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  1. Article: Cell Connections by Tunneling Nanotubes: Effects of Mitochondrial Trafficking on Target Cell Metabolism, Homeostasis, and Response to Therapy.

    Vignais, Marie-Luce / Caicedo, Andrés / Brondello, Jean-Marc / Jorgensen, Christian

    Stem cells international

    2017  Volume 2017, Page(s) 6917941

    Abstract: ... of intense scrutiny due to their capacity to form TNTs and transfer mitochondria to target cells ... either in normal physiological or in pathological conditions, leading to changes in cell energy metabolism and ... to the tumor microenvironment also play an important role in tumor progression and resistance to therapy. MSCs are now the focus ...

    Abstract Intercellular communications play a major role in tissue homeostasis and responses to external cues. Novel structures for this communication have recently been described. These tunneling nanotubes (TNTs) consist of thin-extended membrane protrusions that connect cells together. TNTs allow the cell-to-cell transfer of various cellular components, including proteins, RNAs, viruses, and organelles, such as mitochondria. Mesenchymal stem cells (MSCs) are both naturally present and recruited to many different tissues where their interaction with resident cells via secreted factors has been largely documented. Their immunosuppressive and repairing capacities constitute the basis for many current clinical trials. MSCs recruited to the tumor microenvironment also play an important role in tumor progression and resistance to therapy. MSCs are now the focus of intense scrutiny due to their capacity to form TNTs and transfer mitochondria to target cells, either in normal physiological or in pathological conditions, leading to changes in cell energy metabolism and functions, as described in this review.
    Language English
    Publishing date 2017-06-04
    Publishing country United States
    Document type Journal Article ; Review
    ZDB-ID 2573856-2
    ISSN 1687-9678 ; 1687-966X
    ISSN (online) 1687-9678
    ISSN 1687-966X
    DOI 10.1155/2017/6917941
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  2. Article ; Online: Cell Connections by Tunneling Nanotubes

    Marie-Luce Vignais / Andrés Caicedo / Jean-Marc Brondello / Christian Jorgensen

    Stem Cells International, Vol

    Effects of Mitochondrial Trafficking on Target Cell Metabolism, Homeostasis, and Response to Therapy

    2017  Volume 2017

    Abstract: ... of intense scrutiny due to their capacity to form TNTs and transfer mitochondria to target cells ... either in normal physiological or in pathological conditions, leading to changes in cell energy metabolism and ... to the tumor microenvironment also play an important role in tumor progression and resistance to therapy. MSCs are now the focus ...

    Abstract Intercellular communications play a major role in tissue homeostasis and responses to external cues. Novel structures for this communication have recently been described. These tunneling nanotubes (TNTs) consist of thin-extended membrane protrusions that connect cells together. TNTs allow the cell-to-cell transfer of various cellular components, including proteins, RNAs, viruses, and organelles, such as mitochondria. Mesenchymal stem cells (MSCs) are both naturally present and recruited to many different tissues where their interaction with resident cells via secreted factors has been largely documented. Their immunosuppressive and repairing capacities constitute the basis for many current clinical trials. MSCs recruited to the tumor microenvironment also play an important role in tumor progression and resistance to therapy. MSCs are now the focus of intense scrutiny due to their capacity to form TNTs and transfer mitochondria to target cells, either in normal physiological or in pathological conditions, leading to changes in cell energy metabolism and functions, as described in this review.
    Keywords Internal medicine ; RC31-1245
    Subject code 610
    Language English
    Publishing date 2017-01-01T00:00:00Z
    Publisher Hindawi Limited
    Document type Article ; Online
    Database BASE - Bielefeld Academic Search Engine (life sciences selection)

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