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Modulation of the immune system by Boswellia serrata extracts and boswellic acids.

机译:乳香乳香提取物和乳香酸对免疫系统的调节。

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摘要

Extracts from the gum resin of Boswellia serrata and some of is constituents including boswellic acids affect the immune system in different ways. Among the various boswellic acids 11-keto-beta-boswellic acid (KBA) and acetyl-11-keto-beta-boswellic acid have been observed to be active. However, also other boswellic acids may exhibit actions in the immune system. In the humoral defence system a mixture of boswellic acis at higher doses reduced primary antibody titres; on the other hand lower doses enhanced secondary antibody titres following treatment with sheep erythrocytes. In the cellular defence boswellic acides appear to increase lymphocyte proliferation whereas higher concentrations are even inhibitory. Moreover, BAs increase phagocytosis of macrophages. BAs affect the cellular defence system by interaction with production/release of cytokines. Thus, BAs inhibit activation of NFkappaB which is a product of neutrophile granulocytes. Consequently a down regulation of TNF-alpha and decrease of IL-1, IL-2, IL-4, IL-6 and IFN-gamma, which are proinflammatory cytokines by BEs and BAs has been reported. Suppressions of the classic way of the complement system was found to be due to inhibition of the conversion of C3 into C3a and C3b. However, which of these pharmacological actions contribute to the therapeutic effects and which is finally the best dosage of a standardized extract needs further examination. And it is also a question whether or not a single BA will have the same therapeutic effect as a standardized extract. Among the mediators of inflammatory reaction, mast cell stabilisation has been described by a BE. Inhibition of prostaglandin synthesis appears to play only a minor role as far as the anti-inflammatory effect is concerned. On the other hand the inhibitory action of BAs on 5-LO leading to a decreased production of leukotrienes has received high attention by the scientific community since a variety of chronic inflammatory diseases is associatied with increased leukotriene activity. At the end of the cascade of events in the cellular immune system as far as it directs to various tissues of the body - i.e. autoimmune diseases - formation of oxygen radicals and proteases (for example elastase) play an important destructive role. Here, BEs as well as BAs have been found to be inhibitory. From the pharmacological properties of BEs and BAs it is not surprising that positive effects of BEs in some chronic inflammatory diseases including rheumatoid arthritis, bronchial asthma, osteoarthritis, ulcerative colitis and Crohn's disease have been reported.
机译:乳香乳香树胶树脂的提取物和某些成分(包括乳香酸)以不同的方式影响免疫系统。在各种乳香酸中,已观察到11-酮-β-乳香酸(KBA)和乙酰基11-酮-β-乳香酸具有活性。但是,其他乳香酸也可能在免疫系统中发挥作用。在体液防御系统中,较高剂量的乳香acis混合物可降低一抗的效价;另一方面,用绵羊红细胞治疗后,较低剂量的二抗效价提高。在细胞防御中,乳香酸似乎增加了淋巴细胞的增殖,而更高的浓度甚至具有抑制作用。此外,BAs增加巨噬细胞的吞噬作用。 BA通过与细胞因子的产生/释放相互作用来影响细胞防御系统。因此,BA抑制嗜中性粒细胞的产物NFκB的活化。因此,据报道,BEs和BAs促炎细胞因子TNF-α的下调和IL-1,IL-2,IL-4,IL-6和IFN-γ的降低。发现补体系统的经典方式的抑制是由于抑制了C3向C3a和C3b的转化。然而,这些药理作用中的哪一种有助于治疗效果,以及最后是标准化提取物的最佳剂量还需要进一步研究。单个BA是否具有与标准化提取物相同的治疗效果也是一个问题。在炎症反应的介质中,肥大细胞的稳定化已由BE进行了描述。就抗炎作用而言,抑制前列腺素的合成似乎仅起次要作用。另一方面,由于多种慢性炎性疾病与白三烯活性的提高有关,因此BAs对5-LO的抑制作用导致白三烯产量的降低受到了科学界的高度重视。在细胞免疫系统中级联反应直接到达人体各个组织的过程结束时,即自身免疫疾病,氧自由基和蛋白酶(例如弹性蛋白酶)的形成起重要的破坏作用。在此,发现BE和BA具有抑制作用。从BEs和BAs的药理特性来看,已经报道了BEs在某些慢性炎性疾病中的积极作用,包括类风湿性关节炎,支气管哮喘,骨关节炎,溃疡性结肠炎和克罗恩氏病,这不足为奇。

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