Literature DB >> 19634132

Towards ideal magnetofluorescent nanoparticles for bimodal detection of breast-cancer cells.

Fabio Corsi1, Clara De Palma, Miriam Colombo, Raffaele Allevi, Manuela Nebuloni, Silvia Ronchi, Giuseppina Rizzi, Antonella Tosoni, Emilio Trabucchi, Emilio Clementi, Davide Prosperi.   

Abstract

An increasing number of novel molecular markers based on nanomaterials for tumor diagnostics have been developed in recent years. Many efforts have focused on the achievement of site-targeted bioconjugated nanoparticles. In contrast, the mechanisms of toxicity, endocytosis, and degradation pathways are still poorly understood, despite their primary importance for clinical translation. In this study, three different model nanoscale magnetofluorescent particle systems (MFNs) are designed and fabricated. These nanoparticles are evaluated in terms of size, morphology, zeta potential, fluorescence efficiency, capability of enhancing T(2) relaxivity of water protons, and stability. Accordingly, two are developed and the mechanism of internalization, the intracellular fate, and the toxicity in MCF-7 adenocarcinoma cells are studied. Besides the well-documented size effect, the anionic charge seems to be a crucial factor for particle internalization, as MFN penetration through the cell membrane could be modulated by surface charge. Ultrastructural analysis of transmission electron micrographs combined with evidence from confocal microscopy reveals that MFNs are internalized by clathrin-mediated endocytosis and macropinocytosis. Moreover, MFNs are found in EEA1-positive endosomes and in lysosomes, indicating that they follow a physiological pathway of endocytosis. Magnetorelaxometric analysis demonstrates that MFNs enable the detection of 5 x 10(5) cells mL(-1) after treatment with particle dosages as low as 30 microg mL(-1). Hence, MFNs appear to be a valuable and safe bimodal contrast agent that can be developed for the noninvasive diagnosis of breast cancer.

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Year:  2009        PMID: 19634132     DOI: 10.1002/smll.200900881

Source DB:  PubMed          Journal:  Small        ISSN: 1613-6810            Impact factor:   13.281


  10 in total

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Review 3.  The pervasiveness of macropinocytosis in oncological malignancies.

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Review 4.  Magnetic nanoparticles for cancer diagnosis and therapy.

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7.  Dynamic proteomic overview of glioblastoma cells (A172) exposed to perillyl alcohol.

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8.  Role of surface charge and oxidative stress in cytotoxicity of organic monolayer-coated silicon nanoparticles towards macrophage NR8383 cells.

Authors:  Sourav Bhattacharjee; Laura H J de Haan; Nynke M Evers; Xue Jiang; Antonius T M Marcelis; Han Zuilhof; Ivonne M C M Rietjens; Gerrit M Alink
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Review 9.  Silica micro/nanospheres for theranostics: from bimodal MRI and fluorescent imaging probes to cancer therapy.

Authors:  Shanka Walia; Amitabha Acharya
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10.  Intracellular distribution of nontargeted quantum dots after natural uptake and microinjection.

Authors:  Leona Damalakiene; Vitalijus Karabanovas; Saulius Bagdonas; Mindaugas Valius; Ricardas Rotomskis
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  10 in total

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