949
Views
100
CrossRef citations to date
0
Altmetric
Review Article

Mineral adsorbents for prevention of mycotoxins in animal feeds

, , , , , , & show all
Pages 125-135 | Received 25 Oct 2013, Accepted 27 Feb 2014, Published online: 09 Apr 2014

References

  • Attia YA, Allakany HF, Al-Hamid AEA, et al. (2013). Capability of different non-nutritive feed additives on improving productive and physiological traits of broiler chicks fed diets with or without aflatoxin during the first 3 weeks of life. J Anim Physiol Anim Nutr 97:754–72
  • Avantaggiato G, Havenaar R, Visconti, A. (2004). Evaluation of the intestinal absorption of deoxynivalenol and nivalenol by an in vitro gastrointestinal model, and the binding efficacy of activated carbon and other adsorbent materials. Food Chem Toxicol 42:817–24
  • Baglieri A, Reyneri A, Gennari M, Nègre M. (2013). Organically modified clays as binders of fumonisins in feedstocks. J Environ Sci Health 48:776–83
  • Binder EM. (2007). Managing the risk of mycotoxins in modern feed production. Anim Feed Sci Technol 133:149–66
  • Bočarov-Stančić A, Adamović M, Salma N, et al. (2011). In vitro efficacy of mycotoxins adsorption by natural mineral adsorbents. Biotech Anim Husbandry 27:1241–51
  • Bovo F, Corassin CH, Rosim RE, Oliveira CAF. (2012). Efficiency of actic acid bacteria strains for decontamination of aflatoxin M1 in phosphate buffer saline solution and in skimmed milk. Food Bioprocess Tech 5:1–5
  • Camblor MA, Barrett PA, Cabañas MJD, et al. (2001). High silica zeolites with three-dimensional systems of large pore channels. Microporous Mesoporous Mater 48:11–22
  • Cavret S, Laurent N, Videmann B, et al. (2010). Assessment of deoxynivalenol (DON) adsorbents and characterisation of their efficacy using complementary in vitro tests. Food Addit Contam Part A Chem Anal Control Expo Risk Assess 27:43–53
  • Chaytor AC, Hansen JA, Heugten EV, et al. (2011). Occurrence and decontamination of mycotoxins in swine feed. Asian Aust J Anim Sci 24:723–38
  • Che ZQ, Liu YL, Wang HR, et al. (2011). The protective effects of different mycotoxin adsorbents against blood and liver pathological changes induced by mold-contaminated feed in broilers. Asian Australas J Anim Sci 24:250–7
  • Corcuera LA, Vettorazzi A, Arbillaga L, et al. (2012). An approach to the toxicity and toxicokinetics of aflatoxin B1 and ochratoxin A after simultaneous oral administration to fasted F344 rats. Food Chem Toxicol 50:3440–6
  • Council for Agricultural Science and Technology. (2003). Mycotoxins: risks in plant, animal, and human systems. 1 ed. Ames, USA: CAST
  • Dakovic A, Kragovic M, Rottinghaus GE, et al. (2012). Preparation and characterization of zinc-exchanged montmorillonite and its effectiveness as aflatoxin B1 adsorbent. Mater Chem Phys 137:213–20
  • Dakovic A, Kragovic M, Rottinghaus GE, et al. (2010). Influence of natural zeolitic tuff and organozeolites surface charge on sorption of ionizable fumonisin B1. Colloids Surf B 76:272–8
  • Dakovic A, Matijasevic S, Rottinghaus GE, et al. (2008). Aflatoxin B1 adsorption by natural and copper modified montmorillonite. Colloids Surf B 66:20–5
  • Dakovic A, Tomasevic-Canovic M, Dondur V, et al. (2005). Adsorption of mycotoxins by organozeolites. Colloids Surf B 46:20–5
  • Deng Y, Velázquez ALB, Billes F, Dixon JB. (2010). Bonding mechanisms between aflatoxin B1 and smectite. Appl Clay Sci 50:92–8
  • Denli M, Blandon JC, Guynot ME, et al. (2008). Efficacy of a new ochratoxin-binding agent (OcraTox) to counteract the deleterious effects of ochratoxin A in laying hens. Poult Sci 87:2266–72
  • Desheng Q, Fan L, Yanhu Y, Niya Z. (2005). Adsorption of aflatoxin B1 on montmorillonite. Pout Sci 84:959–61
  • Devreese M, Pasmansb F, Backer P, Croubels S. (2013). An in vitro model using the IPEC-J2 cell line for efficacy and drug interaction testing of mycotoxin detoxifying agents. Toxicol Vitro 27:157–63
  • Doll S, Danicke S, Valenta H, Flachowsky G. (2004). In vitro studies on the evaluation of mycotoxin detoxifying agents for their efficacy on deoxynivalenol and zearalenone. Arch Anim Nut 58:311–24
  • Doll S, Gericke S, Danicke S, et al. (2005). The efficacy of a modified aluminosilicate as a detoxifying agent in Fusarium toxin contaminated maize containing diets for piglets. J Anim Physiol Anim Nutr (Berl) 89:342–58
  • Eriksen GS, Pettersson H. (2004). Toxicological evaluation of trichothecenes in animal feed. Anim Feed Sci Technol 114:205–39
  • Eser H, Yalçin S, Yalçin S, Şehu A. (2012). Effects of sepiolite usage in broiler diets on performance, carcass traits and some blood parameters. Kafkas Univ Vet Fak Derg 18:313–8
  • European Commission. (2009). Commission regulation (EC) No. 386/2009 of 12 May 2009 amending Regulation (EC) No. 1831/2003 of the European Parliament and of the Council as regards the establishment of a new functional group of feed additives. Off J Eur Union. L 118/166
  • European Food Safety Authority. (2009). Review of mycotoxin-detoxifying agents used as feed additives: mode of action, efficacy and feed/food safety. CFP/EFSA/FEEDAP
  • European Food Safety Authority. (2010). Statement on the establishment of guidelines for the assessment of additives from the functional group “substances for reduction of the contamination of feed by mycotoxins”. EFSA J 8:1–8
  • European Food Safety Authority. (2013). Scientific opinion on the safety and efficacy of a preparation of bentonite and sepiolite (Toxfin® Dry) as feed additive for all species. EFSA J 11:3179. http://www.efsa.europa.eu/en/efsajournal/doc/3179.pdf
  • European Parliament of the Council. (2003). Commission regulation (EC) No. 1831/2003 of 22 September 2003 on additives for use in animal nutrition. Off J Eur Union. L 268/29
  • Galan, E. (1996). Properties and applications of palygorskite–sepiolite clays. Clay Min 31:443–53
  • Gallo A, Masoero F. (2010). In vitro models to evaluate the capacity of different sequestering agents to adsorb aflatoxins. Ital J Anim Sci 9:109–16
  • Harper AF, Estienne MJ, Meldrum JB, et al. (2010). Assessment of a hydrated sodium calcium aluminosilicate agent and antioxidant blend for mitigation of aflatoxin-induced physiological alterations in pigs. J Swine Health Prod 18:282–9
  • Hauschild L, Lovatto PA, Lehnen CR, et al. (2007). Digestibilidade e metabolismo de dietas de suínos contendo zearalenona com adição de organoaluminossilicato. Pesq Agropec Bras 42:219–24
  • Huwig A, Freimund S, Kappeli O, Dutler H. (2001). Mycotoxin detoxication of animal feed by different adsorbents. Toxicol Lett 122:179–88
  • Jaynes WF, Zartman RE, Hudnall WH. (2007). Aflatoxin B1 adsorption by clays from water and corn meal. App Clay Sci 36:197–205
  • Jiang S, Yang Z, Yang W, et al. (2010). Physiopathological effects of zearalenone in post-weaning female piglets with or without montmorillonite clay adsorbent. Livest Sci 131:130–6
  • Jiang SZ, Yang ZB, Yang WR, et al. (2012a). Effect of purified zearalenone with or without modified montmorillonite on nutrient availability, genital organs and serum hormones in post-weaning piglets. Livest Sci 144:110–8
  • Jiang SZ, Yang ZB, Yang WR, et al. (2012b). Effect on hepatonephric organs, serum metabolites and oxidative stress in post-weaning piglets fed purified zearalenone-contaminated diets with or without Calibrin-Z. J Anim Physiol Anim Nutr 96:1147–56
  • Kannewischer I, Tenorio AMG, White GN, Dixon JB. (2006). Smectite clays as adsorbents of aflatoxin B1: initial steps. Clay Sci 12:199–204
  • Kolosova A, Stroka J. (2011). Substances for reduction of the contamination of feed by mycotoxins: a review. World Mycotoxin J 4:225–56
  • Li J, Suo D, Su X. (2010). Binding capacity for aflatoxin B1 by different adsorbents. Agric Sci China 9:449–56
  • Liu YL, Meng GQ, Wang HR, et al. (2011). Effect of three mycotoxin adsorbents on growth performance, nutrient retention and meat quality in broilers fed on mould-contaminated feed. Br Poult Sci 52:255–63
  • Luna FJ, Schuchardt U. (1999). Argilas pilarizadas – uma introdução. Quim Nova 22:104–9
  • Luz AB, Lins FF. (2008). Rochas e minerais industriais: usos e especificações. 2 ed. Rio de Janeiro: CETEM/MCT, 223–38
  • Magnoli AP, Alonso VA, Cavaglieri LR, et al. (2013). Effect of monogastric and ruminant gastrointestinal conditions on in vitro aflatoxin B1 adsorption ability by a montmorillonite. Food Addit Contam Part A Chem Anal Control Expo Risk Assess 30:743–49
  • Magnoli AP, Texeira M, Rosa CAR, et al. (2011a). Sodium bentonite and monensin under chronic aflatoxicosis in broiler chickens. Poult Sci 90:352–7
  • Magnoli AP, Monge MP, Miazzo RD, et al. (2011b). Effect of low levels of aflatoxin B1 on performance, biochemical parameters, and aflatoxin B1 in broiler liver tissues in the presence of monensin and sodium bentonite. Poult Sci 90:48–58
  • Manafi M. (2012). Counteracting effect of high grade sodium bentonite during aflatoxicosis in broilers. J Agric Sci Tech 14:539–47
  • Markov K, Pleadin J, Bevardi M, et al. (2013). Natural occurrence of aflatoxin B1, ochratoxin A and citrinin in Croatian fermented meat products. Food Control 34:312–7
  • Marroquin-Cardona A, Deng Y, Garcia-Mazcorro JF, et al. (2011). Characterization and safety of uniform particle size NovaSil clay as a potential aflatoxin enterosorbent. Appl Clay Sci 54:248–57
  • Marroquin-Cardona A, Deng Y, Taylor JF, et al. (2009). In vitro and in vivo characterization of mycotoxin-binding additives used for animal feeds in Mexico. Food Addit Contam Part A Chem Anal Control Expo Risk Assess 26:733–43
  • Mogadam N, Azizpour A. (2011). Ameliorative effect of glucomannan-containing yeast product (Mycosorb) and sodium bentonite on performance and antibody titers against Newcastle disease in broilers during chronic aflatoxicosis. Afr J Biotech 10:17372–8
  • Murray HH. (2000). Traditional and new applications for kaolin, smectite, and palygorskite: a general overview. Appl Clay Sci 17:207–21
  • Murray HH, Zhou H. (2006). Palygorskite and sepiolite (hormites). In: Kogel JE, Trivedi NC, Braker JM, Krukowsk ST, eds. 7 ed. Industrial minerals and rocks. Englewood: SME, 401–6
  • Neeff DV, Ledoux DR, Rottinghaus GE, et al. (2013). In vitro and in vivo efficacy of a hydrated sodium calcium aluminosilicate to bind and reduce aflatoxin residues in tissues of broiler chicks fed aflatoxin B1. Poult Sci 92:131–7
  • Paiva LB, Morales AR, Díaz FRV. (2008). Argilas organofílicas: características, metodologias de preparação, compostos de intercalação e técnicas de caracterização. Cerâmica 54:213–26
  • Pestka JJ, Smolinski AT. (2005). Deoxynivalenol: toxicology and potential effects on humans. J Toxicol Envir Health 8:39–69
  • Phillips TD. (1999). Dietary clay in the chemoprevention of aflatoxin-induced disease. Toxicol Sci 52:118–26
  • Phillips TD, Afriyie-Gyawu E, Williams J, et al. (2008). Reducing human exposure to aflatoxin through the use of clay: A review. Food Addit Contam Part A Chem Anal Control Expo Risk Assess 25:134–45
  • Phillips TD, Lemke SL, Grant PG. (2002). Characterization of clay-based enterosorbents for the prevention of aflatoxicosis. Adv Exp Med Biol 504:157–71
  • Ramos AJ, Hernandez E. (1997). Prevention of aflatoxicosis in farm animals by means of hydrated sodium calcium aluminosilicate addition to feedstuffs: a review. Anim Feed Sci Technol 65:197–206
  • Ramos AJ, Hernandez E, PlaDelfina JM., Merino M. (1996). Intestinal absorption of zearalenone and in vitro study of non-nutritive sorbent materials. Int J Pharm 128:129–37
  • Rawal S, Kim JE, Coulombe R Jr. (2010). Aflatoxin B1 in poultry: toxicology, metabolism and prevention. Res Vet Sci 89:325–31
  • Rossetto E, Beraldin R, Penha FG, Pergher SBC. (2009). Caracterização de argilas, bentonitas e diatomitas e sua aplicação como adsorventes. Quim Nova 32:2064–7
  • Santos RR, Vermeulena S, Haritovab A, Fink-Gremmels J. (2011). Isotherm modeling of organic activated bentonite and humic acid polymer used as mycotoxin adsorbents. Food Addit Contam Part A Chem Anal Control Expo Risk Assess 28:1578–89
  • Sprynskyy M, Gadzala-Kopciuch R, Nowak K, Buszewski B. (2012). Removal of zearalenone toxin from synthetics gastric and body fluids using talc and diatomite: a batch kinetic study. Colloids Surf B 94:7–14
  • Tapia-Salazar M, García-Pérez OD, Nieto-López M, et al. (2010). Mycotoxins in aquaculture: occurrence in feeds components and impact on animal performance. In: Cruz-Suarez LE, Ricque-Marie D, Tapia-Salazar M, et al, eds. Avances en Nutrición Acuícola. Monterrey, México: Universidad Autónoma de Nuevo León, 514–46
  • Thimm N, Schwaighofer B, Ottner F, et al. (2001). Adsorption of mycotoxins. Mycotoxin Res 17:219–23
  • Tomasevic-Canovic M, Dakovic A, Rottinhghaus G, et al. (2003). Surfactant modified zeolites–new efficient adsorbents for mycotoxins. Microporous Mesoporous Mater 61:173–80
  • Trailović JN, Stefanović S, Trailović SM. (2013). In vitro and in vivo protective effects of three mycotoxin adsorbents against ochratoxin A in broiler chickens. Br Poult Sci 54:515–23
  • Vizcarra-Olvera JE, Astiazarán-García H, Burgos-Hernández A, et al. (2012). Evaluation of pathological effects in broilers during fumonisins and clays exposure. Mycopathologia 174:247–54
  • Wan XL, Yang ZB, Yang WR, et al. (2013). Toxicity of increasing aflatoxin-B1 concentrations from contamined corn with or without clay adsorbent supplementation in ducklings. Poult Sci 92:1244–53
  • Wang JP, Chi F, Kim IH. (2012). Effects of montmorillonite clay on growth performance, nutrient digestibility, vulva size, faecal microflora, and oxidative stress in weaning gilts challenged with zearalenone. Anim Feed Sci Technol 178:158–66
  • Warheit DB, Sayes CM, Frame SR, Reed KL. (2010). Pulmonary exposures to sepiolite nanoclay particulates in rats: resolution following multinucleate giant cell formation. Toxicol Lett 192:286–93
  • Weaver AC, See MT, Hansen JA, et al. (2013). The use of feed additives to reduce the effects of aflatoxin and deoxynivalenol on pig growth, organ health and immune status during chronic exposure. Toxins 5:1261–81
  • Yiannikouris A, Kettunenb H, Apajalahtib J, et al. (2013). Comparison of the sequestering properties of yeast cell wall extract and hydrated sodium calcium aluminosilicate in three in vitro models accounting for the animal physiological bioavailability of zearalenone. Food Addit Contam Part A Chem Anal Control Expo Risk Assess 30:1641–50
  • Zhao J, Shirley RB, Dibner JD, et al. (2010). Comparison of hydrated sodium calcium aluminosilicate and yeast cell wall on counteracting aflatoxicosis in broiler chicks. Poult Sci 89:2147–56

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.