15 research outputs found

    X-ray structural analysis and antitumor activity of new salicylic acid derivatives

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    This Thesis project is going to be situated in my home town Östersund, 600 kilometers north from Stockholm.ItÂŽs a small town with 60 000 people and it is the only city of the region JĂ€mtland in Norrland, Sweden.In the city centre of Östersund there is one existing bus terminal station where the buses arrive with people from the entire region.The task for this Thesis project is to rebuild the existing bus station in Östersund where the actual terminal building is going to be completely demolished and the entire block within the current bus stops is going to be rearranged.The topography of the terminal area is now dividing the regional buses that arrives on the upper level from the city buses that stops at the lower level. Therefore the main challenge of the new proposal is how one would strengthen the junction between these two flows of people and how a new architecture could enable the encounter between the countryside and the urban city.Detta examensprojekt kommer att vara belĂ€gen i min hemstad Östersund, 600 kilometer norr om Stockholm. Det Ă€r en liten stad med 60 000 personer och det Ă€r den enda staden i regionen JĂ€mtland, Norrland. I centrum av Östersund finns en befintlig bussterminalen dĂ€r bussarna anlĂ€nder med folk frĂ„n hela regionen. Uppgiften för detta projekt Ă€r att bygga om den befintliga busstationen i Östersund topografin pĂ„ terminalomrĂ„det i dagslĂ€get separerar de regionala bussarna som anlĂ€nder pĂ„ den övre nivĂ„n frĂ„n stadsbussarna som stannar pĂ„ en lĂ€gre nivĂ„. Den största utmaningen i det nya förslaget Ă€r hur man istĂ€llet skulle kunna stĂ€rka förbindelsen mellan dessa tvĂ„ flöden av mĂ€nniskor och hur en ny arkitektur kan möjliggöra mötet mellan glesbyggd och den urbana staden

    Magnetic micromixing for highly sensitive detection of glyphosate in tap water by colorimetric immunosensor

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    Glyphosate is the most widely used herbicide in the world and, in view of its toxicity, there is a quest for easy-to-use, but reliable methods to detect it in water. To address this issue, we realized a simple, rapid, and highly sensitive immunosensor based on gold coated magnetic nanoparticles (MNPs@Au) to detect glyphosate in tap water. Not only the gold shell provided a sensitive optical transduction of the biological signal – through the shift of the local surface plasmon resonance (LSPR) entailed by the nanoparticle aggregation –, but it also allowed us to use an effective photochemical immobilization technique to tether oriented antibodies straight on the nanoparticles surface. While such a feature led to aggregates in which the nanoparticles were at close proximity each other, the magnetic properties of the core offered us an efficient tool to steer the nanoparticles by a rotating magnetic field. As a result, the nanoparticle aggregation in presence of the target could take place at higher rate (enhanced diffusion) with significant improvement in sensitivity. As a matter of fact, the combination of plasmonic and magnetic properties within the same nanoparticles allowed us to realize a colorimetric biosensor with a limit of detection (LOD) of 20 ng∙L−1

    Synthesis and biological evaluation of some 17-picolyl and 17-picolinylidene androst-5-ene derivatives

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    Starting from dehydroepiandrosterone (1) 17-picolyl (2), 17-picolinylidene (7), 17-picolinylidene-16-one (10 and 11), and 17-picolyl-16-one (15) derivatives of androst-5-ene were synthesized in one, two, four and five steps respectively. By the Oppenauer oxidation or dehydration of 2, 7, 10, and 11 with 2,3-dichloro-5,6-dicyano-1,4-benzoquinone (DDQ), the corresponding A and B ring modified derivatives 3, 5, 6, 8, 9, and 12-14 were obtained. The structure of 2 was unambiguously proved by the appropriate X-ray structural analysis. Compounds 3, 5,9,12-14 showed inhibitory activity against the enzyme aromatase. Antibacterial activity toxicity to brine shrimp Artemia salina, antitumor activity against three tumor cell lines (human cervix carcinoma HeLa cells, human melanoma FemX cells, and human myelogenous leukemia K562 cells) and toxicity against peripheral blood mononuclear cells were evaluated. Three tested compounds, namely 11, 13, and 15, showed strong activity against all three cell lines, the IC50 values being in the range of 4-10 mu M. (c) 2006 Elsevier Inc. All rights reserved
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