埃及红海海洋资源抗阴道毛滴虫作用的超微结构研究

G. M. Tawfeek, H. Elwakil, R. Sarhan
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摘要

甲硝唑用于治疗滴虫病。然而,越来越多的阴道毛滴虫(T。目前,阴道杆菌(Vaginalis)分离株具有耐药性,迫切需要寻找新的替代品。全球海洋制药证实了海洋物种作为新型药物来源的巨大潜力。本研究旨在探讨抗t。红海海洋资源软珊瑚、蓝藻石藻和树栖石藻乙醇提取物的阴道活性;红海褐藻、褐藻、水合藻、禾尾藻甲醇提取物,以及海参(Holothuria fuscocinerea)和海胆(Echinometra mathaei)的阴道活性。与培养基对照相比,分别用2种浓度的海洋提取物(10和100µg/ml)测定阴道生长抑制作用。对表现出良好初始活性的药物进行进一步测试,以计算其与甲硝唑的IC50。进一步评价各有效提取物的超微结构影响。clathratus, L。淀粉,海胆。马来西亚海参褐梭菌抑制了其生长。IC50分别为0.985±0.08、0.949±0.04、0.845±0.09和0.798±µg/ml±SD。显微镜下观察,海洋提取物和甲硝唑处理的细胞形态变化相似。核膜破坏,细胞核溶解,粗面内质网增宽,染色质堆积。胞质内出现大量自噬液泡,细胞器解体,鞭毛内化,氢酶体形态改变。细胞膜部分受损,胞质渗漏,细胞解体。本文介绍了埃及红海海洋资源对t的活性和形态变化的报道。鞘突。所得结果提供了新的机会。此外,还需要生物引导分离和分离活性化合物。
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Ultrastructure-based Insights on Anti-Trichomonas vaginalis Effects of Selected Egyptian Red Sea Marine Resources
Metronidazole is used for the treatment of trichomoniasis. However, a growing number ofTrichomonas vaginalis(T. vaginalis) isolates are now resistant, which is an urgent issue to search for new alternatives. Worldwide marine pharmacy confirms the enormous potential of sea species as a source of novel pharmaceuticals.This study aimed to investigate the anti-T. vaginalisactivities of ethanolic extracts of Red Sea marine resources, soft corals;Sarcophyton glaucumandLitophyton arboreumand methanolic extracts of Red Sea brown algae;Liagora farinosa, Colpomenia sinuosa, Hydroclathrus clathratus,andSargassum graminifolium, as well as sea cucumber (Holothuria fuscocinerea) and sea urchin (Echinometra mathaei).T. vaginalisgrowth inhibition was determined using 2 concentrations for each marine extract 10 and 100 µg/ml in comparison to media control. Drugs that showed good initial activity were further tested to calculate their IC50 in comparison to metronidazole. The ultrastructural impact of the more effective extracts was further assessed.H. clathratus,L. farinose, sea urchinE. mathaeiand sea cucumberH. fuscocinereareduced the growth ofT. vaginaliseffectively and showed high activity with IC50 of 0.985±0.08, 0.949±0.04, 0.845±0.09 and 0.798±µg/ml±SD, respectively. Concerning microscopic analysis, marine extract and metronidazole-treated cells presented similar morphological changes. The nuclear membrane was damaged, the nuclei were dissolved, the rough endoplasmic reticulum was widened, and the chromatin was accumulated. In the cytoplasm, numerous autophagic vacuoles appeared, the organelles were disintegrated, the flagella were internalized and hydrogenosomes with altered morphologies were observed. The cell membrane was partially damaged, with cytoplasmic leakage and cell disintegration.This study describes the report on the activity and morphological changes induced by Egyptian Red Sea marine resources againstT. vaginalis. The results obtained herein presented new opportunitiess. Further, bio-guided fractionation and isolation of active compounds are needed.
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