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纳米硒的制备、稳定性、应用及可能风险的研究进展:聚焦于食品及食品相关领域。

Research Advances in Preparation, Stability, Application, and Possible Risks of Nanoselenium: Focus on Food and Food-Related Fields.

机构信息

School of Food and Biological Engineering, Jiangsu University, Zhenjiang, Jiangsu 212013, People's Republic of China.

Department of Food Science, Rutgers, The State University of New Jersey, New Brunswick New Jersey 08901, United States.

出版信息

J Agric Food Chem. 2023 Jun 14;71(23):8731-8745. doi: 10.1021/acs.jafc.3c02714. Epub 2023 Jun 5.

Abstract

Nanoselenium is a promising selenium supplement as a result of its low toxicity and high bioavailability. However, the understanding on the preparation, stability, bioavailability, possible risks, and related underlying mechanisms of nanoselenium is not in-depth. Thus, the above aspects were reviewed on the basis of the latest literature. The reducing capacity and stability of the reducing agent and binding force between nanoselenium and the template decide the nanoselenium stability. Although research on nanoselenium application in food, agriculture, livestock, and aquaculture has been widely carried out, it is not widely applied in the fields. Se-containing amino acids are synthesized using nanoselenium adsorbed by organisms, and they constitute Se-containing proteins with other amino acids, which improves the health of organisms via scavenging excessive radicals. Notably, excessive nanoselenium intake generates redundant Se-containing amino acids, leading to dysfunction of key proteins in organisms, and its toxic doses vary with organisms. Furthermore, some issues related to nanoselenium still need to be solved urgently.

摘要

纳米硒是一种很有前途的硒补充剂,因为它的毒性低、生物利用度高。然而,对于纳米硒的制备、稳定性、生物利用度、可能存在的风险以及相关的潜在机制,我们的了解并不深入。因此,基于最新的文献,对上述方面进行了综述。还原剂的还原能力和稳定性以及纳米硒与模板之间的结合力决定了纳米硒的稳定性。尽管纳米硒在食品、农业、畜牧业和水产养殖中的应用研究已经广泛开展,但它在这些领域的应用并不广泛。生物体吸附纳米硒后合成含硒氨基酸,再与其他氨基酸构成含硒蛋白质,通过清除过多的自由基来提高生物体的健康水平。值得注意的是,过量摄入纳米硒会产生多余的含硒氨基酸,导致生物体关键蛋白质功能失常,其毒性剂量因生物体而异。此外,一些与纳米硒相关的问题仍亟待解决。

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