Literature DB >> 24004192

Effects of biologic scaffolds on human stem cells and implications for CNS tissue engineering.

Peter M Crapo1, Stephen Tottey, Peter F Slivka, Stephen F Badylak.   

Abstract

Biologic scaffolds composed of mammalian extracellular matrix (ECM) promote constructive remodeling of tissues via mechanisms that include the recruitment of endogenous stem/progenitor cells, modulation of the host innate immune response, and influence of cell fate differentiation. Such scaffold materials are typically prepared by decellularization of source tissues and are prepared as sheets, powder, or hydrogels. It is plausible that ECM derived from an anatomically distinct tissue would have unique or specific effects on cells that naturally reside in this same tissue. The present study investigated the in vitro effect of a soluble form of ECM derived from central nervous system (CNS) tissue, specifically the spinal cord or brain, versus ECM derived from a non-CNS tissue; specifically, the urinary bladder on the behavior of neural stem cells (NSCs) and perivascular stem cells. All forms of ECM induce positive, mitogenic, and chemotactic effects at concentrations of approximately 100 μg/mL without affecting stem cell viability. CNS-derived ECMs also showed the ability to differentiate NSCs into neurons as indicted by βIII-tubulin expression in two-dimensional culture and neurite extension on the millimeter scale after 24 days of three-dimensional cultures in an ECM hydrogel. These results suggest that solubilized forms of ECM scaffold materials may facilitate the postinjury healing response in CNS tissues.

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Year:  2013        PMID: 24004192      PMCID: PMC3875189          DOI: 10.1089/ten.TEA.2013.0186

Source DB:  PubMed          Journal:  Tissue Eng Part A        ISSN: 1937-3341            Impact factor:   3.845


  62 in total

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4.  Implantation site and lesion topology determine efficacy of a human neural stem cell line in a rat model of chronic stroke.

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9.  Fetal and adult human oligodendrocyte progenitor cell isolates myelinate the congenitally dysmyelinated brain.

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  28 in total

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Review 3.  Extracellular matrix hydrogels from decellularized tissues: Structure and function.

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Journal:  Acta Biomater       Date:  2016-12-01       Impact factor: 8.947

4.  Long-term retention of ECM hydrogel after implantation into a sub-acute stroke cavity reduces lesion volume.

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Journal:  Acta Biomater       Date:  2017-09-13       Impact factor: 8.947

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6.  Role of Region-Specific Brain Decellularized Extracellular Matrix on In Vitro Neuronal Maturation.

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7.  Injectable Extracellular Matrix Hydrogels as Scaffolds for Spinal Cord Injury Repair.

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8.  Fabrication and characterization of thiol-triacrylate polymer via Michael addition reaction for biomedical applications.

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Review 9.  The Potential of Stem Cells in Treatment of Traumatic Brain Injury.

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Review 10.  Organs-on-chips: into the next decade.

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