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壳聚糖纳米颗粒对食品中细菌、氧化剂及糖尿病相关活性的诱导作用及提取物研究

Induction role of chitosan nanoparticles to extract against food-borne bacteria, oxidant, and diabetic activities .

作者信息

Mashraqi Abdullah

机构信息

Department of Biology, College of Science, Jazan University, Jazan, Saudi Arabia.

出版信息

Front Microbiol. 2023 Jul 4;14:1209524. doi: 10.3389/fmicb.2023.1209524. eCollection 2023.

Abstract

Foodborne diseases as well as Foodborne pathogens are a global issue with significant effects on human health and economy. Therefore, several investigators have tried to find new alternative approaches to prevent and control this problem. In this context, the present study aimed to find some possible and effective approaches for controlling food-borne bacteria via Dill ( L.) extract (DE) loaded with chitosan nanoparticles (ChNPs) besides its anti-oxidant and anti-diabetic activities. Flavonoid and phenolic contents of DE were detected by HPLC, indicating the presence of 18 constituents, high content (22526.51 μg/mL) of chlorogenic acid, followed by 2236.21 μg/mL of coumaric acid and 2113.81 μg/mL of pyrocatechol. In contrast, low contents of cinnamic acid, methyl gallate, apigenin, daidzein, quercetin, syringic acid, and kaempferol were detected. , , and were highly inhibited by DE loaded ChNPs (DELChNPs) with inhibition zones (IZs) of 28.50 ± 0.87, 30.33 ± 0.58, 29.33 ± 0.58, 23.17 ± 0.76, 25.76 ± 0.58, and 24.17 ± 0.29 mm with MIC 15.41 ± 0.36, 7.70 ± 0.17, 15.58 ± 0.07, 31.08 ± 0.07, 31.04 ± 0.07 and 62.33 ± 0.29 μg/mL compared with inhibitory activity caused by DE, where the IZs were 25.83 ± 1.44, 29.67 ± 0.85, 24.83 ± 0.76, 20.33 ± 1.53, 21.17 ± 0.29, and 19.67 ± 1.15 mm with MIC 62.33 ± 0.29, 31.08 ± 0.07, 62.50 ± 0.29, 31.08 ± 0.07, 31.04 ± 0.07, and 249.0 ± 1.73 μg/mL, respectively. Also, the minimum bactericidal concentration (MBC) of DELChNPs was less than DE against all tested microorganisms. The MBC/MIC index documented that DELChNPs were more effective than DE. The biofilm of tested bacteria was inhibited by DE and DELChNPs but with different levels of anti-biofilm activity. For example, the anti-biofilm activity was 79.26 and 86.15% against using DE and DELChNPs, respectively. DELChNPs and DE, compared with the ascorbic acid, exhibited DPPH scavenging % with IC values of 7.8 μg/mL, 13.96 μg/mL, and 4.83 μg/mL, respectively. Anti-diabetic activity via inhibition of amylase indicated that IC was 164.2 μg/mL and 164.3 μg/mL using DE and DELChNPs, respectively. This investigation highlights the vital DE phytoconstituents, particularly DELChNPs which possess important therapeutic effects against food-borne microorganisms and could be utilized as a safe alternative to synthetic drugs.

摘要

食源性疾病以及食源性病原体是一个全球性问题,对人类健康和经济有着重大影响。因此,一些研究人员试图寻找新的替代方法来预防和控制这个问题。在此背景下,本研究旨在找到一些可能有效的方法,通过负载壳聚糖纳米颗粒(ChNPs)的莳萝提取物(DE)来控制食源细菌,此外还研究其抗氧化和抗糖尿病活性。通过高效液相色谱法检测了DE中的黄酮类和酚类成分,结果表明存在18种成分,绿原酸含量较高(22526.51μg/mL),其次是香豆酸2236.21μg/mL和邻苯二酚2113.81μg/mL。相比之下,检测到肉桂酸、没食子酸甲酯、芹菜素、大豆苷元、槲皮素、丁香酸和山奈酚的含量较低。负载ChNPs的DE(DELChNPs)对[具体细菌名称未给出]、[具体细菌名称未给出]和[具体细菌名称未给出]有高度抑制作用,抑菌圈(IZs)分别为28.50±0.87、30.33±0.58、29.33±0.58、23.17±0.76、25.76±0.58和24.17±0.29mm,最低抑菌浓度(MIC)分别为15.41±0.36、7.70±0.17、15.58±0.07、31.08±0.07、31.04±0.07和62.33±0.29μg/mL,而DE的抑菌活性中,IZs分别为25.83±1.44、29.67±0.85、24.83±0.76、20.33±1.53、21.17±0.29和19.67±1.15mm,MIC分别为62.33±0.29、31.08±0.07、62.50±0.29、31.08±0.07、31.04±0.07和249.0±1.73μg/mL。此外,DELChNPs对所有测试微生物的最低杀菌浓度(MBC)均低于DE。MBC/MIC指数表明DELChNPs比DE更有效。测试细菌的生物膜受到DE和DELChNPs的抑制,但抗生物膜活性水平不同。例如,针对[具体细菌名称未给出],使用DE和DELChNPs时的抗生物膜活性分别为79.26%和86.15%。与抗坏血酸相比,DELChNPs和DE的DPPH清除率IC50值分别为7.8μg/mL、13.96μg/mL和4.83μg/mL。通过抑制淀粉酶的抗糖尿病活性表明,使用DE和DELChNPs时的IC50分别为164.2μg/mL和164.3μg/mL。本研究突出了DE重要的植物成分,特别是DELChNPs,其对食源微生物具有重要的治疗作用,可作为合成药物的安全替代品。

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