• 제목/요약/키워드: Antioxidant enzyme genes

검색결과 68건 처리시간 0.034초

Characterization of Copper/Zinc-Superoxide Dismutase (Cu/Zn-SOD) Gene from an Endangered Freshwater Fish Species Hemibarbus mylodon (Teleostei; Cypriniformes)

  • Lee, Sang-Yoon;Kim, Keun-Yong;Bang, In-Chul;Nam, Yoon-Kwon
    • Fisheries and Aquatic Sciences
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    • 제14권1호
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    • pp.43-54
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    • 2011
  • Gene structure of copper/zinc-superoxide dismutase (Cu/Zn-SOD; sod1) was characterized in Hemibarbus mylodon (Teleostei; Cypriniformes), an endangered freshwater fish species in Korean peninsula. Full-length cDNA of H. mylodon SOD1 consisted of a 796-bp open reading frame sequence encoding 154 amino acids, and the deduced polypeptide sequence shared high sequence homology with other orthologs, particularly with regard to metal-coordinating ligands. Genomic structure of the H. mylodon sod1 gene (hmsod1; 1,911 bp from the ATG start codon to the stop codon) was typical quinquepartite (i.e., five exons interrupted by four introns); the lengths of the exons were similar among species belonging to various taxonomic positions. The molecular phylogeny inferred from sod1 genes in the teleost lineage was in accordance with the conventional taxonomic assumptions. 5'-flanking upstream region of hmsod1, obtained using the genome walking method, contained typical TATA and CAAT boxes. It also showed various transcription factor binding motifs that may be potentially involved in stress/immune response (e.g., sites for activating proteins or nuclear factor kappa B) or metabolism of xenobiotic compounds (e.g., xenobiotic response element; XRE). The hmsod1 transcripts were ubiquitously detected among tissues, with the liver and spleen showing the highest and lowest expression, respectively. An experimental challenge with Edwardsiella tarda revealed significant upregulation of the hmsod1 in kidney (4.3-fold) and spleen (3.1-fold), based on a real-time RT-PCR assay. Information on the molecular characteristics of this key antioxidant enzyme gene could be a useful basis for a biomarker-based assay to understand cellular stresses in this endangered fish species.

Correction: Ethanolic Extract of Marsdenia condurango Ameliorates Benzo[a]pyrene-induced Lung Cancer of Rats -Condurango Ameliorates BaP-induced Lung Cancer in Rats-

  • Sikdar, Sourav;Mukherjee, Avinaba;Khuda-Bukhsh, Anisur Rahman
    • 대한약침학회지
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    • 제18권2호
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    • pp.86-87
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    • 2015
  • Objectives: Condurango is widely used in various systems of complementary and alternative medicine (CAM) against oesophageal and stomach ailments including certain types of cancer. However, until now no systematic study has been conducted to verify its efficacy and dose with proper experimental support. Therefore, we examined if ethanolic extract of Condurango could ameliorate benzo[a]pyrene (BaP)-induced lung cancer in rats in vivo to validate its use as a traditional medicine. Methods: After one month of scheduled BaP feeding (50 mg/kg body-weight), lung cancer developed after four months. BaP-intoxicated rats were then treated with Condurango (0.06 mL) twice daily starting at the end of the four months for an additional one, two and three months, respectively. Effects of Condurango were evaluated by analyzing lung histology, reactive oxygen species (ROS) and antioxidant biomarkers, DNA-fragmentation, RT-PCR (Reverese Transcriptase-Polymerase Chain Reaction), ELISA (Enzyme linked immunosorbent assay) and western blot of several apoptotic signalling markers and comparing the results against those obtained for controls. Results: A histological study revealed gradual progress in lung tissue-repair activity in Condurango-fed cancer-bearing rats, showing gradual tissue recovery after three months of drug administration. Condurango has the capacity to generate ROS, which may contribute to a reduction in anti-oxidative activity and to an induction of oxidative stress-mediated cancer-cell death. Condurango-activated pro-apoptotic genes (Bax, caspase-3, caspase-9, p53, cytochrome-c, apaf-1, ICAD and PARP) and down-regulated antiapoptotic-Bcl-2 expression were noted both at mRNA and protein levels. Studies on caspase-3 activation and PARP cleavage by western blot analysis revealed that Condurango induced apoptosis through a caspase-3-dependent pathway. Conclusions: The anticancer efficacy of an ethanolic extract of Condurango for treating BaP-induced lung cancer in rats lends support for its use in various traditional systems of medicine.

대사공학기술을 이용한 기능성 carotenoids 고 생산 감자의 개발 현황 (Development of transgenic potato with high content of functional carotenoids by using metabolic engineering)

  • 안미정;배정명;이신우
    • Journal of Plant Biotechnology
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    • 제37권4호
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    • pp.388-393
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    • 2010
  • 감자의 괴경에 비타민 A의 전구물질인 베타 카로텐 또는 항산화활성이 높으나 일반식물에서는 합성되지 않는 astaxanthin과 같은 케토형 카로티노이드의 집적을 위한 연구가 최근 활발하게 진행되고 있다. 현재까지의 연구 결과를 요약하여 보면 $\beta$-carotene의 함량이 $47\;{\mu}g/g$ dry weight으로 대조구에 비하여 3,600배 까지 증가한 결과가 보고되었다. 또한, 해양 미생물로부터 분리한 $\beta$-carotene ketolase 유전자를 도입한 감자의 괴경에서 astaxanthin 등의 케토형 카로티노이드의 함량이 최고 $14\;{\mu}g/g$ dry weight 까지 증가하여 감자의 색깔이 붉은 색으로 변하였다고 보고하였다. 따라서 본 논문에서는 이들 형질전환 감자의 생산을 위하여 도입한 유전자의 종류, 대사공학적 전략, 문제점 및 향후 연구 방향 등에 관하여 논하고자 하였다.

Induced Tolerance to Salinity Stress by Halotolerant Bacteria Bacillus aryabhattai H19-1 and B. mesonae H20-5 in Tomato Plants

  • Yoo, Sung-Je;Weon, Hang-Yeon;Song, Jaekyeong;Sang, Mee Kyung
    • Journal of Microbiology and Biotechnology
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    • 제29권7호
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    • pp.1124-1136
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    • 2019
  • Salinity is one of the major abiotic stresses that cause reduction of plant growth and crop productivity. It has been reported that plant growth-promoting bacteria (PGPB) could confer abiotic stress tolerance to plants. In a previous study, we screened bacterial strains capable of enhancing plant health under abiotic stresses and identified these strains based on 16s rRNA sequencing analysis. In this study, we investigated the effects of two selected strains, Bacillus aryabhattai H19-1 and B. mesonae H20-5, on responses of tomato plants against salinity stress. As a result, they alleviated decrease in plant growth and chlorophyll content; only strain H19-1 increased carotenoid content compared to that in untreated plants under salinity stress. Strains H19-1 and H20-5 significantly decreased electrolyte leakage, whereas they increased $Ca^{2+}$ content compared to that in the untreated control. Our results also indicated that H20-5-treated plants accumulated significantly higher levels of proline, abscisic acid (ABA), and antioxidant enzyme activities compared to untreated and H19-1-treated plants during salinity stress. Moreover, strain H20-5 upregulated 9-cisepoxycarotenoid dioxygenase 1 (NCED1) and abscisic acid-response element-binding proteins 1 (AREB1) genes, otherwise strain H19-1 downregulated AREB1 in tomato plants after the salinity challenge. These findings demonstrated that strains H19-1 and H20-5 induced ABA-independent and -dependent salinity tolerance, respectively, in tomato plants, therefore these strains can be used as effective bio-fertilizers for sustainable agriculture.

Fermentation enhances the antioxidant and anti-inflammatory effects of Bat Faeces (Ye Ming Sha) via the ERK, p38 MAPK and NF-κB signaling pathways in RAW 264.7 cells

  • Lee, Han-Saem;Chon, So-Hyun;Kim, Min-A;Park, Jeong-Eun;Lim, Yu-Mi;Kim, Eun-Jeong;Son, Eun-Kyung;Kim, Sang-Jun;So, Jai-Hyun
    • Journal of Applied Biological Chemistry
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    • 제62권1호
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    • pp.57-66
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    • 2019
  • The ethyl acetate fraction of Bat Faeces (Ye Ming Sha: natural products used in Chinese Medicine) after fermentation (EFBF-AF) showed enhanced anti-oxidative effects in 2,2-diphenyl-1-picrylhydrazyl and 2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid) diammonium salt assays. Fermentation of the Bat Faeces by using the crude enzyme extract from Aspergillus kawachii, significantly increased the anti-inflammatory effects. Fermented Bat Faeces markedly inhibited nitric oxide production, inducible nitric oxide synthase, and cyclooxygenase-2 expression in lipopolysaccharide (LPS)-stimulated RAW 264.7 macrophage cells. The EFBF-AF reduced the nuclear translocation of nuclear factor kappa B ($NF-{\kappa}B$) via $IKK{\alpha}$ and $I{\kappa}B{\alpha}$ phosphorylation, and decreased the phosphorylated the extracellular signal-regulated kinases (ERK) and p38 expression in LPS-treated RAW 264.7 macrophages. In addition, the EFBF-AF suppressed the expression of pro-inflammatory genes, such as interleukin-$1{\beta}$, interleukin-6, and tumor necrosis $factor-{\alpha}$. These results suggest that fermented Bat Faeces may suppress pro-inflammatory responses in LPS-stimulated RAW 264.7 macrophages cells via ERK, p38 mitogen-activated protein kinase and $NF-{\kappa}B$ signaling pathways.

극지해면동물 Sphaerotylus antarcticus 추출물의 RANKL 유도 파골세포 분화 및 ROS 생성 억제 효과 (Inhibitory Effect of RANKL-Induced Osteoclast Differentiation and ROS Generation by Sphaerotylus antarcticus Extract)

  • 김은남;강다연;응웬민짱;이준혁;고영욱;김상희;나민균;정길생
    • 생약학회지
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    • 제53권1호
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    • pp.42-48
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    • 2022
  • In order to maintain bone homeostasis, it is necessary to balance bone resorption and remodeling through the differentiation of osteoclasts that absorb old bone and osteoblasts that form new bone. However, bone resorption due to excessive osteoclast differentiation is a major cause of osteoporosis and controlling excessive osteoclast differentiation has been known as a treatment strategy for osteoporosis. Therefore, in this study, the effect of an ethanol extract of Sphaerotylus antarcticus Kirkpatrick, 1907 (SAE), polar-derived sponge with unknown biological activity, on the osteoclast differentiation process of RANKL-induced RAW264.7 cells and the generated ROS was evaluated. In the study results, SAE down-regulated the formation and function of RANKL-induced osteoclasts and osteoclast differentiation specific proteins, genes in a concentration-dependent manner. In addition, it was possible to confirm the result of restoring the lost antioxidant enzyme along with down-regulation of ROS generated by RANKL. Therefore, in this study, we propose the possibility of SAE as a potential regulator of osteoporosis due to excessive osteoclast differentiation and report the biological value of the diversity of marine-derived natural products by identifying the first biological activity against SAE that is not yet known.

Oxidative Stress in C100 Cells Induced by Combined Treatmentof Benzo(a)pyrene and/or 2,3,7,8-Tetrachlorodibenzo-p-dioxin(TCDD)

  • Bae, Mi-Ok;Choi, Kyung-Ho;Lee, Hu-Jang;Kim, Hyun-Woo;Kim, Jun-Sung;Hwang, Soon-Kyung;Park, Jin-Hong;Cho, Hyun-Sun;Cho, Myung-Haing
    • 대한수의학회지
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    • 제44권3호
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    • pp.379-387
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    • 2004
  • When an organism is exposed to various toxicants chronically, reactive oxygen species(ROS) are accumulated and eventually result in several biological effects from gene expression to cell death. In the present study we investigated the oxidative damage of 2, 3, 7, 8-tetrachlorodibenzo-p-dioxin(TCDD) and/or benzo(a)pyrene (B(a)P) in C100 cells. C100 cells treated with TCDD(30 nM) and B(a)P($3{\mu}M$) underwent diverse oxidative stress as determined through thiobarbituric acid-reactive substances(TBARS) formation, DNA fragmentation, DNA single strand break(SSB) assay, immunohistochemical staining of 8-hydroxy-2'-deoxyguanosine(8-OHdG), and mRNA expressions of antioxidant enzymatic genes such as Cu/Zn-SOD gene, GPx(glutathione peroxidase 5) gene, and catalase gene. Lipid peroxidation in C100 cells was determined through measuing the formation of TBARS. For theat, the cells were pretreated with TCDD(30 nM) and/or B(a)P($3{\mu}M$) for 0.5, 1, 2 and 4 days. TBARS formation was increased in TCDD(30 nM) and B(a)P($3{\mu}M$) and mixture($30nM\;TCDD+3{\mu}M\;B(a)P$) and positive control treatment groups comparing to the controls. Mixture treatment induced more DNA fragmentation than the single treatment group at day 6. Also, SSB in all treatment groups was clearly observed when compared with the negative control group. As with the expression of antioxidant enzyme, GPx 5mRNA, B(a)P alone and mixture($30nM\;TCDD+3{\mu}M\;B(a)P$) treatment were higher comparing to those of the negative control and TCDD treatment groups. Our results suggest that exposure of C100 cells to mixture of TCDD and B(a)P leads to significant oxidative damage comparing to the exposures to the individual chemicals. Mechanisms of action are discussed. Additional studies are needed to elucidate the detailed mechanism of mixture-induced toxicity.

Induction of Phase I, II and III Drug Metabolism/Transport by Xenobiotics

  • Xu Chang Jiang;Li Christina YongTao;Kong AhNg Tony
    • Archives of Pharmacal Research
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    • 제28권3호
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    • pp.249-268
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    • 2005
  • Drug metabolizing enzymes (DMEs) play central roles in the metabolism, elimination and detoxification of xenobiotics and drugs introduced into the human body. Most of the tissues and organs in our body are well equipped with diverse and various DMEs including phase I, phase II metabolizing enzymes and phase III transporters, which are present in abundance either at the basal unstimulated level, and/or are inducible at elevated level after exposure to xenobiotics. Recently, many important advances have been made in the mechanisms that regulate the expression of these drug metabolism genes. Various nuclear receptors including the aryl hydrocarbon receptor (AhR), orphan nuclear receptors, and nuclear factor-erythoroid 2 p45-related factor 2 (Nrf2) have been shown to be the key mediators of drug-induced changes in phase I, phase II metabolizing enzymes as well as phase III transporters involved in efflux mechanisms. For instance, the expression of CYP1 genes can be induced by AhR, which dimerizes with the AhR nuclear translocator (Arnt) , in response to many polycyclic aromatic hydrocarbon (PAHs). Similarly, the steroid family of orphan nuclear receptors, the constitutive androstane receptor (CAR) and pregnane X receptor (PXR), both heterodimerize with the ret-inoid X receptor (RXR), are shown to transcriptionally activate the promoters of CYP2B and CYP3A gene expression by xenobiotics such as phenobarbital-like compounds (CAR) and dexamethasone and rifampin-type of agents (PXR). The peroxisome proliferator activated receptor (PPAR), which is one of the first characterized members of the nuclear hormone receptor, also dimerizes with RXR and has been shown to be activated by lipid lowering agent fib rate-type of compounds leading to transcriptional activation of the promoters on CYP4A gene. CYP7A was recognized as the first target gene of the liver X receptor (LXR), in which the elimination of cholesterol depends on CYP7A. Farnesoid X receptor (FXR) was identified as a bile acid receptor, and its activation results in the inhibition of hepatic acid biosynthesis and increased transport of bile acids from intestinal lumen to the liver, and CYP7A is one of its target genes. The transcriptional activation by these receptors upon binding to the promoters located at the 5-flanking region of these GYP genes generally leads to the induction of their mRNA gene expression. The physiological and the pharmacological implications of common partner of RXR for CAR, PXR, PPAR, LXR and FXR receptors largely remain unknown and are under intense investigations. For the phase II DMEs, phase II gene inducers such as the phenolic compounds butylated hydroxyanisol (BHA), tert-butylhydroquinone (tBHQ), green tea polyphenol (GTP), (-)-epigallocatechin-3-gallate (EGCG) and the isothiocyanates (PEITC, sul­foraphane) generally appear to be electrophiles. They generally possess electrophilic-medi­ated stress response, resulting in the activation of bZIP transcription factors Nrf2 which dimerizes with Mafs and binds to the antioxidant/electrophile response element (ARE/EpRE) promoter, which is located in many phase II DMEs as well as many cellular defensive enzymes such as heme oxygenase-1 (HO-1), with the subsequent induction of the expression of these genes. Phase III transporters, for example, P-glycoprotein (P-gp), multidrug resistance-associated proteins (MRPs), and organic anion transporting polypeptide 2 (OATP2) are expressed in many tissues such as the liver, intestine, kidney, and brain, and play crucial roles in drug absorption, distribution, and excretion. The orphan nuclear receptors PXR and GAR have been shown to be involved in the regulation of these transporters. Along with phase I and phase II enzyme induction, pretreatment with several kinds of inducers has been shown to alter the expression of phase III transporters, and alter the excretion of xenobiotics, which implies that phase III transporters may also be similarly regulated in a coordinated fashion, and provides an important mean to protect the body from xenobiotics insults. It appears that in general, exposure to phase I, phase II and phase III gene inducers may trigger cellular 'stress' response leading to the increase in their gene expression, which ultimately enhance the elimination and clearance of these xenobiotics and/or other 'cellular stresses' including harmful reactive intermediates such as reactive oxygen species (ROS), so that the body will remove the 'stress' expeditiously. Consequently, this homeostatic response of the body plays a central role in the protection of the body against 'environmental' insults such as those elicited by exposure to xenobiotics.

Glutathione S-Transferase 유전적 다형성이 항산화 체계에 미치는 영향 (Effect of Glutathione S-Transferase Polymorphisms on the Antioxidant System)

  • 전경임;박은주
    • 한국식품영양과학회지
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    • 제36권6호
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    • pp.708-719
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    • 2007
  • 본 연구에서는 104명의 성인남녀를 대상으로 그들의 GSTT1, GSTM1, GSTP1의 유전적 다형성 분포도를 조사한 결과, 전체 대상자들 중 각각 60명(57.4%), 42명(40.6%)가 GSTT1 과 GSTM1의 유전자를 가지고 있었으며, GSTT1과 GSTM1 유전자가 둘 다를 가진 대상자는 27명(25.7%), 둘 중에 하나만 가지고 있는 사람은 47명(45.5%) 그리고 둘 다 없는 사람은 30명으로 28.7%에 해당되었다. GSTP1 유전자의 경우 homozygous(a/a) wild type은 79명(75.5%)으로 대부분의 대상자가 여기에 해당되었으며, heterozygous(a/b) heterozygous type은 22명(21.6%), 그리고 homozygous(b/b) wild type으로 나타난 대상자는 3명(2.9%)이었다. GSTT1 null type은 산화적 스트레스를 더 많이 받고 있는 것으로 알려진흡연자의 비율이 present 군에 비해 낮음에도 불구하고 적혈구 GSH의 농도는 유의적으로 낮고 임파구 DNA 손상정도는 유의적으로 높은 것으로 나타났다. GSTM1 유전자의 경우 적혈구 GSH-Px의 활성만이 GSTM1 null type이 presenttype에 비해 유의적으로 높은 것으로 나타났으며, 나머지 다른 지표에서는 GSTM1 null type과 present type 간의 유의적인 차이가 없었다. GSTP1 유전자 다형성에 따른 항산화 영양상태의 유의적인 차이는 없었다. 흡연과 GST 유전자 다형성의 상호작용결과, 혈장 ${\alpha}$-carotene 농도, 적혈구 GSH-Px와 GST 활성은 GSTT1 null type의 경우 흡연자에 비해 비흡연자가 유의적으로 높게 나타났으며, GSTT1 present type에서는 흡연자와 비흡연자간의 유의적인 차이가 없는 것으로 나타났다. GSTM1 유전자의 경우 GSTM1의 null type에서 흡연자의 경우 비흡연자에 비해 혈장 ${\gamma}$-tocopherol과 ${\beta}$-carotene 수준이 유의적으로 낮았다. GSTT1과 GSTM1 유전자가 둘 다 없는 경우(both null)에는 흡연자의 혈장 lycopene과 적혈구 GST 활성이 비흡연자에 비해 유의적으로 낮았다. GSTP1 유전자의 경우 혈장 ${\alpha}$-carotene과 적혈구 GSH-Px 활성은 a/a type의 흡연자가 비흡연자에 비해 유의적으로 낮았고, 적혈구 catalase의 활성은 a/b type에서 흡연자가 비흡연자에 비해 유의적으로 낮았으며, ${\beta}$-carotene 농도는 두 type 모두에서 유의적으로 흡연자가 낮았다. 이상의 연구 결과 GST 유전적 다형성에따라 산화, 항산화 관련 효소 활성 및 항산화 영양소 수준의상태가 차이가 있음을 알 수 있었으며, 특히 흡연자의 경우 GST 유전자 type에 따라 항산화 영양상태가 더 큰 영향을 받음을 알 수 있었다. 이러한 연구 결과는 유전적 다형성에따라 항산화 영양소의 권장수준을 책정하는데 기초연구자료로 활용될 수 있을 것이다. 즉, GSTT1 또는 GSTM1 null type의 경우 비흡연자에 비해 흡연자가 항산화 영양소 수준이 더 낮게 나타났으므로 그들의 체내 항산화 영양 상태를 증가시킬 수 있는 여러 방안들, 즉 항산화 비타민의 보충투여 및 야채와 과일의 섭취 권장 등이 고려될 수 있을 것이다. 또한 GST 유전자 다형성에 따라 항산화 영양상태의 차이가 있으므로 항산화 관련 in vitro 실험, 동물 및 인체 실험의 결과 해석 시 나타나는 개인 간의 변이차이는 GST 유전자 다형성으로 일부분 설명될 수 있으리라 기대된다. 향후대상자의 범위를 좀 더 넓혀서 GST 유전자 다형성과 항산화 영양상태의 관계를 규명하고자 하며 더불어 산화물질 해독에 관여하는 다른 유전자(CYP 450, SULT 등)의 역할에 대해서도 계속적인 연구가 필요하다고 사료된다.

갈색거저리(Tenebrio Molitor)의 항산화능과 Raw 264.7 대식세포의 항염증 효과 (Antioxidant capacity and Raw 264.7 macrophage anti-inflammatory effect of the Tenebrio Molitor)

  • 유재묘;장재윤;김현정;조용훈;김동인;권오준;조영제;안봉전
    • 한국식품저장유통학회지
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    • 제23권6호
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    • pp.890-898
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    • 2016
  • 본 연구의 목적은 갈색거저리의 추출물에 따른 약리활성에 대한 검증 및 효능 평가이다. 갈색거저리의 항산화, 항염증에 대하여 효과를 확인 하였다. 염증 반응은 자극이 가해지면 histamin, serotonin, prostaglandin과 같은 혈관 활성물질에 의해 혈관 투과성이 증대되어 염증을 유발하고 cytokine, free radical, lysosomal enzyme 등 다양한 매개 인자가 관여한다. 자극에 의한 macrophage cell의 염증반응은 tumor necrosis $factor-{\alpha}$($TNF-{\alpha}$), interleukin-6(IL-6), $interleukin-1{\beta}$($IL-1{\beta}$)와 같은 pro-inflammatory cytokine의 발현이 유도되고, inducible nitric oxide synthase(iNOS)와 cyclooxygenase-2(COX-2)에 영향을 받는 유전자의 발현을 자극하게 되어 nitric oxide(NO) 및 $PGE_2$등의 염증 인자가 생성된다. 이에 따라 갈색거지리 추출물의 항염증에 대한 연구를 위해 이에 영향을 주는 인자인 iNOS, COX-2, $PGE_2$, MAPKs의 단백질 발현억제 작용을 확인 하였다. 그 결과 TDW 처리군에서 iNOS 발현율이 19.7%, COX-2의 발현율은 23.2%의 값을 나타내었고, $PGE_2$의 저해 경로를 보기 위해 COX-2의 발현을 mRNA 수준에서 측정한 결과 최고 농도인 $100{\mu}g/mL$에서는 약 60%의 억제효과를 확인할 수 있었다. 결론적으로 TDW는 염증 생성 기전에 작용하여 이 활성을 억제하는데 있어서 효과를 줄 수 있으며 지속적으로 연구해볼 가치가 있다고 사료된다.