一些海洋海绵的化学特性、抗氧化性和对碳水化合物代谢酶的抑制作用。

Mohamed Shaaban, Howaida I Abd-Alla, Amal Z Hassan, Hanan F Aly, Mohamed A Ghani
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引用次数: 0

摘要

无标签:背景:迄今为止,已描述的海洋产品超过 15,000 种;就已发现产品的多样性而言,海绵是冠军生产者。海绵中的大多数生物活性化合物可分为抗炎、抗肿瘤、免疫或神经抑制、抗病毒、抗疟、抗生素或防污等类别。研究评估了四种海洋海绵的不同提取物对一些抗氧化剂指数和与糖尿病有关的碳水化合物水解酶的体外抑制作用。讨论了主要海绵(SP1 和 SP3)提取物的化学特征:生物研究中使用的所有化学品均为分析级,购自 Sigma、Merck 和 Aldrich。所有试剂盒均为 Biosystems(西班牙)、Sigma Chemical Company(美国)和 Biodiagnostic(埃及)的产品。碳水化合物代谢酶:δ-淀粉酶、δ-葡萄糖苷酶和δ-半乳糖苷酶(分别为 EC3.2.1.1、EC3.2.1.20 和 EC3.2.1.23)来自美国西格玛化学公司:从埃及红海沿岸采集了四种海洋海绵:Smenospongia(SP1)、Callyspongia(SP2)、Niphates(SP3)和 Stylissa(SP4),并对其进行了分类鉴定。海绵提取物对氧化应激指数和碳水化合物水解酶有不同的抑制作用,在一定程度上与抑制剂的浓度呈线性关系(剂量依赖性)。海绵提取物(3、1 和 2)分别表现出了强效的还原能力。利用核磁共振和质谱对海绵 1 进行纯化和化学鉴定,发现其中存在邻苯二甲酸二异丁酯(1)、邻苯二甲酸二正丁酯(2)、亚油酸(3)、β-谷甾醇(4)和胆固醇(5)。海绵 3 产生双-[2-乙基]-己基乙酯(6)和甘油三酯脂肪酸酯(7):海洋海绵是很有希望的生物活性化合物来源。从埃及红海海岸采集的四种海洋海绵被鉴定为 Smenospongia(SP1)、Callyspongia(SP2)、Niphates(SP3)和 Stylissa(SP4)。结果表明,不同的海绵提取物对氧化应激指数和碳水化合物水解酶有抑制作用,在一定程度上与抑制剂的浓度成线性关系(剂量依赖性)。海绵提取物(3、1 和 2)分别具有强效还原力。讨论了海绵 SP1 和 SP3 的化学特征。根据这项研究,海洋海绵被认为是生产多种生物活性化合物的重要来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Chemical characterization, antioxidant and inhibitory effects of some marine sponges against carbohydrate metabolizing enzymes.

Chemical characterization, antioxidant and inhibitory effects of some marine sponges against carbohydrate metabolizing enzymes.

Chemical characterization, antioxidant and inhibitory effects of some marine sponges against carbohydrate metabolizing enzymes.

Chemical characterization, antioxidant and inhibitory effects of some marine sponges against carbohydrate metabolizing enzymes.

Unlabelled:

Background: More than 15,000 marine products have been described up to now; Sponges are champion producers, concerning the diversity of products that have been found. Most bioactive compounds from sponges were classified into anti-inflammatory, antitumor, immuno- or neurosurpressive, antiviral, antimalarial, antibiotic, or antifouling. Evaluation of in vitro inhibitory effects of different extracts from four marine sponges versus some antioxidants indices and carbohydrate hydrolyzing enzymes concerned with diabetes mellitus was studied. The chemical characterizations for the extracts of the predominating sponges; SP1 and SP3 were discussed.

Methods: All chemicals served in the biological study were of analytical grade and purchased from Sigma, Merck and Aldrich. All kits were the products of Biosystems (Spain), Sigma Chemical Company (USA), Biodiagnostic (Egypt). Carbohydrate metabolizing enzymes; α-amylase, α-glucosidase, and β-galactosidase (EC3.2.1.1, EC3.2.1.20, and EC3.2.1.23, respectively) were obtained from Sigma Chemical Company (USA).

Results: Four marine sponges; Smenospongia (SP1), Callyspongia (SP2), Niphates (SP3), and Stylissa (SP4), were collected from the Red Sea at Egyptian coasts, and taxonomically characterized. The sponges' extracts exhibited diverse inhibitory effects on oxidative stress indices and carbohydrate hydrolyzing enzymes in linear relationships to some extent with concentration of inhibitors (dose dependant). The extracts of sponges (3, 1, and 2) showed, respectively, potent-reducing power. Purification and Chemical characterization of sponge 1 using NMR and mass spectroscopy, recognized the existence of di-isobutyl phthalate (1), di-n-butyl phthalate (2), linoleic acid (3), β-sitosterol (4), and cholesterol (5). Sponge 3 produced bis-[2-ethyl]-hexyl-phthylester (6) and triglyceride fatty acid ester (7).

Conclusion: Marine sponges are promising sources for delivering of bioactive compounds. Four marine sponges, collected from Red Sea at Egyptian coasts, were identified as Smenospongia (SP1), Callyspongia (SP2), Niphates (SP3), and Stylissa (SP4). The results demonstrated that different sponges extracts exhibited inhibitory effects on oxidative stress indices and carbohydrate hydrolyzing enzymes in linear relationships to some extent with concentration of inhibitors (dose dependant). The extracts of sponges (3, 1, and 2) showed, respectively, potent-reducing power. Chemical characterizations of sponges SP1 and SP3 were discussed. Based on this study, marine sponges are considered as talented sources for production of diverse and multiple biologically active compounds.

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