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    Lizosomske metaboličke bolesti

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    Rad ne sadrži sažetak

    Počeci kemije nakon utemeljenja prirodnoslovnih odjela na sveučilištu u zagrebu ( 1876.)

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    U ovome radu prikazan je kratak pogled razvoja kemije u Hrvatskoj nakon utemeljena prvog hrvatskog Kemijskog zavoda na Sveučilištu u Zagrebu, te doprinos najistaknutijih hrvatskih kemičara. Kemija se kao samostalan predmet počela predavati tek 1875. godine na Mudroslovno-filozofskom fakultetu u Zagrebu. Prvi izvanredni profesor bio je Aleksandar Veljkov, koji je sa svojim znanjem o nastavi i kemijskim laboratorijima u Europi dobio zadatak osmisliti prvi hrvatski Kemijski zavod. Zavod je utemeljen 1876. godine u iznajmljenom prostoru, na adresi Nova Vesa 1, u Zagrebu. Aleksandar Veljkov je nakon toga održavao kemiju te eksperimentalna istraživanja u novonastalom laboratoriju. Osim što je bio prvi profesor kemije u Hrvatskoj, Aleksandar Veljkov se istaknuo objavljivanjem mnogih znanstvenih radova, koji su doveli do velikog napretka kemije u 19. stoljeću. Nažalost, Veljkov je obavljao svoju dužnost samo godinu dana jer je iznenada umro. Na njegovo mjesto je ubrzo došao dr. Gustav Janeček, farmaceut i kemičar, koji je nastavu kemije kao i eksperimentalna istraživanja predavao desetljećima. S obzirom da se Kemijski zavod nalazio u iznajmljenoj zgradi, Janeček je zatražio obnovu Kemijskog zavoda 1882. godine, te je na njegov zahtjev izgrađena nova zgrada u Strossmayerovoj ulici 14 u Zagrebu, koja je završena 1884. godine. Janeček je osim kemije i farmacije pohađao i studij medicine te se iskazao kao i sudski kemičar, u mnogim slučajevima trovanja. Cijeli život bavio se istraživanjem, te objavio mnoge znanstvene radove i udžbenike iz fizikalne, organske, analitičke, farmaceutske i forenzične kemije.This work presents a brief look at the development of chemistry in Croatia after founded the first Croatian Institute of Chemistry , University of Zagreb , and the contribution of the most prominent Croatian chemists . Chemistry as an independent subject began to teach only 1875th year - on Philosophy Faculty in Zagreb . First associate Professor was Aleksandar Veljkov , who with their knowledge about teaching and chemical laboratories in Europe given the task to design the first Croatian Chemical Institute . The Institute was founded in 1876th in rented space at New Vesa 1 , in Zagreb . Alexander Veljkov subsequently held chemistry and experimental research in the new lab . Besides being the first professor of chemistry in Croatia , Alexander Veljkov be noted publishing many offer a scientific work , which led to great advances in the chemistry of the 19th century . Unfortunately , Veljkov has done his duty for only a year , because he suddenly died . In his place was soon came Dr. Gustav Janeček , a pharmacist and chemist , who has been teaching chemistry as well as experimental studies taught even decades . With regard to chemical Institute, located in a rented building , Janeček has requested renewal of the Chemical Institute in 1882. year , and at the request of a new building in the Strossmayer Street 14 , in Zagreb , which was completed , 1884. year . Janeček besides chemistry and pharmacy, was study medicine, and he he attended and expressed as the court chemist, in many cases of poisoning. All his life he investigated and published many scientific papers and textbooks in physical, organic, analytical, pharmaceutical and forensic chemistry

    Determination of anionic surfactants in pure systems by the new potentiometric sensor

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    Površinski aktivne tvari ili tenzidi su bifunkcionalne organske molekule koje se sastoje od hidrofilnog i hidrofobnog dijela. Dijele se u 4 grupe: anionske, kationske, neionske i amfolitske tenzide. Anionski tenzidi su najzastupljeniji i najčešće se koriste u obliku praškastih detergenata. Tenzide možemo analizirati različitim metodama kao što su titracijske, spektrofotometrijske i kromatografske metode. Za određivanje završne točke titracije i analizu tenzida najčešće se koriste potenciometrijske titracije koje koriste ionskoselektivne elektrode. Ispitivali smo utjecaj koncentracije titransa na oblik titracijskih krivulja zbog određivanja najniže koncentracije titransa koji će davati još uvijek dovoljno izraženu i uporabivu točku infleksije, čime bi se omogućilo i određivanje vrlo niskih koncentracija anionskih tenzida. Kao titrans smo koristili standardne otopine cetilpiridinijeva klorida (CPC) različitih koncetracija (c=1 x 10-3 mol/dm3, 1 x 10-4 mol/dm3, 5 x 10-5 mol/dm3), a kao analit su korištene otopine natrijeva dodecilsulfata (NaDDS) i otopine natrijeva dodecilbenzensulfonata (NaDBS) različitih koncetracija (c=1 x 10-3 mol/dm3, 1 x 10-4 mol/dm3, 5 x 10-5 mol/dm3).Surface active agents or surfanctants are organic bifunctional moleculs consisting of a hydrophilic and hydrophobic part. They are divided into 4 grups: anionic, cationic, nonionic and ampholytic surfactants. Anionic surfactants are the most common and most widely used in the form of powder detergents. Surfactants can be analyzed by various methods such as titration, spectrophotometric and chromatographic method. For determination of the equivalence point titration and analysis of surfactants are usually carried out by potentiometric titration using ion-selective electrode. We tested the influence of the concentration of titrant on shape of the titration curves to determine the lowest concentration of titrant that will still give sufficiently expressed and an usable inflection point, which should facilitate the determination of very low concentrations of anionic surfactants. Different concentrations of cetylpyridinium chloride (CPC, c=1 x 10-3 mol/dm3, 1 x 10-4 mol/dm3, 5 x 10-5 mol/dm3) were used as titrans and a solutions of sodium dodecylbenzene sulfonate (NaDBS, c=1 x 10-3 mol/dm3, 1 x 10-4 mol/dm3, 5 x 10-5 mol/dm3) and dodecylsulfate (NaDDS, c=1 x 10-3 mol/dm3, 1 x 10-4 mol/dm3, 5 x 10-5 mol/dm3) were used as the analyte

    Priprava srebrovih soli s nesupstituiranim organskim kiselinama

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    U ovom radu govorit će se o srebru i o njegovim svojstvima. Također će biti riječ o spojevima srebra i njegovim solima te načinu priprave istih. Srebrove soli su pripremljene iz nesupstituiranih organskih kiselina i srebrova nitrata. Tako pripremljene srebrove soli većinom su netopljive ili vrlo slabo topljive u vodi. U sintezi su korištene: oksalna kiselina, benzojeva kiselina, mravlja kiselina te natrijev acetat kao sol octene kiseline. Kao glavni prekursor za sintezu srebrovih soli upotrjebljena je kristalna sol, srebrov nitrat. Nakon sinteze srebrovih soli, za identifikaciju i karakterizaciju korištene su IR spektroskopija termogravimetrijska analiza (TGA).This paper discusses the properties of silver and silver compounds. It will also discuss the compounds of silver and silver salts as well as the methods of their preparation. Silver salts are prepared from unsubstituted organic acids and silver nitrate. The prepared silver salts are mostly insoluble or only slightly soluble in water. Oxalic acid, benzoic acid, formic acid and sodium acetate, which is an acetic acid salt are used for the synthesis of silver salts. Silver nitrate is used as a precursor for the synthesis of silver salts. The prepared compounds are characterized by means of IR spectroscopy and thermogravimetric analysis (TGA)

    Templatna sinteza

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    Makrociklički spojevi postaju vrlo važni spojevi za istraživanje u koordinacijskoj kemiji. Njihova priprema je ono što predstavlja najveći problem. Templatna sinteza se koristi kao jedan od vrlo uspješnih načina sinteze makrocikličkih spojeva. U ovom radu je templatnom sintezom dobiven niklov i bakrov makrociklički kompleks.Macrocyclic compounds become very important for research in the development of coordination chemistry. The preparation of these compounds represents the biggest problem. Template synthesis is used as one of the most successful ways of synthesis of macrocyclic compounds. In this final paper with template synthesis prepared nickel and copper macrocyclic compounds

    Antioksidansi

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    Reaktivne kisikove jedinke ("reactive oxygen substances", ROS) i reaktivne dušikove jedinke ("reactive nitrogen substances", RNS) su pojmovi koji opisuju slobodne radikale i ĉestice koje nisu slobodni radikali, a takoĊer imaju oksidativno djelovanje. ROS se odnose na jedinke sa oksidativnim djelovanjem nastale od O₂, dok su radikali jedinke koje sadrže barem jedan nespareni elektron. Veći dio struktura u sastavu ROS-a su slobodni radikali, a ĉine ih superoksidni anion ili superoksid (O₂˙ˉ), hidroksilni radikal (HO˙), peroksilni radikal (RO₂˙), alkoksilni radikal (RO˙) i hidroksilni radikal (OH˙). Reaktivne kisikove jedinke koje nisu slobodni radikali su vodikov peroksid (H₂O₂), hipokloritna kiselina (HOCl), ozon (O₃) i jednostavni singletni kisik (¹O₂). Navedene strukture mogu lako i brzo prijeći u reaktivne radikale kisika. ROS se meĊusobno razlikuju u svojim reaktivnostima i toksiĉnosti. H₂O₂ je manje reaktivan od O₂˙ˉ, ali zato je više toksiĉan zbog svoje sposobnosti prodiranja kroz biološke membrane. Reaktivne dušikove jedinke (RNS) se odnose na molekule nastale od dušikovog monoksida (NO), primjerice: peroksinitriti (ONOOˉ), dušikov dioksid (NO₂˙) i nitritna kiselina (HNO₂). RNS za razliku od HO˙ i O₂˙ˉ imaju duži poluživot. Pri niskim koncentracijama, ROS i RNS su potrebne za proces sazrijevanja staniĉnih struktura, u sustavu obrane domaćina te u funkcijama brojnih staniĉnih signalnih sustava. U normalnom fiziološkom stanju u organizmu se održava ravnoteža izmeĊu djelovanja oksidansa i antioksidativne obrane organizma. Oksidacijski stres nastaje zbog povećane koliĉine oksidansa proizvedenih u organizmu ili funkcionalnog smanjenja sustava antioksidativne obrane. U ljudskom organizmu ROS nastaju iz molekularnog kisika djelovanjem UV zraĉenja ili procesima redukcije oksidativnih enzima. Najveća koliĉina ROS-a u obliku O₂˙ˉ nastaje svakodnevno u mitohondrijskom lancu za prijenos elektrona. Od ukupnog kisika unesenog u organizam u mitohondrijima se potroši 85-90 %. Antioksidansi su tvari koje nastoje neutralizirati štetne uĉinke ROS-a i RNS-a. Antioksidansi se dijele na: antioksidativne enzime i neenzimske antioksidanse. MeĊu najvažnijim antioksidativnim enzimima istiĉu se: superoksiddismutaza (SOD), katalaza, glutation-peroksidaza (GPRx), askorbat-oksidaza (AOx), glutation-S-transferaza (GSTs) i glutation-reduktaza (GR), dok meĊu neenzimskim antioksidansima: flavonoidi, karotenoidi, glutation, vitamin C, vitamin E i koenzim Q10.ROS and RNS are the terms collectively describing free radicals and other nonradical reactive derivatives also called oxidants. ROS refer to a number of chemically reactive molecules derived from O₂, whereas free radicals refers to the low molecular weight molecules with at least one unpaired electron. The most important group of free radicals are ROS which are superoxide anion or superoxide (O₂˙ˉ), hydroxyl radical (HO˙), peroxyl radical (RO₂˙), alkoxy radical (RO˙) and hydroxyl radical (OH˙). There are some ROS which are not free radicals: hydrogen peroxide (H₂O₂), hypochlorite acid (HOCl), ozone (O₃) and simple singlet oxygen (¹O₂). These ROS can easily and quickly switch to reactive oxygen radicals. ROS vary in their reactivities and toxicities. H₂O₂ is less reactive, but more toxic than O₂˙ˉ, because of its ability to penetrate biological membranes. RNS refer to molecules derived from nitrogen monoxide (NO), for example: peroxynitrite (ONOOˉ), nitrogen dioxide (NO₂˙) and nitrous acid (HNO₂). The half-lives of RNS are generally longer that HO˙ and O₂˙. At low or moderate concentrations, ROS and RNS are necessary for the maturation process of cellular structures, in the defense system of the host and in the functions of a number of cell signaling systems. In the normal physiological state, the body maintains a balance between the action of oxidants and antioxidant defense. Oxidative stress occurs due to increased amounts of oxidants produced in the body or functional reduction of antioxidant defense. In the human body ROS are formed from molecular oxygen by UV radiation or processes reducing oxidative enzymes. The largest amount of ROS in the form O₂ occurs daily in the mitochondrial electron trasport chain. Out the total body oxygen mitochondria consume 85-90 %. Antioxidants are substances that tend to neutralize the harmful effects of ROS and RNS. Antioxidants can be divided into two groups: enzymatic antioxidants and nonenzymatic antioxidants. The most important enzymatic antioxidants are superoxide dismutase (SOD), catalase, glutathioneperoxidase (GPRx), ascorbate-oxidase (AOx), glutathione-S-transferases (GSTs) and glutathione-reductase (GR), and nonenzymatic antioxidants are flavonoids, carotenoids, glutathione, vitamin C, vitamin E and coenzyme Q1 0

    Primjena kemometričkih metoda u analizi koncentracija zračnih onečišćivača - analiza senzorskih mjerenja.

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    U ovome radu su metodom Fourierovih transformacija obrađeni podatci satnih koncentracija NO2, H2S, SO2, O3, PM2,5, temperature, relativne vlage i brzine vjetra prikupljanih tijekom tri godine (od 2010. do 2012. godine). Svaka godina obrađena je zasebno. Pored postojanja lažnih, kao i po intenzitetu najvećih dnevnih ciklusa, u koncentracijama NO2 su pronađeni i poludnevni ciklusi tijekom sve tri istraživane godine. Isti ciklusi tijekom posljednje istraživane 2012. godine uočeni su i u podatcima satnih koncentracija SO2 i O3, ali nisu pronađeni u satnim vrijednostima meteoroloških varijabli, stoga se njihova pojava nije mogla pripisati utjecaju meteoroloških faktora. Pojava lažnih maksimuma (ciklusa) nastalih kao posljedice algoritma metode Fourierovih transformacija ogledala se u postojanju ciklusa koji su imali identične brojčane vrijednosti za sve varijable. Iznimku su činili podatci satnih koncentracija PM2,5 gdje su uz nabrojane lažne, pronađeni dodatni, tjedni i dvotjedni ciklusi koji se, kao i oni poludnevni, mogu pripisati utjecaju antropogenih faktora.In this paper Fourier analysis was applied to process hourly concentrations of NO2, H2S, SO2, O3, PM2,5, temperature, relative humidity and speed of wind that were gathered during three years (2010, 2011, 2012). Every year was processed separately. Apart from false cycles and those with highest intensity, half-day cycles were found for NO2 concentrations. Same cycles were also discovered in year 2012 for hourly concentrations of SO2 and O3. Phenomenon of false peaks (cycles) as a result of Fourier analysis algorithm can be seen in identical cycles for all variables. Hourly concentrations of PM2,5 were exception because there were discovered additional one- and two-weeks cycles, half-day cycles which may have anthropogenic source

    Metabolizam tumorskih stanica

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    Tumori predstavljaju masu izmijenjenih stanica koje pokazuju nepravilan i progresivan rast. Može ih se podijeliti na maligne, odnosno zloćudne (karcinom, sarkom, limfom, leukemija) i benigne ili dobroćudne (adenomi, papilomi, polipi). Tumorke stanice imaju poremećenu regulaciju stanične diobe što uzrokuje proliferaciju stanica i rast novotvorevina. Osobine tumorskih stanica su nekontrolirani rast, rast stanica u više slojeva, abnormalnost jezgre, nediferenciranost stanica, nepostojanje kontaktne inhibicije. Razvoj malignog tumora, odnosno karcinogeneza, se može opisati u 4 stadija: inicijacija, promocija, progresija te metastaziranje. U kontroli staničnog rasta i diobe sudjeluju onkogeni i tumor-supresorski geni, odnosno protuonkogeni. Onkogeni su geni koji upravljaju kontrolom rasta i diferencijacijom tumorskih stanica. Protuonkogeni kodiraju produkte koji sputavaju rast i osiguravaju negativnu regulaciju staničnog ciklusa. U zloćudnim stanicama promijenjen je metabolizam, što za posljedicu ima razne kvalitativne i kvantitativne razlike prema normalnim stanicama. Te promjene obuhvaćaju promjene u sintezi DNA i RNA, promjene u metabolizmu proteina, promjene u disanju i oksidacijskoj fosforilaciji te osiguranju energije i promjene stanične membrane.Tumors represent the mass of modified cells which exhibit irregular and progressive growth. They can be divided into malignant (cancer, sarcoma, lymphoma, leukemia) and benign (adenomas, papillomas, polyps). Tumor cells dusplay dysregulation of cell division that causes cell proliferation and growth of malignancies. The properties of tumor cells are uncontrolled growth, cell growth in several layers, the core abnormality, lack of cell differentiation and lack of contact inhibition. The development of malignant tumors can be described in four stages: initiation, promotion, progression and metastasis. In the control of cell growth and division are involved oncogenes and tumor-suppressor genes. Oncogenes are genes which control the growth control and differentiation of tumor cells. Tumor-suppressor genes encode products which inhibit the growth and ensuring negative regulation of the cell cycle. In malignant cells, metabolism is altered with results in a variety of qualitative and quantitative differences compared to normal cells. These include changes in the synthesis of DNA and RNA, altterations in the protein metabolism, respiration and oxidative phosphorylation, with decresed energy supply and changes of cell membrane

    Quantitative chemical analysis of macroelements in iron meteorites

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    Jedanaest uzoraka meteorita nađenih na području RH i BIH prvi puta su analizirani, i to metodama poliranja i nagrizanja ferikloridom (PN), rentgenske difrakcije na prahu (XRD) i tehnikom induktivno spregnute plazme s atomskom emisijskom spektroskopijom (ICP - AES). Cilj diplomskoga rada bio je utvrditi kvalitativan i kvantitativan sastav odabranih uzoraka, te pokušati odrediti strukturne i kemijske tipove željeznih meteorita kojima uzorci pripadaju, a hipoteza je bila da su makroelementi u uzorcima željezo i nikal, da se nalaze u različitim omjerima te da svi uzorci sadrže iridij. Ustanovljeno je da su u svim uzorcima makroelementi željezo i nikal, u omjeru 1 : 1, te da svi uzorci sadrže iridij, iako u 100 puta većoj koncentraciji no što je poznato za druge meteorite. Većina analiziranih uzoraka pripada strukturnom tipu ataksita, dok se kemijski tip pojedinog uzorka nije mogao sa sigurnošću utvrditi zbog nemogućnosti mjerenja koncentracije siderofilnih elemenata galija, germanija i zlata, a koji su parametri za kemijsku klasifikaciju siderita.For the first time eleven meteorite samples, some found or recently fallen on the territory of Croatia and some in Bosnia and Herzegovina, were analyzed by three techniques: polishing and etching by ferric chloride (PN), X - ray powder diffractometry (XRD) and inductively coupled plasma with atomic emission spectrometry (ICP - AES). The goal of this work was to determine qualitative and quatitative composition of chosen meteorite samples, and to attribute structural and chemical groups of iron meteorites if possible. The hypothesis was that samples contain iron and nickel as macroelements in different ratios and that all of them contain irridium. Analyses have shown that all eleven samples contain iron and nickel as macroelements in one to one ratio and that all of them contain irridium, although in thousand times bigger amount compared with other meteorites. Most samples that have been analysed belong to the structural group of ataxite, while chemical groups could not be established with certainty due to impossibillity of measuring amounts of siderophile elements like gallium, gold and germanium, which are main parameters for the chemical classification of iron meteorites

    The Application of Chemometric Methods in the Analysis of Air Pollutants

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    Tijekom pet godina na ukupno šest mjernih stanica za motrenje zagađenja zraka u Zagrebu, Rijeci, Sisku, Kutini i Osijeku praćeni su meteorološki podatci (temperatura, relativna vlažnost i brzina vjetra) i zagađenje zraka lebdećim česticama dijametra 10 mikrometara ili manje (Particulate Matter - PM10). Snimljeni podatci analizirani su PCA metodom (Principal Components Analysis). U većini slučajeva PCA je otkrila relativno male pozitivne veze između koncentracija PM10 i relativne vlažnosti te male negativne veze između koncentracije PM10 i temperature i brzine vjetra. Fourierova analiza potvrđuje postojanje varijacija u koncentraciji PM10 sa razdobljima u rasponu od, uobičajeno, polu-dnevnih i dnevnih, do razdoblja između 18 i 1365 dana. Na svih šest lokacija godišnja aritmetička sredina koncentracije PM10 je bila niža nego li godišnji standard za kvalitetu zraka propisan u Europskoj uniji od 40 µg/m3 za PM10.Five year concentration data of Particulate Matter referring to fine suspended particles with diameter of 10 micrometers or less (PM10) and meteorological data, temperature, relative humidity and wind speed, were recorded at six air-pollution monitoring stations in the cities of Zagreb, Rijeka, Sisak, Kutina and Osijek in Croatia and analyzed using Principal Components Analysis (PCA) method. In most cases, PCA detected relatively low positive relationship between PM10 concentrations and relative humidity, and a low negative relationship between PM10 concentrations, temperature and wind speed. Fourier analysis confirms the existence of variation in PM10 concentrations in periods ranging from the usual semi-daily, daily to periods ranging between 18 and 1365 days. It was shown that the annual arithmetic mean concentrations of PM10 was lower than the European Union air quality standard for PM10 of 40 µg/m3 (measured as an annual mean) at all six locations

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