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探索哈斯卡普莓叶化合物对促进肠道健康的有益特性。

Exploring Beneficial Properties of Haskap Berry Leaf Compounds for Gut Health Enhancement.

作者信息

Sip Szymon, Sip Anna, Szulc Piotr, Selwet Marek, Żarowski Marcin, Czerny Bogusław, Cielecka-Piontek Judyta

机构信息

Department of Pharmacognosy and Biomaterials, Faculty of Pharmacy, Poznań University of Medical Sciences, Rokietnicka 3, 60-806 Poznań, Poland.

Department of Biotechnology and Food Microbiology, Poznan University of Life Sciences, Wojska Polskiego 48, 60-627 Poznań, Poland.

出版信息

Antioxidants (Basel). 2024 Mar 17;13(3):357. doi: 10.3390/antiox13030357.

Abstract

This study investigates the potential of formulated systems utilising haskap berry leaf extracts and dextran as carriers, to modulate both antioxidant and enzymatic inhibitory activities and their impact on the growth of specific bacterial strains. The analysis of antioxidant capacity, assessed through ABTS, CUPRAC, DPPH, and FRAP assays, revealed varying but consistently high levels across extracts, with Extract 3 (loganic acid: 2.974 mg/g, chlorogenic acid: 1.125 mg/g, caffeic acid: 0.083 mg/g, rutin: 1.137 mg/g, and quercetin: 1.501 mg/g) exhibiting the highest values (ABTS: 0.2447 mg/mL, CUPRAC: 0.3121 mg/mL, DPPH: 0.21001 mg/mL, and FRAP: 0.3411 mg/mL). Subsequent enzymatic inhibition assays demonstrated a notable inhibitory potential against α-glucosidase (1.4915 mg/mL, expressed as acarbose equivalent), hyaluronidase (0.2982 mg/mL, expressed as quercetin equivalent), and lipase (5.8715 µg/mL, expressed as orlistat equivalent). Further system development involved integration with dextran, showcasing their preserved bioactive compound content and emphasising their stability and potential bioactivity. Evaluation of the dextran systems' impact on bacterial growth revealed a significant proliferation of beneficial strains, particularly the and lactobacilli genus (Bifidobacterium longum: 9.54 × 10 to 1.57 × 10 CFU/mL and : 1.36 × 10 to 1.62 × 10 CFU/mL), suggesting their potential to modulate gut microbiota. These findings offer a foundation for exploring the therapeutic applications of haskap berry-based dextran systems in managing conditions like diabetes, emphasising the interconnected roles of antioxidant-rich botanical extracts and dextran formulations in promoting overall metabolic health.

摘要

本研究调查了以黑茶藨子叶提取物和葡聚糖为载体的制剂系统调节抗氧化和酶抑制活性的潜力,以及它们对特定细菌菌株生长的影响。通过ABTS、CUPRAC、DPPH和FRAP测定法评估抗氧化能力,结果显示各提取物的抗氧化能力各不相同,但始终处于较高水平,提取物3(马钱子酸:2.974毫克/克,绿原酸:1.125毫克/克,咖啡酸:0.083毫克/克,芦丁:1.137毫克/克,槲皮素:1.501毫克/克)表现出最高值(ABTS:0.2447毫克/毫升,CUPRAC:0.3121毫克/毫升,DPPH:0.21001毫克/毫升,FRAP:0.3411毫克/毫升)。随后的酶抑制试验表明,其对α-葡萄糖苷酶(1.4915毫克/毫升,以阿卡波糖当量表示)、透明质酸酶(0.2982毫克/毫升,以槲皮素当量表示)和脂肪酶(5.8715微克/毫升,以奥利司他当量表示)具有显著的抑制潜力。进一步的系统开发涉及与葡聚糖整合,显示出其保留的生物活性化合物含量,并强调了它们的稳定性和潜在生物活性。评估葡聚糖系统对细菌生长的影响发现,有益菌株显著增殖,特别是双歧杆菌属和乳酸杆菌属(长双歧杆菌:9.54×10至1.57×10 CFU/毫升,[此处原文缺失一种细菌名称]:1.36×10至1.62×10 CFU/毫升),表明它们具有调节肠道微生物群的潜力。这些发现为探索基于黑茶藨子的葡聚糖系统在治疗糖尿病等病症中的应用提供了基础,强调了富含抗氧化剂的植物提取物和葡聚糖制剂在促进整体代谢健康方面的相互关联作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d903/10968585/1345e7f817f0/antioxidants-13-00357-g001.jpg

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