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[Exendin-4 promotes paracrine action of adipose-derived stem cells through PI3K/Akt signaling pathways].

Nan Fang Yi Ke Da Xue Xue Bao · 2014

Last updated 2026-05-28

In lab tests, a compound called exendin-4 increased the growth of stem cells from fat tissue and boosted their release of four key healing proteins (VEGF, bFGF, HGF, and IGF-1) when used at a concentration of 10 nm/L. The effect was strongest at this dose and relied on a cell-signaling pathway called PI3K/Akt, because blocking that pathway with a drug (LY-294002) reversed both the protein release and the increase in cell growth.

AI summary of the abstract below.

JournalNan Fang Yi Ke Da Xue Xue Bao, 2014
Citations1
Relative citation ratio0.04
NIH percentile4
Molecules
Conditions studied Obesity, Type 2 Diabetes

Abstract

OBJECTIVE: To investigate the mechanism by which exendin-4 promotes paracrine secretion of cytokines by adipose-derived stem cells (ADSCs). METHODS: In vitro cultured SD rat ADSCs (fourth passage) with or without exendin-4 treatment underwent flow cytometry to characterize the surface markers. MTT assay was performed to assess the proliferation of the cells exposed to different concentrations (0-20 nm/L) of exendin-4, and the paracrine secretion of cytokines (bFGF, VEGF, HGF, and IGF-1) by the ADSCs was evaluated by qPCR. The changes in the expressions of p-Akt in the cells were analyzed by Western blotting and qPCR in response to exendin-4 (10 nm/L) with or without exposure to PI3K/Akt inhibitor LY-294002 (50 nm/L); bFGF, VEGF, HGF, and IGF-1 production in the cells were detected using ELISA kits. RESULTS: Treatment with exendin-4 for 12 h did not affect the surface marker profile of the ADSCs but promoted the cell proliferation (P<0.05). Exendin-4 significantly increased the mRNA expressions of VEGF, bFGF, HGF, and IGF-1 in a concentration-dependent manner, and 10 nm/L was the optimum concentration (P<0.05). Exendin-4 treatment resulted in significantly increased p-Akt expressions in the ADSCs, and PI3K/Akt inhibitor not only reversed such effects of exendin-4 on p-Akt but also diminished the exendin-4- mediated up-regulation of the paracrine cytokines. CONCLUSION: Exendin-4 can concentration-dependently promote the proliferative and paracrine capacities of ADSCs partially through the PI3K/Akt signaling pathway without affecting the surface marker profile of the cells.

Verbatim abstract via PubMed 25345931 ↗