Effect of industrial processing on the distribution of fumonisin B1 in dry milling corn fractions

被引:56
作者
Brera, C [1 ]
Debegnach, F [1 ]
Grossi, S [1 ]
Miraglia, M [1 ]
机构
[1] Ist Super Sanita, Lab Alimenti Reparto Chim Cereali, I-00161 Rome, Italy
关键词
D O I
10.4315/0362-028X-67.6.1261
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The aim of this study was to investigate the distribution of fumonisin B, in various corn milling fractions processed by an industrial plant. Corn kernels and six derived milling fractions (germ, bran, large and small grits, animal feed flour, and flour) were sampled. In addition, in order to evaluate the effect of cooking, samples of polenta were prepared starting from naturally contaminated flour obtained from the industrial processing cycle. The industrial plant worked continuously at a rate of 60 tons per day. Two sublots of 5 tons each were investigated with samples of derived products taken at regular time intervals. Due to a similar heterogeneous distribution of fumonisin B-1 with other mycotoxins, such as aflatoxins, the sampling scheme was derived from the European Directive 98/53 for aflatoxins. Both lots of kernels showed fumonisin contamination at 4.54 and 5.09 mg/kg, respectively. Germ, bran, and animal feed flour showed contamination levels, namely 8.92 mg/kg (lot 1) and 9.56 mg/kg (lot 2), 7.08 mg/kg (lot 1) and 8.08 mg/kg (lot 2), and 9.36 mg/kg (lot 1) and 6.86 mg/kg (lot 2) higher than large and small grits and flour (0.39 mg/kg [lot 1] and 0.42 mg/kg [lot 2], 0.60 mg/kg [lot 1] and 1.01 mg/kg [lot 2], and 0.40 mg/kg [lot 1] and 0.45 mg/kg [lot 2], respectively). These results seem to account both for the industrial yields of the derived products and the distribution of fumonisin contamination in a kernel. The cooking of polenta in a domestic pressure cooker did not affect fumonism contamination because the mycotoxin concentrations were similar to those of the starting flour (0.40 and 0.45 mg/kg).
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页码:1261 / 1266
页数:6
相关论文
共 23 条
[11]   Effect of extraction and extract purification on the measurable fumonisin content of maize and maize products. Tests on the efficiency of acid extraction and use of immunoaffinity columns [J].
Meister U. .
Mycotoxin Research, 1999, 15 (1) :13-23
[12]  
*OECD, 1999, 4 OECD
[13]  
*R BIOPH RHON LTD, UMONIPREP IFU P31 V3
[14]   Control of fumonisin: Effects of processing [J].
Saunders, DS ;
Meredith, FI ;
Voss, KA .
ENVIRONMENTAL HEALTH PERSPECTIVES, 2001, 109 :333-336
[15]   RAPID DETECTION OF FUMONISIN B-1 IN CORN-BASED FOOD BY COMPETITIVE DIRECT DIPSTICK ENZYME-IMMUNOASSAY ENZYME-LINKED IMMUNOFILTRATION ASSAY WITH INTEGRATED NEGATIVE CONTROL REACTION [J].
SCHNEIDER, E ;
USLEBER, E ;
MARTLBAUER, E .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1995, 43 (09) :2548-2552
[16]  
Scott PM, 1996, FOOD ADDIT CONTAM, V13, P823, DOI 10.1080/02652039609374469
[17]  
Shephard GS, 1996, J AOAC INT, V79, P671
[18]  
*SWISS FED OFF PUB, 2002, 817021 OSOE SWISS FE
[19]  
Sydenham EW, 1996, J AOAC INT, V79, P688
[20]   Food consumption patterns in Italy: the INN-CA Study 1994-1996 [J].
Turrini, A ;
Saba, A ;
Perrone, D ;
Cialfa, E ;
D'Amicis, A .
EUROPEAN JOURNAL OF CLINICAL NUTRITION, 2001, 55 (07) :571-588