Literature DB >> 22217804

Hydrogel delivery of erythropoietin to the brain for endogenous stem cell stimulation after stroke injury.

Yuanfei Wang1, Michael J Cooke, Cindi M Morshead, Molly S Shoichet.   

Abstract

Drug delivery to the brain is challenging because systemic delivery requires high doses to achieve diffusion across the blood-brain barrier and often results in systemic toxicity. Intracerebroventricular implantation of a minipump/catheter system provides local delivery, yet results in brain tissue damage and can be prone to infection. An alternate local delivery strategy, epi-cortical delivery, releases the biomolecule directly to the brain while causing minimal tissue disruption. We pursued this strategy with a hyaluronan/methyl cellulose (HAMC) hydrogel for the local release of erythropoietin to induce endogenous neural stem and progenitor cells of the subventricular zone to promote repair after stroke injury in the mouse brain. Erythropoeitin promotes neurogenesis when delivered intraventricularly, thereby making it an ideal biomolecule with which to test this new epi-cortical delivery strategy. We investigated HAMC in terms of the host tissue response and the diffusion of erythropoeitin therefrom in the stroke-injured brain for neural repair. Erythropoietin delivered from HAMC at 4 and 11 days post-stroke resulted in attenuated inflammatory response, reduced stroke cavity size, increased number of both neurons in the peri-infarct region and migratory neuroblasts in the subventricular zone, and decreased apoptosis in both the subventricular zone and the injured cortex. We demonstrate that HAMC-mediated epi-cortical administration is promising for minimally invasive delivery of erythropoeitin to the brain.
Copyright © 2011 Elsevier Ltd. All rights reserved.

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Year:  2012        PMID: 22217804     DOI: 10.1016/j.biomaterials.2011.12.031

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  34 in total

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Authors:  Tarek H Mouhieddine; Muhieddine M Itani; Amaly Nokkari; Changhong Ren; Georges Daoud; Asad Zeidan; Stefania Mondello; Firas H Kobeissy
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Review 2.  Regenerative therapies for central nervous system diseases: a biomaterials approach.

Authors:  Roger Y Tam; Tobias Fuehrmann; Nikolaos Mitrousis; Molly S Shoichet
Journal:  Neuropsychopharmacology       Date:  2013-09-04       Impact factor: 7.853

Review 3.  Approaches for neural tissue regeneration.

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Journal:  Stem Cell Rev Rep       Date:  2014-02       Impact factor: 5.739

Review 4.  Evaluating the safety profile of focused ultrasound and microbubble-mediated treatments to increase blood-brain barrier permeability.

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Journal:  Expert Opin Drug Deliv       Date:  2019-01-29       Impact factor: 6.648

Review 5.  Hydrogels for brain repair after stroke: an emerging treatment option.

Authors:  Lina Ratiba Nih; Stanley Thomas Carmichael; Tatiana Segura
Journal:  Curr Opin Biotechnol       Date:  2016-05-07       Impact factor: 9.740

Review 6.  Role of neural precursor cells in promoting repair following stroke.

Authors:  Pooya Dibajnia; Cindi M Morshead
Journal:  Acta Pharmacol Sin       Date:  2012-10-15       Impact factor: 6.150

Review 7.  Biomaterials for Enhancing CNS Repair.

Authors:  Teck Chuan Lim; Myron Spector
Journal:  Transl Stroke Res       Date:  2016-06-01       Impact factor: 6.829

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

Authors:  Aswathi Gopalakrishnan; Sahadev A Shankarappa; G K Rajanikant
Journal:  Transl Stroke Res       Date:  2018-08-27       Impact factor: 6.829

9.  HYDROGEL-BASED NANOCOMPOSITES OF THERAPEUTIC PROTEINS FOR TISSUE REPAIR.

Authors:  Suwei Zhu; Tatiana Segura
Journal:  Curr Opin Chem Eng       Date:  2014-05-01       Impact factor: 5.163

10.  The ACE2 G8790A Polymorphism: Involvement in Type 2 Diabetes Mellitus Combined with Cerebral Stroke.

Authors:  Yan-Hui Wu; Jia-Ying Li; Chi Wang; Li-Mei Zhang; Hong Qiao
Journal:  J Clin Lab Anal       Date:  2016-08-08       Impact factor: 2.352

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