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首页> 外文期刊>Analytical methods >A stability-indicating method by LC-UV for analysis of 7-epi-clusianone extracted from Garcinia brasiliensis fruits and a novel prenylated benzophenone from the oxidation of this molecular marker
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A stability-indicating method by LC-UV for analysis of 7-epi-clusianone extracted from Garcinia brasiliensis fruits and a novel prenylated benzophenone from the oxidation of this molecular marker

机译:LC-UV稳定性指示法分析巴西藤果果实中的7-表位-clusianone和该分子标记的氧化作用制得的新型异戊二烯二苯甲酮

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The potential of 7-epi-clusianone (7-EPI), a natural prenylated benzophenone extracted from fruits of Garcinia brasiliensis, as a drug candidate with antimicrobial, antileishmanial, and anti-inflammatory activities has been reported. In this study, we developed a stability-indicating method by LC-UV for determination of 7-EPI isolated from fractionated extracts of Garcinia brasiliensis fruits. Under forced degradation conditions (acid and alkaline media, oxidative stress, and thermal stability), 7-EPI showed one degradation product which was detected under oxidative conditions using hydrogen peroxide. The chemical structure of the oxidative degradation product was elucidated after characterization studies using high-resolution mass spectrometry, heteronuclear multiple bond correlation (HMBC), and ATR-FTIR. The results indicated a Baeyer–Villiger rearrangement, where one oxygen atom was incorporated and stabilized by resonance between two carbonyl moieties in the 7-EPI structure. In this way, a stability-indicating method for 7-EPI analysis was developed and validated. The structure of the oxidative degradation product was elucidated and its degradation pathway was proposed. From this, a novel prenylated benzophenone was identified and denoted as 7-epi-oxi-clusianone, a compound with the potential to be exploited as a drug candidate or a sunscreen agent.
机译:据报道,从巴西藤藤果实中提取的天然表烯基二苯甲酮7-表clusianone(7-EPI)具有抗微生物,抗菌和抗炎活性。在这项研究中,我们开发了一种通过LC-UV指示稳定性的方法,该方法用于测定从巴西藤果实的分级提取物中分离出的7-EPI。在强制降解条件下(酸和碱介质,氧化应力和热稳定性),7-EPI显示出一种降解产物,该产物在氧化条件下使用过氧化氢检测到。使用高分辨率质谱,异核多键相关(HMBC)和ATR-FTIR进行表征研究后,阐明了氧化降解产物的化学结构。结果表明发生了Baeyer-Villiger重排,其中一个氧原子被掺入并通过7-EPI结构中两个羰基部分之间的共振而稳定。这样,开发并验证了一种用于7-EPI分析的稳定性指示方法。阐明了氧化降解产物的结构,并提出了其降解途径。据此,鉴定出一种新型的烯丙基化二苯甲酮,并表示为7-表-氧-clusianone,该化合物具有被开发为候选药物或防晒剂的潜力。

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