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- W1993834178 abstract "BACKGROUND The physical and chemical properties that control the clinical persistence of temporary dermal fillers are not well understood. Discovering the relationship between the clinical performance and physical properties of temporary fillers may stimulate the design of future, high-performance fillers. OBJECTIVE Described here is the rheology of polysaccharide dermal fillers composed of cross-linked hyaluronic acid (XLHA) or un-cross-linked sodium carboxymethylcellulose (CMC) and polyethylene oxide (PEO). Using measured rheology data and published clinical study data, we have developed a predictive model for the persistence of polysaccharide-containing dermal fillers. METHODS AND MATERIALS The XLHA dermal fillers were obtained from commercial sources. The CMC/PEO dermal filler formulation was prepared in house. The rheologic properties of the polysaccharide fillers were measured and related to comparative clinical persistence data available from controlled clinical studies. RESULTS The clinical persistence of the polysaccharide dermal fillers correlates linearly with the concentration of polymer in the formulation divided by the tan δ (G″/G′). SUMMARY The work described here has shown that a model relating the concentration of the polysaccharide and the tan δ of the formulation can predict the comparative clinical persistence of XLHA and CMC/PEO dermal fillers. Both authors are employees of FzioMed, which supported this study." @default.
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- W1993834178 date "2009-08-01" @default.
- W1993834178 modified "2023-09-24" @default.
- W1993834178 title "Temporary Polysaccharide Dermal Fillers: A Model for Persistence Based on Physical Properties" @default.
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- W1993834178 doi "https://doi.org/10.1111/j.1524-4725.2009.01218.x" @default.
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