Literature DB >> 7582618

Selective chemisorption and detoxification of aflatoxins by phyllosilicate clay.

T D Phillips1, A B Sarr, P G Grant.   

Abstract

Practical and effective strategies for the detoxification of aflatoxins are critically needed. We have shown that a phyllosilicate clay (HSCAS): i) tightly binds aflatoxins in aqueous solutions, including milk; ii) markedly decreases the bioavailability of radiolabeled aflatoxins; iii) greatly diminishes aflatoxicosis in young animals, i.e., rats, chickens, turkeys, lambs, and pigs; and iv) reduces the level of aflatoxin M1 in the milk from lactating dairy cattle and goats. In further studies, ligands with one or more of the functional groups in common with aflatoxin were reacted with HSCAS in vitro in an attempt to elucidate the specificity and mechanism of tight binding (or chemisorption). A chemisorption index (C alpha) was developed, allowing for direct comparison of various clay and zeolitic minerals with HSCAS. Chemisorption indices were determined by HPLC analysis of extracts of the supernatants and sorbed pellets (exhaustively extracted with methanol and chloroform). The beta-dicarbonyl system of aflatoxin was found to be essential for tight binding by HSCAS. Comparison of the chemisorption indices from various classes of compounds with spectral data (DRIFTS) indicated that the molecular mechanism of aflatoxin binding may involve the chelation of metal ions in HSCAS with the beta-dicarbonyl moiety in aflatoxin. Computer modeling was utilized to provide additional information. Preliminary evidence suggests that aflatoxin B1 may react at surfaces and within the interlayers of HSCAS particles. With knowledge of the mechanism involved, it has been possible to further enhance the propensity of HSCAS for aflatoxins.

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Year:  1995        PMID: 7582618     DOI: 10.1002/nt.2620030407

Source DB:  PubMed          Journal:  Nat Toxins        ISSN: 1056-9014


  25 in total

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2.  Brain Fos expression during 48 h after cisplatin treatment: neural pathways for acute and delayed visceral sickness.

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3.  Evaluation of the efficacy, acceptability and palatability of calcium montmorillonite clay used to reduce aflatoxin B1 dietary exposure in a crossover study in Kenya.

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Journal:  Food Addit Contam Part A Chem Anal Control Expo Risk Assess       Date:  2017-01

Review 4.  Measuring the nausea-to-emesis continuum in non-human animals: refocusing on gastrointestinal vagal signaling.

Authors:  Charles C Horn
Journal:  Exp Brain Res       Date:  2014-05-28       Impact factor: 1.972

5.  Aflatoxin B1 binding to sorbents in bovine ruminal fluid.

Authors:  M Spotti; M L Fracchiolla; F Arioli; F Caloni; G Pompa
Journal:  Vet Res Commun       Date:  2005-08       Impact factor: 2.459

6.  In vitro assessment of adsorbents aiming to prevent deoxynivalenol and zearalenone mycotoxicoses.

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7.  Chemotherapy-induced kaolin intake is increased by lesion of the lateral parabrachial nucleus of the rat.

Authors:  Charles C Horn; Bart C De Jonghe; Kathleen Matyas; Ralph Norgren
Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2009-08-26       Impact factor: 3.619

8.  Calcium montmorillonite clay reduces AFB1 and FB1 biomarkers in rats exposed to single and co-exposures of aflatoxin and fumonisin.

Authors:  Nicole J Mitchell; Kathy S Xue; Shuhan Lin; Alicia Marroquin-Cardona; Kristal A Brown; Sarah E Elmore; Lili Tang; Amelia Romoser; Wentzel C A Gelderblom; Jia-Sheng Wang; Timothy D Phillips
Journal:  J Appl Toxicol       Date:  2013-11-06       Impact factor: 3.446

9.  In vitro evaluation of ferrihydrite as an enterosorbent for arsenic from contaminated drinking water.

Authors:  J F Taylor; A Robinson; N Johnson; A Marroquin-Cardona; B Brattin; R Taylor; T D Phillips
Journal:  Environ Sci Technol       Date:  2009-07-15       Impact factor: 9.028

10.  Effects of limited feeding of aflatoxin B1 contaminated feed on the performance of broilers.

Authors:  R Resanovic; Z Sinovec
Journal:  Mycotoxin Res       Date:  2006-09       Impact factor: 3.833

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