Localized Delivery of Dexamethasone from Electrospun Fibers Reduces the Foreign Body Response

Synthetic scaffolds are crucial to applications in regenerative medicine; however, the foreign body response can impede regeneration and may lead to failure of the implant. Herein we report the development of a tissue engineering scaffold that allows attachment and proliferation of regenerating cell...

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Veröffentlicht in:Biomacromolecules 2012-10, Vol.13 (10), p.3031-3038
Hauptverfasser: Vacanti, Nathaniel M, Cheng, Hao, Hill, Paulina S, Guerreiro, João D.T, Dang, Tram T, Ma, Minglin, Watson, Shanée, Hwang, Nathaniel S, Langer, Robert, Anderson, Daniel G
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Sprache:eng
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Zusammenfassung:Synthetic scaffolds are crucial to applications in regenerative medicine; however, the foreign body response can impede regeneration and may lead to failure of the implant. Herein we report the development of a tissue engineering scaffold that allows attachment and proliferation of regenerating cells while reducing the foreign body response by localized delivery of an anti-inflammatory agent. Electrospun fibers composed of poly­(l-lactic) acid (PLLA) and poly­(ε-caprolactone) (PCL) were prepared with and without the steroid anti-inflammatory drug, dexamethasone. Analysis of subcutaneous implants demonstrated that the PLLA fibers encapsulating dexamethasone evoked a less severe inflammatory response than the other fibers examined. They also displayed a controlled release of dexamethasone over a period of time conducive to tissue regeneration and allowed human mesenchymal stem cells to adhere to and proliferate on them in vitro. These observations demonstrate their potential as a building block for tissue engineering scaffolds.
ISSN:1525-7797
1526-4602
DOI:10.1021/bm300520u