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A novel CX3CR1 antagonist eluting stent reduces stenosis by targeting inflammation.
Ali, Mohammed T; Martin, Kenneth; Kumar, Arun H S; Cavallin, Erika; Pierrou, Stefan; Gleeson, Birgitta M; McPheat, William L; Turner, Elizebeth C; Huang, Chien-Ling; Khider, Wisam; Vaughan, Carl; Caplice, Noel M.
Afiliação
  • Ali MT; Centre for Research in Vascular Biology (CRVB), Biosciences Institute, University College Cork, Cork, Ireland.
  • Martin K; Centre for Research in Vascular Biology (CRVB), Biosciences Institute, University College Cork, Cork, Ireland.
  • Kumar AH; Centre for Research in Vascular Biology (CRVB), Biosciences Institute, University College Cork, Cork, Ireland.
  • Cavallin E; Translational Sciences, iMED CVMD, AstraZeneca R&D Mölndal, Sweden.
  • Pierrou S; Bioscience Department, CVGI, AstraZeneca R&D Mölndal, Pepparedsleden 1, SE-431 83 Mölndal, Sweden.
  • Gleeson BM; Centre for Research in Vascular Biology (CRVB), Biosciences Institute, University College Cork, Cork, Ireland.
  • McPheat WL; Translational Sciences, iMED CVMD, AstraZeneca R&D Mölndal, Sweden.
  • Turner EC; Centre for Research in Vascular Biology (CRVB), Biosciences Institute, University College Cork, Cork, Ireland.
  • Huang CL; Centre for Research in Vascular Biology (CRVB), Biosciences Institute, University College Cork, Cork, Ireland.
  • Khider W; Centre for Research in Vascular Biology (CRVB), Biosciences Institute, University College Cork, Cork, Ireland.
  • Vaughan C; Mercy University Hospital, Cork, Ireland.
  • Caplice NM; Centre for Research in Vascular Biology (CRVB), Biosciences Institute, University College Cork, Cork, Ireland. Electronic address: n.caplice@ucc.ie.
Biomaterials ; 69: 22-9, 2015 Nov.
Article em En | MEDLINE | ID: mdl-26275859
We evaluated the therapeutic efficacy of a novel drug eluting stent (DES) inhibiting inflammation and smooth muscle cell (SMC) proliferation. We identified CX3CR1 as a targetable receptor for prevention of monocyte adhesion and inflammation and in-stent neointimal hyperplasia without interfering with stent re-endothelization. Efficacy of AZ12201182 (AZ1220), a CX3CR1 antagonist was evaluated in inhibition of monocyte attachment in vitro. A prototype AZ1220 eluting PLGA-based polymer coated stent developed with an optimal elution profile and dose of 1 µM/stent was tested over 4 weeks in a porcine model of coronary artery stenting. Polymer coated stents without AZ1220 and bare metal stents were used as controls. AZ1220 inhibited monocyte attachment to CX3CL1 in a dose dependent manner. AZ1220 eluted from polymer coated stents in an ex vivo flow system retained bioactivity in inhibiting monocyte attachment to CX3CL1. At 4 weeks following deployment, AZ1220 eluting stents significantly reduced (∼60%) in-stent stenosis compared to both bare metal and polymer only coated stents and markedly reduced peri-stent inflammation and monocyte/macrophage accumulation without affecting re-endothelization. Anti-CX3CR1 drug eluting stents potently inhibited in-stent stenosis and may offer an alternative to mTOR targeting by current DES, specifically inhibiting polymer-induced inflammatory response and SMC proliferation, while retaining an equivalent re-endothelization response to bare metal stents.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Vasos Coronários / Receptores de Quimiocinas / Estenose Coronária / Stents Farmacológicos / Inflamação / Anti-Inflamatórios Tipo de estudo: Etiology_studies Limite: Animals Idioma: En Revista: Biomaterials Ano de publicação: 2015 Tipo de documento: Article País de afiliação: Irlanda País de publicação: Holanda

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Vasos Coronários / Receptores de Quimiocinas / Estenose Coronária / Stents Farmacológicos / Inflamação / Anti-Inflamatórios Tipo de estudo: Etiology_studies Limite: Animals Idioma: En Revista: Biomaterials Ano de publicação: 2015 Tipo de documento: Article País de afiliação: Irlanda País de publicação: Holanda