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玛咖酰胺的高效合成及抗疲劳活性评价:玛咖中独特的生物活性化合物。

The Efficient Synthesis and Anti-Fatigue Activity Evaluation of Macamides: The Unique Bioactive Compounds in Maca.

机构信息

Guangdong Provincial Key Laboratory of Pharmaceutical Bioactive Substances, School of Basic Medical Sciences, Guangdong Pharmaceutical University, Guangzhou 510006, China.

Department of Microbiology and Immunology, Guangdong Pharmaceutical University, Guangzhou 510006, China.

出版信息

Molecules. 2023 May 7;28(9):3943. doi: 10.3390/molecules28093943.

Abstract

Macamides are a class of amide alkaloids that are only found in maca and are widely considered to be its bioactive marker compounds. More than thirty macamide monomers have been identified in recent years; however, it is difficult to obtain a single macamide monomer from the maca plant because of their similar structures and characteristics. We used the carbodiimide condensation method (CCM) to efficiently synthesize five typical macamides, including benzyl-hexadecanamide (NBH), benzyl-9Z,12Z,15Z-octadecenamide, (3-methoxybenzyl)-9Z,12Z-octadecenamide, benzyl-9Z,12Z-octadecenamide, and (3-methoxybenzyl)-9Z,12Z,15Z-octadecadienamide. All the synthesized macamides were purified by a one-step HPLC with a purity of more than 95%. NBH is the most abundant macamide monomer in natural maca, and it was selected to evaluate the anti-fatigue effects of macamides. The results indicated that NBH could enhance the endurance capacity of mice by increasing liver glycogen levels and decreasing blood urea nitrogen, lactate dehydrogenase, blood ammonia, and blood lactic acid levels. Macamides might be the active substances that give maca its anti-fatigue active function.

摘要

酰胺生物碱是一类仅在玛咖中发现的酰胺生物碱,被广泛认为是其生物活性标记化合物。近年来已经鉴定出三十多种玛咖酰胺单体;然而,由于它们的结构和特性相似,从玛咖植物中获得单一的玛咖酰胺单体非常困难。我们使用碳二亚胺缩合方法(CCM)高效合成了五种典型的玛咖酰胺,包括苄基-十六烷酰胺(NBH)、苄基-9Z,12Z,15Z-十八碳烯酰胺、(3-甲氧基苄基)-9Z,12Z-十八碳烯酰胺、苄基-9Z,12Z-十八碳酰胺和(3-甲氧基苄基)-9Z,12Z,15Z-十八碳三烯酰胺。所有合成的玛咖酰胺都通过一步 HPLC 纯化,纯度超过 95%。NBH 是天然玛咖中最丰富的玛咖酰胺单体,它被选择来评估玛咖酰胺的抗疲劳作用。结果表明,NBH 通过增加肝糖原水平和降低血尿素氮、乳酸脱氢酶、血氨、血乳酸水平来增强小鼠的耐力。玛咖酰胺可能是赋予玛咖抗疲劳活性功能的活性物质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/657f/10180231/f48a603a86e0/molecules-28-03943-g001.jpg

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