Yamaguchi Masayoshi, Levy Robert M
Department of Pathology and Laboratory Medicine, David Geffen School of Medicine, University of California, Los Angeles (UCLA), Los Angeles, CA 90095-1732, USA.
Department of Clinical Development, Primus Pharmaceuticals, Inc., Scottsdale, AZ 85251, USA.
Exp Ther Med. 2019 May;17(5):4312-4318. doi: 10.3892/etm.2019.7452. Epub 2019 Mar 29.
It has been demonstrated that the combination of three botanical factors of (+)-catechin, baicalin and β-caryophyllene, which exhibit anti-inflammatory effects, with comparatively lower concentrations of each factor, demonstrating a potent synergistic-suppressive effect on the growth of mouse macrophage RAW264.7 cells , and suggesting it may function as a pharmacologic tool for managing inflammatory diseases. The present study was undertaken to determine the suppressive effects of (+)-catechin, baicalin or β-caryophyllene on the production of inflammatory cytokines, including TNF-α, IL-6 and IL-1β, which was enhanced by lipopolysaccharide (LPS) in RAW264.7 cells . The cells were cultured for 3 days without botanical factors, followed by incubation for 5 h in the presence of either vehicle, (+)-catechin [1 µg/ml (3.45 µM)], baicalin [1 µg/ml (2.24 µM)], or β-caryophyllene [1 µg/ml (5 µM)] with or without LPS (100 ng/ml); this did not have significant effects on the number of RAW264.7 cells. The production of TNF-α, IL-6 and IL-1β was not altered by the addition of (+)-catechin, baicalin, β-caryophyllene, or the three combined factors in RAW264.7 cells without LPS. LPS treatment caused a marked production of TNF-α, IL-6, and IL-1β. This enhancement was suppressed by the addition of (+)-catechin, baicalin or β-caryophyllene. Of note, the production of these cytokines was additively suppressed by the combination of the three factors in macrophages. Thus, the combination of (+)-catechin, baicalin and β-caryophyllene was found to reveal a potent suppressive effect on cytokine production in macrophages . This composition may be a useful tool as a potent anti-inflammatory agent.
已证明,具有抗炎作用的(+)-儿茶素、黄芩苷和β-石竹烯这三种植物因子以相对较低的浓度组合,对小鼠巨噬细胞RAW264.7细胞的生长具有强大的协同抑制作用,并表明其可能作为治疗炎症性疾病的药物工具。本研究旨在确定(+)-儿茶素、黄芩苷或β-石竹烯对RAW264.7细胞中炎症细胞因子(包括TNF-α、IL-6和IL-1β)产生的抑制作用,这些细胞因子在脂多糖(LPS)作用下会增加。细胞在无植物因子的情况下培养3天,然后在有或无LPS(100 ng/ml)存在的情况下,分别用溶剂、(+)-儿茶素[1 μg/ml(3.45 μM)]、黄芩苷[1 μg/ml(2.24 μM)]或β-石竹烯[1 μg/ml(5 μM)]孵育5小时;这对RAW264.7细胞数量没有显著影响。在无LPS的RAW264.7细胞中,添加(+)-儿茶素、黄芩苷、β-石竹烯或这三种组合因子不会改变TNF-α、IL-6和IL-1β的产生。LPS处理导致TNF-α、IL-6和IL-1β显著产生。添加(+)-儿茶素、黄芩苷或β-石竹烯可抑制这种增加。值得注意的是,这三种因子的组合在巨噬细胞中对这些细胞因子的产生具有累加抑制作用。因此,发现(+)-儿茶素、黄芩苷和β-石竹烯的组合对巨噬细胞中细胞因子的产生具有强大的抑制作用。这种组合物可能作为一种有效的抗炎剂是一种有用的工具。