A review of meroterpenoids and of their bioactivity from guava (Psidium guajava L.)

IF 5.2 Q1 FOOD SCIENCE & TECHNOLOGY Journal of Future Foods Pub Date : 2023-06-01 DOI:10.1016/j.jfutfo.2022.12.005
Xinfeng Zou , Haiyang Liu
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Abstract

Psidium guajava Linn. (family Myrtaceae), is commonly known as guava. Guava is consumed in large quantities throughout the world due to its ease of cultivation and high nutritional value. As an important perennial fruit tree distributed around the world, guava has been widely used to manage various diseases in traditional medicine. Guava has been shown significant bioactivity such as antioxidant, anti-inflammatory, immunomodulatory, antimicrobial, antidiabetic, and anticancer properties. A large number of studies indicated that guava contains various type of phytochemicals including monoterpenes, sesquiterpenes, triterpenes, phenolics, and meroterpenoids. Among them, meroterpenoids are characteristic components of guava, which are hybrid of acylphloroglucinol with terpenoids (monoterpenes, sesquiterpenes). Modern pharmacological investigations showed intricate Psidium meroterpenoids possess a wide range of bioactivities. Although a large and growing body of literatures have investigated the Psidium meroterpenoids isolated from guava, a comprehensive review of Psidium meroterpenoids and their bioactivities has not been conducted. Therefore, this review provides a comprehensive compile of 75 meroterpenoids isolated from guava and their bioactivities between 2007 and May 2022. Furthermore, the possible biosynthesis way and future directions of Psidium meroterpenoids have also been discussed.

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番石榴(Psidium guajava L.)中萜类化合物及其生物活性研究进展
番石榴。(杨梅科),俗称番石榴。番石榴因其易于种植和营养价值高而在世界各地被大量食用。番石榴作为分布在世界各地的重要多年生果树,在传统医学中被广泛用于治疗各种疾病。番石榴已显示出显著的生物活性,如抗氧化、抗炎、免疫调节、抗菌、抗糖尿病和抗癌特性。大量研究表明,番石榴含有多种植物化学物质,包括单萜、倍半萜、三萜、酚类和亚萜类。其中,亚萜类化合物是番石榴的特征成分,是酰基氯三酚与萜类化合物(单萜、倍半萜)的杂交产物。现代药理学研究表明,复杂的Psidium亚萜类化合物具有广泛的生物活性。尽管越来越多的文献对番石榴中分离的Psidium亚萜类化合物进行了研究,但尚未对Psdium亚萜及其生物活性进行全面的综述。因此,这篇综述提供了2007年至2022年5月期间从番石榴中分离的75种亚萜类化合物及其生物活性的综合汇编。此外,还对Psidium亚萜类化合物可能的生物合成途径和未来的发展方向进行了讨论。
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