Literature DB >> 23826767

Multiple internalization pathways of polyelectrolyte multilayer capsules into mammalian cells.

Lena Kastl1, Daniel Sasse, Verena Wulf, Raimo Hartmann, Josif Mircheski, Christiane Ranke, Susana Carregal-Romero, José Antonio Martínez-López, Rafael Fernández-Chacón, Wolfgang J Parak, Hans-Peter Elsasser, Pilar Rivera Gil.   

Abstract

Polyelectrolyte multilayer (PEM) capsules are carrier vehicles with great potential for biomedical applications. With the future aim of designing biocompatible, effective therapeutic delivery systems (e.g., for cancer), the pathway of internalization (uptake and fate) of PEM capsules was investigated. In particular the following experiments were performed: (i) the study of capsule co-localization with established endocytic markers, (ii) switching-off endocytotic pathways with pharmaceutical/chemical inhibitors, and (iii) characterization and quantification of capsule uptake with confocal and electron microscopy. As result, capsules co-localized with lipid rafts and with phagolysosomes, but not with other endocytic vesicles. Chemical interference of endocytosis with chemical blockers indicated that PEM capsules enter the investigated cell lines through a mechanism slightly sensitive to electrostatic interactions, independent of clathrin and caveolae, and strongly dependent on cholesterol-rich domains and organelle acidification. Microscopic characterization of cells during capsule uptake showed the formation of phagocytic cups (vesicles) to engulf the capsules, an increased number of mitochondria, and a final localization in the perinuclear cytoplasma. Combining all these indicators we conclude that PEM capsule internalization in general occurs as a combination of different sequential mechanisms. Initially, an adsorptive mechanism due to strong electrostatic interactions governs the stabilization of the capsules at the cell surface. Membrane ruffling and filopodia extensions are responsible for capsule engulfing through the formation of a phagocytic cup. Co-localization with lipid raft domains activates the cell to initiate a lipid-raft-mediated macropinocytosis. Internalization vesicles are very acidic and co-localize only with phagolysosome markers, excluding caveolin-mediated pathways and indicating that upon phagocytosis the capsules are sorted to heterophagolysosomes.

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Year:  2013        PMID: 23826767     DOI: 10.1021/nn306032k

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  38 in total

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10.  The influence of the size and aspect ratio of anisotropic, porous CaCO3 particles on their uptake by cells.

Authors:  Bogdan Parakhonskiy; Mikhail V Zyuzin; Alexey Yashchenok; Susana Carregal-Romero; Joanna Rejman; Helmuth Möhwald; Wolfgang J Parak; Andre G Skirtach
Journal:  J Nanobiotechnology       Date:  2015-09-04       Impact factor: 10.435

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