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Germinated Rhynchosia nulubilis Fermented with Lactobacillus pentosus SC65 Reduces Particulate Matter Induced Type II Alveolar Epithelial Apoptotic Cell Death

Authors
Lee, Hye-JiPark, Hye-Jin
Issue Date
Apr-2021
Publisher
MDPI
Keywords
A549 cells; Apoptosis; Cell death; Germinated Rhynchosia nulubilis fermented with Lactobacillus pentosus SC65; PM < 11; ROS
Citation
International Journal of Molecular Sciences, v.22, no.7
Journal Title
International Journal of Molecular Sciences
Volume
22
Number
7
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/80830
DOI
10.3390/ijms22073660
ISSN
1661-6596
Abstract
Particulate matter (PM) is a significant environmental pollutant that promotes respiratory diseases, including lung injury and inflammation, by inducing oxidative stress. Rhynchosia nulubilis (black soybean) is traditionally used to prevent chronic respiratory disease via inducing antioxidant and anti-inflammatory effects. To investigate the effects of Lactobacillus pentosus SC65 fermented GR (GR-SC65) and Pediococcus pentosaceus ON81A (GR-ON81A) against PM-induced oxidative stress and cell death in A549 cells, we performed the 2-7-dichlorodihydrofluorescein diacetate and cell counting kit-8 assays, as well as Hoechst 33342 and propidium iodide staining and western blotting. GR-SC65 showed the highest total polyphenolic contents and 1,1-diphenyl-2-picrylidrazil radical scavenging activity among lactic acid bacteria-fermented GRs (p &lt; 0.001 vs. GR). Four soy peptides, β-conglycinin breakdowns (INAENNQRNF, ISSEDKPFN, LAFPGSAQAVEK, and LAFPGSAKDIEN), were detected in GR-SC65, but not in GR. In GR-SC65, PM-induced A549 cell death was less than that observed in GR-ON81A and GR (p &lt; 0.001 vs. PM-treated group). GR-SC65 significantly decreased intracellular reactive oxidative species (ROS) when compared with PM (*** p &lt; 0.001 vs. PM). GR-SC65 decreased the levels of BAX, active caspase-9,-3, and poly ADP-ribose polymerase (PARP) proteins (# p &lt; 0.01,### p &lt; 0.001 vs. PM), while increasing the level of BCL-2 protein, a mitochondrial anti-apoptotic protein (### p &lt; 0.001 vs. PM). Our findings indicate that GR-SC65 inhibited PM-induced cell death by suppressing the levels of ROS, active caspase-9 and-3, and PARP proteins, while enhancing the level of BCL-2 protein in type II alveolar epithelial A549 cells. Therefore, GR-SC65 might be a potential therapeutic and preventive agent against PM-induced lung injury. © 2021 by the authors. Licensee MDPI, Basel, Switzerland.
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BioNano Technology (Department of Food Science & Biotechnology)
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