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http://dx.doi.org/10.15616/BSL.2018.24.4.398

Effect of Ethanol Extracts from Defatted Perilla frutescens on LPS-induced Inflammation in Mouse BV2 Microglial Cells  

Lee, Sung-Gyu (Department of Medical Laboratory Science, College of Health Science, Dankook University)
Kang, Hyun (Department of Medical Laboratory Science, College of Health Science, Dankook University)
Abstract
To evaluate the antioxidant and anti-neuroinflammatory effects of defatted Perilla frutescens extract (DPE) in lipopolysaccharide (LPS)-stimulated BV-2 microglial cells. Cell viabilities were estimated by MTT assay. LPS-stimulated BV-2 microglia were used to study the expression and production of inflammatory mediators such as nitric oxide (NO), inducible NO synthase (iNOS), Cyclooxygenase-2 (COX-2), and prostaglandin $E_2$ ($PGE_2$). Pretreatment with DPE prior to LPS treatment significantly inhibited excessive production of NO (10, 25, 50, 75, and $100{\mu}g/mL$) in a dose-dependent manner, and was associated with down regulation of expression of iNOS and COX-2. DPE also suppressed the LPS-induced increase in $PGE_2$ level (10, 25, 50, 75, and $100{\mu}g/mL$) in BV-2 cells. Therefore, DPE can be considered as a useful therapeutic and preventive approach for the treatment of several neurodegenerative diseases.
Keywords
Defatted Perilla frutescens; Anti-inflammatory activity; Microglial cells; INOS; COX-2;
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1 Nieva, Moreno MI, Isla MI, Sampietro AR, Vattuone MA. Comparison of the free radical-scavenging activity of propolis from several regions of Argentina. Journal of Ethnopharmacology. 2000. 71: 109-114.   DOI
2 Ohara K, Tommi U, Sato EF, Tazaki K. Limonene production in tobacco with Perilla limonene synthase cDNA. Journal of Experimental Botany. 2003. 54: 2635-2642.   DOI
3 Park E, Chun HS. Green tea polyphenol Epigallocatechine gallate (EGCG) prevented LPS-induced BV-2 micoglial cell activation. Journal of Life Science. 2016. 26: 640-645.   DOI
4 Sato M, Ramarathnam N, Suzuki Y, Ohkubo T, Takeuchi M, Ochi H. Varietal differences in the phenolic content and superoxide radical scavenging potential of wines from different sources. Journal of Agricultural and Food Chemistry. 1996. 44: 37-41.   DOI
5 Seo DS, Kang JK, Jeong MH, Kwon M, Park CB. Anti-diabetic Effects of Isaria tenuipes in OLETF Rats as an Animal Model of Diabetes Mellitus Type II. Journal of Food Hygiene and Safety. 2013. 28: 152-157.   DOI
6 Korhonen R, Lahti A, Hamalainen M, Kankaanranta H, Moilanen E, Dexamethasone inhibits inducible nitric-oxide synthase expression and nitric oxide production by destabilizing mRNA in lipopolysaccharide-treated macrophages. Molecular Pharmacology. 2002. 62: 698-704.   DOI
7 Kreutzberg GW. Microglia: a sensor for pathological events in the CNS. Trends in Neurosciences. 1996. 19: 312-318.   DOI
8 Gonzalez-Scarano F, Baltuch G. Microglia as mediators of inflammatory and degenerative diseases. Annual Review of Neuroscience. 1999. 22: 219-240.   DOI
9 Hanisch UK. Microglia source and target of cytokines. Glia. 2002. 40: 140-155.   DOI
10 Laflamme N, Rivest S. Toll-like receptor 4: the missing link of the cerebral innate immune response triggered by circulating gram negative bacterial cell wall components. The FASEB Journal. 2001. 15: 155-163.   DOI
11 Lee BH, Ryu SN, Kwak TS. Current status and prospects of quality evaluation in Perilla. Korean Journal of Medicinal Crop Science. 2002. 47: 150-162.
12 Lee JH, Lee S. Analysis of phenolic substances content in Korean plant foods. Korean Journal of the Korean Society of Food Science and Nutrition. 1994. 26: 310-316.
13 Hendriks JJA, Teunissen CE, de Vries HE, Dijkstra CD. Macrophages and neurodegeneration. Brain Research Reviews. 2005. 48: 185-195.   DOI
14 Li PA, Liu GJ, He QP, Floyd RA, Siesjo BK. Production of hydroxyl free radical by brain tissues in hyperglycemic rats subjected to transient forebrain ischemia. Free Radical Biology and Medicine. 1999. 27: 1033-1040.   DOI
15 Mitchell JA, Larkin S, Williams TJ. Cyclooxygenase-2: regulation and relevance in inflammation. Biochemical Pharmacology. 1995. 50: 1535-1542.   DOI
16 Nakajima K, Kohsaka S. Functional roles of microglia in the brain. Neuroscience Research. 1993. 17: 187-203.   DOI
17 Hong CH, Hur SK, Oh OJ, Kim SS, Nam KA, Lee SK. Evaluation of natural products on inhibition of inducible cyclooxygenase (COX-2) and nitric oxide synthase (iNOS) in cultured mouse macrophage cells. Journal of Ethnopharmacology. 2002. 83: 153-159.   DOI
18 Hur IH, Sim SY, KIM KJ. Anti-inflammatory effect of various solvent extract from Atractylodes japonica on Lipopolysaccharide-induced Inflammation in BV2 cells. The Journal of Korean Oriental Medical Ophthalmology & Otolaryngology & Dermatology. 2007. 20: 36-46.
19 Klein and Ackerman. Oxidative stress, cell cycle, and neurodegeneration. Journal Of Clinical Investigation. 2003. 111: 785-793.   DOI
20 Kim SN, Son BR, Ju JH. Antioxidant activities of Perilla frutescens britton seed extract and its inhibitory effects against major characteristics of cancer cells. Journal of the Korean Society of Food Science and Nutrition. 2015. 44: 208-215.   DOI
21 Yui Y, Hattori R, Kosuga K, Eizawa H, Hiki K, Kawai C. Purification of nitric oxide synthase from rat macrophages. The Journal of Biological Chemistry. 1991. 266: 12544-12547.
22 Boje KM, Arora PK. Microglial-produced nitric oxide and reactive nitrogen oxides mediate neuronal cell death. Brain Research. 1992. 587: 250-256.   DOI
23 Vegeto E, Bonincontro C, Pollio G, Sala A, Viappiani S, Nardi F, Brusadelli A, Viviani B, Ciana P, Maggi A. Estrogen prevents the lipopolysaccharide-induced inflammatory response in microglia. Journal of Neuroscience. 2001. 21: 1809-1818.   DOI
24 Wang MJ, Lin WW, Chen HL. Silymarin protects dopaminergic neurons against lipopolysaccharide-induced neurotoxicity by inhibiting microglia activation. European Journal of Neuroscience. 2002. 16: 2103-2112.   DOI
25 Wang SY, Choe EO. Oxidative stability and antioxidant changes in perilla seeds and perilla oil affected by UV irradiation. Korean Journal of Food Science and Technology. 2012. 44: 8-13.   DOI
26 Bors W, Saran M. Radical scavenging by flavonoid antioxidants. Free Radical Research Communications. 1987. 2: 289-294.   DOI
27 Hwang SZ, Ko YS, Studies on the constituents of Korean edible oils and fats- part 4. Determination of sesamol in sesame and perilla seeds. Korean Journal of Nutrition. 1980. 13: 177-186.
28 Chen W, Tang Q, Gonzales MS, Bowden GT. Role of p38 MAP kinases and ERK in mediating ultraviolet-B induced cyclooxygenase-2 gene expression in human keratinocytes. Oncogene. 2001. 20: 3921-3926.   DOI
29 Chao CC, Hu S, Ehrlich L, Peterson PK. Interleukin-1 and tumor necrosis factor-alpha synergistically mediate neurotoxicity: involvement of nitric oxide and of N-methyl-D-aspartate receptors. Brain Behavior and Immunity. 1995. 9: 355-365.   DOI
30 Chao CC, Hu S, Peterson PK. Glia, cytokines, and neurotoxicity. Critical Reviews in Neurobiology. 1995. 9: 189-205.
31 Galea E, Reis DJ, Fox ES, Xu H, Feinstein DL. CD14 mediate endotoxin induction of nitric oxide synthase in cultured brain glial cells. Journal Of Neuroimmunology. 1996. 64: 19-28.   DOI
32 Colton CA. Heterogeneity of microglial activation in the innate immune response in the brain. Journal of NeuroImmune Pharmacology. 2009. 4: 399-418.   DOI
33 Drew PD, Chavis JA, Bhatt R. Sex steroid regulation of microglial cell activation: relevance to multiple sclerosis. Annals of the New York Academy of Sciences. 2003. 1007: 329-334.   DOI
34 Folin O, Denis W. On phosphotungstic-phosphomolybdic compounds as color reagents. The Journal of Biological Chemistry. 1912. 12: 239-249.
35 Glass CK, Saijo K, Winner B, Marchetto MC, Gage FH. Mechamisms underlying inflammation in neurodegeneration. Cell. 2010. 140: 918-934.   DOI