Anti-Inflammatory Activity of Bryophytes Extracts in LPS-Stimulated RAW264.7 Murine Macrophages

被引:11
|
作者
Marques, Raissa Volpatto [1 ]
Sestito, Stefania Enza [2 ]
Bourgaud, Frederic [3 ,4 ]
Miguel, Sissi [4 ]
Cailotto, Frederic [2 ]
Reboul, Pascal [2 ]
Jouzeau, Jean-Yves [2 ]
Rahuel-Clermont, Sophie [2 ]
Boschi-Muller, Sandrine [2 ]
Simonsen, Henrik Toft [1 ]
Moulin, David [2 ]
机构
[1] Tech Univ Denmark, Dept Biotechnol & Biomed, Soltoft Plads 223, DK-2800 Lyngby, Denmark
[2] Univ Lorraine, Ingn Mol & Physiopathol Articulaire IMoPA, CNRS, UMR 7365, F-54500 Vandoeuvre Les Nancy, France
[3] Plant Adv Technol, 19 Ave Foret Haye, F-54500 Vandoeuvre Les Nancy, France
[4] Cellengo, 19 Ave Foret Haye, F-54500 Vandoeuvre Les Nancy, France
来源
MOLECULES | 2022年 / 27卷 / 06期
基金
欧盟地平线“2020”;
关键词
bryophytes; mosses; Dicranum majus; Thuidium delicatulum; anti-inflammatory activity; nitric oxide; NF-KAPPA-B; INFLAMMATION; PEROXIREDOXINS; IMMUNITY; ROLES;
D O I
10.3390/molecules27061940
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Bryophytes produce rare and bioactive compounds with a broad range of therapeutic potential, and many species are reported in ethnomedicinal uses. However, only a few studies have investigated their potential as natural anti-inflammatory drug candidate compounds. The present study investigates the anti-inflammatory effects of thirty-two species of bryophytes, including mosses and liverworts, on Raw 264.7 murine macrophages stimulated with lipopolysaccharide (LPS) or recombinant human peroxiredoxin (hPrx1). The 70% ethanol extracts of bryophytes were screened for their potential to reduce the production of nitric oxide (NO), an important pro-inflammatory mediator. Among the analyzed extracts, two moss species significantly inhibited LPS-induced NO production without cytotoxic effects. The bioactive extracts of Dicranum majus and Thuidium delicatulum inhibited NO production in a concentration-dependent manner with IC50 values of 1.04 and 1.54 mu g/mL, respectively. The crude 70% ethanol and ethyl acetate extracts were then partitioned with different solvents in increasing order of polarity (n-hexane, diethyl ether, chloroform, ethyl acetate, and n-butanol). The fractions were screened for their inhibitory effects on NO production stimulated with LPS at 1 ng/mL or 10 ng/mL. The NO production levels were significantly affected by the fractions of decreasing polarity such as n-hexane and diethyl ether ones. Therefore, the potential of these extracts to inhibit the LPS-induced NO pathway suggests their effective properties in attenuating inflammation and could represent a perspective for the development of innovative therapeutic agents.
引用
收藏
页数:14
相关论文
共 50 条
  • [41] Anti-inflammatory potential of Phaseolus calcaratus Roxburgh, a oriental medicine, on LPS-stimulated RAW 264.7 macrophages
    Fang, Minghao
    Lee, Seung-Youp
    Park, Seung-Moon
    Choi, Ki-Choon
    Lee, Young Jae
    Cho, Hyoung-Kwon
    Cho, Seong-Wan
    Whang, Wan Kyunn
    Lee, Jeong-Chae
    JOURNAL OF PHARMACY AND PHARMACOLOGY, 2011, 63 (01) : 120 - 128
  • [42] Anti-inflammatory activity of horseradish (Armoracia rusticana) root extracts in LPS-stimulated macrophages
    Marzocco, Stefania
    Calabrone, Luana
    Adesso, Simona
    Larocca, Marilena
    Franceschelli, Silvia
    Autore, Giuseppina
    Martelli, Giuseppe
    Rossano, Rocco
    FOOD & FUNCTION, 2015, 6 (12) : 3778 - 3788
  • [43] Anti-inflammatory effect of quercetin and galangin in LPS-stimulated RAW264.7 macrophages and DNCB-induced atopic dermatitis animal models
    Le, Hae Nim
    Shin, Seong Ah
    Choo, Gang Sik
    Kim, Hyeong Jin
    Park, Young Seok
    Kim, Byeong Soo
    Kim, Sang Ki
    Cho, Sung Dae
    Nam, Jeong Seok
    Choi, Chang Sun
    Che, Jeong Hwan
    Park, Byung Kwon
    Jung, Ji Youn
    INTERNATIONAL JOURNAL OF MOLECULAR MEDICINE, 2018, 41 (02) : 888 - 898
  • [44] Anti-Inflammatory Activity of Tanshinone IIA in LPS-Stimulated RAW264.7 Macrophages via miRNAs and TLR4–NF-κB Pathway
    Guanwei Fan
    Xiaorui Jiang
    Xiaoyan Wu
    Patrick Asare Fordjour
    Lin Miao
    Han Zhang
    Yan Zhu
    Xiumei Gao
    Inflammation, 2016, 39 : 375 - 384
  • [45] Anti-inflammatory effect of the extracts from the branch of Taxillus yadoriki being parasitic in Neolitsea sericea in LPS-stimulated RAW264.7 cells
    Park, Su Bin
    Park, Gwang Hun
    Kim, Ha Na
    Son, Ho-Jun
    Song, Hun Min
    Kim, Hyun-Seok
    Jeong, Hyung Jin
    Jeong, Jin Boo
    BIOMEDICINE & PHARMACOTHERAPY, 2018, 104 : 1 - 7
  • [46] Sturgeon protein-derived peptides exert anti-inflammatory effects in LPS-stimulated RAW264.7 macrophages via the MAPK pathway
    Gao, Ruichang
    Shu, Wanghui
    Shen, Yang
    Sun, Quancai
    Bai, Fan
    Wang, Jinlin
    Li, Dajing
    Li, Ying
    Jin, Wengang
    Yuan, Li
    JOURNAL OF FUNCTIONAL FOODS, 2020, 72
  • [47] Anti-inflammatory Effects of Achyranthes japonica Nakai and Aralia continentalis Kitagawa Complex Fermented Extracts on LPS-stimulated RAW264.7 Macrophage
    Woo, Young Min
    Jo, Eun Sol
    Kim, Ok Ju
    Lee, Young-Ho
    Ahn, Mee Young
    Lee, Dong-Geun
    Lee, Sang-Hyeon
    Ha, Jong-Myung
    Kim, Andre
    APPLIED CHEMISTRY FOR ENGINEERING, 2019, 30 (04): : 479 - 486
  • [48] Anti-Inflammatory Phenolic Metabolites from the Edible Fungus Phellinus baumii in LPS-Stimulated RAW264.7 Cells
    Lee, Seulah
    Lee, Dahae
    Jang, Tae Su
    Kang, Ki Sung
    Nam, Joo-Won
    Lee, Hae-Jeung
    Kim, Ki Hyun
    MOLECULES, 2017, 22 (10):
  • [49] Anti-inflammatory effects of methanol extracts from the Antarctic lichen, Amandinea sp. in LPS-stimulated raw 264.7 macrophages and zebrafish
    Kim, Jung Eun
    Min, Seul Ki
    Hong, Ju-Mi
    Kim, Kyung Hee
    Han, Se Jong
    Yim, Joung Han
    Park, Hyun
    Kim, Il-Chan
    FISH & SHELLFISH IMMUNOLOGY, 2020, 107 : 301 - 308
  • [50] Anti-Inflammatory Effects of Lipids Extracted from Arctoscopus japonicus Eggs on LPS-Stimulated RAW264.7 Cells
    Rod-in, Weerawan
    Monmai, Chaiwat
    Lee, Sang-min
    Jung, Seok-Kyu
    You, SangGuan
    Park, Woo Jung
    MARINE DRUGS, 2019, 17 (10)