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Projects / Programmes source: ARIS

Biofarmacevtske lastnosti, sinteza in aktivnost spojin kinolonov s kovinskimi atomi (Slovene)

Research activity

Code Science Field Subfield
1.09.00  Natural sciences and mathematics  Pharmacy   

Code Science Field
T410  Technological sciences  Pharmaceuticals and related technologies 
Keywords
fluoroquinolones, pharmacokinetic properties, metallic complexes, antimicrobial activity, erythrocyte uptake of drugs
Evaluation (metodology)
source: COBISS
Organisations (2) , Researchers (15)
0787  University of Ljubljana, Faculty of Pharmacy
no. Code Name and surname Research area Role Period No. of publicationsNo. of publications
1.  11124  PhD Marija Bogataj  Pharmacy  Researcher  1999 - 2001  382 
2.  17432  Margareta Cof    Researcher  1999 - 2001 
3.  11789  PhD Mirjana Gašperlin  Pharmacy  Researcher  2000 - 2001  618 
4.  16107  PhD Iztok Grabnar  Pharmacy  Researcher  1999 - 2001  461 
5.  17433  Tatjana Hrovatič    Researcher  1999 - 2001 
6.  17434  Mihaela Kolarev    Researcher  1999 - 2001 
7.  00184  PhD Franc Kozjek  Pharmacy  Researcher  1999 - 2001  488 
8.  11122  PhD Albin Kristl  Pharmacy  Head  1999 - 2001  350 
9.  09032  PhD Julijana Kristl  Pharmacy  Researcher  2000 - 2001  940 
10.  17430  Nevenka Lilik    Researcher  1999 - 2001 
11.  06086  PhD Aleš Mrhar  Pharmacy  Researcher  1999 - 2001  1,166 
12.  09066  PhD Stanislav Primožič  Pharmacy  Researcher  1999 - 2001  303 
13.  09031  PhD Stanko Srčič  Pharmacy  Researcher  1999 - 2001  676 
0103  University of Ljubljana, Faculty of Chemistry and Chemical Technology
no. Code Name and surname Research area Role Period No. of publicationsNo. of publications
1.  03439  PhD Peter Bukovec  Chemistry  Researcher  1999 - 2001  544 
2.  16025  PhD Elizabeta Tratar Pirc  Chemistry  Researcher  1999 - 2001  127 
Abstract
The aim of the project is the synthesis together with structural, biopharmaceutic and microbiological assessment of the properties od metal-quinolone compounds. Transport properties and therapeutic potential of compounds of the fluoroquinolone type that are bound in a complex with metal atoms potentially exerting synergistic effects will be studied. Special interest will be put on the influence of the presence and the type of metallic atom in in vitro and ex-vivo systems on the rate and extent of the transport of the quinolones accross biologic membranes.
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