Generic placeholder image

Current Pharmaceutical Design

Editor-in-Chief

ISSN (Print): 1381-6128
ISSN (Online): 1873-4286

Review Article

Bioactive Constituents from South American Prosopis and their Use and Toxicity

Author(s): Guillermo Schmeda-Hirschmann*, Cristina Theoduloz, Felipe Jiménez-Aspee and Javier Echeverría

Volume 26, Issue 5, 2020

Page: [542 - 555] Pages: 14

DOI: 10.2174/1381612826666200102143755

Price: $65

conference banner
Abstract

Background: The pods from several South American Prosopis species have been considered relevant food in arid and semi-arid South America since prehistoric times. Traditionally the meal from the pods was processed to prepare different foods and beverages.

Objective: The objective was to discuss literature from the archaeological evidence of use to study the chemistry and (bio)activity of the extracts and secondary metabolites occurring in different Prosopis food products.

Methods: The review was carried out by searching electronic databases, including ScienceDirect, SciFinder, Scopus, Scielo, Google Scholar, PubMed and hand-search on literature. The review mainly covers studies performed in the year 1995-2019 and the first-hand experience of the authors. References on the historical and prehistorical uses of the natural resource were also included.

Results: In the last decades, most studies on the edible South American Prosopis focused on the constituents of pods meal, traditional preparations and by-products. Total 45 flavonoids, ellagic acid derivatives, catechin and simple phenolics were identified. Alkaloids occur mainly in the leaves, that are not used for human nutrition but as food for domestic animals. Piperidine alkaloids, tryptamine, tyramine and β-phenethylamine were isolated and identified from several species. The (bio)activity studies included mainly the antioxidant effect, antiinflammatory and enzyme inhibition associated with metabolic syndrome. The products showed no toxicity or mutagenic effect.

Conclusion: While data on the chemistry, some (bio)activities and toxicity are available for the pods meal and byproducts, little is known about the composition of the fermented Algarrobo beverages. Further studies are needed on the digestion of Algarrobo products both in humans and cattle.

Keywords: Prosopis, South American foods, enzyme inhibition, antioxidant effect, phenolics, alkaloids, toxicity, arid areas.

[1]
Burkart A. Monograph of the genus Prosopis (leguminosae, subfamilia mimosoideae). J Arnold Arbor 1976; 57: 219-224, 450-525.
[2]
Hunziker JH, Saidman BO, Naranjo CA, Palacios RA, Poggio L, Burghardt AD. Hybridization and genetic variation of Argentine species of prosopis. For Ecol Manage 1986; 16(1-4): 301-15.
[http://dx.doi.org/10.1016/0378-1127(86)90030-7]
[3]
Burkart A, Simpson BB. The genus prosopis and annotated key to the species of the world. In: mesquite: its biology in two desert scrub ecosystems Stroudsburg. Dowden, New York, USA: Hutchinson and Ross Inc. 1977.
[4]
Catalano SA, Vilardi JC, Tosto D, Saidman BO. Molecular phylogeny and diversification history of prosopis (fabaceae: mimosoideae). Biol J Linn Soc Lond 2008; 93: 621-40.
[http://dx.doi.org/10.1111/j.1095-8312.2007.00907.x]
[5]
Pasiecznik NM, Felker P, Harris PJC, et al. The prosopis juliflora-prosopis pallida complex: a monograph Coventry In:. UK 2001.
[6]
Roig FA. Aportes a la etnobotánica del género prosopis In: IADIZA, Eds Contribuciones Mendocinas a la Quinta Reunión Regional para América Latina y el Caribe de la Red de Forestación del CIID Conservación y Mejoramiento de Especies del Género Prosopis Mendoza: Unidades de Botánica y Fisiología Vegetal, IADIZA . 1993; 99-119.
[7]
Simpson BB. Mesquite, its biology in two desert shrub ecosystems Strondsberg. Dowden, New York, USA: Dowden, Hutchinson and Ross Inc 1977.
[8]
Simpson BB, Tate JA, Weeks A. The biogeography of Hoffmannseggia (leguminosae, caesalpinioideae, caesalpinieae): a tale of many travels. J Biogeogr 2005; 32: 15-27.
[http://dx.doi.org/10.1111/j.1365-2699.2004.01161.x]
[9]
The Plant List. 2019. Available at:. http://www.theplantlist.org/tpl1.1/search?q=Prosopis
[10]
Latcham RE. Notas preliminares de un viaje arqueologico a Quillagua. Rev Chil Hist Nat 1933; 36: 130-8.
[11]
Trobok S. Morfologia de frutos y semillas de prosopis (fabaceaemimosoideae) chilenos In: Habit MA, Ed Estado actual del conocimiento sobre Prosopis tamarugo Roma, Italy: FAO 1985; 239-53.
[12]
Barros S, Wrann J. El genero prosopis en Chile. Cienc Invest For 1992; 6: 296-334.
[13]
Carevic F, Carevic A, Delatorre J. Historia natural del genero prosopis en la Region de Tarapac. Idesia 2012; 30: 113-7.
[http://dx.doi.org/10.4067/S0718-34292012000300016]
[14]
Habit M. Prosopis tamarugo: arbusto forrajero para zonas aridas Con la colaboracion de Contreras D y Gonzalez R Reimpresion Produccion y proteccion vegetal n° 25 Food and Agriculture Organization. Roma, Italy: FAO 1981.
[15]
Felger RS. Mesquite in Indian cultures of southwestern North America In: Simpson BB, Ed Mesquite: Its biology in two desert ecosystems Stroudsburg, Pennsylvania, USA: Dowden, Hutchinson and Ross 1977.
[16]
D’Antoni HL, Solbrig OT. Algarrobos in South American cultures past and present In: Simpson BB, Ed Mesquite: Its biology in two desert ecosystems Stroudsburg, Pennsylvania, USA: Dowden, Hutchinson and Ross 1977.
[17]
Felker PA, Takeoka G, Dao L. Pod mesocarp flour of North and South American species of leguminous tree prosopis (mesquite): composition and food applications. Food Rev Int 2013; 29(1): 49-66.
[http://dx.doi.org/10.1080/87559129.2012.692139]
[18]
Giovannetti MA, Lema VS, Bartoli CG, Capparelli A. Starch grain characterization of prosopis chilensis (Mol.) Stuntz and P. flexuosa DC, and the analysis of their archeological remains in Andean South America. J Archaeol Sci 2008; 35: 2973-85.
[http://dx.doi.org/10.1016/j.jas.2008.06.009]
[19]
Ortiz G, Ramos RS, Alavar A. Fire, rituals and domesticity. Forest resource management in the sub-andean region of Jujuy, Argentina (2000BP): First anthracological evidence. J Anthropol Archaeol 2017; 47: 96-108.
[http://dx.doi.org/10.1016/j.jaa.2017.04.002]
[20]
Beresford-Jones DG, Whaley O, Alarcon Ledesma C, Cadwallader L. Two millennia of changes in human ecology: archaeobotanical and invertebrate records from the lower Ica valley, south coast Peru. Veg Hist Archaeobot 2011; 20: 273-92.
[http://dx.doi.org/10.1007/s00334-011-0292-4]
[21]
Montenegro P. Materia Medica Misionera Herbolario guarani; siglo XVII Cordoba, Argentina: Anthropos, Buena Vista Editores 2009.
[22]
Arenas P. Etnobotánica Lengua- Maskoy. Fundación para la Educación, la Ciencia y la Cultura, Buenos Aires 1981.
[23]
Arenas P. Etnografia y alimentacion entre los Toba-nachilamolekek y Wichi;-Lhukutas del Chaco Central (Argentina). Buenos Aires, Argentina: Edicion Pastor Arenas 1981.
[24]
Schmeda-Hirschmann G. Magic and medicinal plants of the ayoreos of the Chaco Boreal (paraguay). J Ethnopharmacol 1993; 39(2): 105-11.
[http://dx.doi.org/10.1016/0378-8741(93)90025-Z] [PMID: 8412243 ]
[25]
Schmeda Hirschmann G. Plant resources used by the Ayoreo of the Paraguayan Chaco. Econ Bot 1994; 48: 252-8.
[http://dx.doi.org/10.1007/BF02862325]
[26]
Schmeda Hirschmann G. Etnobotánica Ayoreo Contribución al estudio de la flora y vegetación del Chaco XI Candollea 1998 53(1): 01-50.
[27]
Arenas P. Las fuentes actuales y del pasado para la etnobotanica del Gran Chaco. Monografias del Real Jardin Botanico de Cordoba 1997; 5: 15-25.
[28]
Scarpa GF. Wild food plants used by the indigenous peoples of the South American Gran Chaco: a general synopsis and intercultural comparison. J Appl Bot Food Qual 2009; 83: 90-101.
[29]
Druss M. Medio ambiente, economia de subsistencia y patrones de asentamiento del Complejo ChiuChiu (ca. 3000 a 2000 AC), norte de Chile. Estud Atacameños 1976; 4: 19-24.
[http://dx.doi.org/10.22199/S07181043.1976.0004.00004]
[30]
Holden TG. Evidence of prehistoric diet from northern Chile: coprolites, gut contents and flotation samples from the tulan quebrada. World Archaeol 1991; 22(3): 320-31.
[http://dx.doi.org/10.1080/00438243.1991.9980149] [PMID: 16471006 ]
[31]
McRostie VB, Gayo EM, Santoro CM, De Pol-Holz R, Latorre C. The pre-Columbian introduction and dispersal of Algarrobo (prosopis, Section Algarobia) in the Atacama Desert of northern Chile. PLoS One 2017; 12(7)e0181759
[http://dx.doi.org/10.1371/journal.pone.0181759]
[32]
Nunez L, McRostie VB, Cartajena I. Consideraciones sobre la recoleccion vegetal y la horticultura durante el Formativo Temprano en el sureste de la cuenca de Atacama. Darwiniana 2009; 47(1): 56-75.
[33]
Williams LR. Analysis of coprolites recovered from six sites in northern Chile. In: Meighan CW, True DL, Eds. Prehistoric trails of atacama: archaeology of Northern Chile monumenta archaeologica Los Angeles. USA: the university of California 1980; 195-204.
[34]
Moragas C. Manifestaciones rupestres en el tramo bajo de la quebrada de Tambillo, provincia de Iquique, I region. Chungara (Arica) 1996; 28(1-2): 241-52.
[35]
Aguero C. Aproximacion al asentamiento humano temprano en los oasis de San Pedro de Atacama. Estud Atacameños 2005; 30: 29-60.
[36]
Aguero C, Uribe M. Las sociedades Formativas de San Pedro de Atacama: Asentamiento, cronologia y proceso. Estud Atacameños 2011; 42: 53-78.
[http://dx.doi.org/10.4067/S0718-10432011000200004]
[37]
Baron AM. Tulor: posibilidades y limitaciones de un ecosistema. Chungara (Arica) 1986; 16/17: 149-58.
[38]
Llagostera A, Baron A, Bravo L. Investigaciones arqueologicas en Tulor 1. Estud Atacameños 1984; 7: 105-15.
[http://dx.doi.org/10.22199/S07181043.1984.0007.00011]
[39]
Nunez L. La naturaleza de la expansion aldeana durante el Formativo Tardio en la Cuenca de Atacama. Chungara (Arica) 2005; 37(2): 165-93.
[40]
Pollard GC, Drew I. Llama herding and settlement in prehispanic northern Chile: application of an analysis for determining domestication. Am Antiq 1975; 40(3): 296-305.
[http://dx.doi.org/10.2307/279691]
[41]
Erices S. Evidencias de vegetales en tres cementerios prehispanicos. Chungara (Arica) 1975; 5: 65-71.
[42]
Garcia M, Vidal A, Mandakovic V, Maldonado A, Pena MP, Belmonte E. Alimentos, tecnologias vegetales y paleoambiente en las aldeas de la Pampa del Tamarugal: dos expresiones del periodo Formativo en Tarapaca (ca. 900 a.C.-800 d.C.). Estud Atacameños 2014; 47: 33-58.
[http://dx.doi.org/10.4067/S0718-10432014000100004]
[43]
Rivera MA, Dodd JP. Domesticando el desierto: medio ambiente y ocupaciones humanas en Ramaditas, Desierto de Atacama. Dialogo Andino 2013; 41: 45-60.
[http://dx.doi.org/10.4067/S0719-26812013000100004]
[44]
McRostie VB. The role of plant production in subsistence and cultural changes during the formative period in the Atacama Puna, southern Andes, Chile (1400BC-500AD). A re-evaluation based on the analyses of microfossils attached to hoes and grinding tools, and isotopic analyses of human bones 2013. Available at:.https://www.researchgate.net/publication/316232312_The_Role_ofPlant_Production_in_Subsistence_and_Cultural_changes_during_the_Formative_Period_in_the_Atacama_Puna_Southern_Andes_Chile_1400BC500AD_A_Reevaluation_based_on_the_Analyses_of_Microfossils
[45]
Niemeyer H, Cervellino M, Castillo G. Culturas prehistóricas de Copiapó H Niemeyer H, Cervellino M, Eds Museo Regional de Atacama, Copiapó, Chile 1998.
[46]
Dillehay TD. Where the land meets the sea: 14,000 years of human history on the north coast of Peru Austin. Texas, USA: University of Texas Press 2017.
[47]
Quilter J, Ojeda B, Pearsall D, Sandweiss D, Jones J, Wing E. Subsistence economy of El Paraíso an early Peruvian site. Science 1991; 251(4991): 227-83.
[http://dx.doi.org/10.1126/science.251.4991.277] [PMID: 17733284 ]
[48]
Gorbahn H. The middle archaic site of Pernil Alto, southern Peru: The beginnings of horticulture and sedentariness in mid-Holocene conditions. Dialogo Andino 2013; 41: 61-82.
[http://dx.doi.org/10.4067/S0719-26812013000100005]
[49]
Nunez L. Hacia la produccion de alimentos y la vida sedentaria (500 aC a 500 dC) In: Culturas de Chile Prehistoria Desde sus origenes hasta los albores de la Conquista Santiago, Chile: Editorial Andres Bello 2000; 80-105
[50]
Adan L, Urbina S. Arquitectura formativa en San Pedro de Atacama. Estud Atacameños 2007; 34: 7-30.
[51]
Ramirez de Bryson LM, Bryson RU, Bryson RA. Paleoclimatic and material cultural perspective on the Formative period of northern Chile. Chungara (Arica) 2001; 33: 5-12.
[http://dx.doi.org/10.4067/S0717-73562001000100002]
[52]
Tartaglia LJ. An analysis of cultivated plant remains from Guatacondo, Chile. In: Meighan CW, True DL, Eds. Prehistoric trails of atacama: archaeology of northern chile monumenta archaeologica. Los Angeles: the university of California USA 1980; 127-33.
[53]
Fernandez de Oviedo Valdes G. Historia Natural y General de las Indias. Sevilla: Juan Cromberger 1535.
[54]
Palacios R, Brizuela M. Prosopis: historia y elementos para su domesticacion. Agrociencia 2005; 9(1-2): 41-51.
[55]
Altamirano GH. Variedad de frutos y semillas en las especies del genero Prosopis presentes en Chile. Santiago, Chile: Corporacion Nacional Forestal 2012.
[56]
McRostie VB. Arboricultura y silvopastoralismo en el periodo Formativo (1.400 a.c.-500 d.C.) de la cuenca del Salar de Atacama. Chungara (Arica) 2014; 46(4): 543-57.
[http://dx.doi.org/10.4067/S0717-73562014000400002]
[57]
Choge SK, Pasiecznik NM, Harvey M, Wright J, Awan SZ, Harris PJC. Prosopis pods as human food in Kenya Walter S A 2007 33(3): 419-24.
[58]
Cooking with Prosopis flour Recipes tried and tested in Baringo District, Kenya Available at: https://answers.practicalaction.org/our-resources/item/cooking-with-prosopis-flour
[59]
Cieza de Leon P. Cronica del Peru, Primera parte. Lima, Peru: Pontificia Universidad Catolica del Peru/Academia Nacional de la Historia 1984.
[60]
Cobo B. Historia del nuevo mundo Atlas, Biblioteca de Autores Españoles, XCI-XCII, Madrid, España 1964.
[61]
Rosales D. Historia general del Reyno de Chile Flandes Indiano Tomo 1. Valparaiso, Chile: Imprenta del Mercurio 1877.
[62]
Gómez D, Siarez E. Alimentación tradicional atacameña NORprint, Antofagasta, Chile. 1995.
[63]
Schmeda-Hirschmann G, Quispe C, Soriano M del PC, et al. Chilean Prosopis mesocarp flour: phenolic profiling and antioxidant activity. Molecules 2015; 20(4): 7017-33.
[http://dx.doi.org/10.3390/molecules20047017] [PMID: 25898415 ]
[64]
Perez MJ, Cuello AS, Zampini IC, et al. Polyphenolic compounds and anthocyanin content of Prosopis nigra and Prosopis alba pods flour and their antioxidant and anti-inflammatory capacities. Food Res Int 2014; 64: 762-71.
[http://dx.doi.org/10.1016/j.foodres.2014.08.013] [PMID: 30011714 ]
[65]
Rodriguez IF, Perez MJ, Cattaneo F, et al. Morphological, histological, chemical and functional characterization of Prosopis alba flours of different particle sizes. Food Chem 2019; 274: 583-91.
[http://dx.doi.org/10.1016/j.foodchem.2018.09.024] [PMID: 30372982 ]
[66]
Cattaneo F, Costamagna MS, Zampini IC, et al. Flour from Prosopis alba cotyledons: a natural source of nutrient and bioactive phytochemicals. Food Chem 2016; 208: 89-96.
[http://dx.doi.org/10.1016/j.foodchem.2016.03.115] [PMID: 27132827 ]
[67]
Escobar B, Estevez AM, Fuentes C, Venegas D. Use of algarrobo (Prosopis chilensis (Mol) Stuntz) flour as protein and dietary fiber source in cookies and fried chips manufacture. Arch Latinoam Nutr 2009; 59(2): 191-8.
[PMID: 19719017 ]
[68]
Quispe C, Petroll K, Theoduloz C, Schmeda-Hirschmann G. Antioxidant effect and characterization of South American Prosopis pods syrup. Food Res Int 2014; 56: 174-81.
[http://dx.doi.org/10.1016/j.foodres.2013.12.033]
[69]
Bravo L, Grades N, Saura-Calixto F. Composition and potential uses of mesquite pods (Prosopis pallida L): comparison with carob pods (Ceratonia siliqua L). J Sci Food Agric 1994; 65: 303-6.
[http://dx.doi.org/10.1002/jsfa.2740650307]
[70]
Gunckel H. La fitonimia atacamena, especialmente el kunza. Revista de la Universidad del Norte 1967; 30: 1-18.
[71]
Bahamonde M. Diccionario de voces del norte de Chile. Santiago, Chile: Editorial Nascimiento 1978.
[72]
Bertrand A. Memoria sobre las cordilleras del desierto de Atacama i rejiones limitrofes, presentada al senor Ministro del Interior. Santiago, Chile: Imprenta Nacional 1885.
[73]
Vivar J. Cronica y relacion copiosa y verdadera de los Reinos de Chile. Berlin, Germany: Edicion Leopoldo Saez Godoy, Colloquium Verlag 1979.
[74]
Boman E. Antiquitiés de la région andine de la République Argentine et du désert d'Atacama par Éric Boman (Vol 1) Imprimerie Nationale; H Le Soudier, Paris, France 1908.
[75]
Holmberg E. Viaje a la Gobernación de los Andes (Puna de Atacama). Imprenta de La Nación, Buenos Aires. (Edición facsimilar: 1988, UNJU, Jujuy)..
[76]
Serracino G, Stehberg R. Vida pastoril en la precordillera andina (Guatin, San Pedro de Atacama, Chile). Estud Atacameños 1975; 3: 81-99.
[http://dx.doi.org/10.22199/S07181043.1975.0003.00011]
[77]
Castro V, Guarda VV, Eds. Ceremonias de tierra y agua: ritos milenarios andinos. Santiago, Chile: Fondo de Desarrollo de la Cultura y las Artes, Ministerio de Educacion. Imprenta Kuppenheim 1994.
[78]
Castro V. De idolos a santos: evangelizacion y religion andina en los Andes del sur. Chile: Fondo de Publicaciones Americanistas Universidad de Chile y Centro de Investigaciones Barros Arana Santiago 2009.
[79]
Villagran C, Castro V. Ciencia indigena de los Andes del norte de Chile. Santiago, Chile: Editorial Universitaria 2003.
[80]
Astudillo L, Schmeda-Hirschmann G, Herrera JP, Cortes M. Proximate composition and biological activity of Chilean Prosopis species. J Sci Food Agric 2000; 80: 567-73.
[http://dx.doi.org/10.1002/(SICI)1097-0010(200004)80:5<567:AID-JSFA563>3.0.CO;2-Y]
[81]
Schmeda-Hirschmann G, Razmilic I, Gutierrez MI, Loyola JI. Proximate composition and biological activity of food plants gathered by Chilean amerindians. Econ Bot 1999; 53: 177-87.
[http://dx.doi.org/10.1007/BF02866496]
[82]
Picariello G, Sciammaro L, Siano F, Volpe MG, Puppo MC, Mamone G. Comparative analysis of C-glycosidic flavonoids from Prosopis spp. and Ceratonia siliqua seed germ flour. Food Res Int 2017; 99(Pt. 1): 730-8.
[http://dx.doi.org/10.1016/j.foodres.2017.06.058] [PMID: 28784538 ]
[83]
Schmeda-Hirschmann G, Jakupovic J. A DNA binding compound from Prosopis tamarugo pods. Bol Soc Chil Quím (J Chil Chem Soc) 2000; 45: 645-7.
[http://dx.doi.org/10.4067/S0366-16442000000400019]
[84]
Pizzo B, Pometti CL, Charpentier J-P, Boizot N, Saidman BO. Relationships involving several types of extractives of five native argentine wood species of genera Prosopis and Acacia. Ind Crops Prod 2011; 34: 851-9.
[http://dx.doi.org/10.1016/j.indcrop.2011.02.003]
[85]
Tapia A, Egly Feresin G, Bustos D, Astudillo L, Theoduloz C, Schmeda-Hirschmann G. Biologically active alkaloids and a free radical scavenger from Prosopis species. J Ethnopharmacol 2000; 71(1-2): 241-6.
[http://dx.doi.org/10.1016/S0378-8741(00)00171-9] [PMID: 10904169 ]
[86]
Astudillo SL, Jürgens SK, Schmeda-Hirschmann G, Griffith GA, Holt DJ. Jenkins PR. DNA binding alkaloids from Prosopis alba. Planta Med 1999; 65(2): 161-2.
[http://dx.doi.org/10.1055/s-2006-960454] [PMID: 17260248 ]
[87]
Henciya S, Seturaman P, James AR, et al. Biopharmaceutical potentials of Prosopis spp. (Mimosaceae, Leguminosae). J Food Drug Anal 2017; 25(1): 187-96.
[http://dx.doi.org/10.1016/j.jfda.2016.11.001] [PMID: 28911536 ]
[88]
Ott-Longoni R, Viswanathan N, Hesse M. Die Konstitution des Alkaloides Juliprosopin aus Prosopis juliflora A. DC. 176. Mitteilung uber organische Naturstoffe. Helv Chim Acta 1980; 63: 2119-29.
[http://dx.doi.org/10.1002/hlca.19800630738]
[89]
Dätwyler P, Ott - Longoni R, Schöpp E, Hesse M. Über Juliprosin, ein weiteres Alkaloid aus Prosopis juliflora A. DC. 180. Mitteilung über organische Naturstoffe. Helv Chim Acta 1981; 64: 1959-63.
[http://dx.doi.org/10.1002/hlca.19810640629]
[90]
Ahmad VU, Sultana A, Qazi S. Alkaloids from the leaves of Prosopis juliflora. J Nat Prod 1989; 52: 497-501.
[http://dx.doi.org/10.1021/np50063a005]
[91]
Graziano MN, Ferraro GE, Coussio JD. Alkaloids of Argentine medicinal plants. II. Isolation of tyramine, beta-phenethylamine and tryptamine from Prosopis alba. Lloydia 1971; 34(4): 453-4.
[PMID: 5173440 ]
[92]
Siano F, Sciammaro L, Volpe MG, Mamone G, Puppo MC, Picariello G. Integrated analytical methods to characterize lipids from Prosopis spp. and Ceratonia siliqua seed germ flour. Food Anal Methods 2018; 11(12): 3471-80.
[http://dx.doi.org/10.1007/s12161-018-1323-x]
[93]
Mazzuca M, Balzaretti VT. Fatty acids, sterols and other steroids from seeds of Patagonian Prosopis species. J Sci Food Agric 2003; 83: 1072-5.
[http://dx.doi.org/10.1002/jsfa.1510]
[94]
Vilela AE, Ravetta DA. Gum exudation in South-American species of Prosopis L. (Mimosaceae). J Arid Environ 2005; 60: 389-95.
[http://dx.doi.org/10.1016/j.jaridenv.2004.06.002]
[95]
Vasile FE, Romero AM, Judis MA, Mattalloni M, Virgolini MB, Mazzobre MF. Phenolics composition, antioxidant properties and toxicological assessment of Prosopis alba exudate gum. Food Chem 2019; 285: 369-79.
[http://dx.doi.org/10.1016/j.foodchem.2019.02.003] [PMID: 30797359 ]
[96]
Mirhosseini H, Amid BT. A review study on chemical composition and molecular structure of newly plant gum exudates and seed gums. Food Res Int 2012; 46: 387-98.
[http://dx.doi.org/10.1016/j.foodres.2011.11.017]
[97]
Chaires-Martinez L, Salazar-Montoya JA, Ramos-Ramirez EG. Physicochemical and functional characterization of the galactomannan obtained from mesquite seeds (Prosopis pallida). Eur Food Res Technol 2008; 227: 1669-76.
[http://dx.doi.org/10.1007/s00217-008-0892-0]
[98]
Ibanez MC, Ferrero C. Extraction and characterization of the hydrocolloid from Prosopis flexuosa DC seeds. Food Res Int 2003; 36: 455-60.
[http://dx.doi.org/10.1016/S0963-9969(02)00192-8]
[99]
Boyd ML, Cotty PJ. Aspergillus flavus and aflatoxin contamination of leguminous trees of the Sonoran Desert in Arizona. Phytopathology 2001; 91(9): 913-9.
[http://dx.doi.org/10.1094/PHYTO.2001.91.9.913] [PMID: 18944238 ]
[100]
Micheloud JF, Colque Caro LA, Cholich LA, Martinez OG, Gimeno EJ. Suspected poisoning in beef cattle from ingestion of Prosopis nigra pods in north-western Argentina. Toxicon 2019; 157: 80-3.
[http://dx.doi.org/10.1016/j.toxicon.2018.11.302] [PMID: 30468757 ]
[101]
Choudhary MI, Nawaz SA. Zaheer-ul-Haq , et al. Juliflorine: a potent natural peripheral anionic-site-binding inhibitor of acetylcholinesterase with calcium-channel blocking potential, a leading candidate for Alzheimer’s disease therapy. Biochem Biophys Res Commun 2005; 332(4): 1171-7.
[http://dx.doi.org/10.1016/j.bbrc.2005.05.068] [PMID: 16021692 ]
[102]
Silva AMM, Silva AR, Pinheiro AM, et al. Alkaloids from Prosopis juliflora leaves induce glial activation, cytotoxicity and stimulate NO production. Toxicon 2007; 49(5): 601-14.
[http://dx.doi.org/10.1016/j.toxicon.2006.07.037] [PMID: 17241650 ]
[103]
da Silva VDA, da Silva AMM. E Silva JHC, Costa SL. Neurotoxicity of Prosopis juliflora: from natural poisoning to mechanism of action of its piperidine alkaloids. Neurotox Res 2018; 34(4): 878-88.
[http://dx.doi.org/10.1007/s12640-017-9862-2] [PMID: 29340871 ]
[104]
Rossi MC, Bassett MN, Samman NC. Dietary nutritional profile and phenolic compounds consumption in school children of highlands of Argentine Northwest. Food Chem 2018; 238: 111-6.
[http://dx.doi.org/10.1016/j.foodchem.2016.12.065] [PMID: 28867080 ]
[105]
Felker P, Grados N, Cruz G, Prokopiuk D. Economic assessment of production of flour from Prosopis alba and P. pallida pods for human food applications. J Arid Environ 2003; 53: 517-28.
[http://dx.doi.org/10.1006/jare.2002.1064]
[106]
Cardozo ML, Ordonez RM, Zampini IC, Cuello AS, Dibenedetto G, Isla MI. Evaluation of antioxidant capacity, genotoxicity and polyphenol content of non-conventional food: Prosopis flour. Food Res Int 2010; 43: 1505-10.
[http://dx.doi.org/10.1016/j.foodres.2010.04.004]
[107]
Rios JL, Recio MC. Medicinal plants and antimicrobial activity. J Ethnopharmacol 2005; 100(1-2): 80-4.
[http://dx.doi.org/10.1016/j.jep.2005.04.025] [PMID: 15964727 ]
[108]
Salvat A, Antonacci L, Fortunato RH, Suarez EY, Godoy HM. Antimicrobial activity in methanolic extracts of several plant species from northern Argentina. Phytomedicine 2004; 11(2-3): 230-4.
[http://dx.doi.org/10.1078/0944-7113-00327] [PMID: 15070177 ]
[109]
Corzo AG, Bravo E, Serrano F, Vattuone MA. Actividad antibacteriana de extractos de hojas de Prosopis alba, Griseb, frente a cepas patogenas humanas y fitopatogenas. Quebracho (Santiago del Estero) 2009; 17: 106-14.
[110]
Anesini C, Perez C. Screening of plants used in Argentine folk medicine for antimicrobial activity. J Ethnopharmacol 1993; 39(2): 119-28.
[http://dx.doi.org/10.1016/0378-8741(93)90027-3] [PMID: 8412245 ]
[111]
Perez C, Anesini C. In vitro antibacterial activity of Argentine folk medicinal plants against Salmonella typhi. J Ethnopharmacol 1994; 44(1): 41-6.
[http://dx.doi.org/10.1016/0378-8741(94)90097-3] [PMID: 7990503 ]
[112]
Sanchez E, Rivas Morales C, Castillo S, Leos-Rivas C, Garcia-Becerra L, Ortiz Martinez DM. Antibacterial and antibiofilm activity of methanolic plant extracts against nosocomial microorganisms. Evid Based Complement Alternat Med 2016; 8 1572697
[http://dx.doi.org/10.1155/2016/1572697]
[113]
Hapon MB, Hapon MV, Persia FA, Pochettino A, Lucero GS, Gamarra-Luques C. Aqueous extract of Prosopis strombulifera (L.) Benth induces cytotoxic effects against tumor cell lines without systemic alterations in BALB/c mice. J Clin Toxicol 2014; 4: 222.
[http://dx.doi.org/10.4172/2161-0495.1000222]
[114]
Saragusti AC, Bustos PS, Pierosan L, et al. Involvement of the L-arginine-nitric oxide pathway in the antinociception caused by fruits of Prosopis strombulifera (L.) Benth. J Ethnopharmacol 2012; 140(1): 117-22.
[http://dx.doi.org/10.1016/j.jep.2011.12.044] [PMID: 22230471 ]
[115]
Abodola MA, Lutfi MF, Bakhiet AO, Mohamed AH. The anti-inflammatory and analgesic properties of prosopis chilenses in rats. Int J Health Sci (Qassim) 2015; 9(3): 265-71.
[http://dx.doi.org/10.12816/0024693] [PMID: 26609291 ]
[116]
Albrecht C, Pellarin G, Rojas MJ, Albesa I, Eraso AF. Beneficial effect of Berberis buxifolia L., Ziziphus mistol Griseb and Prosopis alba extracts on oxidative stress induced by chloramphenicol. Medicina (B Aires) 2010; 70(1): 65-70.
[PMID: 20228027 ]
[117]
Pinto M da S, Ranilla LG, Apostolidis E, Lajolo FM, Genovese MI, Shetty K. Evaluation of antihyperglycemia and antihypertension potential of native Peruvian fruits using in vitro models. J Med Food 2009; 12(2): 278-91.
[http://dx.doi.org/10.1089/jmf.2008.0113] [PMID: 19459727 ]

Rights & Permissions Print Cite
© 2024 Bentham Science Publishers | Privacy Policy