72 research outputs found
DETERMINATION OF HEAVY METALS IN MILK OF KOSOVO
The aim of the present study was to investigate heavy metal contents and radionuclides of cow’s milk. In total 37 random milk samples were collected from different sources (32 from milk collection centers and 5 imported). Quantitative analysis was performed using an Atomic Absorption Spectrophotometer to determine heavy metals concentrations and the assessment of human health risks related to milk consumption in the region of Kosovo. Concentrations were estimated of thirty-five heavy metals in milk samples but are reported only the most important elements Cr, Mn, Fe, Ni, Cu, Zn, As, Cd, Hg, and Pb. From the analytic analysis, the results showed that the average milk concentrations of Fe, Cu, Zn, and Cd were higher than the suggested standards
Polyoxazoline: chemistry, properties, and applications in drug delivery
Polyoxazoline polymers with methyl (PMOZ), ethyl (PEOZ),
and propyl (PPOZ) side chains were prepared by the living cationic polymerization method and purified by ion-exchange chromatography. The following properties of polyoxazoline (POZ) were measured: apparent hydrodynamic radius by aqueous size-exclusion chromatography, relative lipophilicity by reverse-phase chromatography, and viscosity by coneplate viscometry. The PEOZ polymers of different molecular weights were first functionalized and then conjugated to model biomolecules such as bovine serum albumin, catalase, ribonuclease, uricase, and insulin. The conjugates of catalase, uricase, and ribonuclease were tested for in vitro activity using substrate-specific reaction methods. The conjugates of insulin were tested for glucose lowering activity by injection to naïve SpragueDawley rats. The conjugates of BSA were injected into New Zealand white rabbits and serum samples were collected periodically and tested for antibodies to BSA. The safety of POZ was also determined by acute and chronic dosing to rats. The results showed that linear polymers of POZ with molecular weights of 1 to 40 kDa can easily bemade with polydispersity values below 1.10. Chromatography results showed that PMOZand PEOZ have a hydrodynamic volume slightly lower than PEG; PEOZ is more lipophilic than PMOZ and PEG; and PEOZ is significantly less viscous than PEG especially at the higher molecular weights. When PEOZ was attached to the enzymes catalase, ribonuclease, and uricase, the in vitro activity of the resultant bioconjugates depended on the extent of protein modification. POZ conjugates of insulin
lowered blood glucose levels for a period of 8 h when compared to 2 h for insulin alone. PEOZ, like PEG, was also able to successfully attenuate the immunogenic properties of BSA. The POZ polymers (10 and 20 kDa) are safe when administered intravenously to
rats, and the maximum tolerated dose (MTD) was greater than 2 g/kg. Blood counts, serum chemistry, organ weights, and the histopathology of key organs were normal. These results conclude that POZ has the desired drug delivery properties for a new biopolymer
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