Literature DB >> 20138358

Inducing local T cell apoptosis with anti-Fas-functionalized polymeric coatings fabricated via surface-initiated photopolymerizations.

Patrick S Hume1, Kristi S Anseth.   

Abstract

Cell encapsulation has long been investigated as a means to achieve transplant immunoprotection as it creates a physical barrier between allograft tissue and host immune cells. Encapsulation with passive barrier materials alone, however, is generally insufficient to protect donor tissue from rejection, because small cytotoxic molecules produced by activated T cells can diffuse readily into the capsule and mediate allograft death. As a means to provide bioactive protection for polymeric encapsulation devices, we investigated a functionalized polymeric coating that mimics a natural T cell regulation pathway. T cells are regulated in vivo via Fas, a well-known 'death receptor,' whereby effector cells express Fas ligand and elicit T cell apoptosis upon binding the Fas receptor on a T cell surface. Anti-Fas antibodies are capable of replicating this effect and induce T cell apoptosis in solution. Here, an iniferter-based living radical polymerization was utilized to fabricate surface-anchored polymer chains containing poly(ethylene glycol) with covalently incorporated pendant anti-Fas antibody. Using this reaction mechanism, we demonstrate fabrication conditions that yield surface densities in excess of 1.5 ng/cm(2) of incorporated therapeutic, as detected by ELISA. Additionally, we show that coatings containing anti-Fas antibody induced significant T cell apoptosis, 21+/-2% of cells, after 24h. Finally, the incorporation of a T cell adhesion ligand, intracellular adhesion molecule-1, along with anti-Fas antibody, yielded even higher levels of apoptosis, 34+/-1% of T cells, compared to either signal alone. Published by Elsevier Ltd.

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Year:  2010        PMID: 20138358      PMCID: PMC2847433          DOI: 10.1016/j.biomaterials.2010.01.035

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


  37 in total

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9.  Two adjacent trimeric Fas ligands are required for Fas signaling and formation of a death-inducing signaling complex.

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10.  Immune reactions of lymphocytes and macrophages against PEG-grafted pancreatic islets.

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  13 in total

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4.  Cell-cell communication mimicry with poly(ethylene glycol) hydrogels for enhancing beta-cell function.

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5.  Functionalized PEG hydrogels through reactive dip-coating for the formation of immunoactive barriers.

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6.  Localized immune tolerance from FasL-functionalized PLG scaffolds.

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9.  Polymerizable superoxide dismutase mimetic protects cells encapsulated in poly(ethylene glycol) hydrogels from reactive oxygen species-mediated damage.

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10.  Strategies to reduce dendritic cell activation through functional biomaterial design.

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