Literature DB >> 33543617

Extract of Unifloral Camellia sinensis L. Pollen Collected by Apis mellifera L. Honeybees Exerted Inhibitory Effects on Glucose Uptake and Transport by Interacting with Glucose Transporters in Human Intestinal Cells.

Qiangqiang Li1,2, Caijun Ren1, Sha Yan1, Kai Wang1, Yuliya Hrynets2, Lei Xiang3, Xiaofeng Xue1, Mirko Betti2, Liming Wu1.   

Abstract

Bee pollen possesses potential hypoglycemic effects but its inhibitory mechanisms on glucose absorption and transportation in intestinal cells still need to be clarified. Here, we determined the inhibitory effects of bee pollen extract originating from Camellia sinensis L. (BP-Cs) as well as its representative phenolic compounds on glucose uptake and transport through a human intestinal Caco-2 cell monolayer model. It showed that three representative phenolic compounds, including gallic acid (GA), 3-O-[6'-O-(trans-p-coumaroyl)-β-d-glucopyranosyl]kaempferol (K1), and 3-O-[2',6'-di-O-(trans-p-coumaroyl)-β-d-glucopyranosyl]kaempferol (K2), with contents of 27.7 ± 0.86, 9.88 ± 0.54, and 7.83 ± 0.46 μg/mg in BP-Cs extract, respectively, exerted mutual antagonistic actions interacting with glucose transporters to inhibit glucose uptake and transport based on their combination index (CI) and molecular docking analysis. K1, K2, and GA might compete with d-glucose to form hydrogen bonds with the same active residues including GLU-412, GLY-416, GLN-314, and TRP-420 in GLUT2. These findings provide us a deep understanding of the mechanisms underlying the anti-hyperglycemia by bee pollen, which provide a new sight on dietary intervention strategies against diabetes.

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Keywords:  bee pollen extract; diabetes; glucose transporters; glucose uptake and transport; phenolic compounds

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Year:  2021        PMID: 33543617     DOI: 10.1021/acs.jafc.0c07160

Source DB:  PubMed          Journal:  J Agric Food Chem        ISSN: 0021-8561            Impact factor:   5.279


  1 in total

Review 1.  Bee Pollen: Clinical Trials and Patent Applications.

Authors:  Jari S Algethami; Aida A Abd El-Wahed; Mohamed H Elashal; Hanan R Ahmed; Esraa H Elshafiey; Eslam M Omar; Yahya Al Naggar; Ahmed F Algethami; Qiyang Shou; Sultan M Alsharif; Baojun Xu; Awad A Shehata; Zhiming Guo; Shaden A M Khalifa; Kai Wang; Hesham R El-Seedi
Journal:  Nutrients       Date:  2022-07-12       Impact factor: 6.706

  1 in total

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