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Self-assembled miRNA-switch nanoparticles target denuded regions and prevent restenosis.
Lockhart, John H; VanWye, Jeffrey; Banerjee, Richa; Wickline, Samuel A; Pan, Hua; Totary-Jain, Hana.
Afiliação
  • Lockhart JH; Department of Molecular Pharmacology and Physiology, University of South Florida, 12901 Bruce B. Downs Blvd., MDC08-2170, Tampa, FL 33612, USA; USF Heart Institute, University of South Florida, 560 Channelside Dr., Tampa, FL 33602, USA.
  • VanWye J; Department of Molecular Pharmacology and Physiology, University of South Florida, 12901 Bruce B. Downs Blvd., MDC08-2170, Tampa, FL 33612, USA; USF Heart Institute, University of South Florida, 560 Channelside Dr., Tampa, FL 33602, USA.
  • Banerjee R; Department of Molecular Pharmacology and Physiology, University of South Florida, 12901 Bruce B. Downs Blvd., MDC08-2170, Tampa, FL 33612, USA; USF Heart Institute, University of South Florida, 560 Channelside Dr., Tampa, FL 33602, USA.
  • Wickline SA; Department of Molecular Pharmacology and Physiology, University of South Florida, 12901 Bruce B. Downs Blvd., MDC08-2170, Tampa, FL 33612, USA; USF Heart Institute, University of South Florida, 560 Channelside Dr., Tampa, FL 33602, USA; Division of Cardiology, University of South Florida, 2 Tampa Ge
  • Pan H; USF Heart Institute, University of South Florida, 560 Channelside Dr., Tampa, FL 33602, USA; Division of Cardiology, University of South Florida, 2 Tampa General Circle 3rd Floor, Tampa, FL 33606, USA.
  • Totary-Jain H; Department of Molecular Pharmacology and Physiology, University of South Florida, 12901 Bruce B. Downs Blvd., MDC08-2170, Tampa, FL 33612, USA; USF Heart Institute, University of South Florida, 560 Channelside Dr., Tampa, FL 33602, USA. Electronic address: totaryjainh@usf.edu.
Mol Ther ; 29(5): 1744-1757, 2021 05 05.
Article em En | MEDLINE | ID: mdl-33545360
Cardiovascular disease is the leading cause of death and disability worldwide. Effective delivery of cell-selective therapies that target atherosclerotic plaques and neointimal growth while sparing the endothelium remains the Achilles heel of percutaneous interventions. The current study utilizes synthetic microRNA switch therapy that self-assembles to form a compacted, nuclease-resistant nanoparticle <200 nM in size when mixed with cationic amphipathic cell-penetrating peptide (p5RHH). These nanoparticles possess intrinsic endosomolytic activity that requires endosomal acidification. When administered in a femoral artery wire injury mouse model in vivo, the mRNA-p5RHH nanoparticles deliver their payload specifically to the regions of endothelial denudation and not to the lungs, liver, kidney, or spleen. Moreover, repeated administration of nanoparticles containing a microRNA switch, consisting of synthetically modified mRNA encoding for the cyclin-dependent kinase inhibitor p27Kip1 that contains one complementary target sequence of the endothelial cell-specific miR-126 at its 5' UTR, drastically reduced neointima formation after wire injury and allowed for vessel reendothelialization. This cell-selective nanotherapy is a valuable tool that has the potential to advance the fight against neointimal hyperplasia and atherosclerosis.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: MicroRNAs / Aterosclerose / Inibidor de Quinase Dependente de Ciclina p27 / Artéria Femoral / Peptídeos Penetradores de Células Tipo de estudo: Etiology_studies Limite: Animals Idioma: En Revista: Mol Ther Assunto da revista: BIOLOGIA MOLECULAR / TERAPEUTICA Ano de publicação: 2021 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: MicroRNAs / Aterosclerose / Inibidor de Quinase Dependente de Ciclina p27 / Artéria Femoral / Peptídeos Penetradores de Células Tipo de estudo: Etiology_studies Limite: Animals Idioma: En Revista: Mol Ther Assunto da revista: BIOLOGIA MOLECULAR / TERAPEUTICA Ano de publicação: 2021 Tipo de documento: Article País de afiliação: Estados Unidos