Roy Bishnupada, Giri Bikash R
Parasitology Laboratory,Department of Zoology,North-Eastern Hill University,Shillong-793022,Meghalaya,India.
Microsc Microanal. 2015 Apr;21(2):377-84. doi: 10.1017/S1431927614014603. Epub 2015 Jan 16.
α-Viniferin, an active component of the plant Carex baccans L., is known for its anticancer, antidiabetic, and anti-inflammatory properties. In Northeast India, different tribes traditionally consume C. baccans to control intestinal helminth infections. Therefore, the present study was carried out to assess the extent of tegumental alteration caused by α-viniferin in Raillietina echinobothrida, a widely prevalent poultry helminth in northeast India. Helminths were exposed in vitro to various doses of α-viniferin (50, 100, and 200 µM/mL of physiological buffered saline) and their motility and mortality were recorded. Stereoscan observations on the parasite exposed to the active compound showed extensive distortion and destruction of the surface fine topography of the tegument compared with controls. The compound also caused extensive damage to the tegument by disintegration of microtriches, disorganization of muscle bundles, and loss of cellular organelles combined with distortion and disruption of the plasma membrane, nuclear membrane, nucleolus, mitochondrial membrane, and cristae. Histochemical and biochemical studies carried out parasites exposed to α-viniferin revealed a decline in the activity of vital tegumental enzymes like acid phosphatase, alkaline phosphatase, and adenosine triphosphatase. Extensive structural and functional alterations observed in the treated parasites are indicative of efficient cestocidal activity of the compound.
α-葡萄素是芒尖苔草(Carex baccans L.)植物的一种活性成分,以其抗癌、抗糖尿病和抗炎特性而闻名。在印度东北部,不同部落传统上食用芒尖苔草来控制肠道蠕虫感染。因此,本研究旨在评估α-葡萄素对印度东北部广泛流行的家禽蠕虫——棘盘瑞利绦虫(Raillietina echinobothrida)体表改变的程度。将蠕虫在体外暴露于不同剂量的α-葡萄素(50、100和200 µM/mL生理缓冲盐水),并记录其运动性和死亡率。对暴露于活性化合物的寄生虫进行的扫描电子显微镜观察显示,与对照组相比,虫体体表的表面精细结构出现了广泛的扭曲和破坏。该化合物还通过微毛解体、肌束紊乱、细胞器丧失以及质膜、核膜、核仁、线粒体膜和嵴的扭曲和破坏,对虫体体表造成了广泛损伤。对暴露于α-葡萄素的寄生虫进行的组织化学和生化研究表明,酸性磷酸酶、碱性磷酸酶和三磷酸腺苷酶等重要体表酶的活性下降。在经处理的寄生虫中观察到的广泛结构和功能改变表明该化合物具有有效的杀绦虫活性。