Protective effect of pig brain polypeptides against corticosterone-induced oxidative stress, inflammatory response, and apoptosis in PC12 cells. 2019

Wenqi Jin, and Xiaohao Xu, and Xuenan Chen, and Wenxiu Qi, and Jing Lu, and Xiuci Yan, and Daqing Zhao, and Deyu Cong, and Xiangyan Li, and Liwei Sun
Research Center of Traditional Chinese Medicine, The Affiliated Hospital to Changchun University of Chinese Medicine, Changchun, Jilin, China; Jilin Provincial Key Laboratory of BioMacromolecules of Chinese Medicine, Changchun University of Chinese Medicine, Jilin, China.

OBJECTIVE Pig brain polypeptides (PBP), active polypeptides hydrolysate extracted from fresh porcine brain tissue, has been shown to have neuroprotective effects in both in vitro and in vivo studies. The present study aimed to explore the molecular mechanisms underlying the neuroprotective effects of PBP in corticosterone (CORT)-induced rat adrenal pheochromocytoma PC12 cells. METHODS Cell viability and lactate dehydrogenase (LDH) release were measured in PC12 cells induced with 200 μM CORT in the presence or absence of various concentrations of PBP for 48 h. Intracellular reactive oxygen species (ROS) generation, the activities of superoxide dismutase (SOD) and glutathione peroxidase (GSH-Px) and glutathione (GSH) content were examined to analyze the effect of PBP on CORT-induced oxidative stress. The levels of pro-inflammatory factors, the percentage of apoptotic cells, and apoptosis-related protein expression in PC12 cells were determined. RESULTS PBP is mainly composed of protein subunits with molecular weights ranging from 1000 to 10,000 Da. PBP treatment increased cell viability and decreased the release of LDH in CORT-stimulated PC12 cells. Moreover, PBP reduced the level of CORT-induced oxidative stress by decreasing ROS levels and increasing SOD, GSH-Px activities and GSH content. PBP had an inhibitory effect on the CORT-induced inflammatory response through inhibition of the NF-κB signaling pathway. PBP also inhibited CORT-induced apoptosis by downregulating the mitochondrial apoptotic signaling pathway. CONCLUSIONS These results suggest that PBP exerts a neuroprotective effect against CORT-induced cell injury by inhibiting oxidative stress, inflammation, and apoptosis. PBP could act as a neuroprotective agent against nerve injury induced by CORT.

UI MeSH Term Description Entries
D007249 Inflammation A pathological process characterized by injury or destruction of tissues caused by a variety of cytologic and chemical reactions. It is usually manifested by typical signs of pain, heat, redness, swelling, and loss of function. Innate Inflammatory Response,Inflammations,Inflammatory Response, Innate,Innate Inflammatory Responses
D007770 L-Lactate Dehydrogenase A tetrameric enzyme that, along with the coenzyme NAD+, catalyzes the interconversion of LACTATE and PYRUVATE. In vertebrates, genes for three different subunits (LDH-A, LDH-B and LDH-C) exist. Lactate Dehydrogenase,Dehydrogenase, L-Lactate,Dehydrogenase, Lactate,L Lactate Dehydrogenase
D010455 Peptides Members of the class of compounds composed of AMINO ACIDS joined together by peptide bonds between adjacent amino acids into linear, branched or cyclical structures. OLIGOPEPTIDES are composed of approximately 2-12 amino acids. Polypeptides are composed of approximately 13 or more amino acids. PROTEINS are considered to be larger versions of peptides that can form into complex structures such as ENZYMES and RECEPTORS. Peptide,Polypeptide,Polypeptides
D001923 Brain Chemistry Changes in the amounts of various chemicals (neurotransmitters, receptors, enzymes, and other metabolites) specific to the area of the central nervous system contained within the head. These are monitored over time, during sensory stimulation, or under different disease states. Chemistry, Brain,Brain Chemistries,Chemistries, Brain
D002470 Cell Survival The span of viability of a cell characterized by the capacity to perform certain functions such as metabolism, growth, reproduction, some form of responsiveness, and adaptability. Cell Viability,Cell Viabilities,Survival, Cell,Viabilities, Cell,Viability, Cell
D003345 Corticosterone An adrenocortical steroid that has modest but significant activities as a mineralocorticoid and a glucocorticoid. (From Goodman and Gilman's The Pharmacological Basis of Therapeutics, 8th ed, p1437)
D005978 Glutathione A tripeptide with many roles in cells. It conjugates to drugs to make them more soluble for excretion, is a cofactor for some enzymes, is involved in protein disulfide bond rearrangement and reduces peroxides. Reduced Glutathione,gamma-L-Glu-L-Cys-Gly,gamma-L-Glutamyl-L-Cysteinylglycine,Glutathione, Reduced,gamma L Glu L Cys Gly,gamma L Glutamyl L Cysteinylglycine
D005979 Glutathione Peroxidase An enzyme catalyzing the oxidation of 2 moles of GLUTATHIONE in the presence of HYDROGEN PEROXIDE to yield oxidized glutathione and water. Cytosolic Glutathione Peroxidase,Glutathione Lipoperoxidase,Selenoglutathione Peroxidase,Glutathione Peroxidase, Cytosolic,Lipoperoxidase, Glutathione,Peroxidase, Glutathione,Peroxidase, Selenoglutathione
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D013482 Superoxide Dismutase An oxidoreductase that catalyzes the reaction between SUPEROXIDES and hydrogen to yield molecular oxygen and hydrogen peroxide. The enzyme protects the cell against dangerous levels of superoxide. Hemocuprein,Ag-Zn Superoxide Dismutase,Cobalt Superoxide Dismutase,Cu-Superoxide Dismutase,Erythrocuprein,Fe-Superoxide Dismutase,Fe-Zn Superoxide Dismutase,Iron Superoxide Dismutase,Manganese Superoxide Dismutase,Mn-SOD,Mn-Superoxide Dismutase,Ag Zn Superoxide Dismutase,Cu Superoxide Dismutase,Dismutase, Ag-Zn Superoxide,Dismutase, Cobalt Superoxide,Dismutase, Cu-Superoxide,Dismutase, Fe-Superoxide,Dismutase, Fe-Zn Superoxide,Dismutase, Iron Superoxide,Dismutase, Manganese Superoxide,Dismutase, Mn-Superoxide,Dismutase, Superoxide,Fe Superoxide Dismutase,Fe Zn Superoxide Dismutase,Mn SOD,Mn Superoxide Dismutase,Superoxide Dismutase, Ag-Zn,Superoxide Dismutase, Cobalt,Superoxide Dismutase, Fe-Zn,Superoxide Dismutase, Iron,Superoxide Dismutase, Manganese

Related Publications

Wenqi Jin, and Xiaohao Xu, and Xuenan Chen, and Wenxiu Qi, and Jing Lu, and Xiuci Yan, and Daqing Zhao, and Deyu Cong, and Xiangyan Li, and Liwei Sun
November 2017, European journal of pharmacology,
Wenqi Jin, and Xiaohao Xu, and Xuenan Chen, and Wenxiu Qi, and Jing Lu, and Xiuci Yan, and Daqing Zhao, and Deyu Cong, and Xiangyan Li, and Liwei Sun
March 2017, Food & function,
Wenqi Jin, and Xiaohao Xu, and Xuenan Chen, and Wenxiu Qi, and Jing Lu, and Xiuci Yan, and Daqing Zhao, and Deyu Cong, and Xiangyan Li, and Liwei Sun
January 2019, Translational neuroscience,
Wenqi Jin, and Xiaohao Xu, and Xuenan Chen, and Wenxiu Qi, and Jing Lu, and Xiuci Yan, and Daqing Zhao, and Deyu Cong, and Xiangyan Li, and Liwei Sun
October 2015, Cellular and molecular neurobiology,
Wenqi Jin, and Xiaohao Xu, and Xuenan Chen, and Wenxiu Qi, and Jing Lu, and Xiuci Yan, and Daqing Zhao, and Deyu Cong, and Xiangyan Li, and Liwei Sun
June 2012, Free radical research,
Wenqi Jin, and Xiaohao Xu, and Xuenan Chen, and Wenxiu Qi, and Jing Lu, and Xiuci Yan, and Daqing Zhao, and Deyu Cong, and Xiangyan Li, and Liwei Sun
April 2019, Experimental and therapeutic medicine,
Wenqi Jin, and Xiaohao Xu, and Xuenan Chen, and Wenxiu Qi, and Jing Lu, and Xiuci Yan, and Daqing Zhao, and Deyu Cong, and Xiangyan Li, and Liwei Sun
February 2015, Yao xue xue bao = Acta pharmaceutica Sinica,
Wenqi Jin, and Xiaohao Xu, and Xuenan Chen, and Wenxiu Qi, and Jing Lu, and Xiuci Yan, and Daqing Zhao, and Deyu Cong, and Xiangyan Li, and Liwei Sun
December 2016, Neurochemical research,
Wenqi Jin, and Xiaohao Xu, and Xuenan Chen, and Wenxiu Qi, and Jing Lu, and Xiuci Yan, and Daqing Zhao, and Deyu Cong, and Xiangyan Li, and Liwei Sun
May 2012, Cellular and molecular neurobiology,
Wenqi Jin, and Xiaohao Xu, and Xuenan Chen, and Wenxiu Qi, and Jing Lu, and Xiuci Yan, and Daqing Zhao, and Deyu Cong, and Xiangyan Li, and Liwei Sun
July 2012, Phytotherapy research : PTR,
Copied contents to your clipboard!