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首页> 外文期刊>American Journal of Biochemistry and Biotechnology >Lectin Histochemistry Assay in Colon Tissues for Inter-species Characterization
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Lectin Histochemistry Assay in Colon Tissues for Inter-species Characterization

机译:结肠组织中的凝集素组织化学分析用于种间鉴定

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摘要

Problem statement: The digestive tract of animals including rodents has taxonomic and ecologic importance due to its ability in adaptation for different environments. Whereas colon absorbs water and carbohydrates, it has a vital role ecologically andphysiologically and enjoys different histological structures in different rodents with various diets. Approach: Different rodent specimens belong to the family Muridae, namely Gerbilinae subfamily (Jerbillus nanus, Meriones Persicus, Meriones lybicus) Microtinae (Microtus, transcaspicus, Ellobius fascocapillus, Microtus sp.) Dipodidae (Alactage elater, Jucullus blanfordi) and scuridae (Funambulus penantii, spermophillus folvus), were studied via histochemistry techniques. Various parts of the digestivetract were removed and measured. Proximal colon was cut into 2-3 cm segments and fixed by bouin solution. The segments stained by lectin (PNA, WGA) chemochemistry. Results: Microscopic observations indicated that there were remarkable distinctions in thecarbohydrates and glycoproteins content of the different layers of colon among different species of rodents. Both PNA and WGA lectin histochemistry showed high and significant discriminatory power among the studied species of rodents especially lectin staining in mucosal and absorptive cells (p<0.05). Goblet and epithelial cells showed much lower affinity to lectins. Conclusion: It was concluded that use of lectin histochemistry was a valid method for phylogenic characterization of rodents, may be other animals, depending on colon tissues. Moreover, Colon tissues proved to be highly distinct and variable among species of animals. This assay can also be used in determining the diet nature, geographical variation, diseases affection on different speciesof animals.
机译:问题陈述:包括啮齿类动物在内的动物的消化道由于具有适应不同环境的能力,因此具有分类学和生态学重要性。结肠吸收水分和碳水化合物,但在生态和生理上起着至关重要的作用,并且在不同饮食条件下的不同啮齿动物中具有不同的组织学结构。方法:不同的啮齿动物标本属于鼠科,即沙鼠亚科(Jerbillus nanus,meriones persicus,meriones lybicus),Microtinae(Microtus,transcaspicus,Ellobius fascocapillus,Microtus sp。)。 (Spermophillus folvus),通过组织化学技术进行了研究。消化道的各个部分被去除并测量。将近端结肠切成2-3cm的段,并用布氏溶液固定。区段被凝集素(PNA,WGA)化学化学染色。结果:显微镜观察表明,不同种类的啮齿动物在结肠不同层的碳水化合物和糖蛋白含量存在显着差异。 PNA和WGA凝集素的组织化学都显示出很高且显着的区分力,尤其是在粘膜和吸收性细胞中的凝集素染色(p <0.05)。杯状细胞和上皮细胞对凝集素的亲和力低得多。结论:得出的结论是,使用凝集素组织化学方法是一种有效的啮齿类动物系统鉴定方法,可能是其他动物,具体取决于结肠组织。此外,事实证明,结肠组织在动物物种之间具有高度差异性和可变性。该测定法还可以用于确定饮食性质,地理差异,疾病对不同种类动物的影响。

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