Literature DB >> 16782187

Ectopic bone formation in collagen sponge self-assembled peptide-amphiphile nanofibers hybrid scaffold in a perfusion culture bioreactor.

Hossein Hosseinkhani1, Mohsen Hosseinkhani, Furong Tian, Hisatoshi Kobayashi, Yasuhiko Tabata.   

Abstract

The objective of this study was to enhance ectopic bone formation in a three-dimensional (3-D) hybrid scaffold in combination with bioreactor perfusion culture system. The hybrid scaffold consists of two biomaterials, a hydrogel formed through self-assembly of peptide-amphiphile (PA) with cell suspensions in media, and a collagen sponge reinforced with poly(glycolic acid) (PGA) fiber incorporation. PA was synthesized by standard solid-phase chemistry that ends with the alkylation of the NH2 terminus of the peptide. A 3-D network of nanofibers was formed by mixing cell suspensions in media with dilute aqueous solution of PA. Scanning electron microscopy (SEM) observation revealed the formation of fibrous assemblies with an extremely high aspect ratio and high surface areas. Osteogenic differentiation of mesenchymal stem cells (MSC) in the hybrid scaffold was greatly influenced by the perfusion culture method compared with static culture method. When the osteoinduction activity of hybrid scaffold was studied following the implantation into the back subcutis of rats in terms of histological and biochemical examinations, significantly homogeneous bone formation was histologically observed throughout the hybrid scaffolds when perfusion culture was used compared with static culture method. The level of alkaline phosphatase activity and osteocalcin content at the implanted sites of hybrid scaffolds were significantly high for the perfusion group compared with those in static culture method. We conclude that combination of MSC-seeded hybrid scaffold and the perfusion method was promising to enhance in vitro osteogenic differentiation of MSC and in vivo ectopic bone formation.

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Year:  2006        PMID: 16782187     DOI: 10.1016/j.biomaterials.2006.05.050

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


  14 in total

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2.  In vivo bone regeneration using tubular perfusion system bioreactor cultured nanofibrous scaffolds.

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Review 4.  Supramolecular Peptide Nanofiber Hydrogels for Bone Tissue Engineering: From Multihierarchical Fabrications to Comprehensive Applications.

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5.  Self-assembling peptide amphiphile-based nanofiber gel for bioresponsive cisplatin delivery.

Authors:  Jin-Ki Kim; Joel Anderson; Ho-Wook Jun; Michael A Repka; Seongbong Jo
Journal:  Mol Pharm       Date:  2009 May-Jun       Impact factor: 4.939

6.  The use of amino acid linkers in the conjugation of paclitaxel with hyaluronic acid as drug delivery system: synthesis, self-assembled property, drug release, and in vitro efficiency.

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7.  Osteogenic differentiation of human mesenchymal stem cells directed by extracellular matrix-mimicking ligands in a biomimetic self-assembled peptide amphiphile nanomatrix.

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8.  Gelatinized copper-capillary alginate gel functions as an injectable tissue scaffolding system for stem cell transplants.

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Journal:  J Biomater Sci Polym Ed       Date:  2010-08-09       Impact factor: 3.682

9.  Hepatic tissue engineering using scaffolds: state of the art.

Authors:  Somaieh Kazemnejad
Journal:  Avicenna J Med Biotechnol       Date:  2009-10

10.  Design and fabrication of anatomical bioreactor systems containing alginate scaffolds for cartilage tissue engineering.

Authors:  Anneh Mohammad Gharravi; Mahmoud Orazizadeh; Karim Ansari-Asl; Salem Banoni; Sina Izadi; Mahmoud Hashemitabar
Journal:  Avicenna J Med Biotechnol       Date:  2012-04
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