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Characterization of Effectiveness in Concerted Inhibition and Stimulation by Pterostilbene (Trans-3,5-dimethoxy-4'-hydroxystilbene), a Stilbenoid

Overview
Journal Int J Mol Sci
Publisher MDPI
Date 2020 Jan 18
PMID 31948124
Citations 3
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Abstract

Pterostilbene (PTER), a natural dimethylated analog of resveratrol, has been demonstrated to produce anti-neoplastic or neuroprotective actions. However, how and whether this compound can entail any perturbations on ionic currents in electrically excitable cells remains unknown. In whole-cell current recordings, addition of PTER decreased the amplitude of macroscopic during long-lasting hyperpolarization in GH cells in a concentration-dependent manner, with an effective IC value of 0.84 μM. Its presence also shifted the activation curve of along the voltage axis to a more hyperpolarized potential, by 11 mV. PTER at a concentration greater than 10 μM could also suppress l-type Ca and transient outward K currents in GH cells. With the addition of PTER, amplitude was increased, with an EC value of 2.23 μM. This increase in amplitude was attenuated by further addition of verruculogen, but not by tolbutamide or TRAM-39. Neither atropine nor nicotine, in the continued presence of PTER, modified the PTER-stimulated . PTER (10 μM) slightly suppressed the amplitude of l-type Ca current and transient outward K current. The presence of PTER (3 μM) was also effective at increasing the open-state probability of large-conductance Ca-activated K (BK) channels identified in hippocampal mHippoE-14 neurons; however, its inability to alter single-channel conductance was detected. Our study highlights evidence to show that PTER has the propensity to perturb ionic currents (e.g., and ), thereby influencing the functional activities of neurons, and neuroendocrine or endocrine cells.

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References
1.
Omrani A, van der Vaart T, Mientjes E, van Woerden G, Hojjati M, Li K . HCN channels are a novel therapeutic target for cognitive dysfunction in Neurofibromatosis type 1. Mol Psychiatry. 2015; 20(11):1311-21. PMC: 5603719. DOI: 10.1038/mp.2015.48. View

2.
Rueda D, Schoffmann A, De Mieri M, Raith M, Jahne E, Hering S . Identification of dihydrostilbenes in Pholidota chinensis as a new scaffold for GABAA receptor modulators. Bioorg Med Chem. 2014; 22(4):1276-84. DOI: 10.1016/j.bmc.2014.01.008. View

3.
He J, Dong X, Li Z, Wang X, Fu Z, Shen N . Pterostilbene inhibits reactive oxygen species production and apoptosis in primary spinal cord neurons by activating autophagy via the mechanistic target of rapamycin signaling pathway. Mol Med Rep. 2018; 17(3):4406-4414. PMC: 5802216. DOI: 10.3892/mmr.2018.8412. View

4.
So E, Foo N, Ko S, Wu S . Bisoprolol, Known to Be a Selective β₁-Receptor Antagonist, Differentially but Directly Suppresses I and I in Pituitary Cells and Hippocampal Neurons. Int J Mol Sci. 2019; 20(3). PMC: 6386942. DOI: 10.3390/ijms20030657. View

5.
Lee Y, Chen Y, Yeh Y, Wang Y, Chen R . Stilbene Compounds Inhibit Tumor Growth by the Induction of Cellular Senescence and the Inhibition of Telomerase Activity. Int J Mol Sci. 2019; 20(11). PMC: 6600253. DOI: 10.3390/ijms20112716. View