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      초석잠 뿌리 분획물의 항산화 및 항염증 효과와 smad 신호 전달에 미치는 효과 = Effect of Fractions From Stachys sieboldii Miq. Root on Antioxidant, Anti-inflammation and Smad Signaling

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      https://www.riss.kr/link?id=A109046998

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      국문 초록 (Abstract) kakao i 다국어 번역

      본 연구는 초석잠 뿌리 분획물의 항산화 및 항염증 효과를 규명하고 transforming growth factor (TGF) β 자극에 의한 smad 신호전달에 미치는 효과에 대해 연구하였다. 초석잠 뿌리 분획물들 중 n-BuOH 분획물이 16.67 mg/g 으로 가장 높은 플라보노이드 함량을 나타내었으며, 다음으로 n-Hexane, water 및 85% aq. MeOH 분획물 순이었다. 초석잠 뿌리의 지방산 조성은 n-6 지방산(54.27%) > n-3 지방산(21.18%) > 포화지방산(19.70%) > n-9 지방산(3.60%) 순으로 나타났으며, 지방산들 중 n-6계 지방산인 linoleic acid (18:2n-6)가 54.27%로 나타내었고 n-3계 지방산인 linolenic acid (18:3n-3)는 20.82%의 함량을 나타내었다. DPPH 및 ABTS 라디칼 소거능을 확인한 결과, 초석잠 뿌리 분획물들 중 n-BuOH 분획물은 0.5 mg/mL 의 농도에서 각각 85.4% 및 90.2%로 라디칼 소거능을 나타내었다. 85% aq. MeOH 분획물은 0.5 mg/mL 의 농도에서 각각 58.7% 및 90.8%로 DPPH 및 ABTS 라디칼 소거능을 보였다. 항염증 효능 중 NO 생성 저해 효과는 모든 분획물들이 0.5, 1 및 2 mg/mL의 농도에서 control 과 유의적 차이를 보이면서 NO 생성을 저해하였다(p<0.05). TGFβ signaling의 smad3 의 인산화 발현량을 확인한 결과 85% aq. MeOH 및 water 분획물들을 처리한 군에서 control과 비교했을 때 각각 88% 및 77% 수준으로 smad3의 인산화가 저해되는 것을 확인하였다. 이상의 결과들로부터 플라보노이드 함량이 높은 n-BuOH 분획물의 항산화 활성이 높았고 항염증 및 TGFβ signaling의 smad3 의 인산화 저해 활성은 85% aq. MeOH 및 water 분획물들에서 높은 활성이 나타났다.
      번역하기

      본 연구는 초석잠 뿌리 분획물의 항산화 및 항염증 효과를 규명하고 transforming growth factor (TGF) β 자극에 의한 smad 신호전달에 미치는 효과에 대해 연구하였다. 초석잠 뿌리 분획물들 중 n-BuOH ...

      본 연구는 초석잠 뿌리 분획물의 항산화 및 항염증 효과를 규명하고 transforming growth factor (TGF) β 자극에 의한 smad 신호전달에 미치는 효과에 대해 연구하였다. 초석잠 뿌리 분획물들 중 n-BuOH 분획물이 16.67 mg/g 으로 가장 높은 플라보노이드 함량을 나타내었으며, 다음으로 n-Hexane, water 및 85% aq. MeOH 분획물 순이었다. 초석잠 뿌리의 지방산 조성은 n-6 지방산(54.27%) > n-3 지방산(21.18%) > 포화지방산(19.70%) > n-9 지방산(3.60%) 순으로 나타났으며, 지방산들 중 n-6계 지방산인 linoleic acid (18:2n-6)가 54.27%로 나타내었고 n-3계 지방산인 linolenic acid (18:3n-3)는 20.82%의 함량을 나타내었다. DPPH 및 ABTS 라디칼 소거능을 확인한 결과, 초석잠 뿌리 분획물들 중 n-BuOH 분획물은 0.5 mg/mL 의 농도에서 각각 85.4% 및 90.2%로 라디칼 소거능을 나타내었다. 85% aq. MeOH 분획물은 0.5 mg/mL 의 농도에서 각각 58.7% 및 90.8%로 DPPH 및 ABTS 라디칼 소거능을 보였다. 항염증 효능 중 NO 생성 저해 효과는 모든 분획물들이 0.5, 1 및 2 mg/mL의 농도에서 control 과 유의적 차이를 보이면서 NO 생성을 저해하였다(p<0.05). TGFβ signaling의 smad3 의 인산화 발현량을 확인한 결과 85% aq. MeOH 및 water 분획물들을 처리한 군에서 control과 비교했을 때 각각 88% 및 77% 수준으로 smad3의 인산화가 저해되는 것을 확인하였다. 이상의 결과들로부터 플라보노이드 함량이 높은 n-BuOH 분획물의 항산화 활성이 높았고 항염증 및 TGFβ signaling의 smad3 의 인산화 저해 활성은 85% aq. MeOH 및 water 분획물들에서 높은 활성이 나타났다.

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      We investigated to analyze total flavonoid content and fatty acid composition of Stachys sieboldii Miq root. In order to determine antioxidant and anti-inflammatory effects of fractions from S. sieboldii Miq. root, we conducted 1.1-Diphenyl-2-picryhydrazyl (DPPH) and 2,2′-Azino-bis (3-ethylbenothiazoline-6-sulfonic acid) diammonium salt radical cation (ABTS) assays for antioxidant and measured nitric oxide (NO) production induced by lipopolysaccharide (LPS) in RAW 264.7 cells. In addition, we examined an inhibitory effect of fractions from S. sieboldii Miq. root on smad signaling induced by transforming growth factor (TGF) β. Among the fractions, n-butanol (n-BuOH) fraction showed the highest flavonoid content (16.67 mg/g), followed by n-Hexane, water and 85% aqueous methanol (85% aq. MeOH) fractions. The fatty acid composition of S. sieboldii Miq. root was in the following order : n-6 fatty acids (54.3%) > n-3 fatty acids (21.2%) > saturated fatty acids (19.7%) > n-9 fatty acids (3.6%). As a result of the antioxidant efficacy, the DPPH and ABTS assays showed that n-BuOH fraction had higher scavenging activity compared to other fractions. Inhibitory effect on NO production showed that all fractions decreased LPS-induced NO production, indicating an anti-inflammatory activity of S. sieboldii Miq. root. 85% aq. MeOH and water fractions showed a higher efficacy in inhibiting transforming growth factor (TGF) β induced smad signaling. From the results, it suggests that food processing products using S. sieboldii Miq. root will be developed as a functional food for promoting health.
      번역하기

      We investigated to analyze total flavonoid content and fatty acid composition of Stachys sieboldii Miq root. In order to determine antioxidant and anti-inflammatory effects of fractions from S. sieboldii Miq. root, we conducted 1.1-Diphenyl-2-picryhyd...

      We investigated to analyze total flavonoid content and fatty acid composition of Stachys sieboldii Miq root. In order to determine antioxidant and anti-inflammatory effects of fractions from S. sieboldii Miq. root, we conducted 1.1-Diphenyl-2-picryhydrazyl (DPPH) and 2,2′-Azino-bis (3-ethylbenothiazoline-6-sulfonic acid) diammonium salt radical cation (ABTS) assays for antioxidant and measured nitric oxide (NO) production induced by lipopolysaccharide (LPS) in RAW 264.7 cells. In addition, we examined an inhibitory effect of fractions from S. sieboldii Miq. root on smad signaling induced by transforming growth factor (TGF) β. Among the fractions, n-butanol (n-BuOH) fraction showed the highest flavonoid content (16.67 mg/g), followed by n-Hexane, water and 85% aqueous methanol (85% aq. MeOH) fractions. The fatty acid composition of S. sieboldii Miq. root was in the following order : n-6 fatty acids (54.3%) > n-3 fatty acids (21.2%) > saturated fatty acids (19.7%) > n-9 fatty acids (3.6%). As a result of the antioxidant efficacy, the DPPH and ABTS assays showed that n-BuOH fraction had higher scavenging activity compared to other fractions. Inhibitory effect on NO production showed that all fractions decreased LPS-induced NO production, indicating an anti-inflammatory activity of S. sieboldii Miq. root. 85% aq. MeOH and water fractions showed a higher efficacy in inhibiting transforming growth factor (TGF) β induced smad signaling. From the results, it suggests that food processing products using S. sieboldii Miq. root will be developed as a functional food for promoting health.

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      참고문헌 (Reference)

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      1 Ganguly, R., "The toxicity of dietary trans fats" 78 : 170-176, 2015

      2 Chen, W., "The clinical application value of compound Stachys sieboldii Miq granules to stable COPD patients" 114 : 152-161, 2023

      3 Chae, S. K., "Standard food analysis" 2002

      4 Benedec, D., "Stachys species: Comparative evaluation of phenolic profile and antimicrobial and antioxidant potential" 2023

      5 Massagué, J., "Smad transcription factors" 19 : 2783-2810, 2005

      6 Tang, J., "Quercetin and quercitrin attenuates the inflammatory response and oxidative stress in LPS-induced RAW 264.7cells: In vitro assessment and a theoretical model" 1155-, 2019

      7 최성현 ; 황은선, "Quality characteristics and antioxidant activity of chocolate containing Chinese artichoke (Stachys sieboldii Miq.) powder" 47 : 39-45, 2018

      8 김복희 ; 이재준, "Quality characteristics and antioxidant activity of Stachys sieboldii Miq. leaf cookies" 30 : 581-594, 2019

      9 제갈준미 ; 정장호, "Quality characteristics and antioxidant activities of Chinese artichoke powder prepared by different drying method" 29 : 39-47, 2023

      10 Smith, W. L., "Prostanoid biosynthesis and mechanisms of action" 263 : F181-, 1992

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      34 이정호, "Antioxidant, antibacterial and anti-inflammatory effects of Stachys sieboldii extract" 34 : 420-432, 2021

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      36 오희경, "Antioxidant and Neuronal cell protective effects of Stachys sieboldii Miq. according to drying methods" 35 : 1320-1326, 2018

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      38 이지은 ; 진소연 ; 한영실, "Antioxidant activities and quality characteristics of tufu supplemented with Chinese artichoke powder" 27 : 10-21, 2014

      39 황수정, "Antioxidant activities and quality characteristics of porridge with Chinese artichoke (Stachys sieboldii Miq.) Powder" 26 : 240-250, 2020

      40 Maleki, S. J., "Antiinflammatory effects of flavonoids" 299 : 2019

      41 Al Hinai, H. S., "Anti-inflammatory effects of n-3 polyunsaturated fatty acids in THP-1 macrophages : promising in-vitro insights" 10 : 232-241, 2023

      42 Folch, J., "A simple method for the isolation and purification of total lipids from animal tissues" 226 : 497-509, 1957

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