Insulin-Mimetic Activity of Herbal Extracts Identified with Large-Scale Total Internal Reflection Fluorescence Microscopy

Author:

Neuhauser Cathrina12,Schwarzinger Bettina12,Schwarzinger Clemens3ORCID,Feichtinger Michaela1,Stadlbauer Verena12ORCID,Arnaut Verena1,Drotarova Ivana1ORCID,Blank-Landeshammer Bernhard2ORCID,Weghuber Julian12ORCID

Affiliation:

1. Center of Excellence Food Technology and Nutrition, University of Applied Sciences Upper Austria, Stelzhamerstraße 23, 4600 Wels, Austria

2. FFoQSI GmbH-Austrian Competence Centre for Feed and Food Quality, Safety and Innovation, Technopark 1D, 3430 Tulln, Austria

3. Institute for Chemical Technology of Organic Materials, Johannes Kepler University, 4040 Linz, Austria

Abstract

Diabetes mellitus is a spreading global pandemic. Type 2 diabetes mellitus (T2DM) is the predominant form of diabetes, in which a reduction in blood glucose uptake is caused by impaired glucose transporter 4 (GLUT4) translocation to the plasma membrane in adipose and muscle cells. Antihyperglycemic drugs play a pivotal role in ameliorating diabetes symptoms but often are associated with side effects. Hence, novel antidiabetic compounds and nutraceutical candidates are urgently needed. Phytogenic therapy can support the prevention and amelioration of impaired glucose homeostasis. Using total internal reflection fluorescence microscopy (TIRFM), 772 plant extracts of an open-access plant extract library were screened for their GLUT4 translocation activation potential, resulting in 9% positive hits. Based on commercial interest and TIRFM assay-based GLUT4 translocation activation, some of these extracts were selected, and their blood glucose-reducing effects in ovo were investigated using a modified hen’s egg test (Gluc-HET). To identify the active plant part, some of the available candidate plants were prepared in-house from blossoms, leaves, stems, or roots and tested. Acacia catechu (catechu), Pulmonaria officinalis (lungwort), Mentha spicata (spearmint), and Saponaria officinalis (common soapwort) revealed their potentials as antidiabetic nutraceuticals, with common soapwort containing GLUT4 translocation-activating saponarin.

Funder

Christian Doppler Forschungsgesellschaft

Austrian Competence Centre for Feed and Food Quality, Safety and Innovation

Austrian ministries BMVIT, BMDW

COMET—Competence Centers for Excellent Technologies

Austrian Research Promotion Agency FFG

Publisher

MDPI AG

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