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Pharmacy Faculty Articles and Research

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Articles 31 - 32 of 32

Full-Text Articles in Nanomedicine

Attenuation Of Corneal Myofibroblast Development Through Nanoparticle-Mediated Soluble Transforming Growth Factor-Β Type Ii Receptor (Stgfβrii) Gene Transfer, Ajay Sharma, Jason T. Rodier, Ashish Tandon, Alexander M. Klibanov, Rajiv R. Mohan Jan 2012

Attenuation Of Corneal Myofibroblast Development Through Nanoparticle-Mediated Soluble Transforming Growth Factor-Β Type Ii Receptor (Stgfβrii) Gene Transfer, Ajay Sharma, Jason T. Rodier, Ashish Tandon, Alexander M. Klibanov, Rajiv R. Mohan

Pharmacy Faculty Articles and Research

Purpose: To explore (i) the potential of polyethylenimine (PEI)-DNA nanoparticles as a vector for delivering genes into human corneal fibroblasts, and (ii) whether the nanoparticle-mediated soluble extracellular domain of the transforming growth factor–β type II receptor (sTGFβRII) gene therapy could be used to reduce myofibroblasts and fibrosis in the cornea using an in vitro model.

Methods: PEI-DNA nanoparticles were prepared at a nitrogen-to-phosphate ratio of 30 by mixing linear PEI and a plasmid encoding sTGFβRII conjugated to the fragment crystallizable (Fc) portion of human immunoglobulin. The PEI-DNA polyplex formation was confirmed through gel retardation assay. Human corneal fibroblasts (HCFs) were …


Nanotechnology In Dental Sciences: Moving Towards A Finer Way Of Doing Dentistry, Vuk Uskoković, Luiz Eduardo Bertassoni Jan 2010

Nanotechnology In Dental Sciences: Moving Towards A Finer Way Of Doing Dentistry, Vuk Uskoković, Luiz Eduardo Bertassoni

Pharmacy Faculty Articles and Research

Nanotechnologies are predicted to revolutionize: (a) the control over materials properties at ultrafine scales; and (b) the sensitivity of tools and devices applied in various scientific and technological fields. In this short review, we argue that dentistry will be no exception to this trend. Here, we present a dynamic view of dental tissues, an adoption of which may lead to finer, more effective and minimally invasive reparation approaches. By doing so, we aim at providing insights into some of the breakthroughs relevant to understanding the genesis of dental tissues at the nanostructural level or generating dental materials with nanoscale critical …