16 research outputs found

    Development of copper based drugs, radiopharmaceuticals and medical materials

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    Zastosowanie nanotechnologii w medycynie i farmacji

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    Nanotechnologia jest szybko rozwijającą się multidyscyplinarną dziedziną nauki obejmującą jednocześnie przemysł i medycynę oraz obszary pośrednio i bezpośrednio z nimi związane. Nanotechnologia znalazła także zastosowanie w farmacji między innymi w badaniach nad drogą podania leku, w nowych postaciach leku czy samej strukturze chemicznej substancji aktywnej prowadzącej do uzyskania leku o obniżonej toksyczności. Technika ta jest między innymi innowacyjną metodą biodystrybucji, np. w badaniach nad cząsteczkami leków dostarczanymi do określonego celu biologicznego. Z drugiej strony nanotechnologię możemy zastosować w diagnostyce i terapii oraz w monitorowaniu i kontroli wszystkich układów biologicznych. Nanocząsteczki w postaci polimerów, kompleksów metali, liposomów, micelli, dendrymerów, mikrokapsułek oraz lipoprotein odgrywają znaczącą rolę w diagnostyce i terapii wielu chorób

    Synthesis of Three New Macrocyclic Tetraamide Ligands

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    In vitro cultures of Salvia officinalis L. as a source of antioxidant compounds

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    The concentrations of carnosic acid, carnosol and rosmarinic acid in different materials from differentiated (multiple shoot cultures and regenerated plants) and undifferentiated (callus and cell suspension) in vitro cultures of Salvia officinalis were determined by HPLC. The results suggested that diterpenoid (carnosic acid and carnosol) production is closely related to shoot differentiation. The highest diterpenoid yield (11.4 mg g-1 for carnosic acid and 1.1 mg g-1 for carnosol) was achieved in shoots of 10-week-old micropropagated plants. The levels were comparable to those found in shoots of naturally growing plants. Undifferentiated callus and cell suspension cultures produced only very low amounts of carnosol (ca. 0.05 mg g-1 of dry weight). In contrast, content of rosmarinic acid in callus and suspension cultures as well as shoots growing in vitro and in vivo was similar and ranged between 11.2 and 18.6 mg g-1 of dry weight

    The effect of triacontanol on shoot multiplication and production of antioxidant compounds in shoot cultures of Salvia officinalis L.

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    This report describes the effect of triacontanol on shoot multiplication and production of antioxidant compounds (carnosic acid, carnosol and rosmarinic acid) in S. officinalis cultures grown on MS basal medium (agar solidified medium supplemented with 0.1 mg l-1 IAA, 0.45 mg l-1 BAP). It was found that shoot proliferation significantly increased when triacontanol at concentrations of 5, 10 or 20 µg l-1 was added to the medium. HPLC analysis of acetone and methanolic extracts of sage shoots showed that the production of diterpenoids, carnosic acid/carnosol ratio, as well as, contents of rosmarinic acid were also affected by the treatment with triacontanol. The highest stimulation effect of triacontanol was observed on the production of carnosol, where the treatment with 20 µg l l-1 increased the content of this diterpenoid 4.5-fold compared to that in the control (sage shoots growing on MS basal medium, only)
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