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铟(In)在肠黏膜、肝脏、肾脏和睾丸中行为的显微镜检查与微量分析研究。

Microscopy and microanalysis study of the indium (In) behavior in the intestinal mucosa, the liver, the kidney and the testicle.

作者信息

Maghraoui Samira, Ayadi Ahlem, Ben Ammar Aouatef, Jaafoura Mohamed-Habib, El Hili Ali, Galle Pierre, Tekaya Leila

机构信息

Laboratoire de Physiologie, Faculté de Médecine de Tunis (Université de Tunis El Manar), 15, Rue Djebel Lakhdar, La Rabta 1007, Tunis, Tunisia.

出版信息

J Electron Microsc (Tokyo). 2011;60(2):183-90. doi: 10.1093/jmicro/dfr009.

Abstract

Several studies have demonstrated that In used in medicine has several impacts on organs like spleen and lungs after its systemic administration. In the present study, ultrastructural and microanalytical methods were used to investigate the impact of the presence of this element in the intestinal mucosa, the liver, the kidney and the testicle after its administration in two ways. After intraperitoneal administration, In was selectively concentrated in the lysosomes of hepatocytes, of tubular proximal convoluted cells and of Sertoli and Leydig cells. After intragastric administration, ultrastructural study showed that this element was concentrated in the lysosomes of duodenal enterocytes. Microanalytical methods showed that In was precipitated in those organelles in the form of insoluble phosphate salts. Similarly to other studies, it seemed that since In is a foreign element for the organism, it was precipitated in lysosomes, very probably due to the activity of an intralysosomal enzyme the acid phosphatase, to avoid its invasion to organism via the blood. This mechanism of precipitation of the mineral elements is of great interest in the process of defensive reaction of the organism against intoxication by foreign elements.

摘要

多项研究表明,医学中使用的铟在全身给药后会对脾脏和肺部等器官产生多种影响。在本研究中,采用超微结构和微量分析方法,以两种方式给药后,研究该元素在肠黏膜、肝脏、肾脏和睾丸中的存在所产生的影响。腹腔注射后,铟选择性地集中在肝细胞、近端肾小管曲管细胞以及支持细胞和间质细胞的溶酶体中。胃内给药后,超微结构研究表明该元素集中在十二指肠肠细胞的溶酶体中。微量分析方法表明,铟以不溶性磷酸盐的形式沉淀在这些细胞器中。与其他研究类似,由于铟对生物体来说是一种外来元素,它似乎在溶酶体中沉淀,很可能是由于溶酶体内一种酸性磷酸酶的活性,以避免其通过血液侵入生物体。这种矿物元素的沉淀机制在生物体对外来元素中毒的防御反应过程中具有重要意义。

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