School of Engineering, Faculty of Science and Engineering, The University of Waikato, Hamilton, New Zealand.
Appl Microbiol Biotechnol. 2020 Apr;104(7):2765-2776. doi: 10.1007/s00253-020-10409-1. Epub 2020 Feb 3.
Recently, several studies have indicated that an adequate intake of menaquinone-7 (MK-7) offers numerous health benefits. However, the low availability of MK-7 in the diet necessitates the development of dietary supplements or functional food products to complement natural food sources and meet the daily intake requirements. Like most biological molecules, MK-7 can exist as geometric isomers that can occur in the cis, trans, and cis/trans forms; however, only the all-trans form is biologically significant. MK-7 is traditionally produced through bacterial fermentation, but various synthetic preparations have lately become available. The isomer composition in the final product is influenced by numerous factors, including the methods of production and purification, as well as particular environmental and storage conditions. The MK-7 profile obtained from the various production methods has not yet been elucidated, and the ideal method for the synthesis of the all-trans form of the vitamin is also debatable. Consequently, the quantification of the MK-7 profile of various products is necessary to develop an understanding of the factors that influence the proportion of isomers that are obtained in different preparations. Several possible methods exist for the quantification of MK-7 isomers, and of these, liquid chromatography in conjunction with mass spectrometry techniques appears to be the most promising. Evaluation of the isomer composition is an important consideration, as only the all-trans form sustains biological activity. Furthermore, knowledge of the prominent factors that influence the MK-7 composition may also enable their manipulation to obtain a more favorable MK-7 profile in the final product.
最近,有几项研究表明,足够的menaquinone-7(MK-7)摄入对健康有诸多益处。然而,饮食中 MK-7 的含量很低,因此需要开发膳食补充剂或功能性食品来补充天然食物来源,并满足日常摄入需求。与大多数生物分子一样,MK-7 可以以几何异构体的形式存在,包括顺式、反式和顺/反式;然而,只有全反式形式具有生物学意义。MK-7 传统上通过细菌发酵生产,但最近也出现了各种合成制剂。最终产品中的异构体组成受许多因素的影响,包括生产和纯化方法以及特定的环境和储存条件。不同生产方法获得的 MK-7 图谱尚未阐明,合成全反式形式的理想方法也存在争议。因此,需要对各种产品的 MK-7 图谱进行定量,以了解影响不同制剂中获得的异构体比例的因素。有几种可能的方法可以对 MK-7 异构体进行定量,其中,与质谱技术相结合的液相色谱似乎最有前途。评估异构体组成是一个重要的考虑因素,因为只有全反式形式才能维持生物活性。此外,了解影响 MK-7 组成的主要因素,也可能使其操纵以在最终产品中获得更有利的 MK-7 图谱。