姜油提取物对大鼠原油毒性的改善作用

Anas Abuali
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Group one was administered corn oil at a dose of 1ml for each rat daily basis for 30 days, group two was treated with ginger essential oil orally (50 mg/kg B.W.) once daily for 30 days, group three was treated orally with 600ul of crude oil mixed with 1 ml corn oil orally once daily for 30 days. Blood samples were collected in clean class tubes with EDTA anticoagulant. Complete blood pictures (CBC) shown from collected blood samples by automatic method (Celltac X kx 021n automated hematology analyzer, Japan CARE Co, LTD). The results: The results observed that ginger essential oil is composed of 55 chemical components identified according to retention times and area parentage area in the extracted oil. The main active chemical components were Zingiberen in percentage (17.1), followed by Cyclohexene (α-Sesquiphellandrene) in percentage (12.1%), à-Farnesene in percentage (11.9%) and Benzene (7.9%). Red blood cells (RBCs) observed a significant decrease in the count of red blood cells (RBCs) when administrated crude oil orally as a compared control group, while the rats that were given ginger essential oil observed no significant changes in RBC count. Decrease in hemoglobin concentration (Hb), Packed cell volume (PCV), and Platelets(Plt)after administrated of crud oil in dose 600ul, while the rats that administrated GEO observed no significant changes in Hb, PCVand Plt as compared with the control group. A significant increase in White Blood Cells(WBCs), Granulocytes (Neutrophils), Monocytes, and Lymphocytes after administration of crude oil as compared with the control group, while administration of GEO orally improved activity of WBCs, Granulocytes, Monocytes, and Lymphocytes. 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引用次数: 0

摘要

研究目的:使用草药提取物,如生姜粉提取物,观察到刺激血液系统,证明了红细胞,血小板和血红蛋白百分比的总计数减少。本研究旨在研究生姜精油的抗氧化活性及对原油血液学指标的保护作用。方法:原油取自密桑省医学检验中心。原油取自Missan oil company (MOC) Ltd样品类型(No:38DI) Ginger (Zanjabar officcienales),取自Missan city当地市场,分类于理学院生物系。实验动物:选取体重150 ~ 200 g的雄性Albino Waster大鼠24只,分为3组,每组8只。组1给予玉米油,每只大鼠每日1ml,连用30 d;组2给予生姜精油(50 mg/kg B.W.),每日1次,连用30 d;组3给予原油600ul与玉米油1ml混合,每日1次,连用30 d。用EDTA抗凝血剂清洁管采集血样。全自动方法(Celltac X kx 021n全自动血液分析仪,Japan CARE Co . LTD)显示采集血液样本的全血图片(CBC)。结果:观察到生姜精油由55种化学成分组成,根据提取油的保留时间和面积、亲本面积鉴定。主要有效化学成分为姜黄素(17.1%),其次为环己烯(α-倍半蓝烯)(12.1%)、à-Farnesene(11.9%)和苯(7.9%)。作为对照组,口服原油的大鼠红细胞(RBC)计数明显减少,而给予生姜精油的大鼠红细胞计数无明显变化。给药600ul原油后,血红蛋白浓度(Hb)、堆积细胞体积(PCV)和血小板(Plt)下降,而给药GEO的大鼠Hb、PCV和Plt与对照组相比无明显变化。与对照组相比,给予原油后白细胞(WBCs)、粒细胞(中性粒细胞)、单核细胞和淋巴细胞显著增加,而口服GEO可改善白细胞、粒细胞、单核细胞和淋巴细胞的活性。结论:暴露于原油可导致血液学参数的异常变化,即使大剂量暴露,姜精油也可能具有保护和改善原油毒性作用的特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ameliorating effect of extracted Ginger oil against toxic effects of crude oil in male rats
Aim of the study: Use extraction of medical herbal such as powder ginger extract observed to stimulate the hematological system as evidenced by a decrease in the total count of RBCs, platelets as well as hemoglobin percentage. This study aimed to determine the antioxidant activity and protective effect of ginger essential oil against the toxic effect of crude oil on the hematological parameters. Method: Crude oil was taken from the medical laboratory center in Missan province. Crude oil obtained from Missan oil company (MOC) Ltd sample type (No:38DI) Ginger (Zanjabar offcienales) was obtained from the local market, Missan city, and classified in the Department of Biology, Faculty of Science. Experimental animals : Twenty-four Albino Waster male rats weighing (150-200 g) were assigned into three groups (8 rats for each group). Group one was administered corn oil at a dose of 1ml for each rat daily basis for 30 days, group two was treated with ginger essential oil orally (50 mg/kg B.W.) once daily for 30 days, group three was treated orally with 600ul of crude oil mixed with 1 ml corn oil orally once daily for 30 days. Blood samples were collected in clean class tubes with EDTA anticoagulant. Complete blood pictures (CBC) shown from collected blood samples by automatic method (Celltac X kx 021n automated hematology analyzer, Japan CARE Co, LTD). The results: The results observed that ginger essential oil is composed of 55 chemical components identified according to retention times and area parentage area in the extracted oil. The main active chemical components were Zingiberen in percentage (17.1), followed by Cyclohexene (α-Sesquiphellandrene) in percentage (12.1%), à-Farnesene in percentage (11.9%) and Benzene (7.9%). Red blood cells (RBCs) observed a significant decrease in the count of red blood cells (RBCs) when administrated crude oil orally as a compared control group, while the rats that were given ginger essential oil observed no significant changes in RBC count. Decrease in hemoglobin concentration (Hb), Packed cell volume (PCV), and Platelets(Plt)after administrated of crud oil in dose 600ul, while the rats that administrated GEO observed no significant changes in Hb, PCVand Plt as compared with the control group. A significant increase in White Blood Cells(WBCs), Granulocytes (Neutrophils), Monocytes, and Lymphocytes after administration of crude oil as compared with the control group, while administration of GEO orally improved activity of WBCs, Granulocytes, Monocytes, and Lymphocytes. Conclusions: Exposure to crude oil may lead to abnormal changes in the hematological parameters and Ginger essential oil may have properties for protecting and ameliorating the toxic effects of crude oil even in high doses.
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