Martti Kaasalainen
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View article: Spatially‐Resolved Organoid Transfection by Porous Silicon‐Mediated Optoporation
Spatially‐Resolved Organoid Transfection by Porous Silicon‐Mediated Optoporation Open
Engineering the spatial organisation of organotypic cultures is pivotal for refining tissue models that are useful for gaining deeper insights into complex, non‐cell autonomous processes. These advanced models are key to improving the unde…
View article: Lithiated porous silicon nanowires stimulate periodontal regeneration
Lithiated porous silicon nanowires stimulate periodontal regeneration Open
View article: Corrigendum to “Personalizing oral delivery of nanoformed piroxicam by semi-solid extrusion 3D printing” European Journal of Pharmaceutical Sciences 188 (2023) 106497
Corrigendum to “Personalizing oral delivery of nanoformed piroxicam by semi-solid extrusion 3D printing” European Journal of Pharmaceutical Sciences 188 (2023) 106497 Open
View article: Personalizing oral delivery of nanoformed piroxicam by semi-solid extrusion 3D printing
Personalizing oral delivery of nanoformed piroxicam by semi-solid extrusion 3D printing Open
Semi-solid extrusion (SSE) 3D printing enables flexible designs and dose sizes to be printed on demand and is a suitable tool for fabricating personalized dosage forms. Controlled Expansion of Supercritical Solution (CESS®) is a particle s…
View article: Lithiated porous silicon nanowires stimulate periodontal regeneration
Lithiated porous silicon nanowires stimulate periodontal regeneration Open
Periodontal disease is a significant burden for oral health, causing progressive and irreversible damage to the support structure of the tooth. This complex structure, the periodontium, is composed of interconnected soft and mineralised ti…
View article: Size, Stability, and Porosity of Mesoporous Nanoparticles Characterized with Light Scattering
Size, Stability, and Porosity of Mesoporous Nanoparticles Characterized with Light Scattering Open
View article: Fabrication of Porous Silicon Based Humidity Sensing Elements on Paper
Fabrication of Porous Silicon Based Humidity Sensing Elements on Paper Open
A roll-to-roll compatible fabrication process of porous silicon (pSi) based sensing elements for a real-time humidity monitoring is described. The sensing elements, consisting of printed interdigitated silver electrodes and a spray-coated …