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单宁相关多酚的过冷活性分析。

Analysis of supercooling activity of tannin-related polyphenols.

机构信息

Research Faculty and Graduate School of Agriculture, Hokkaido University, Sapporo 060-8589, Japan.

出版信息

Cryobiology. 2013 Aug;67(1):40-9. doi: 10.1016/j.cryobiol.2013.04.008. Epub 2013 May 2.

Abstract

Based on the discovery of novel supercooling-promoting hydrolyzable gallotannins from deep supercooling xylem parenchyma cells (XPCs) in Katsura tree (see Wang et al. (2012) [38]), supercooling capability of a wide variety of tannin-related polyphenols (TRPs) was examined in order to find more effective supercooling-promoting substances for their applications. The TRPs examined were single compounds including six kinds of hydrolyzable tannins, 11 kinds of catechin derivatives, two kinds of structural analogs of catechin and six kinds of phenolcarboxylic acid derivatives, 11 kinds of polyphenol mixtures and five kinds of crude plant tannin extracts. The effects of these TRPs on freezing were examined by droplet freezing assays using various solutions containing different kinds of identified ice nucleators such as the ice nucleation bacterium (INB) Erwinia ananas, the INB Xanthomonas campestris, silver iodide and phloroglucinol as well as a solution containing only unintentionally included unidentified airborne ice nucleators. Among the 41 kinds of TRPs examined, all of the hydrolyzable tannins, catechin derivatives, polyphenol mixtures and crude plant tannin extracts as well as a few structural analogs of catechin and phenolcarboxylic acid derivatives exhibited supercooling-promoting activity (SCA) with significant differences (p>0.05) from at least one of the solutions containing different kinds of ice nucleators. It should be noted that there were no TRPs exhibiting ice nucleation-enhancing activity (INA) in all solutions containing identified ice nucleators, whereas there were many TRPs exhibiting INA with significant differences in solutions containing unidentified ice nucleators alone. An emulsion freezing assay confirmed that these TRPs did not essentially affect homogeneous ice nucleation temperatures. It is thought that not only SCA but also INA in the TRPs are produced by interactions with heterogeneous ice nucleators, not by direct interaction with water molecules. In the present study, several TRPs that might be useful for applications due to their high SCA in many solutions were identified.

摘要

基于从桂樱树(Katsura tree)深过冷木质部薄壁细胞(XPCs)中发现的新型促进过冷水解可水解鞣质(Wang 等人,2012 [38]),研究了各种与单宁相关的多酚(TRPs)的过冷能力,以寻找更有效的促进过冷物质,将其应用于实际。所研究的 TRPs 包括单一组分,包括六种水解单宁、11 种儿茶素衍生物、两种儿茶素结构类似物和六种酚羧酸衍生物、11 种多酚混合物和五种粗植物单宁提取物。通过使用含有不同种类已鉴定冰核(如菠萝泛菌 Erwinia ananas、野油菜黄单胞菌 Xanthomonas campestris、碘化银和间苯三酚)的各种溶液和仅含有意外包含的未鉴定空气传播冰核的溶液进行液滴冻结试验,研究了这些 TRPs 对冻结的影响。在所检查的 41 种 TRPs 中,所有水解单宁、儿茶素衍生物、多酚混合物和粗植物单宁提取物以及一些儿茶素和酚羧酸衍生物的结构类似物都表现出过冷促进活性(SCA),与至少一种含有不同种类冰核的溶液相比有显著差异(p>0.05)。值得注意的是,在所有含有已鉴定冰核的溶液中,没有 TRPs 表现出增强冰核活性(INA),而在仅含有未鉴定冰核的溶液中,有许多 TRPs 表现出显著差异的 INA。乳液冻结试验证实,这些 TRPs 不会从根本上影响同质冰核化温度。人们认为,TRPs 不仅具有 SCA,而且还具有 INA,这是由于与异质冰核的相互作用而产生的,而不是与水分子的直接相互作用。在本研究中,由于它们在许多溶液中具有高 SCA,因此确定了几种可能具有应用价值的 TRPs。

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