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Trace elements and trace-element-containing proteins in the respiratory tract of the rat

机译:大鼠呼吸道中的微量元素和含微量元素的蛋白质

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Trace elements may have beneficial or harmful effects and both aspects have to be considered in the studies on their role in mammalian tissues. This applies to a special degree to the investigation of the metals and metalloids in the respiratory tract. The surface of the trachea and the lungs is continuously exposed to gases and particular matter present in the atmosphere. As many of these pollutants are powerful oxidants, theses tissues require a specific antioxidant defense system, Several enzymes with antioxidative functions are known to contain metals or metalloids as essential constituents of their active centers, and there may be further protective trace-element containing proteins not yet identified. However, metals and metalloids may also be incorporated accidentally from the aerosolic particular matter in forms and concentrations which may cause pathological changes. It is therefore of great interest to analyze the trace elements present in the respiratory tract and to obtain information on their subcellular distribution, their chemical forms and their biological effects. In studies carried out on rats element analytical methods and radiotracer techniques have been combined with biochemical separation procedures. Subcellular separation of the tissues into nuclear, mitochondrial, microsomal and cytosolic fraction has been achieved by differential ultracentrifugation. Instrumental neutron activation analysis (INAA) has been used to determine the concentration of several trace elements in the whole organ. After separation of the cytosolic proteins by size exclusion chromatography (SEC), inductively coupled plasma mass spectrometry (ICP-MS) has been employed to obtain first information on the trace element-containing proteins present in this compartment. The selenium-containing proteins in cytosolic fractions of the lung and the trachea have been investigated by labeling rats in vivo with ~(75)Se, gel electrophoretic separation of the proteins and autoradiographic detection of the tracer distribution.
机译:微量元素可能具有有益或有害的作用,在研究它们在哺乳动物组织中的作用时必须同时考虑这两个方面。这在呼吸道中金属和准金属的研究中具有特殊的意义。气管和肺的表面连续暴露于气体和大气中存在的特定物质。由于这些污染物中的许多是强氧化剂,因此这些组织需要特定的抗氧化剂防御系统。已知几种具有抗氧化功能的酶含有金属或准金属作为其活性中心的基本成分,并且可能还存在一些保护性的微量元素,而这些蛋白质没有尚未确定。但是,金属和准金属也可能从气溶胶特殊物质中意外掺入,其形式和浓度可能引起病理变化。因此,非常感兴趣的是分析呼吸道中存在的微量元素并获得有关其亚细胞分布,其化学形式及其生物学效应的信息。在对大鼠进行的研究中,元素分析方法和放射性示踪剂技术已与生化分离程序相结合。通过差速超速离心已将组织亚细胞分离成核,线粒体,微粒体和胞质部分。仪器中子活化分析(INAA)已用于确定整个器官中几种微量元素的浓度。在通过尺寸排阻色谱法(SEC)分离了胞质蛋白之后,采用电感耦合等离子体质谱(ICP-MS)获得有关该隔室中含有微量元素的蛋白质的第一信息。通过在体内用〜(75)Se标记大鼠,凝胶电泳分离蛋白质并通过放射自显影检测示踪剂分布,研究了肺和气管胞质部分中的含硒蛋白质。

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