6 research outputs found

    Mogućnosti korišćenja mikroinkapsulirane hrane za larve šarana (cyprinus carpio)

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    Glavni cilj trenutnih istraživanja u oblasti ishrane larvi vezano je za potencijale novih tehnologija i strategija ishrane. Formulisana je suva hrana sa hidrolizovanim proteinima mora i mikroinkapsuliranim vitaminima (C i E). .U toku 24 dana eksperimenta na larvama šarana, počev od 3 dana posle izleganja, testirano je 5 različitih strategija ishrane sa Artemia nauplii i suvom hranom. Na kraju perioda u kome su larve bile izložene ograničenom prostoru i uslovima stresa usled hladnoće smeštene su u odgovarajući prostor na jedan sat. Pre i posle izlaganja stresu izmereni su nivoi prethodno pomenutih vitamina HPLC metodom. Statistički značajne razlike na nivo preživljavanja pokazale su se posle 15 Dph, kada su mali prirast i preživljavanje utvrđeni u oglednim grupama, osim u kontrolnoj grupi. Za vreme delovanja stresora sadržaj vitamina C opadao je ka niskim vrednostima slično u svim grupama, međutim potrošnja vitamina E je bila manja. Nivo vitamina E bio je viši u grupama koje su duže vreme hranjene suvom hranom obogaćenom inkapsuliranim vitaminima.. U pozadini slabih rezultata prirasta pri korišćenju suve hrane možemo reći da je sposobnost suočavanja sa stresorom bila dobra kod larvi šarana starih 24 dana. Korišćenje formulisanih mikroinkapsuliranih smeša kao početne hrane za larve obećava, ali moraju da se razviju tehnike ishrane i bolja strategija, na primer modifikovanjem učestalosti hranjenja

    Analysis of niflumic acid prepared by rapid microwave-assisted evaporation

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    Evaporative crystallization is widely applied in several industrial processes, including the pharmaceutical industry. Microwave irradiation can significantly speed up solvent evaporation in these crystallization processes, resulting in reduced particle size due to rapid crystallization. A single-mode microwave setup was used for evaporative crystallization of the model active pharmaceutical ingredient, niflumic acid, and the polymer, polyvinylpirrolidone (PVP). Production of crystals by microwave irradiation offers a modern way for drug formulation, and by reducing the particle size the dissolution rate and bioavailability of the active pharmaceutical ingredient can be enhanced. In this study, a 2.5-fold increase in the dissolution rate of the produced niflumic acid crystals was observed compared to the dissolution rate of the original drug in 120min. When niflumic acid was produced together with the PVP in the microwave system, an amorphous solid dispersion was created with particles in the nano-size range, which showed a 5-fold increase in dissolution rate in 120min compared to the dissolution of the crystalline niflumic acid samples created by the microwave irradiation in the absence of PVP.status: publishe

    Synthesis and Reactivity of 2-(Carboxymethyl)aziridine Derivatives

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