Literature DB >> 1801512

Electron-spectroscopic imaging--a method for analysing the distribution of light elements in mammalian cells and tissues.

P Köpf-Maier1.   

Abstract

Electron-spectroscopic imaging (ESI) represents a method which is based on electron energy loss spectroscopy (EELS) and renders possible to image the spatial distribution of light and medium-weight elements, i.e. especially of biologically relevant elements. In the present study, the validity of the method for biological problems was investigated by analysing the time-dependent, subcellular distribution of titanium following treatment with the cytostatically active compound titanocene dichloride in the liver, which is known to be the organ where titanium mainly accumulates following therapy with titanocene dichloride, and in 3 xenografted human tumours which are known to be sensitive to the antitumour action of titanocene dichloride. In all cases, it was shown that titanium primarily accumulates in the nuclei of hepatocytes and tumour cells and that it is thereafter incorporated into cytoplasmic lysosomes. Interestingly, phosphorus is always enriched together with titanium. These results give remarkable hints to the cellular mode of action of titanocene dichloride and, moreover, qualify the ESI technique to be a valuable method for investigating the subcellular distribution of endogenously present or exogenously light and medium-weight element.

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Year:  1991        PMID: 1801512     DOI: 10.1016/S0065-1281(11)80288-6

Source DB:  PubMed          Journal:  Acta Histochem        ISSN: 0065-1281            Impact factor:   2.479


  4 in total

Review 1.  A ubiquitous metal, difficult to track: towards an understanding of the regulation of titanium(iv) in humans.

Authors:  Sergio A Loza-Rosas; Manoj Saxena; Yamixa Delgado; Kavita Gaur; Mallesh Pandrala; Arthur D Tinoco
Journal:  Metallomics       Date:  2017-04-19       Impact factor: 4.526

2.  Exploring titanium(IV) chemical proximity to iron(III) to elucidate a function for Ti(IV) in the human body.

Authors:  Manoj Saxena; Sergio A Loza-Rosas; Kavita Gaur; Shweta Sharma; Sofia C Pérez Otero; Arthur D Tinoco
Journal:  Coord Chem Rev       Date:  2018-03-20       Impact factor: 22.315

3.  Iron and Copper Intracellular Chelation as an Anticancer Drug Strategy.

Authors:  Kavita Gaur; Alexandra M Vázquez-Salgado; Geraldo Duran-Camacho; Irivette Dominguez-Martinez; Josué A Benjamín-Rivera; Lauren Fernández-Vega; Lesly Carmona Sarabia; Angelys Cruz García; Felipe Pérez-Deliz; José A Méndez Román; Melissa Vega-Cartagena; Sergio A Loza-Rosas; Xaymara Rodriguez Acevedo; Arthur D Tinoco
Journal:  Inorganics (Basel)       Date:  2018-11-30

4.  Evaluating Ligand Modifications of the Titanocene and Auranofin Moieties for the Development of More Potent Anticancer Drugs.

Authors:  Lauren Fernandez-Vega; Valeria A Ruiz Silva; Tania M Domínguez-González; Sebastián Claudio-Betancourt; Rafael E Toro-Maldonado; Luisa C Capre Maso; Karina Sanabria Ortiz; Jean A Pérez-Verdejo; Janeishly Román González; Grecia T Rosado-Fraticelli; Fabiola Pagán Meléndez; Fabiola M Betancourt Santiago; Daniel A Rivera-Rivera; Carlos Martínez Navarro; Andrea C Bruno Chardón; Axel O Vera; Arthur D Tinoco
Journal:  Inorganics (Basel)       Date:  2020-01-26
  4 in total

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