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首页> 外文期刊>Food & Function >beta-Carotene bioaccessibility from biofortified maize (Zea mays) is related to its density and is negatively influenced by lutein and zeaxanthin
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beta-Carotene bioaccessibility from biofortified maize (Zea mays) is related to its density and is negatively influenced by lutein and zeaxanthin

机译:Biofortized玉米(Zea Mays)的β-胡萝卜素生物可接近性与其密度有关,受叶氏菌素和玉米蛋白的负面影响

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摘要

Biofortification of maize with provitamin A (pro-VA) carotenoids has been successful, but the bioavailability of carotenoids needs to be explored. In the present study, we investigated the carotenoid content, micellarization and intestinal cell uptake of carotenoids from 10 maize hybrids [normal maize, quality protein maize (QPM), pro-VA carotenoid and double biofortified QPM + pro-VA maize hybrids] using a simulated in vitro digestion/Caco-2 cell model. The pro-VA carotenoid content of biofortified maize hybrids is 2-10 fold higher compared to that of normal maize. Furthermore, the ratio of non-proVA carotenoids lutein (LUT) plus zeaxanthin (ZEA) to the sum of pro-VA carotenoids beta-cryptoxanthin (BCX), a-carotene (AC) and beta-carotene (BC) in biofortified maize was much lower compared to that of normal maize. The consumption of 200 g day-1 of biofortified Pusa-PV-16-3 (BC = 808.4 mu g per 100 g; AC = 839.3 mu g per 100 g; BCX = 59 mu g per 100 g) and Pusa-APQH8 (BC = 345.9 mu g per 100 g; AC = 1739 mu g per 100 g; BCX = 644.2 mu g per 100 g) maize would contribute to 52 and 64% of RDAs for adult Indian men, respectively, after adjusting for cooking losses and conversion factors. The mean efficiency of micellarization of LUT (62.2% +/- 5.3), ZEA (65% +/- 4.7), and BCX (54% +/- 9.5) exceeded that of AC (43% +/- 8.9) and BC (49.8% +/- 7.8) from all the maize hybrids. Furthermore, the micellarization and uptake in Caco-2 cells during a 4 h incubation period showed high correlation (P & 0.05) with the concentration of carotenoids in the maize digesta and micellar fraction, respectively. However, the LUT + ZEA content in the maize digesta and micellar fraction was inversely (p & 0.05) related to the BC micellarization and intestinal cell uptake, respectively. These results together suggest that the enrichment of pro-VA carotenoids together with decreasing the oxygenated carotenoid metabolites such as LUT and ZEA will further improve the bioavailability of BC from maize hybrids.
机译:玉米生物染色含有Provitamin A(Pro-VA)类胡萝卜素的成功,但需要探索类胡萝卜素的生物利用度。在本研究中,我们研究了来自10级玉米杂交种的类胡萝卜素含量,胶束化和肠道细胞摄取[正常玉米,质量蛋白玉米(QPM),Pro-Va类胡萝卜素和双生物生物化QPM + Pro-Va玉米杂交种]模拟体外消化/ Caco-2细胞模型。与正常玉米相比,生物化玉米杂交种的Pro-Va类胡萝卜素含量高2-10倍。此外,非经过节目胡萝卜素叶黄素(LUT)加玉米蛋白(ZEA)与BE-VA类胡萝卜素β-粘附毒素(BCX),A-胡萝卜素(AC)和β-胡萝卜素(BC)的比例为生物化玉米中与正常玉米相比要低得多。消耗200克的生物染色PUSA-PV-16-3(每100g =808.4μg的消耗量为每100克,每100克=839.3μg; bcx =59μg/ 100g)和pusa-apqh8(每100 g =345.9μg;每100克的AC =1739μg;每100克的BCX =644.2μg)玉米将分别为成人印度男性的52%和64%的RDA,调整烹饪损失和转换因子。 LUT胶束化的平均效率(62.2%+/- 5.3),ZEA(65%+/- 4.7)和BCX(54%+/- 9.5)超过AC(43%+/- 8.9)和BC (49.8%+/- 7.8)来自所有玉米杂种。此外,4小时孵育期间Caco-2细胞中的胶束化和摄取显示出高相关(P& 0.05),分别具有玉米Digesta和胶束馏分中的类胡萝卜素的浓度。然而,玉米Digesta和胶束级分中的LUT + ZEA含量成反比(P& 0.05),分别与BC锭胶质化和肠细胞摄取有关。这些结果共同表明,将Pro-Va类胡萝卜素富集在一起降低含氧类胡萝卜素代谢产物,例如LUT和ZEA,将进一步提高BC来自玉米杂交种的生物利用度。

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  • 来源
    《Food & Function 》 |2018年第1期| 共10页
  • 作者单位

    Indian Council Med Res Natl Inst Nutr Food &

    Drug Toxicol Res Ctr Hyderabad Telangana India;

    Indian Council Med Res Natl Inst Nutr Micronutr Div Hyderabad Telangana India;

    Indian Council Agr Res Indian Agr Res Inst Dept Genet New Delhi India;

    Indian Council Med Res Natl Inst Nutr Micronutr Div Hyderabad Telangana India;

    Indian Council Med Res Natl Inst Nutr Food Chem Div Hyderabad Telangana India;

    Indian Council Med Res Natl Inst Nutr Food &

    Drug Toxicol Res Ctr Hyderabad Telangana India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 食品工业 ;
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