一种治疗变应性鼻炎的新型植物制剂Aller-7具有稳定肥大细胞、抑制脂氧合酶、抑制透明质酸酶、抗组胺和抗痉挛活性。

A Amit, V S Saxena, N Pratibha, P D'Souza, M Bagchi, D Bagchi, S J Stohs
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引用次数: 0

摘要

过敏性鼻炎,也被称为花粉热、玫瑰热或夏季黏膜炎,是卫生专业人员面临的主要挑战。世界上很多人,包括大约4000万美国人,都患有过敏性鼻炎。一种新型的植物制剂(Aller-7)已经被开发出来用于治疗过敏性鼻炎,它使用了七种药用植物的提取物的组合,包括Phyllanthus emblica, Terminalia chebula, T. bellerica, Albizia lebbeck, Piper nigrum, Zingiber officinale和P. longum,这些植物已经被证明具有疗效和健康益处。过敏的临床表现是由于肥大细胞释放了许多介质。通过培养不同浓度的Aller-7,并用复方48/80脱粒剂刺激它们,研究了Aller-7对大鼠肠系膜肥大细胞脱粒的影响。Aller-7对脂氧合酶和透明质酸酶的抑制活性测定,这两种酶参与炎症反应的启动和维持。此外,这些表现大多是由组胺引起的,组胺引起血管扩张,毛细血管通透性增加,导致支气管收缩。因此,以西替利嗪为阳性对照,测定了豚鼠回肠底物中Aller-7的抗组胺活性。以罂粟碱和西替利嗪为对照,观察Aller-7对豚鼠气管链收缩的抗痉挛作用。Aller-7在所有这些体外模型中都表现出强大的活性,从而证明了Aller-7具有新的抗过敏潜力。
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Mast cell stabilization, lipoxygenase inhibition, hyaluronidase inhibition, antihistaminic and antispasmodic activities of Aller-7, a novel botanical formulation for allergic rhinitis.

Allergic rhinitis, also known as hay fever, rose fever or summer catarrh, is a major challenge to health professionals. A large number of the world's population, including approximately 40 million Americans, suffers from allergic rhinitis. A novel, botanical formulation (Aller-7) has been developed for the treatment of allergic rhinitis using a combination of extracts from seven medicinal plants, including Phyllanthus emblica, Terminalia chebula, T. bellerica, Albizia lebbeck, Piper nigrum, Zingiber officinale and P. longum, which have a proven history of efficacy and health benefits. The clinical manifestations of allergy are due to a number of mediators that are released from mast cells. The effect of Aller-7 on rat mesenteric mast cell degranulation was studied by incubating different concentrations of Aller-7 and challenging them with a degranulating agent, compound 48/80. The inhibitory activity of Aller-7 was determined against lipoxygenase and hyaluronidase, the key enzymes involved in the initiation and maintenance of inflammatory responses. Furthermore, most of these manifestations are due to histamine, which causes vasodilatation, increasing capillary permeability and leading to bronchoconstriction. Hence, the antihistaminic activity of Aller-7 was determined is isolated guinea pig ileum substrate using cetirizine as a positive control. The antispasmodic effect of Aller-7 on contractions of guinea pig tracheal chain was determined using papaverine and cetirizine as controls. Aller-7 exhibited potent activity in all these in vitro models tested, thus demonstrating the novel anti-allergic potential of Aller-7.

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