Literature DB >> 27645115

Hyaluronic acid-laminin hydrogels increase neural stem cell transplant retention and migratory response to SDF-1α.

C P Addington1, S Dharmawaj2, J M Heffernan3, R W Sirianni3, S E Stabenfeldt4.   

Abstract

The chemokine SDF-1α plays a critical role in mediating stem cell response to injury and disease and has specifically been shown to mobilize neural progenitor/stem cells (NPSCs) towards sites of neural injury. Current neural transplant paradigms within the brain suffer from low rates of retention and engraftment after injury. Therefore, increasing transplant sensitivity to injury-induced SDF-1α represents a method for increasing neural transplant efficacy. Previously, we have reported on a hyaluronic acid-laminin based hydrogel (HA-Lm gel) that increases NPSC expression of SDF-1α receptor, CXCR4, and subsequently, NPSC chemotactic migration towards a source of SDF-1α in vitro. The study presented here investigates the capacity of the HA-Lm gel to promote NPSC response to exogenous SDF-1α in vivo. We observed the HA-Lm gel to significantly increase NPSC transplant retention and migration in response to SDF-1α in a manner critically dependent on signaling via the SDF-1α-CXCR4 axis. This work lays the foundation for development of a more effective cell therapy for neural injury, but also has broader implications in the fields of tissue engineering and regenerative medicine given the essential roles of SDF-1α across injury and disease states.
Copyright © 2016 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Biomaterials; CXCL12; Chemotaxis; Neural progenitor cells; Regenerative medicine; Tissue engineering

Mesh:

Substances:

Year:  2016        PMID: 27645115      PMCID: PMC5357205          DOI: 10.1016/j.matbio.2016.09.007

Source DB:  PubMed          Journal:  Matrix Biol        ISSN: 0945-053X            Impact factor:   11.583


  49 in total

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4.  Establishing embryonic mouse neural stem cell culture using the neurosphere assay.

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Review 1.  Distinct roles for hyaluronan in neural stem cell niches and perineuronal nets.

Authors:  Weiping Su; Steven Matsumoto; Barbara Sorg; Larry S Sherman
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2.  Enzymatically crosslinked gelatin-laminin hydrogels for applications in neuromuscular tissue engineering.

Authors:  Rachel R Besser; Annie C Bowles; Ahmad Alassaf; Daniel Carbonero; Isabella Claure; Ellery Jones; Joseph Reda; Laura Wubker; Wyndham Batchelor; Noël Ziebarth; Risset Silvera; Aisha Khan; Renata Maciel; Mario Saporta; Ashutosh Agarwal
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3.  Bone marrow laminins influence hematopoietic stem and progenitor cell cycling and homing to the bone marrow.

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Review 4.  Using biomaterials to modulate chemotactic signaling for central nervous system repair.

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5.  Engineering hydrogels with affinity-bound laminin as 3D neural stem cell culture systems.

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Review 8.  Hyaluronic Acid Biomaterials for Central Nervous System Regenerative Medicine.

Authors:  Gregory Jensen; Julianne L Holloway; Sarah E Stabenfeldt
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9.  Neuroregeneration and functional recovery after stroke: advancing neural stem cell therapy toward clinical application.

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10.  Neuronal Differentiation from Induced Pluripotent Stem Cell-Derived Neurospheres by the Application of Oxidized Alginate-Gelatin-Laminin Hydrogels.

Authors:  Thomas Distler; Ines Lauria; Rainer Detsch; Clemens M Sauter; Farina Bendt; Julia Kapr; Stephan Rütten; Aldo R Boccaccini; Ellen Fritsche
Journal:  Biomedicines       Date:  2021-03-05
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