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1.
Mycotoxin Res ; 40(4): 631-639, 2024 Nov.
Article in English | MEDLINE | ID: mdl-39078561

ABSTRACT

The debranning process, at an industrial scale, was applied to grains of two wheat cultivars to determine its effect on Fusarium mycotoxin content and antioxidant activity. Grain samples from the BRS Marcante and BRS Reponte wheat cultivars, naturally contaminated by Fusarium, were used in the study. The dry wheat samples were processed on the polisher once or twice and evaluated by hardness index, chemical composition (moisture, protein, and ash), deoxynivalenol (DON) and zearalenone (ZON) levels, phenolic content, and antioxidant activity. In the BRS Marcante cultivar, the debranning process only slightly reduced the DON and ZON contents in whole-wheat flours compared with the previous cleaning treatment (no-debranned). In the BRS Reponte cultivar, the DON concentration decreased by 36% at a debranning ratio of 5%, obtained by polishing, compared with prior cleaning treatment (no-debranned). In addition, the polishing reduced the ZON level by 56% compared with the cleaned wheat. The debranning process did not reduce the antioxidant capacity. Therefore, debranning is a suitable technology to obtain safer and healthier food by minimizing the mycotoxin content and retaining antioxidant capacity.


Subject(s)
Antioxidants , Fusarium , Mycotoxins , Phenols , Triticum , Triticum/chemistry , Antioxidants/analysis , Phenols/analysis , Mycotoxins/analysis , Zearalenone/analysis , Trichothecenes/analysis , Food Handling/methods , Food Contamination/analysis , Flour/analysis
2.
Food Res Int ; 187: 114389, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38763651

ABSTRACT

Ochratoxin A (OTA), zearalenone (ZEN), and deoxynivalenol (DON) are mycotoxins whose exposure is associated with various adverse health effects, including cancer and renal disorders, estrogenic effects, and immunosuppressive and gastrointestinal disorders, respectively. Infants (<2 years) are the most vulnerable group to mycotoxins, representing a unique combination of restricted food consumption types, low body weight, lower ability to eliminate toxins, and more future years to accumulate toxins. This study aimed to estimate the infant́s exposure to OTA, DON, and ZEN due to the consumption of milk formula and baby cereals in Chile. Milk formula samples (n = 41) and baby cereals (n = 30) were collected and analyzed using commercial ELISA kits for OTA, DON, and ZEA determination. Exposure was assessed by the Estimated Daily Intake (EDI) approach (mean and worst-case scenario, WCS) with the levels found in a modified Lower Bound (mLB) and Upper Bound (UB); ideal consumption (<6m, 7-12 m, and 13-24 m); adjusted by the weight of each group. The risk was estimated by comparing the EDI with a reference tolerable daily intake or by the margin of exposure (MOE) in the case of OTA. DON and OTA occurrence in infant formula were 34 % and 41 %, respectively. The co-occurrence between these mycotoxins was 22 %. Mycotoxin contents were below LOQ values except for OTA determined in one sample (0.29 ng/ml). No milk formulae were contaminated with ZEN. In the case of baby cereals, the occurrences were 17 % for OTA, 30 % for DON, and 7 % for ZEN, all below LOQ. Co-occurrence was seen in two samples between ZEN and OTA. According to exposure calculations, the MOE for OTA was less than 10,000 in all models for milk formula between 0 to 12 months of age and in the UB and WCS for cereal consumption. Health concerns were observed for DON in the WCS and UB for milk consumption in all ages and only in the UB WCS for cereal consumption. Considering the high consumption of milk formula in these age groups, regulation of OTA and other co-occurring mycotoxins in infant milk and food is strongly suggested.


Subject(s)
Dietary Exposure , Edible Grain , Food Contamination , Infant Formula , Ochratoxins , Trichothecenes , Zearalenone , Humans , Zearalenone/analysis , Infant Formula/chemistry , Chile , Edible Grain/chemistry , Infant , Trichothecenes/analysis , Food Contamination/analysis , Ochratoxins/analysis , Dietary Exposure/analysis , Dietary Exposure/adverse effects , Risk Assessment , Infant, Newborn , Infant Food/analysis
3.
Food Res Int ; 180: 114087, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38395556

ABSTRACT

Exposure to mycotoxins through food is a major health concern, especially for youngsters. This study performed a preliminary investigation on children's exposure to dietary mycotoxins in Ribeirão Preto, Brazil. Sampling procedures were conducted between August and December 2022, to collect foods (N = 213) available for consumption in the households of children (N = 67), including preschoolers (aged 3-6 years, n = 21), schoolers (aged 7-10 years, n = 15), and adolescents (aged 11-17 years, n = 31) cared in the Vila Lobato Community Social Medical Center of Ribeirão Preto. Ultra-performance liquid chromatography coupled to tandem mass spectrometry (UPLC-MS/MS) was used to determine concentrations of the mycotoxins in foods. Mycotoxins measured in all foods comprised aflatoxins (AFs), fumonisins (FBs), zearalenone (ZEN), T-2 toxin, deoxynivalenol (DON) and ochratoxin A (OTA). Higher incidence and levels were found for FBs, ZEN, and DON in several commonly consumed foods. Furthermore, 32.86 % foods had two to four quantifiable mycotoxins in various combinations. The mean estimated daily intake (EDI) values were lower than the tolerable daily intake (TDI) for AFs, FBs, and ZEN, but higher than the TDI (1.0 µg/kg bw/day) for DON, hence indicating a health risk for all children age groups. Preschoolers and adolescents were exposed to DON through wheat products (EDIs: 2.696 ± 7.372 and 1.484 ± 2.395 µg/kg body weight (bw)/day, respectively), while schoolers were exposed through wheat products (EDI: 1.595 ± 1.748 µg/kg bw/day) and rice (EDI: 1.391 ± 1.876 µg/kg bw/day). The results indicate that wheat-based foods and rice may be risky to children, implying the need for stringent measures to avoid DON contamination in these products.


Subject(s)
Aflatoxins , Mycotoxins , Zearalenone , Child , Adolescent , Humans , Mycotoxins/analysis , Pilot Projects , Chromatography, Liquid/methods , Brazil , Food Contamination/analysis , Tandem Mass Spectrometry/methods , Zearalenone/analysis , Aflatoxins/analysis , Triticum
4.
Article in English | MEDLINE | ID: mdl-38408272

ABSTRACT

This review explores the repercussions of mycotoxin contamination in food and feed, emphasising potential threats to agriculture, animal husbandry and public health. The primary objective is to make a comprehensive assessment of the neurotoxic consequences of mycotoxin exposure, an aspect less explored in current literature. Emphasis is placed on prominent mycotoxins, including aflatoxins, fumonisins, zearalenone (ZEA) and ochratoxins, known for inducing acute and chronic diseases such as liver damage, genetic mutation and cancer. To elucidate the effects, animal studies were conducted, revealing an association between mycotoxin exposure and neurological damage. This encompasses impairments in learning and memory, motor alterations, anxiety and depression. The underlying mechanisms involve oxidative stress, disrupting the balance between reactive oxygen species (ROS) and antioxidant capacity. This oxidative stress is linked to neuronal damage, brain inflammation, neurochemical imbalance, and subsequent behavioural changes. The review underscores the need for preventive measures against mycotoxin exposure. While complete avoidance is ideal, exploration into the potential use of antioxidants as a viable solution is discussed, given the widespread contamination of many food products. Specifically, the protective role of natural compounds, such as polyphenols, is highlighted, showcasing their efficacy in mitigating mycotoxicosis in the central nervous system (CNS), as evidenced by findings in various animal models. In summary, countering mycotoxin-induced neurotoxicity requires a multifaceted approach. The identified natural compounds show promise, but their practical use hinges on factors like bioavailability, toxicity and understanding their mechanisms of action. Extensive research is crucial, considering the diverse responses to different mycotoxins and neurological conditions. Successful implementation relies on factors such as the specific mycotoxin(s) involved and achievable effective concentrations. Further research and clinical trials are imperative to establish the safety and efficacy of these compounds in practical applications.


Subject(s)
Mycotoxins , Ochratoxins , Zearalenone , Animals , Mycotoxins/toxicity , Mycotoxins/analysis , Food Contamination/analysis , Ochratoxins/analysis , Zearalenone/analysis , Animal Feed/analysis , Oxidative Stress
5.
Toxins (Basel) ; 15(11)2023 10 27.
Article in English | MEDLINE | ID: mdl-37999492

ABSTRACT

Mycotoxins present a significant health concern within the animal-feed industry, with profound implications for the pig-farming sector. The objective of this study was to evaluate the efficacy of two commercial adsorbents, an organically modified clinoptilolite (OMC) and a multicomponent mycotoxin detoxifying agent (MMDA), to ameliorate the combined adverse effects of dietary aflatoxins (AFs: sum of AFB1, AFB2, AFG1, and AFG2), fumonisins (FBs), and zearalenone (ZEN) at levels of nearly 0.5, 1.0, and 1.0 mg/kg, on a cohort of cross-bred female pigs (N = 24). Pigs were randomly allocated into six experimental groups (control, mycotoxins (MTX) alone, MTX + OMC 1.5 kg/ton, MTX + OMC 3.0 kg/ton, MTX + MMDA 1.5 kg/ton, and MTX + MMDA 3.0 kg/ton), each consisting of four individuals, and subjected to a dietary regimen spanning 42 days. The administration of combined AFs, FBs, and ZEN reduced the body-weight gain and increased the relative weight of the liver, while there was no negative influence observed on the serum biochemistry of animals. The supplementation of OMC and MMDA ameliorated the toxic effects, as observed in organ histology, and provided a notable reduction in residual AFs, FBs, and ZEN levels in the liver and kidneys. Moreover, the OMC supplementation was able to reduce the initiation of liver carcinogenesis without any hepatotoxic side effects. These findings demonstrate that the use of OMC and MMDA effectively mitigated the adverse effects of dietary AFs, FBs, and ZEN in piglets. Further studies should explore the long-term protective effects of the studied adsorbent supplementation to optimize mycotoxin management strategies in pig-farming operations.


Subject(s)
Animal Feed , Mycotoxins , Animals , Female , Aflatoxins/toxicity , Food Contamination/analysis , Food Contamination/prevention & control , Fumonisins/toxicity , Mycotoxins/analysis , Mycotoxins/toxicity , Swine , Zearalenone/analysis , Animal Feed/adverse effects , Animal Feed/microbiology , Food Microbiology
6.
Article in English | MEDLINE | ID: mdl-37640447

ABSTRACT

Members within the Fusarium sambucinum species complex (FSAMSC) are able to produce mycotoxins, such as deoxynivalenol (DON), nivalenol (NIV), zearalenone (ZEN) and enniatins (ENNs) in food products. Consequently, alternative methods for assessing the levels of these mycotoxins are relevant for quick decision-making. In this context, qPCR based on key mycotoxin biosynthetic genes could aid in determining the toxigenic fungal biomass, and could therefore infer mycotoxin content. The aim of this study was to verify the use of qPCR as a technique for estimating DON, NIV, ENNs and ZEN, as well as Fusarium graminearum sensu lato (s.l.) and F. poae in barley grains. For this purpose, 53 barley samples were selected for mycobiota, mycotoxin and qPCR analyses. ENNs were the most frequent mycotoxins, followed by DON, ZEN and NIV. 83% of the samples were contaminated by F. graminearum s.l. and 51% by F. poae. Pearson correlation analysis showed significant correlations for TRI12/15-ADON with DON, ESYN1 with ENNs, TRI12/15-ADON and ZEB1 with F. graminearum s.l., as well as ESYN1 and TRI12/NIV with F. poae. Based on the results, qPCR could be useful for the assessment of Fusarium presence, and therefore, provide an estimation of its mycotoxins' levels from the same sample.


Subject(s)
Fusarium , Hordeum , Mycotoxins , Zearalenone , Mycotoxins/analysis , Fusarium/genetics , Zearalenone/analysis , Polymerase Chain Reaction/methods , Edible Grain/chemistry
7.
Mycotoxin Res ; 39(4): 379-391, 2023 Nov.
Article in English | MEDLINE | ID: mdl-37442904

ABSTRACT

Fusarium species are common fungal pathogens of maize. Fusarium graminearum and Fusarium verticillioides, among others, can cause maize ear rot, and they are also mycotoxin producers. The aims of this work were to determine the frequency and diversity of Fusarium species in Uruguayan maize kernels, evaluate the toxigenic potential of the isolates, determine toxin contamination levels on freshly harvested grain, and assess the sensitivity of main Fusarium species against fungicides. Fusarium verticillioides was the most frequent species isolated, followed by Fusarium graminearum sensu stricto. Of F. verticillioides isolates studied for fumonisin production, 72% produced fumonisin B1 and 32% fumonisin B2. Considering in vitro toxin production by F. graminearum sensu stricto isolates, deoxynivalenol was the main toxin produced, followed by zearalenone and nivalenol. Fumonisins were the most frequently found toxins on freshly harvested maize samples (98% in 2018 and 86% in 2019), and also, fumonisin B1 was the toxin with highest concentration in both years studied (4860 µg/kg in 2018 and 1453 µg/kg in 2019). Deoxynivalenol and zearalenone were also found as contaminants. Metconazole and epoxiconazole were the most effective fungicides tested on F. verticillioides isolates. Fusarium graminearum sensu stricto isolates also were more sensitive to metconazole compared to other fungicides; nevertheless, epoxiconazole was less efficient in controlling this species. This is the first study that reports Fusarium species and mycotoxin contamination levels associated with maize grain in Uruguay. Its detection is the main step to develop management strategies in order to minimize fungal infection in maize crops.


Subject(s)
Fumonisins , Fungicides, Industrial , Fusarium , Mycotoxins , Zearalenone , Mycotoxins/analysis , Zearalenone/analysis , Zea mays/microbiology , Uruguay , Food Contamination/analysis , Fumonisins/analysis , Edible Grain/chemistry
8.
Food Addit Contam Part B Surveill ; 16(2): 86-92, 2023 Jun.
Article in English | MEDLINE | ID: mdl-36625024

ABSTRACT

Barley is an important cereal worldwide. However, fungal contamination during pre and postharvest is a recurrent problem for barley production, causing a direct impact on the quality of the grains and their by-products due to spoilage and mycotoxin accumulation. The Fusarium graminearum species complex is the main contaminant during preharvest and some species can produce deoxynivalenol and zearalenone, important mycotoxins that represent a risk to human and animal health. This study evaluated the fungal diversity and the levels of DON and ZEN in barley grains produced in Brazil. The results showed high frequency (60%) of Fusariumcontamination in barley grains. Additionally, mycotoxin levels ranged from 46 to 2074 µg/kg for DON and from 74 to 556 µg/kg for ZEN. Co-occurrence of DON and ZEN was observed in 40% of the samples and 30% of barley samples had DON and ZEN levels higher than the maximum levels established by Brazilian and European legislations. .


Subject(s)
Fusarium , Hordeum , Mycotoxins , Zearalenone , Humans , Animals , Zearalenone/analysis , Brazil , Food Contamination/analysis , Mycotoxins/analysis , Edible Grain/chemistry
9.
Sci Total Environ ; 837: 155763, 2022 Sep 01.
Article in English | MEDLINE | ID: mdl-35561905

ABSTRACT

In the current study, the occupational and dietary exposures of feed handling workers (N = 28) to aflatoxins (AFs), fumonisins (FBs), ochratoxin A (OTA), deoxynivalenol (DON), zearalenone (ZEN), toxins T-2 and HT-2 were assessed for the first time in animal-producing farms and feed factories from São Paulo, Brazil. Mycotoxins in food (n = 244) and airborne dust (n = 27), as well as biomarkers in urine (n = 97) samples were determined by liquid chromatography coupled with tandem mass spectrometry. FBs were detected in all airborne dust samples, with concentrations ranging from 7.85 to 16,839 ng/m3. The mean probable daily intake (PDI) based on food data were 0.005, 0.769, 0.673 and 0.012 µg/kg of body weight (bw)/day for AFs, FBs, DON and ZEN, respectively. Mean PDI values obtained through urinary biomarkers were 0.29, 0.10, 0.50, 9.72 and 0.10 µg/kg body weight/day for AFB1, DON, OTA, FB1 and ZEN, respectively. The analyses based on urinary biomarkers revealed a potential health concern for OTA and FBs, although no potential health concern was observed with PDI calculated through food data. Results of this trial stress the need for preventive measures to avoid health risks of workers in Brazilian animal-producing farms and feed industries.


Subject(s)
Dietary Exposure , Food Handling , Mycotoxins , Occupational Exposure , Biomarkers/urine , Body Weight , Brazil , Dietary Exposure/analysis , Dust/analysis , Food Contamination/analysis , Humans , Mycotoxins/analysis , Occupational Exposure/analysis , Rural Health , Zearalenone/analysis
10.
Toxins (Basel) ; 14(5)2022 05 03.
Article in English | MEDLINE | ID: mdl-35622571

ABSTRACT

Mycotoxins are unavoidable contaminants produced by fungi in food, especially grains. This study aimed to measure the occurrence and levels of total aflatoxins (AFs); ochratoxin A (OTA); zearalenone (ZEN); fumonisins B1, B2, and B3 (FUM); deoxynivalenol (DON); and T-2/HT-2 toxins in the four most commonly consumed breakfast cereals in Chile and to assess mycotoxin exposure and risk in children aged 2 to 13 years due to cereal consumption. In this study, a total of 110 batches with three subsamples of the four brands were sampled in supermarkets from November 2019 to June 2021. Samples were analyzed by Veratox® ELISA (Neogen). Exposure was assessed by estimated daily intake (EDI) considering the levels found in a modified lower bound (mLB) and upper bound (UB). Risk was estimated by margin of exposure (MOE) in the case of OTA and AFs and hazard quotient (HQ) for the rest of the mycotoxins. No T2/HT2 toxins were detected. Few samples had quantifiable levels of ZEN, FUM, and DON except for brand 1, with a mean (standard deviation, SD) of 54 (20), 1552 (351), and 706 (218) ng/g, respectively. In addition, three FUM samples and one DON sample had values over the Chilean regulation. Brands 2, 3, and 4 had quantifiable levels of AFs, with mean (SD) values of 1.3 (0.1), 2.1 (0.6), and 1.9 (0.4) ng/g, respectively. Brand 3 had quantifiable levels of OTA, with a mean (SD) of 2.3 (0.4) ng/g. Estimated exposure indicated a risk of AFs in all scenarios, and of FUM for brand 1 consumption, OTA and DON for brand 3 consumption, and OTA for brand 4 consumption in the mLB worst-case scenario. In general, mycotoxin levels were below the Chilean regulatory limits, but most of them were above the EU regulation for processed cereal-based food in young children. Because the risk was higher in the 2- to 5-year-old children, we recommend special regulations for this group in Chile.


Subject(s)
Aflatoxins , Mycotoxins , Zearalenone , Aflatoxins/analysis , Breakfast , Child, Preschool , Chile , Edible Grain/chemistry , Food Contamination/analysis , Humans , Mycotoxins/analysis , Zearalenone/analysis
11.
J Sci Food Agric ; 102(7): 2640-2650, 2022 May.
Article in English | MEDLINE | ID: mdl-35076089

ABSTRACT

Silo-bags are hermetic storage systems that inhibit fungal growth because of their atmosphere with low humidity, as well as low pH and O2 concentrations, and a high CO2 concentration. If a silo-bag with stored maize loses its hermetic nature, it favors the development of fungi and the production of mycotoxins. To the best of our knowledge, this is the first review on the diversity of fungal species and mycotoxins that were reported in maize stored under the environmental conditions provided by silo-bags. The genera Penicillium, Aspergillus and Fusarium were found more frequently, whereas Acremonium spp., Alternaria sp., Candida sp., Cladosporium sp., Debaryomyces spp., Epiconum sp., Eupenicillium spp., Eurotium sp., Eurotium amstelodami, Hyphopichia spp., Hyphopichia burtonii, Moniliella sp., Wallemia sp. and genera within the orden Mucorales were reported less recurrently. Despite finding a great fungal diversity, all of the studies focused their investigations on a small group of toxins: fumonisins (FBs), aflatoxins (AFs), deoxynivalenol (DON), zearalenone (ZEA), patulin (PAT), toxin T2 (T2) and ochratoxin (OT). Of the FBs, fumonisin B1 and fumonisin B2 presented higher incidence percentages, followed by fumonisin B3 . Of the AFs, the only one reported was aflatoxin B1. The mycotoxins DON, ZEA and OT were found with lower incidences, whereas PAT and T2 were not detected. Good management practices of the silo-bags are necessary to achieve a hermetically sealed environment, without exchange of gases and water with the external environment during the storage period. © 2022 Society of Chemical Industry.


Subject(s)
Aflatoxins , Fumonisins , Fusarium , Mycotoxins , Ochratoxins , Penicillium , Zearalenone , Aspergillus , Food Contamination/analysis , Fumonisins/analysis , Mycotoxins/analysis , Ochratoxins/analysis , Zea mays/microbiology , Zearalenone/analysis
12.
Int J Food Microbiol ; 345: 109127, 2021 May 02.
Article in English | MEDLINE | ID: mdl-33689972

ABSTRACT

We assessed the mycobiota diversity and mycotoxin levels present in wild rice (Oryza latifolia) from the Pantanal region of Brazil; fundamental aspects of which are severely understudied as an edible plant from a natural ecosystem. We found multiple fungal species contaminating the rice samples; the most frequent genera being Fusarium, Nigrospora and Cladosporium (35.9%, 26.1% and 15%, respectively). Within the Fusarium genus, the wild rice samples were mostly contaminated by the Fusarium incarnatum-equiseti species complex (FIESC) (80%) along with Fusarium fujikuroi species complex (20%). Phylogenetic analysis supported multiple FIESC species and gave support to the presence of two putative new groups within the complex (LN1 and LN2). Deoxynivalenol (DON) and zearalenone (ZEN) chemical analysis showed that most of the isolates were DON/ZEN producers and some were defined as high ZEN producers, displaying abundant ZEN levels over DON (over 19 times more). Suggesting that ZEN likely has a key adaptive role for FIESC in wild rice (O. latifolia). Mycotoxin determination in the rice samples revealed high frequency of ZEN, and 85% of rice samples had levels >100 µg/kg; the recommended limit set by regulatory agencies. DON was only detected in 5.2% of the samples. Our data shows that FIESC species are the main source of ZEN contamination in wild rice and the excessive levels of ZEN found in the rice samples raises considerable safety concerns regarding wild rice consumption by humans and animals.


Subject(s)
Fusarium/isolation & purification , Oryza/microbiology , Trichothecenes/analysis , Zearalenone/analysis , Animals , Brazil , Ecosystem , Food Contamination/analysis , Fusarium/classification , Fusarium/metabolism , Humans , Phylogeny
13.
Int J Food Microbiol ; 346: 109161, 2021 May 16.
Article in English | MEDLINE | ID: mdl-33773354

ABSTRACT

Fusarium Head Blight (FHB) is a very important fungal disease that affects small grain cereals worldwide. This disease not only causes yield loses but also crops contamination with mycotoxins such as deoxynivalenol (DON) and nivalenol (NIV). Species within the Fusarium graminearum species complex have been described as the main causal agents of this disease, however lately there have been few reports of Fusarium cerealis causing the disease in wheat and barley in different parts of the world. This study evaluated the aggressiveness of F. cerealis to durum wheat cultivars and also mycotoxin production in planta. Moreover, the mycotoxin profile of F. cerealis strains was characterized molecularly and chemically. All durum wheat cultivars showed typical FHB symptoms but the disease severity varied among them in levels up to 66%. In addition, seventeen different compounds were detected in the infected heads including DON, NIV and nivalenol-3-ß-d-glucose (NIV3G). NIV was detected in all cultivars and was the most produced mycotoxin with levels ranging from 1.04 to 6.8 mg/kg. On the other hand, the molecular analysis of F. cerealis strains showed that all of them possessed NIV genotype while the chemical assessment showed that the strains were able to produce not only this toxin in vitro but also DON, zearalenone and other twenty-one secondary metabolites. The increasing incidence of F. cerealis and the possible contamination of crops with the mycotoxins that it produces are of great concern for food security and world cereal trade since it has been reported that NIV is more toxic for humans and animals than DON.


Subject(s)
Fusarium/metabolism , Mycotoxins/metabolism , Plant Diseases/microbiology , Triticum/microbiology , Edible Grain/microbiology , Food Contamination/analysis , Fusarium/genetics , Genotype , Hordeum/chemistry , Hordeum/microbiology , Trichothecenes/analysis , Trichothecenes/metabolism , Triticum/chemistry , Zearalenone/analysis , Zearalenone/metabolism
14.
PLoS One ; 16(1): e0244957, 2021.
Article in English | MEDLINE | ID: mdl-33412558

ABSTRACT

Fumonisins (FBs) and zearalenone (ZEN) are mycotoxins which occur naturally in grains and cereals, especially maize, causing negative effects on animals and humans. Along with the need for constant monitoring, there is a growing demand for rapid, non-destructive methods. Among these, Near Infrared Spectroscopy (NIR) has made great headway for being an easy-to-use technology. NIR was applied in the present research to quantify the contamination level of total FBs, i.e., fumonisin B1+fumonisin B2 (FB1+FB2), and ZEN in Brazilian maize. From a total of six hundred and seventy-six samples, 236 were analyzed for FBs and 440 for ZEN. Three regression models were defined: one with 18 principal components (PCs) for FB1, one with 10 PCs for FB2, and one with 7 PCs for ZEN. Partial least square regression algorithm with full cross-validation was applied as internal validation. External validation was performed with 200 unknown samples (100 for FBs and 100 for ZEN). Correlation coefficient (R), determination coefficient (R2), root mean square error of prediction (RMSEP), standard error of prediction (SEP) and residual prediction deviation (RPD) for FBs and ZEN were, respectively: 0.809 and 0.991; 0.899 and 0.984; 659 and 69.4; 682 and 69.8; and 3.33 and 2.71. No significant difference was observed between predicted values using NIR and reference values obtained by Liquid Chromatography Coupled to Tandem Mass Spectrometry (LC-MS/MS), thus indicating the suitability of NIR to rapidly analyze a large numbers of maize samples for FBs and ZEN contamination. The external validation confirmed a fair potential of the model in predicting FB1+FB2 and ZEN concentration. This is the first study providing scientific knowledge on the determination of FBs and ZEN in Brazilian maize samples using NIR, which is confirmed as a reliable alternative methodology for the analysis of such toxins.


Subject(s)
Fumonisins/analysis , Mycotoxins/analysis , Spectroscopy, Near-Infrared , Zea mays/chemistry , Zearalenone/analysis , Brazil , Food Contamination/analysis
15.
Ciênc. Anim. (Impr.) ; 31(4): 82-91, 2021.
Article in Portuguese | VETINDEX | ID: biblio-1369388

ABSTRACT

As micotoxinas são substâncias produzidas durante o processo metabólico de alguns fungos, elas são extremamente nocivas aos animais. Esses fungos estão presentes em diversos tipos de cereais e frutas. O milho, principal cereal utilizado na alimentação animal, pode ser acometido por fungos dos gêneros Aspergillus e Fusarium, que quando submetidos à umidade e temperaturas específicas produzem aflatoxinas, ocratoxina, fumonisinas e zearalenona que causam problemas no desempenho e produção dos animais. Os animais monogástricos, como aves e suínos, e de ceco funcional, como os equinos, são mais susceptíveis aos efeitos que essas substâncias podem causar, quando comparados aos animais ruminantes, pois estes apresentam no rúmen microrganismos que são capazes de digerir as micotoxinas. No entanto, animais como vacas leiteiras de alta produção e animais monogástricos, quando consomem alimentos contaminados durante um longo período, podem desenvolver problemas digestivos, neurológicos, queda na produção e até mesmo chegar a óbito. Diante disso, algumas técnicas vêm sendo utilizadas pelos produtores e fábricas de ração, visando o não fornecimento de grãos contaminados aos animais, como um controle de qualidade dos alimentos e o uso de adsorventes. Os adsorventes são aditivos adicionados à dieta dos animais com o objetivo de inativar as micotoxinas. Eles podem ser de origem orgânica, como as leveduras, ou inorgânicos derivados de argila. Esses aditivos se ligam à substância impedindo que estas sejam absorvidas pelo enterócito e, assim, sejam excretadas sem causar prejuízos ao metabolismo dos animais.


Mycotoxins are substances produced during the metabolic process of some fungi, they are extremely harmful to animals. These fungi are present in several types of cereals and fruits. The main cereal corn used in animal feed can be affected by fungi of the genera Aspergillus and Fusarium that when subjected to humidity and specific specifications such as aflotoxins, ochratoxin, fumonisins and zearalenone that cause problems in the performance and production of animals. Monogastric animals, such as poultry, pigs and functional dry animals such as horses, are more susceptible to the effects that these occurrences can cause, when compared to ruminant animals, as they present in the rumen, microorganisms that are capable of digesting as mycotoxins. However, animals such as high production dairy cows and monogastric animals, when consuming contaminated food for a long period can develop digestive, neurological problems, drop in production and even die. In view of this, some techniques have been used by producers and feed factories, adding the non supply of contaminated grains to animals, such as food quality control and the use of adsorbents. Adsorbents are suitable additives to the animals' diet in order to inactivate as mycotoxins. They can be of organic origin, like yeasts or inorganic derived from clay. These additives bind to a substance preventing them from being absorbed by the enterocyte, thus being excreted without causing damage to the animals' metabolism.


Subject(s)
Animals , Cattle , Edible Grain/toxicity , Chelating Agents/therapeutic use , Mycotoxins/analysis , Zearalenone/analysis , Aflatoxins/analysis , Fumonisins/analysis , Ochratoxins/analysis
16.
Food Addit Contam Part B Surveill ; 13(4): 244-251, 2020 Dec.
Article in English | MEDLINE | ID: mdl-32643592

ABSTRACT

In this study Aflatoxin B1 (AFB1), ochratoxin A (OTA) and zearalenone (ZEN) occurrence in fish feed, regarding its chemical composition, were investigated. Besides, AFB1 bioaccessibility to fish was evaluated by in vitro digestion. Mycotoxins were extracted by QuEChERS and quantified by HPLC-FLD. Results showed that 93.3% of the samples were contaminated at maximum levels of 16.5, 31.6, and 322 µg/kg in the cases of AFB1, OTA, and ZEN, respectively. A positive correlation between OTA, ZEN contamination, and lipid content was observed. Risk estimation of feed consumption by fish at the highest levels of AFB1, OTA, and ZEN shows that the younger the fish, the higher the risk of exposure to mycotoxins. The AFB1 bioaccessibility assay showed that 85% of this mycotoxin may be absorbed by fish. Therefore, establishing maximum levels in the fishing sector is fundamental to contribute to feed quality and nutritional safety of fish species.


Subject(s)
Animal Feed/analysis , Fishes/metabolism , Mycotoxins/analysis , Mycotoxins/pharmacokinetics , Aflatoxin B1/analysis , Aflatoxin B1/pharmacokinetics , Animal Feed/microbiology , Animals , Aquaculture , Carps/metabolism , Cichlids/metabolism , Food Contamination/analysis , Ochratoxins/analysis , Ochratoxins/pharmacokinetics , Zearalenone/analysis , Zearalenone/pharmacokinetics
17.
Food Res Int ; 131: 109039, 2020 05.
Article in English | MEDLINE | ID: mdl-32247492

ABSTRACT

The aim of this study was to evaluate the action of the commercial peroxidase (POD) enzyme (Armoracia rusticana) on the simultaneous degradation of ochratoxin A (OTA) and zearalenone (ZEA) in model solution and beer. For this purpose, the reaction parameters for POD action were optimized, POD application in the degradation of mycotoxins in model solution and beer was evaluated and the kinetic parameters of POD were defined (Michaelis-Menten constant - KM and maximal velocity - Vmax). In the reaction conditions (pH 7, ionic strength of 25 mM, incubation at 30 °C, addition of 26 mM H2O2 and 1 mM potassium ion), POD (0.6 U mL-1) presented the maximum activity for simultaneous degradation of OTA and ZEA of 27.0 and 64.9%, respectively, in model solution after 360 min. The application of POD in beer resulted in the simultaneous degradation of OTA and ZEA of 4.8 and 10.9%, respectively. The kinetic parameters KM and Vmax for degradation of OTA and ZEA were 50 and 10,710 nM and 0.168 and 72 nM min-1, respectively. Therefore, POD can be a promising alternative to mitigate the contamination of OTA and ZEA in model solution and beer, minimizing their effects in humans.


Subject(s)
Beer/analysis , Food Contamination/analysis , Ochratoxins/analysis , Peroxidases/metabolism , Zearalenone/analysis , Beer/microbiology , Food Analysis , Food Microbiology , Hydrogen Peroxide/metabolism , Hydrogen-Ion Concentration , Reproducibility of Results
18.
Food Res Int ; 126: 108587, 2019 12.
Article in English | MEDLINE | ID: mdl-31732066

ABSTRACT

The aim of this study was to evaluate the effect of 15 commercial yeasts in the mitigation of the Fusarium mycotoxins deoxynivalenol (DON) and zearalenone (ZEN) during the brewing process. Saccharomyces strains (10 strains of S. cerevisiae and 5 of S. pastorianus) were used to ferment DON and ZEN contaminated wort. Wort samples were taken every 24 h during fermentation, while mycotoxin analysis in yeast was performed at the end of fermentation (96 h); additionally, pH and ethanol content were measured daily. For mycotoxin analysis, after immunoaffinity purification of sample extracts, analysis was performed using an Ultra-High-Pressure Liquid Chromatograph coupled with a diode array or fluorescence detector (UHPLC-DAD/FLD). Mycotoxin presence had no significant effect on the ethanol production during brewing. At the end of fermentation, 10-17% of DON and 30-70% of ZEN had been removed, 6% of the initial concentration of DON and 31% of the ZEN being adsorbed by the yeast. Beermakers must pay careful attention to the raw material since a high percentage of DON could be present at the end of the beer fermentation process. Future studies should focus on the quantification of "masked" mycotoxins that are relevant to food security.


Subject(s)
Fermentation , Fusarium/metabolism , Mycotoxins/analysis , Saccharomyces cerevisiae/metabolism , Saccharomyces/metabolism , Trichothecenes/analysis , Zearalenone/analysis , Beer/analysis , Beer/microbiology , Chromatography, High Pressure Liquid , Food Analysis , Food Contamination/analysis , Food Microbiology , Hydrogen-Ion Concentration , Reproducibility of Results
19.
Toxins (Basel) ; 11(5)2019 05 07.
Article in English | MEDLINE | ID: mdl-31067836

ABSTRACT

Mycotoxins are widely studied by many research groups in all aspects, but the stability of these compounds needs further research for clarification. The objective of this study is to evaluate deoxynivalenol and zearalenone stability during all steps of the malting and brewing processes. The levels of these compounds decreased significantly during the production process (barley to beer). During the malting process, the DON levels decreased significantly in the steeping, germination, and malting steps (62%, 51.5%, and 68%, respectively). Considering ZEN, when the levels were compared between barley and the last step of the process, a significant decrease was observed. Most of the mycotoxins produced were transferred to the rootlets and spent grains, which is advantageous considering the final product. Furthermore, the mycotoxin dietary intake estimation was included in this study. The results proved that if the concentrations of target mycotoxins in raw material are under the limits established by the regulations, the levels decrease during the malting and brewing processes and make the beer secure for consumers. The quality of the five commodities involved in the beer process plays a decisive role in the creation of a safe final product.


Subject(s)
Beer/analysis , Food Contamination/analysis , Trichothecenes/analysis , Zearalenone/analysis , Adult , Dietary Exposure/analysis , Food Industry , Fusarium , Hordeum/microbiology , Humans
20.
Toxins (Basel) ; 11(1)2019 01 10.
Article in English | MEDLINE | ID: mdl-30634556

ABSTRACT

Fusarium species threaten yield and quality of cereals worldwide due to their ability to produce mycotoxins and cause plant diseases. Trichothecenes and zearalenone are the most economically significant mycotoxins and are of particular concern in barley, maize and wheat. For this reason, the aim of this study was to characterize the Fusarium isolates from brewing barley and to assess deoxynivalenol and zearalenone contamination in grains. Characterization of the Fusarium strains was carried out by the phylogeny based on two loci (EF-1α and RPB2). Mycotoxin detection and quantification were performed by LC-MS. The results show that Fusarium was the predominant genus. Phylogenetic study demonstrated that the majority of the strains clustered within the Fusarium sambucinum species complex followed by the Fusarium tricinctum species complex. The results revealed high incidence of deoxynivalenol (DON) and zearalenone (ZEA) contamination (90.6% and 87.5%, respectively). It was observed that 86% of the samples contaminated with ZEA were above the limits set by the EU and Brazilian regulations. These results may highlight the importance of controlling Fusarium toxins in barley, mainly because of its use in the brewing industry and the resistance of various mycotoxins to food processing treatments.


Subject(s)
Edible Grain , Food Contamination/analysis , Fusarium/isolation & purification , Hordeum , Trichothecenes/analysis , Zearalenone/analysis , Edible Grain/chemistry , Edible Grain/microbiology , Fusarium/genetics , Hordeum/chemistry , Hordeum/microbiology , Phylogeny
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