Literature DB >> 27031811

ECM hydrogel for the treatment of stroke: Characterization of the host cell infiltrate.

Harmanvir Ghuman1, Andre R Massensini2, Julia Donnelly3, Sung-Min Kim4, Christopher J Medberry1, Stephen F Badylak5, Michel Modo6.   

Abstract

Brain tissue loss following stroke is irreversible with current treatment modalities. The use of an acellular extracellular matrix (ECM), formulated to produce a hydrogel in situ within the cavity formed by a stroke, was investigated as a method to replace necrotic debris and promote the infiltration of host brain cells. Based on magnetic resonance imaging measurements of lesion location and volume, different concentrations of ECM (0, 1, 2, 3, 4, 8 mg/mL) were injected at a volume equal to that of the cavity (14 days post-stroke). Retention of ECM within the cavity occurred at concentrations >3 mg/mL. A significant cell infiltration into the ECM material in the lesion cavity occurred with an average of ∼36,000 cells in the 8 mg/mL concentration within 24 h. An infiltration of cells with distances of >1500 μm into the ECM hydrogel was observed, but the majority of cells were at the tissue/hydrogel boundary. Cells were typically of a microglia, macrophage, or neural and oligodendrocyte progenitor phenotype. At the 8 mg/mL concentration, ∼60% of infiltrating cells were brain-derived phenotypes and 30% being infiltrating peripheral macrophages, polarizing toward an M2-like anti-inflammatory phenotype. These results suggest that an 8 mg/mL ECM concentration promotes a significant acute endogenous repair response that could potentially be exploited to treat stroke.
Copyright © 2016 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Biomaterial; Brain; Delivery; Extracellular matrix; Hydrogel; Injection; Macrophage; Magnetic resonance imaging; Neural progenitor; Phenotypes; Stereotactic; Stroke

Mesh:

Substances:

Year:  2016        PMID: 27031811      PMCID: PMC4893791          DOI: 10.1016/j.biomaterials.2016.03.014

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   15.304


  61 in total

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4.  Cavitation after acute symptomatic lacunar stroke depends on time, location, and MRI sequence.

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Journal:  Stroke       Date:  2012-07       Impact factor: 7.914

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7.  The future of restorative neurosciences in stroke: driving the translational research pipeline from basic science to rehabilitation of people after stroke.

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  43 in total

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

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6.  Biomaterials-based In Situ Tissue Engineering.

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7.  Quantification of the Extracellular Matrix Molecule Thrombospondin 1 and Its Pericellular Association in the Brain Using a Semiautomated Computerized Approach.

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Review 8.  Hydrogel Scaffolds: Towards Restitution of Ischemic Stroke-Injured Brain.

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