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Dive into the research topics where Soili Peltonen is active.

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Featured researches published by Soili Peltonen.


European Journal of Pharmaceutical Sciences | 2003

Enhanced film-forming properties for ethyl cellulose and starch acetate using n-alkenyl succinic anhydrides as novel plasticizers

Maarit Tarvainen; Riitta Sutinen; Soili Peltonen; Hannu Mikkonen; Jaana Maunus; Kalle Vähä-Heikkilä; Vesa-Pekka Lehto; Petteri Paronen

PURPOSE The aim of this study was to investigate the ability of n-alkenyl succinic anhydrides (n-ASAs) to improve the film-forming characteristics of a novel coating polymer, potato starch acetate degree of substitution 2.8 (SA). n-ASAs were also applied to improve the otherwise brittle properties of ethyl cellulose (EC) aqueous dispersion (Aquacoat) and EC solvent-based films. METHODS The effectiveness of two n-ASAs, 2-octenyl succinic anhydride (OSA) and 2-dodecen-1-ylsuccinic anhydride were evaluated as plasticizers. Mechanical properties, both water vapor and drug permeabilities, and glass transition temperatures of the cast free films were measured. Triethyl citrate and dibutyl sebacate were used as reference plasticizers. RESULTS The long hydrocarbon chain of n-ASA, with its accessible carbonyl groups, enabled a strong plasticization effect on the tested polymers. Due to the excellent mechanical properties (i.e., a tough film structure with considerable flexibility) and low permeability of the plasticized films, n-ASAs, and especially OSA proved to be an ideal plasticizer particularly for EC based coatings. Also, the EC aqueous dispersion plasticized with n-ASAs resulted in a markedly enhanced coalescence of the colloidal polymer particles, even at low drying temperatures. CONCLUSIONS In applications where a coating with high flexibility is required, n-ASAs can be used as plasticizers at moderately high concentrations (up to 60-70%, w/w) without losing the high tensile strength, excellent toughness and low permeability of EC and SA films.


Carbohydrate Polymers | 2004

Determination of the degree of substitution of acetylated starch by hydrolysis, 1H NMR and TGA/IR

Matti Elomaa; Tomas Asplund; Pasi Soininen; Reino Laatikainen; Soili Peltonen; Sari Hyvärinen; Arto Urtti


Journal of Controlled Release | 2004

Aqueous starch acetate dispersion as a novel coating material for controlled release products

Maarit Tarvainen; Soili Peltonen; Hannu Mikkonen; Minna Elovaara; Minna Tuunainen; Petteri Paronen; Jarkko Ketolainen; Riitta Sutinen


Archive | 1996

Thermoplasticized starch component and process for the preparation thereof

Jukka Seppälä; Minna Malin; Soili Peltonen; Elina Heikkilä; Jani Vuorenpää


Archive | 1997

Hydrophobic polymer dispersion and process for the preparation thereof

Kristiina Haasmaa; Timo Petteri Paronen; Arto Urtti; Soili Peltonen; Maija Elina Heikkilä; Jani Vuorenpää


Journal of Controlled Release | 2004

Starch acetate microparticles for drug delivery into retinal pigment epithelium—in vitro study

Laura Tuovinen; Eija Ruhanen; Tarja Kinnarinen; Seppo Rönkkö; Jukka Pelkonen; Arto Urtti; Soili Peltonen; Kristiina Järvinen


Archive | 2001

Process for the preparation of polymer dispersions

Soili Peltonen; Maija Elina Heikkilä; Hannu Mikkonen; Jouni Hamara


Archive | 1995

Starch acetate composition with modifiable properties, method for preparation and usage thereof

Timo Petteri Paronen; Soili Peltonen; Arto Urtti; Leena Johanna Nakari


Archive | 1997

Hydroxyalkylated starch ester and preparation and use thereof

Soili Peltonen; Pertti Tiitola; Jani Vuorenp{umlaut over }; Harri Happonen; Pertti Törmälä


Archive | 2004

Pigment and filler and a method of manufacturing it

Soili Peltonen; Hannu Mikkonen; Pia Qvintus-Leino; Petri Varjos; Kirsi Kataja

Collaboration


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Hannu Mikkonen

VTT Technical Research Centre of Finland

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Arto Urtti

University of Eastern Finland

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Johanna Buchert

VTT Technical Research Centre of Finland

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Tarja Oksanen

VTT Technical Research Centre of Finland

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Kirsi Kataja

VTT Technical Research Centre of Finland

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Anna Suurnäkki

VTT Technical Research Centre of Finland

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Minna Malin

Helsinki University of Technology

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