 1028; 7-12. http://www.sciencedirect.com/science/article/pii/S0022286012005911


LOMONTE B., REY-SUAREZ P., TSAI W.C., ANGULO Y., SASA M., GUTIÉRREZ J.M., CALVETE J.J. (2012). Snake venomics of the pit vipers Porthidium nasutum, Porthidium ophryomegas, and Cerrophidion godmani from Costa Rica: Toxicological and taxonomical insights. Journal of Proteomics 75, 1675-1689. http://www.ncbi.nlm.nih.gov/pubmed/22212456


QUINTANA J.C, CHACÓN A.M., VARGAS L., SEGURA C., GUTIÉRREZ J.M., ALARCÓN J.C. (2012). Antiplasmodial effect of the venom of Crotalus durissus cumanensis, crotoxin complex and Crotoxin B. Acta Tropica 124, 126-132.  http://www.ncbi.nlm.nih.gov/pubmed/22884508


REY-SUÁREZ P., FLORIANO R.S., ROSTELATO-FERREIRA S., SALDARRIAGA-CÓRDOBA M., NÚÑEZ V., RODRIGUES-SIMIONI L., LOMONTE B. (2012). Mipartoxin-I, a novel three-finger toxin, is the major neurotoxic component in the venom of the redtail coral snake Micrurus mipartitus (Elapidae). Toxicon 60 (5): 851-863. http://www.ncbi.nlm.nih.gov/pubmed/22677806


NÚÑEZ RANGEL V., FERNÁNDEZ CULMA M., REY-SUÁREZ P., PEREAÑEZ J.A. (2012). Development of a sensitive enzyme immunoassay (ELISA) for specific identification of Lachesis acrochorda venom. The Journal of Venomous Animals and Toxins including Tropical Diseases 18 (2): 173-179
http://www.scielo.br/scielo.php?pid=S1678-91992012000200007&script=sci_arttext


OTERO-PATIÑO R., SEGURA A., HERRERA M., ANGULO Y., LEÓN G., GUTIÉRREZ J.M., BARONA J., ESTRADA S., PEREAÑEZ A., QUINTANA J.Q., VARGAS L.J., GÓMEZ J.P., DÍAZ A., SUÁREZ A.M., FERNÁNDEZ J., RAMÍREZ P., FABRA P, PEREA M., FERNÁNDEZ D., ARROYO Y., BETANCUR D., PUPO L., CÓRDOBA E.A., RAMÍREZ C.E., ARRIETA A.B., RIVERO A., MOSQUERA D.C., CONRADO N.L., ORTIZ R. (2012). Comparative study of the efficacy and safety of two polyvalent, caprylic acid fractionated [IgG and F(ab´)2] antivenoms, in Bothrops asper bites in Colombia. Toxicon 59 (2): 344-355. http://www.ncbi.nlm.nih.gov/pubmed/22146491


PEREANEZ J.A., GÓMEZ I.D., PATINO A.C. (2012). Relationship between the structure and the enzymatic activity of crotoxin complex and its phospholipase A2 subunit: An in silico approach. Journal of Molecular Graphics and Modelling 35; 36-42. http://www.ncbi.nlm.nih.gov/pubmed/22481077


QUINTANA C. J.C., VARGAS L.J., SEGURA C., GUTIÉRREZ J.M., ALARCÓN P. J.C. (2012). In vitro antiplasmodial activity of phospholipases A2 and a phospholipase homologue isolated from the venom of the snake Bothrops asper.  Toxins 4; 1500-1516. http://www.mdpi.com/2072-6651/4/12/1500


MADRIGAL M., SANZ L., FLORES-DÍAZ M., SASA M., NÚÑEZ V., ALAPE-GIRÓN A., CALVETE J.J. (2012). Snake venomics across genus Lachesis. Ontogenetic changes in the venom composition of Lachesis stenophrys and comparative proteomics of the venoms of adult Lachesis melanocephala and Lachesis acrochorda. Journal of Proteomics 77; 280-297.  http://www.ncbi.nlm.nih.gov/pubmed/22982523


BLANDÓN L., VÁZQUEZ M.V., BENJUMEA D.M., AND CIRO G. (2012). Electrochemical Synthesis of Silver Nanoparticles and their Potential Use as Antimicrobial Agent: a Case Study on Escherichia Coli. Portugaliae Electrochimica Acta 30(2): 135-144. http://peacta.org/articles_upload/PEA_30_1_2012_135_144.pdf


VIUDA-MARTOS M., CIRO-GÓMEZ G.L., RUIZ-NAVAJAS Y., ZAPATA-MONTOYA J.E., SENDRA E., PÉREZ-ÁLVAREZ J.A. and FERNÁNDEZ-LÓPEZ J. (2012). In vitro antioxidant and antibacterial activities of extracts from annatto (Bixa orellana L.) leaves and seeds. Journal of Food Safety 32 (4): Article first published online: 7 SEP. http://onlinelibrary.wiley.com/doi/10.1111/j.1745-4565.2012.00393.x/abstract


PATIÑO A.C., PEREAÑEZ J.A., GUTIÉRREZ J.M., RUCAVADO A. (2013). Biochemical and biological characterization of two serine proteinases from Colombian Crotalus durissus cumanensis snake venom. Toxicon 63; 32-42. http://www.ncbi.nlm.nih.gov/pubmed/23178323


VARGAS L.J., QUINTANA J.C., PEREAÑEZ J.A., NÚÑEZ V., SANZ L., CALVETE J. (2013). Cloning and characterization of an antibacterial L-amino acid oxidase from Crotalus durissus cumanensis venom. Toxicon 64; 1-11. http://www.ncbi.nlm.nih.gov/pubmed/23287728


VÁSQUEZ J., JIMÉNEZ S., GÓMEZ I., REY J.P., HENAO A.M., MARÍN D.M, ROMERO J.O., ALARCÓN J.C. (2013). Snakebites and ethnobotany in the Eastern region of Antioquia, Colombia — The traditional use of plants.  Journal of Ethnopharmacology 146; 449 - 455. http://www.ncbi.nlm.nih.gov/pubmed/23396114


PLA D., SANZ L., MOLINA-SÁNCHEZ P., ZORITA V, MADRIGAL M., FLORES-DÍAZ M., ALAPE-GIRÓN A., NÚÑEZ V., ANDRÉS V., GUTIÉRREZ J.M., CALVETE J.J. (2013). Snake venomics of Lachesis muta rhombeata and genus-wide antivenomics assessment of the paraspecific immunoreactivity of two antivenoms evidence the high compositional and immunological conservation across Lachesis.  Journal of Proteomics 89; 12-123. http://www.ncbi.nlm.nih.gov/pubmed/23747394


PATIÑO A.C., BENJUMEA D.M., PEREAÑEZ J.A. (2013). Inhibition of venom serine proteinase and metalloproteinase activities by Renealmia alpinia (Zingiberaceae) extracts: Comparison of wild and in vitro propagated plants. Journal of Ethnopharmacology 149; 590-596. http://www.ncbi.nlm.nih.gov/pubmed/23916793


ESTRADA-GÓMEZ S., VARGAS M. L.J., QUINTANA C. J.C. (2013). Extraction and partial characterization of venom from the Colombian spider Pamphobeteus aff. Nigricolor (Aranae:Theraphosidae).  Toxicon 76; 301-309 http://www.unboundmedicine.com/medline/citation/24140923/Extraction_and_partial_characterization_of_venom_from_the_Colombian_spider_Pamphobeteus_aff__nigricolor__Aranae:Theraphosidae__


PEREAÑEZ J.A., PATIÑO A.C., REY-SUAREZ P., NÚÑEZ V., HENAO CASTAÑEDA I.C., RUCAVADO A. (2013). Glycolic acid inhibits enzymatic, hemorrhagic and edema-inducing activities of BaP1, a P–I metalloproteinase from Bothrops asper snake venom: Insights from docking and molecular modeling. Toxicon 71; 41-48. http://www.ncbi.nlm.nih.gov/pubmed/23726855


PEREAÑEZ J.A., NÚÑEZ V., ROJANO B., LOBO-ECHEVERRI T.  (2013). Inhibitory effects of Swietenia macrophylla on myotoxic phospholipases A2. Revista Brasileira de Framacognosia 23; 885-894. http://www.scielo.br/scielo.php?pid=S0102-695X2013000600885&script=sci_arttext


GÓMEZ L.J., FIGUEROA O., ZAPATA J.E. (2013). Actividad Antioxidante de Hidrolizados Enzimáticos de Plasma Bovino Obtenidos por Efecto de Alcalasa® 2.4 L. Información Tecnología 24 (1): 33-42.   http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-07642013000100005


FERNÁNDEZ CULMA M., PEREAÑEZ J.A., NÚÑEZ RANGEL V., LOMONTE B. (2014). Snake venomics of Bothrops punctatus, a semi-arboreal pitviper species from Antioquia, Colombia.  Peer J 2; e246 https://peerj.com/articles/246/


VARGAS MUÑOZ L. J., ESTRADA-GÓMEZ S. (2014). Purification and Characterization of Venom Components as Source for Antibiotics. Mini-Reviews in Organic Chemistry 11; 15-27.  http://benthamscience.com/journal/abstracts.php?journalID=mroc&articleID=121339


VARGAS MUÑOZ L.J., ESTRADA-GÓMEZ S., NÚÑEZ V., SANZ L., CALVETTE J.J. Characterization and cDNA sequence of Bothriechis schlegelii L-amino acid oxidase with antibacterial activity.  (2014). International Journal of Biological Macromolecules 69; 200-207. http://www.ncbi.nlm.nih.gov/pubmed/24875315


ESTRADA-GÓMEZ S., CUPITRA N.I., MURILLO-ARANGO W., VARGAS-MUÑOZ L.J. (2014). Intraspecific variation of Centruroides Edwardsii venom from two regions of Colombia.  Toxins 6 (7); 2082-2096.  http://www.ncbi.nlm.nih.gov/pubmed/25025710


BONILLA-PORRAS A. R., SALAZAR-OSPINA A., JIMÉNEZ-DEL-RIO M., PEREAÑEZ-JIMÉNEZ A., VÉLEZ-PARDO C. (2014). Pro-apoptotic effect of Persea americana var. Hass (avocado) on Jurkat lymphoblastic leukemia cells. Pharmaceutical Biology 52 (4): 458-465. http://www.ncbi.nlm.nih.gov/pubmed/24188375


PEREAÑEZ J.A., PATIÑO A.C., NÚÑEZ V., OSORIO E. (2014). The biflavonoid morelloflavone inhibits the enzymatic and biological activities of a snake venom phospholipase A2. Chemico-Biological Interactions 220; 94–101.  http://www.ncbi.nlm.nih.gov/pubmed/24995575


GÓMEZ-BETANCUR I., BENJUMEA D. (2014). Traditional use of the genus Renealmia and Renealmia alpinia (Rottb.) Maas (Zingiberaceae)-a review in the treatment of snakebites. Asian Pacific Journal of Tropical Biomedicine 4 (11): 841-849. http://www.ncbi.nlm.nih.gov/pubmed/25312186


GÓMEZ-BETANCUR I., BENJUMEA D., PATIÑO A., JIMÉNEZ N., OSORIO E. (2014). Inhibition of the toxic effects of Bothrops asper venom by pinostrobin, a flavanone isolated from Renealmia alpinia (Rottb.) MAAS.  Journal of Ethnopharmacology 155; 1609-1615. http://www.ncbi.nlm.nih.gov/pubmed/25138354


GÓMEZ S. L.J., ZAPATA M. J.E. (2014). Effects of Hydrolysis and Digestion in Vitro on the Activity of Bovine Plasma Hydrolysates as Inhibitors of the Angiotensin I Converting Enzyme. Brazilian Archives of Biology and Technology 57(3); 386-393 http://www.scielo.br/scielo.php?pid=S1516-89132014000300012&script=sci_arttext


SEPÚLVEDA R. C.T., ZAPATA M. J.E., CIRO G. G.L. (2014). Optimizing the extraction of phenolic compounds from Bixa orellana and effect of physicochemical conditions on its antioxidant activity. Journal of Medicinal Plant Research 8 (46); 1333-1339 http://www.academicjournals.org/article/article1419949941_Rinc%C3%B3n%20et%20al.pdf


GÓMEZ-BETANCUR I., CORTÉS N., BENJUMEA D., OSORIO E., LEÓN F., CUTLER S.J. (2015). Antinociceptive activity of extracts and secondary metabolites from wild growing and micropropagated plants of Renealmia alpinia. Journal of Ethnopharmacology 165; 191-197. https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/25686780/


PATIÑO A.C., QUINTANA J.C., GUTIÉRREZ J.M., RUCAVADO A., BENJUMEA D.M., PEREAÑEZ J.A. (2015). Extracts of Renealmia alpinia (Rottb.) MAAS Protect against Lethality and Systemic Hemorrhage Induced by Bothrops asper Venom: Insights from a Model with Extract Administration before Venom Injection.  Toxins 7; 1532-1543. http://www.mdpi.com/2072-6651/7/5/1532


VÁSQUEZ J., ALARCÓN J.C., JIMÉNEZ S.L., JARAMILLO G.I., GÓMEZ-BETANCUR I.C.,REY-SUÁREZ J.P., JARAMILLO K.M., MUÑOZ D.C., MARÍN D.M., ROMERO J.O. (2015). Main plants used in traditional medicine for the treatment of snake bites n the regions of the department of Antioquia, Colombia. Journal of Ethnopharmacology 21; 170:158-66. https://pubmed.ncbi.nlm.nih.gov/25975514/


ESTRADA-GÓMEZ S., MUÑOZ L.J., LANCHERO P., LATORRE C. (2015). Partial Characterization of Venom from the Colombian Spider Phoneutria Boliviensis (Aranae: Ctenidae). Toxins 7; 8:2872-87. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4549730/pdf/toxins-07-02872.pdf


PERAFÁN C., CIFUENTES Y., ESTRADA-GOMEZ S. (2015). Aguapanela, a new tarántula genus from the Colombian Andes (Araneae, Theraphosidae). Zootaxa 4033 (4): 529–542. https://www.biotaxa.org/Zootaxa/article/view/zootaxa.4033.4.4/57152


FERNANDEZ J., VARGAS-VARGAS N., PLA D., SASA M., REY-SUAREZ P., SANZ L., GUTIERREZ J.M., CALVETE J.J., LOMONTE B. (2015). Snake venomics of Micrurus alleni and Micrurus mosquitensis from the Caribbean region of Costa Rica reveals two divergent compositional patterns in New World elapids. Toxicon 107; 217-233. https://www.sciencedirect.com/science/article/abs/pii/S0041010115300465


ESTRADA-GÓMEZ S., VARGAS- MUÑOZ L., SALDARRIAGA-CÓRDOBA M., QUINTANA-CASTILLO J.C. (2016). Venom from Opisthacanthus elatus scorpion of Colombia could be more hemolytic and less neurotoxic than thought. Acta Tropica 153; 70-78 https://linkinghub.elsevier.com/retrieve/pii/S0001-706X(15)30117-0


REY-SUÁREZ P., NÚÑEZ V., FERNÁNDEZ J., LOMONTE B. (2016). Integrative characterization of the venom of the coral snake Micrurus dumerilii (Elapidae) from Colombia: Proteome, toxicity, and cross-neutralization by antivenom. Journal of Proteomics 136; 262-273. https://www.sciencedirect.com/science/article/abs/pii/S187439191630029X


BENJUMEA D.M., GÓMEZ-BETANCUR I.C., VÁSQUEZ J., ALZATE F., GARCÍA-SILVAC A., FONTENLA J.A. (2016). Neuropharmacological effects of the ethanolic extract of Sida acuta. Revista Brasileira de Farmacognosia 26 (2); 209-2015. https://www.scielo.br/j/rbfar/a/MXwp54ZwSbkf5DWR5n8m5JS/?lang=en 


ARISTIZABAL J.C., BARONA J., GONZÁLEZ-ZAPATA L.I., DEOSSA G.C. ESTRADA A. (2016). Fatty acid content of plasma triglycerides may contribute to the heterogeneity in the relationship between abdominal obesity and the metabolic syndrome. Metabolic Syndrome and Related Disorders 14; (6) 311-317. https://pubmed.ncbi.nlm.nih.gov/26982448/


PRECIADO L.M., LOBO-ECHEVERRI T., PEREAÑEZ J.A., ZAPATA K., AND ROJAN B.A. (2016). Antioxidants from three Swietenia Species (Meliaceae).  Journal of Medicinal Plants Research 10 (2); 8 - 17. https://academicjournals.org/journal/JMPR/article-abstract/6BB127556789


LOMONTE B, REY-SUAREZ P., FERNÁNDEZ J., SASA M., PLA D., VARGAS N., BENARD-VALLE M., SANZ L., CORREA-NETTO C., NÚÑEZ V., ALAPE-GIRON A., ALAGÓN A., GUTIÉRREZ J.M., CALVETE J.  (2016). Venoms of Micrurus coral snakes: Evolutionary trends in compositional patterns emerging from proteomic analyses. Toxicon 122; 7-25 https://linkinghub.elsevier.com/retrieve/pii/S0041-0101(16)30271-9


LOMONTE B, SASA M, REY-SUÁREZ P, BRYAN W, GUTIÉRREZ JM. (2016). Venom of the coral snake Micrurus clarki: proteomic profile, toxicity, immunological cross-neutralization, and characterization of a three-finger toxin. Toxins 8 (5): 138. 
https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/27164141/


CIFUENTES Y., ESTRADA-GÓMEZ S., VARGAS-MUÑOZ L.J., PERAFÁN C. (2016). Description and molecular characterization of a new species of tarantula, Pamphobeteus verdolaga, from Colombia (Araneae: Mygalomorphae: Theraphosidae). ZOOLOGIA 33 (6): 1-6. https://www.scielo.br/j/zool/a/ZCL3pN9dpvPW5fsc5swWhRJ/?lang=en


BONILLA-PORRAS A.R., VARGAS L.J., JIMÉNEZ-DEL-RIO M., NÚÑEZ V., VÉLEZ-PARDO C. (2016). Purification of nasulysin-1: A new toxin from Porthidium nasutum snake venom that specifically induces apoptosis in leukemia cell model through caspase-3 and apoptosis-inducing factor activation.  Toxicon 120; 166-174. https://www.sciencedirect.com/science/article/abs/pii/S0041010116302392


GÓMEZ-BETANCUR I., PEREAÑEZ J.A., PATIÑO A. C., BENJUMEA D. (2016). inhibitory effect of pinostrobin from Renealmia alpinia, on the enzymatic and biological activities of a PLA2. International Journal of Biological Macromolecules 89; 35-42.  https://linkinghub.elsevier.com/retrieve/pii/S0141-8130(16)30350-6


REY-SUÁREZ P., NÚÑEZ V., SALDARRIAGA-CÓRDOBA M., LOMONTE B. (2017).  Primary structures and partial toxicological characterization of two phospholipases A2 from Micrurus mipartitus and Micrurus dumerilii coral snake venoms. Biochimie. 137; 88-98. https://www.sciencedirect.com/science/article/abs/pii/S0300908417300615?via%3Dihub


ESTRADA-GÓMEZ S., VARGAS-MUÑOZ L.J., SALDARRIAGA-CÓRDOBA M., CIFUENTES Y., PERAFAN C. (2017). Identifying different transcribed proteins in the newly described Theraphosidae Pamphobeteus verdolaga. Toxicon 129:81-88. https://pubmed.ncbi.nlm.nih.gov/28202363/


ESTRADA-GÓMEZ S., GÓMEZ-RAVE L., VARGAS-MUÑOZ L.J., Van Der MEIJDEN A. (2017). Characterizing the biological and biochemical profile of six different scorpion venoms from the Buthidae and Scorpionidae family. Toxicon. 130: 104-115. https://pubmed.ncbi.nlm.nih.gov/28209477/


PRECIADO L.M., PEREAÑEZ J.A. (2017). Low molecular mass natural and synthetic inhibitors of snake venom metalloproteinases. Toxin Reviews 1-8.
https://www.tandfonline.com/doi/abs/10.1080/15569543.2017.1309550?journalCode=itxr20

CHAURASIYA N., LEÓN F., DING Y., GÓMEZ-BETANCUR I., BENJUMEA D., WALKER L., CUTLER S., AND TEKWANI B. (2017). Interactions of desmethoxyyangonin, a secondary metabolite from Renealmia alpinia, with human monoamine Oxidase-A and Oxidase-B. Hindawi Evidence-Based Complementary and Alternative Medicine. 2017;10 pg.  https://doi.org/10.1155/2017/4018724


MEIJDEN A.V., KOCH B., VALK T. V., VARGAS‐MUÑOZ L., AND ESTRADA‐GÓMEZ S. (2017). Target‐Specificity in scorpions; comparing lethality of scorpion venoms across arthropods and vertebrates. Toxins 9 (10), 312. https://www.readcube.com/articles/10.3390%2Ftoxins9100312


POSADA ARIAS S., REY-SUÁREZ P., PEREÁÑEZ J. A., ACOSTA C., ROJAS M., DELAZARI DOS SANTOS L., FERREIRA R.S., AND NÚÑEZ V. (2017). Isolation and functional characterization of an acidic myotoxic phospholipase A2 from Colombian Bothrops asper venom. Toxins 9 (11), 342.
https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/29072602/

 

NARANJO A.M., QUINTERO J., CIRO G. (2017). Optimización del proceso de lixiviacion de compuestos bioactivos de semillas de Bixa orellana L. (annato). Revista Cubana de Plantas Medicinales 22; 4. http://www.revplantasmedicinales.sld.cu/index.php/pla/article/view/634/294


PRECIADO LM, REY-SUÁREZ P, HENAO IC, PEREAÑEZ JA. (2018). Betulinic, oleanolic and ursolic acids inhibit the enzymatic and biological effects induced by a P-I snake venom metalloproteinase. Chem Biol Interact 279: 219-226. https://pubmed.ncbi.nlm.nih.gov/29203373/


QUINTANA-CASTILLO JC, VARGAS LJ, SEGURA C, ESTRADA-GÓMEZ S, BUENO-SÁNCHEZ JC, ALARCÓN JC. (2018). Characterization of the Venom of C. d. cumanesis of Colombia: Proteomic Analysis and Antivenomic Study. Toxins (Basel) 17; 10 (2). https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5848186/pdf/toxins-10-00085.pdf


REY-SUÁREZ P, ACOSTA C, TORRES U, SALDARRIAGA-CÓRDOBA M, LOMONTE B, NÚÑEZ V. (2018). MipLAAO, a new L-amino acid oxidase from the redtail coral snake Micrurus mipartitus. PeerJ. 6; 20. https://www.readcube.com/articles/10.7717/peerj.4924


PRECIADO LM, PEREAÑEZ JA, AZHAGIYA SINGAM ER, COMER J. (2018). Interactions between triterpenes and a P-I type snake venom metalloproteinase: Molecular simulations and experiments. Toxins (Basel). 28; 10 (10), 397.  https://www.mdpi.com/2072-6651/10/10/397/pdf


PRECIADO LM, COMER J, NÚÑEZ V, REY-SÚAREZ P, PEREAÑEZ JA. (2018). Inhibition of a snake venom metalloproteinase by the flavonoid myricetin. Molecules 16; 23 (10). https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/30332829/


ESPINOSA-MONCADA J., MARÍN-ECHEVERRI C, GALVIS-PÉREZ Y, CIRO-GÓMEZ G, ARISTIZÁBAL JC, BLESSO CN, FERNÁNDEZ ML, BARONA-ACEVEDO J. (2018). Evaluation of Agraz consumption on adipocytokines, inflammation, and oxidative stress markers in women with metabolic syndrome.  Nutrients. 10 (11) 1639. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6266490/pdf/nutrients-10-01639.pdf


PEREAÑEZ, A., PATIÑO, A., GUTIÉRREZ, J., PRECIADO, L. (2018). Preliminary studies on different modes of interaction between hemorrhagic and non-hemorrhagic p-i snake venom metalloproteinases with basement membrane substrates: insights from an in silico approach. Medical Research Archives 6 (11). https://esmed.org/MRA/mra/article/view/1856


MESA M, PEREAÑEZ JA, PRECIADO LM, BERNAL C. (2018). How the Triton X-100 modulates the activity/stability of the Thermomyces lanuginose lipase: Insights from experimental and molecular docking approaches. Int J Biol Macromol. 120: 2410 -2417. https://pubmed.ncbi.nlm.nih.gov/30193918/


MARÍN-ECHEVERRI C, BLESSO CN, FERNÁNDEZ ML, GALVIS-PÉREZ Y, CIRO-GÓMEZ G, NÚÑEZ-RANGEL V., ARISTIZÁBAL JC, BARONA-ACEVEDO J. (2018). Effect of Agraz (Vaccinium meridionale Swartz) on High-Density lipoprotein function and inflammation in women with metabolic syndrome. Antioxidants (Basel). 8; 7 (12), 185. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6315480/pdf/antioxidants-07-00185.pdf


QUINTERO J., ROJAS J., CIRO G. (2018). Vegetable proteins as potential encapsulation agents: a review. Food Research 2 (3): 208 – 220
https://bibliotecadigital.udea.edu.co/handle/10495/17074

GOMEZ-BETANCUR I., BENJUMEA D., GÓMEZ J.E., MEJÍA N., LEÓN J.F.  (2019). Antinociceptive Activity of Essential Oils from Wild Growing and Micropropagated Plants of Renealmia alpinia (Rottb.) Maas.  Records of Natural Products 13 (1): 10 -17
https://bibliotecadigital.udea.edu.co/bitstream/10495/20250/1/BenjumeaDora_2019_AntinociceptiveActivityEssential.pdf

QUINTERO J., CELIS A., MUÑOZ L., SILVA M., CIRO G., CAMARGO J. (2019). Optimization of the Microwave-Assisted extraction process of bioactive compounds from Annatto Seeds (Bixa orellana L.). Antioxidantes (Basilea); 8 (2): 37.
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6406707/

QUINTERO-QUIROZ J., GALVIS-PÉREZ Y., GALEANO-VÁSQUEZ S., MARÍN-ECHEVERRI C., FRANCO-ESCOBAR C., CIRO-GÓMEZ G., NÚÑEZ-RANGEL V., ARISTIZÁBAL-RIVERA J.C., BARONA-ACEVEDO J.(2019). Physico-chemical characterization and antioxidant capacity of the colombian berry (Vaccinium meridionale Swartz) with a high-polyphenol content: potential effects in people with metabolic syndrome. Food Science and Technology 39 (3):573-582. https://www.scielo.br/j/cta/a/Dt76hBZzgdLzpRhzK9bzFsG/?format=pdf&lang=en


HENAO I.C., PEREAÑEZ J.A., PRECIADO L.M. (2019). Synthetic Inhibitors of Snake Venom Enzymes: Thioesters Derived from 2-Sulfenyl Ethylacetat.  Pharmaceuticals 12:(2) https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6630910/


BEDOYA-MEDINA J., MENDIVIL-PÉREZ M., REY-SUÁREZ P., JIMÉNEZ-DEL-RIO M., NÚÑEZ V., VÉLEZ-PARDO C. (2019). L-amino acid oxidase isolated from Micrurus mipartitus snake venom (MipLAAO) specifically induces apoptosis in acute lymphoblastic leukemia cells mostly via oxidative stress-dependent signaling mechanism. Int J Biol Macromol 134: 1052-162 https://pubmed.ncbi.nlm.nih.gov/31129208/


GÓMEZ-BETANCUR I., ZHAO J., TAN L., CHEN CH, YU G., REY-SUÁREZ P., PRECIADO L. (2019). Bioactive Compounds Isolated from Marine Bacterium Vibrio neocaledonicus and Their Enzyme Inhibitory Activities. Marine Drugs 17; 401. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6669558/pdf/marinedrugs-17-00401.pdf

 

QUINTERO J., NARANJO A.M., SILVA M., CIRO G.L., ROJAS J.J. (2019). Ultrasound-Assisted Extraction of Bioactive Compounds from Annatto Seeds, Evaluation of Their Antimicrobial and Antioxidant Activity, and Identification of Main Compounds by LC/ESI-MS Analysis. Hindawi, International Journal of Food Science. 4: 1-9. https://www.hindawi.com/journals/ijfs/2019/3721828/


ESTRADA-GÓMEZ S., CALDAS F., VARGAS-MUÑOZ L.J., QUINTANA-CASTILLO J.C., ARENAS C.M., PINEDA S.S., SALDARRIAGA-CÓRDOBA M.M. (2019). Venomic, transcriptomic, and Bioactivity Analyses of Pamphobeteus verdolaga Venom Reveal Complex Disulfide-Rich Peptides That Modulate Calcium Channels. Toxins 11 (9): 496. https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/31461913/

 

GÓMEZ-BETANCUR I., GOGINENI V., SALAZAR-OSPINA A., LEÓN F. (2019). Perspective on the Therapeutics of Anti-Snake Venom. Molecules 24 (18): 3276. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6767026/

 

GÓMEZ L.J., GÓMEZ N., PEREAÑEZ J.A., ZAPATA J.E. (2019). Lipids as competitive inhibitors of subtilisin carlsberg in the enzymatic hydrolysis of proteins in red tilapia (Oreochromis sp.) viscera: insights from kinetic models and a molecular docking study. Brazilian Journal of Chemical Engineering 36 (2): 647-655. https://www.scielo.br/j/bjce/a/gYN8GCGJYLMcQqf49QzHpRj/?lang=en


 
REY-SUÁREZ P., SALDARRIAGA-CÓRDOBA M., TORRES U., MARIN-VILLA M., LOMONTE B., NÚÑEZ V. (2019). Novel three-finger toxins from Micrurus dumerilii and Micrurus mipartitus coral snake venoms: Phylogenetic relationships and characterization of Clarkitoxin-I-Mdum. Toxicon; 170: 85-93. https://pubmed.ncbi.nlm.nih.gov/31557485/

 

PRECIADO L.M.,1 PEREAÑEZ J.A., COMER J. (2020). Potential of Matrix Metalloproteinase Inhibitors for the Treatment of Local Tissue Damage Induced by a Type P-I Snake Venom Metalloproteinase. Toxins (Basel). 12(1): 8. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7020480/


 
HENAO I., PEREAÑEZ J.A., PRECIADO L.M., JIOS J. (2020). Sulfur Compounds as Inhibitors of Enzymatic Activity of a Snake Venom Phospholipase A2: Benzyl 4-nitrobenzenecarbodithioate as a Case of Study. Molecules 25 (6): 1373. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7144397/pdf/molecules-25-01373.pdf

 

QUINTERO J., VELAZQUEZ V., CORRALES-GARCÍA L.L., TORRES J.D., DELGADO E., CIRO G., ROJAS J. (2020). Use of Plant Proteins as Microencapsulating Agents of Bioactive Compounds Extracted from Annatto Seeds (Bixa orellana L.). Antioxidants (Basel). 9(4): 310. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7222217/pdf/antioxidants-09-00310.pdf

 

PEREAÑEZ J.A., PRECIADO L.M., FERNÁNDEZ J., CAMACHO E., LOMONTE B., CASTRO F., CAÑAS C.A., GALVIS C., CASTAÑO S. (2020). Snake venomics, experimental toxic activities and clinical characteristics of human envenomation by Bothrocophias myersi (Serpentes: Viperidae) from Colombia. J Proteomics 30; 220. https://pubmed.ncbi.nlm.nih.gov/32247171/

 

ROJAS J., CABRERA S., CIRO G., NARANJO A. (2020). Lipidic Matrixes Containing Lemon Essential Oil Increases Storage Stability: Rheological, Thermal, and Microstructural Studies.  Applied Sciences 10 (11):3909.
https://www.mdpi.com/2076-3417/10/11/3909/pdf


 
MARÍN-ECHEVERRI C., PIEDRAHITA-BLANDÓN M., GALVIS-PÉREZ Y., NUÑEZ-RANGEL V., BLESSO C., FERNÁNDEZ M.L., BARONA-ACEVEDO J. (2020). Differential Effects of Agraz (Vaccinium meridionale Swartz) Consumption in Overweight and Obese Women with Metabolic. Journal of Food and Nutrition Research 8 (8): 399-409. http://www.sciepub.com/portal/downloads?doi=10.12691/jfnr-8-8-3&filename=jfnr-8-8-3.pdf

 

REY-SUÁREZ P., LOMONTE B. (2020), Immunological cross-recognition and neutralization studies of Micrurus mipartitus and Micrurus dumerilii venoms by two therapeutic equine antivenoms. Biologicals 68: 40-45.   https://www.sciencedirect.com/science/article/abs/pii/S1045105620301093


        
GALVIS-PÉREZ Y., MARÍN-ECHEVERRI C., FRANCO C.P., ARISTIZÁBAL J.C., FERNÁNDEZ M.L., BARONA-ACEVEDO J. (2020). Comparative Evaluation of the Effects of Consumption of Colombian Agraz (Vaccinium meridionale Swartz) on Insulin Resistance, Antioxidant Capacity, and Markers of Oxidation and Inflammation, Between Men and Women with Metabolic Syndrome. Biores Open Access 30; 9 (1): 247 -254. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7703308/

 

QUINTANA-CASTILLO J.C., ESTRADA-GÓMEZ S., CARDONA-ARIAS J.A. (2020). Economic Evaluations of Interventions for Snakebites: A Systematic Review. Clinicoecon Outcomes Res. 12: 547–554. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7509330/pdf/ceor-12-547.pdf

 

MARÍN-ECHEVERRI C., PIEDRAHITA-BLANDÓN M., GALVIS-PÉREZ Y., BLESSO C., FERNÁNDEZ M.L., NUÑEZ-RANGEL V., BARONA-ACEVEDO J. (2021). Improvements in antioxidant status after agraz consumption was associated to reductions in cardiovascular risk factors in women with metabolic syndrome. JOURNAL OF FOOD 19, (1): 238-246. https://www.tandfonline.com/doi/epub/10.1080/19476337.2021.1884606?needAccess=true


 
NARANJO-DURÁN A.M., QUINTERO-QUIROZ J., ROJAS-CAMARGO J., CIRO-GÓMEZ G.L. (2021). Modified-release of encapsulated bioactive compounds from annatto seeds produced by optimized ionic gelation techniques.  Nature Research 11: 1317. https://www.nature.com/articles/s41598-020-80119-1.pdf

 

ESTRADA-GÓMEZ S., VARGAS-MUÑOZ L.J., SEGURA C., SALDARRIAGA-CÓRDOBA M.M., ARENAS-GÓMEZ C.M. (2021). Analysis of High Molecular Mass Compounds from the Spider Pamphobeteus verdolaga Venom Gland. A Transcriptomic and MS ID Approach. Toxins 13: 453. https://www.mdpi.com/2072-6651/13/7/453/htm

 

ESTRADA-GÓMEZ S., VARGAS-MUÑOZ L.J., SALDARRIAGA-CÓRDOBA M.M., MEIJDEN A. (2021). MS/MS analysis of four scorpion venoms from Colombia: a descriptive approach. J Venom Anim Toxins Incl Trop Dis 9; 27. https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/34290759/

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