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:: Volume 6, Issue 6 (1-2012) ::
3 2012, 6(6): 0-0 Back to browse issues page
Nano-Sized Calcium Phosphate Particles for Periodontal Gene Therapy
Satheesh Elangovan * , Shardool Jain , Pei-Chin Tsai , Henry C. Margolis , Mansoor Amiji
Department of Periodontics, The University of Iowa College of Dentistry, Iowa City, IA
Abstract:   (1655 Views)

 Background: Growth factors such as platelet-derived growth factor (PDGF) have significantly enhanced periodontal therapy outcomes with a high degree of variability, mostly due to the lack of continual supply for a required period of time. One method to overcome this barrier is gene therapy. The aim of this in vitro study is to evaluate PDGF-B gene delivery in fibroblasts using nano-sized calcium phosphate particles (NCaPP) as vectors.

 Methods: NCaPP incorporating green fluorescent protein (NCaPP-GFP) and PDGF-B (NCaPP-PDGF-B) plasmids were synthesized using an established precipitation system and characterized using transmission electron microscopy and 1.2% agarose gel electrophoresis. Biocompatibility and transfection of the nanoplexes in fibroblasts were evaluated using cytotoxicity assay and florescence microscopy, respectively. Polymerase chain reaction and enzyme-linked immunosorbent assay were performed to evaluate PDGF-B transfection after different time points of treatments, and the functionality of PDGF-B transfection was evaluated using the cell proliferation assay.

 Results: Synthesized NCaPP nanoplexes incorporating the genes of GFP and PDGF-B were spherical in shape and measured about 30 to 50 nm in diameter. Gel electrophoresis confirmed DNA incorporation and stability within the nanoplexes, and 3-(4,5-dimethylthiazol-2-yl)-5-(3-carboxymethoxyphenyl)-2-(4-sulfophenyl)-2H-tetrazolium reagent assay demonstrated their biocompatibility in fibroblasts. In vitro transfection studies revealed a higher and longer lasting transfection after NCaPP-PDGF-B treatment, which lasted up to 96 hours. Significantly enhanced fibroblast proliferation observed in NCaPP-PDGF-B–treated cells confirmed the functionality of these nanoplexes.

 Conclusion: NCaPP demonstrated higher levels of biocompatibility and efficiently transfected PDGF plasmids into fibroblasts under described in vitro conditions.


 Source: Journal of Periodentology

 Full Text

Keywords: Biocompatible materials, gene therapy, guided tissue regeneration
     
Type of Study: Research | Subject: Periodontology
Received: 2013/07/9 | Published: 2012/01/15
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Elangovan S, Jain S, Tsai P, C. Margolis H, Amiji M. Nano-Sized Calcium Phosphate Particles for Periodontal Gene Therapy. 3 2012; 6 (6)
URL: http://idai.ir/article-1-1263-en.html


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Volume 6, Issue 6 (1-2012) Back to browse issues page
جامعه اسلامی دندانپزشکان Islamic Dental Association of IRAN

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