- Exploring the human mesenchymal stem cell tubule communication network through electron microscopy.
Exploring the human mesenchymal stem cell tubule communication network through electron microscopy.
Ultrastructural pathology (2014-10-01)
Sabrina Valente, Roberta Rossi, Leonardo Resta, Gianandrea Pasquinelli
PMID25268461
ZUSAMMENFASSUNG
Cells use several mechanisms to transfer information to other cells. In this study, we describe micro/nanotubular connections and exosome-like tubule fragments in multipotent mesenchymal stem cells (MSCs) from human arteries. Scanning and transmission electron microscopy allowed characterization of sinusoidal microtubular projections (700 nm average size, 200 µm average length, with bulging mitochondria and actin microfilaments); short, uniform, variously shaped nanotubular projections (100 nm, bidirectional communication); and tubule fragments (50 nm). This is the first study demonstrating that MSCs from human arteries constitutively interact through an articulate and dynamic tubule network allowing long-range cell to cell communication.
MATERIALIEN
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Marke
Produktbeschreibung
Sigma-Aldrich
Aktivkohle-Norit®, Norit® GAC 1240W, from coal, for potable water processing, steam activated, granular
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Kohlenstoff-Nanofasern, graphitized, platelets(conical), >98% carbon basis, D × L 100 nm × 20-200 μm
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Ethanol, purum, fine spirit, denaturated with 4.8% methanol, F25 METHYL1, ~96% (based on denaturant-free substance)
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Kohlenstoff-Nanofasern, pyrolitically stripped, platelets(conical), >98% carbon basis, D × L 100 nm × 20-200 μm
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Kohlenstoff, mesoporös, nanopowder, less than 500 ppm Al, Ti, Fe, Ni, Cu, and Zn combined
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Aktivkohle-Norit®, Norit® SX2, powder, from peat, multi-purpose activated charcoal, steam activated and acid washed
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Kohlenstoff, mesoporös, nanopowder, graphitized, less than 250 ppm Al, Ti, Fe, Ni, Cu, and Zn combined
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Ethanol, BioUltra, for molecular biology, ≥99.8%, (absolute alcohol, without additive, A15 o1)
Carbon - Vitreous, rod, 100mm, diameter 5.0mm, glassy carbon
Carbon - Vitreous, foam, 150x150mm, thickness 2.5mm, bulk density 0.05g/cm3, porosity 96.5%