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DEHP - från mjukgörare till hormonstörandeBohlin, Matilda January 2014 (has links)
No description available.
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Síntese, caracterização e estudo termoanalítico dos ftalatos, isoftalatos e tereftalatos de cobalto e manganês / Synthesis, characterization and thermoanalytical study of phthalates, isophthalates and terephthalates of cobalt and manganeseCarmo, João Paulo Santos 29 April 2016 (has links)
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Previous issue date: 2016-04-29 / Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPES / It is possible to observe an increase related research for the synthesis of coordination compounds and crystal lattices using transition metals and organic binders due to their great potential applications. The aim of this study was to synthesize the compounds Phthalate, Isophthalate and Terephthalate of Cobalt and Manganese through the reaction of the metal carbonate in excess with their acids studied. The synthesized compounds are presented in the form of crystalline solids. These compounds were characterized using analytical techniques: Simultaneous Thermogravimetric and Differential Scanning Calorimetry (DSC-TG), Fourier Transform Infrared Spectroscopy (FTIR). Thermogravimetry Analysis coupled to Fourier Transform Infrared Spectroscopy (TG-FTIR) and Differential Scanning Calorimetry (DSC). From the TG-DSC curves was possible to evaluate the thermal stability and the dehydration mechanism as well’as the empirical formula of the compounds as CoFta ∙ 2.5H2O, CoIFta ∙ 5H2O, CoTFta ∙ 4,5H2O for cobalt compounds and MnFta ∙ 0.5H2O, MnIFta ∙ 2.5H2O and MnTfta for manganese compounds. Even through the infrared spectra (FTIR), it was also possible to suggest the metal-ligand coordination mode as bridge for all compounds synthesized. / É possível observar um aumento de trabalhos referentes a compostos de coordenação e de redes cristalinas usando metais de transição e ligantes orgânicos devido aos seus grandes potenciais de aplicação. O objetivo desse trabalho foi sintetizar os compostos de Ftalato, Isoftalato e Tereftalato de Cobalto e Manganês através da reação do carbonato metálico em excesso com os respectivos ácidos estudados. Os compostos sintetizados se apresentaram na forma de sólidos cristalinos e foram caracterizados através das técnicas: Termogravimetria e Calorimetria Exploratória Diferencial simultânea (TG-DSC), Espectroscopia de Infravermelho por Transformada de Fourier (FTIR). Termogravimetria acoplada a Espectroscopia de Infravermelho por Transformada de Fourier (TG-FTIR), Calorimetria Exploratória Diferencial (DSC). A partir das curvas TG-DSC foi possível avaliar a estabilidade térmica e o mecanismo de desidratação, bem como a fórmula mínima dos compostos como sendo CoFta∙2,5H2O, CoIFta∙5H2O, CoTFta∙4,5H2O para os compostos de cobalto e MnFta∙0,5H2O, MnIFta∙2,5H2O e MnTfta para os compostos de manganês. Ainda através dos espectros de infravermelho (FTIR) foi possível sugerir o modo de coordenação entre metal-ligante como em ponte para todos os compostos sintetizados
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Detecció dels metabòlits del plastificant di(2-etilhexi)l ftalat com a marcadors de l'ús de transfusions en l'esportMonfort Mercader, Núria, 1983- 19 December 2012 (has links)
El di(2-etilhexil) ftalat (DEHP) és un plastificant que s’afegeix als productes de clorur de polivinil (PVC) per a dotar-los de més flexibilitat. El material mèdic fet de PVC, i en particular els dispositius i bosses que s’utilitzen en les transfusions de sang, conté el DEHP com additiu. Així, el receptor d’una transfusió està altament exposat a aquest compost. L’objectiu de la tesi va ser estudiar els metabòlits del DEHP en orina com a possibles marcadors de la pràctica d’una transfusió de sang en l’esport.
Es va desenvolupar i validar un mètode d’anàlisi per cromatografia líquida acoblada a espectrometria de masses en tàndem per a la quantificació dels principals metabòlits del DEHP en orina humana: mono-(2-etilhexil) ftalat (MEHP), mono-(2-etil-5-hidroxihexil) ftalat (MEHHP), mono-(2-etil-5-oxohexil) ftalat (MEOHP), mono-(2-carboximetilhexil) ftalat (2cx-MMHP) i mono-(2-etil-5-carboxipentil) ftalat (5cx-MEPP). El mètode es va aplicar a mostres procedents de voluntaris sans (grup control), de pacients hospitalitzats que havien rebut una transfusió de sang i de pacients hospitalitzats sotmesos a tractaments mèdics amb materials de PVC i no a transfusions. Es van obtenir diferències significatives en les concentracions dels tres metabòlits estudiats (MEHP, MEHHP, MEOHP) entre les mostres dels pacients transfosos respecte els altres dos grups de població. El mètode també es va aplicar a mostres d’orina de vint-i-cinc voluntaris sans que s’havien sotmès a un procediment d’autotransfusió. Els resultats van indicar concentracions elevades dels cinc metabòlits del DEHP en orina fins a les 48 hores després d’haver rebut la sang.
Finalment, es van determinar les concentracions dels cinc metabòlits de DEHP en una població d’esportistes i es van calcular límits de referència que permetessin sospitar d’una transfusió. Així doncs, els resultats indiquen que la mesura dels metabòlits de DEHP en orina pot ser usada com una eina pel cribatge de l’ús de transfusions en l’esport. / The plasticizer di(2-ethylhexyl)phthalate (DEHP) is used in polyvinyl chloride products (PVC) to increase its flexibility. Medical devices made of PVC, especially blood bags used in blood transfusions, contain DEHP as additive. Therefore, subjects submitted to blood transfusion are widely exposed to this compound. The aim of the project was to evaluate DEHP metabolites in urine as possible markers of the use of a blood transfusion in sports.
An analytical method was developed and validated to quantify the main DEHP metabolites mono-(2-ethylhexyl)phthalate (MEHP), mono-(2-ethyl-5-hydroxyhexyl)phthalate (MEHHP), mono-(2-ethyl-5-oxohexyl)phthalate (MEOHP), mono-(2-carboxymethylhexyl)phthalate (2cx-MMHP) and mono-(2-ethyl-5-carboxypentyl)phthalate (5cx-MEPP), in human urine by liquid chromatography tandem mass spectrometry. The methodology was applied to samples belonging to healthy volunteers (control group), hospitalized patients subjected to blood transfusions and hospitalized patients subjected to medical treatments involving plastic material different to blood transfusions. Significant differences were obtained in the concentrations of the three metabolites studied (MEHP, MEHHP, MEOHP) between transfused patients samples’ and the other two population groups. The method was also applied to urine samples from twenty-five healthy volunteers who were subjected to an autologous blood transfusion. The results indicated high concentrations of the five DEHP metabolites in urine up to 48 hours after the blood transfusion.
Finally, the concentration of the five DEHP metabolites were evaluated in a sportsmen population and reference limits to allow suspicion of blood transfusion were calculated. Thus, the results indicate that the DEHP metabolites could be used as markers of blood transfusions in sports.
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Uticaj ftalata iz spoljašnje sredine na neke metaboličke poremećaje / The influence of phthalates at environmental levels on certain metabolic disordersBosić-Živanović Dragana 30 September 2015 (has links)
<p>Uvod. Ftalati su endokrini disruptori, široko se koriste kao plastifikatori, rastvarači i aditivi u mnogim potrošačkim proizvodima. Eksperimentalni podaci i humane studije sugerišu na povezanost ftalata sa gojaznošću i dijabetesom. Cilj. Utvrditi da li su i koji urinami metaboliti ftalata prisutni i da li postoje razlike u njihovim nivoima između bolesnika s tipom 2 šećeme bolesti, gojaznih i kontrolne grupe zdravih osoba; da li postoji povezanost između metabolita ftalata i gojaznosti, lipida i lipoproteina seruma, glikemije, insulinemije i insulinske rezistencije.<br />Metode. Istraživanje je obuhvatilo 305 ispitanika, podeljenih u 3 grupe: gojazni (n=104), dijabetesni bolesnici tip 2 (n=101) i zdrave osobe (n=100), oba pola. U svih ispitanika su izvršena antropometrijska merenja (BMI i obim struka), određivanje serumskih lipida (ukupni holesterol, trigliceidi, HDL i LDL holesterol), te glikemija, insulinemija i izračunat indeks insulinske rezistencije (HOMA IRI). U jutarnjem uzorku urina meren je nivo 10 ftalatnih metabolita: mono-metil ftalat (MMP), mono-etil ftalat (MEP), mono-n-butil ftalat (MnBP), mono- benzil ftalat (MBzP), mono-cikloheksil ftalat (MCHP), mono-n-propil ftalat (MPP), mono-n-amil ftalat (MnAP), mono-izo-amil ftalat (MiAP), mono- n-oktil ftalat (MOP), mono-2-etilheksil ftalat (MEHP). U odnosu na prisustvo ftalata u urinu svaka grupa je podeljena u podgrupe na one sa prisutnim ftalatima i one bez ftalata u urinu, odnosno na podgrupe MEP pozitivne, MEP negativne, MEHP pozitivne i MEHP negativne. Rezultati. Kod polovine ispitanika registrovali smo prisustvo u urinu pojedinih metabolita ftalata. Najčešći su bili MEHP i MEP. Najveća sličnost u nivou MEP-a i MEHP-a je bila između gojaznih i dijabetesnih ispitanika. U odnosu na antropometrij ske parametre uočena je pozitivna korelacija MEP-a sa BMI i obimom struka, a negativna korelacija MEHP-a sa BMI i obimom struka, ali su bile nesignifikantne. Samo kod MEHP pozitivnih kontrolne grupe uočena je statistički značajna pozitivna korelacija MEHP-a i obima struka. Utvrđena je statistički značajna negativna korelaciju MEP-a i HDL holesterola, a pozitivna korelacija MEP-a i triglicerida samo kod gojaznih. Samo u kontrolnoj grupi MEHP pozitivnih postojala je statistički značajna negativna korelacija sa HDL holesterolom. Postojala je pozitivna korelacija MEP-a i HOMA-IRI, a pozitivna korelacija MEHP-a sa glikemijom samo kod MEHP pozitivnih DM tip 2. Zaključak. Potvrđeno je da je kontaminacija ftalatima prisutna u našoj populaciji, a najčešće su prisutni MEHP i MEP, ukazujući na ekspoziciju DEHP i DEP. Indirektno smo stekli uvid da povećana izloženost DEP i DEHP može doprineti nastanku izvesnih poremećaja lipida i lipoproteina, insulinskoj rezistenciji kao i razvoju gojaznosti.</p> / <p>Introduction. Phthalates are endocrine disruptors, widely used as plasticizers, solvents and additives in a wide range of consumer products. Experimental data and human studies suggest that phthalate exposure is linked with obesity and diabetes. Aim. To determine whether urinary phthalate metabolites are present, which ones are present, whether there are differences between their levels among the patients with type 2 diabetes, obesity patients and a control group of healthy individuals; whether there is a link between phthalate metabolites and obesity, lipids, serum lipoproteins, glycemia, insulinemia and insulin resistance. Methods. The research included 305 participants divided into three groups: obesity patients (n=104), type 2 diabetes patients (n=101) and healthy individuals (n=100) in both sexes. Anthropometric measurements were taken from all participants (BMI and waist circumference), as well as measurement of serum lipids (total cholesterol, triglycerides, HDL and LDL cholesterol), glycemia, insulinemia and a calculation of insulin resistance index (HOMA IRI). The levels of ten phthalate metabolites were<br />measured in a morning sample of urine: Mono-methyl phthalate (MMP), Mono-ethyl phthalate (MEP), Mono-n-butyl phthalate (MnBP), Mono-benzyl phthalate (MBzP), Mono- cyclohexyl phthalate (MCHP), Mono-n-propyl phthalate (MPP), Mono-n-amyl phthalate (MnAP), Mono-iso-amyl phthalate (MiAP), Mono-n-octyl phthalate (MOP), Mono-2- ethylhexyl phthalate (MEHP). Regarding the presence of phthalates in urine, each group was divided into subgroups, containing phthalates and or not containing phthalates, i.e. subgroups MEP positive and MEP negative, MEHP positive and MEHP negative. Results. In a half of participants, we have registered the presence of certain phthalate metabolites in urine, most often MEHP and MEP. The highest similarity in the levels of MEHP and MEP was between obesity and diabetes participants. Regarding anthropometric measurements, positive correlation has been registered between MEP and BMI and waist circumference, while negative correlation has been registered between MEHP and BMI and waist circumference, but it was insignificant. Only in MEHP positive control group, statistically significant positive correlation between MEHP and waist circumference has been registered. Statistically significant negative correlation between MEP and HDL cholesterol has been registered, while positive correlation between MEP and triglycerides has been registered only in obesity patients group. Only in MEHP positive control group statistically significant negative correlation with HDL cholesterol has been registered. There has been a positive correlation between MEP and HOMA-IRI, while positive correlation between MEHP and glycemia has been registered only in MEHP positive DM type 2. Conclusion. It has been confirmed that our population is contaminated with phthalates, most commonly MEHP and MEP, indicating exposure to DEHP and DEP. Indirectly, we have realized that an increased exposure to DEHP and DEP can contribute to the development of certain lipid and lipoprotein disorders, insulin resistance, as well as the development of obesity.</p>
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Uticaj estara ftalne kiseline na tiroidnu funkciju / The influence of phthalic acid esters on thyroid functionBajkin Ivana 20 May 2016 (has links)
<p>Uvod: Poslednjih godina u fokusu istraživača je efekat sintetskih jednjenja na endokrini sistem. Estri ftalne kiseline se koriste u procesu plastifikacije, kao industrijski rastvarači, lubrikanti, aditivi u tekstilnoj industriji, u pesticidima, kozmetičkim proizvodima. Raste broj dokaza da je tiroidna žlezda podložna dejstvu endokrinih disruptora. Tiroidni hormoni imaju važnu ulogu u regulaciji rasta, tkivne diferencijacije, energetskog metabolizma, reprodukcije i formiranja centralnog nervnog sistema. Brojna istraživanja ukazala su da ftalati deluju kao EDs. Ciljevi istraživanja: 1. Procena izloženosti populacije mono-etilheksil-ftalatu (MEHP) i mono-etil-ftalatu (MEP). 2. Evaluacija razlika u nivou pokazatelja tirodine funkcije između ftalat pozitivnih i ftalat negativnih ispitanika i između gojaznih i normalno uhranjenih ftalat pozitivnih ispitanika. 3.Utvrđivanje razlika u serumskom nivou leptina gojaznih ispitanika sa i bez pozitivnih ftalatnih metabolita i procena povezanosti leptina sa MEP i MEHP i pokazateljima tiroidne funkcije. Izbor ispitanika i metod rada: Istraživanje je sprovedeno kao studija preseka, obuhvatilo je 201 ispitanika. Ispitanici su podeljeni u grupu MEP/MEHP pozitivnih i negativnih i na podgupe normalno uhranjenih i gojaznih. Od antropometrijskih mera određena je telesna visina, telesna masa, obim struka i indeks telesne mase. Laboratorijske analize: jutarnji uzorak urina za određivanje MEP i MEHP; našte uzet uzorka venske krvi za FT4, FT3, TSH i leptin. Statististička analiza sprovedena je na softverskom paketu SPSS. Rezultati: Polovina stanovništva je izložena ftalatima. MEP dovodi do povišenja FT4 samo u subpopulaciji gojaznih. Nije utvrđen statistički značajan uticaj MEP na FT3. Kod gojaznih MEP pozitivnih osoba ženskog pola povišen je TSH. MEHP uzrokuje sniženje FT4 kod normalno uhranjenih ispitanika, a kod normalno uhranjenih muškaraca snižava FT3. Nije utvrđen uticaj MEHP na tirotropin. U gojaznih nije ustanovljen uticaj DEHP i DEP na leptinsku sekreciju.Uočena je tendencija negativne korelacije leptina i FT4 kod gojaznih, dok uticaja na FT3 i TSH nema. Zaključak: Naša populacija je u velikoj meri izložena ftalatima. Potvrđeno je da MEP i MEHP imaju uticaj na pojedine indikatore tiroidne funkcije. Ftalati u našem istraživanju ne uzrokuju poremećaj leptinske skrecije, a leptin ima blag uticaj jedino na FT4.</p> / <p>Introduction: Effects of synthesized chemicals on endocrine system has been in the focus in the last years. Phthalates are used in plasticization, as industrial solvents, lubricants, textile industry additives, in pesticides and cosmetic products. Evidence for thyroid disruption is growing. Thyroid hormones (TH) have an important role in regulation of growth, tissue differentiation, energy metabolism, reproduction and central nervous system formation. Studies show phthalates can cause endocrine disruption. Aims: 1. Estimation of burden of mono-ethyl phthalate (MEP) and di-2-ethylheksyl phthalate(MEHP) in the population. 2. Evaluation of differences in TH and TSH in MEP/MEHP positive and negative participants, as in obese and lean MEP/MEHP positive participants. 3. Evaluation of differences in leptin in obese MEP/MEHP positive and negative subjects and evaluation of the connection between leptin, MEP, MEHP and thyroid indicators. Patients and methods: This was a cross-sectional study that comprised 201 subjects divided into MEP/MEHP positive and negative group, further subdivided in obese and lean. Anthropometric parameters done: body height, body weight, waist and body mass index. Laboratory tests done: morning urine sample analysis for MEP/MEHP and venous sample analysis for free thyroxine (FT4), free tri-iodothyronine (FT3), thyroid stimulating hormone (TSH) and leptin. Statistical analysis was done in SPSS. Results: Half of subjects were exposed to phthalates. MEP induced an increase in FT4 in obese participants and had no influence on FT3. TSH was increased in obese MEP positive female subjects. MEHP induced a decrease in FT4 in lean participants and a decrease of FT3 in lean males. There was no correlation between MEHP and TSH. Influence of MEP/MEHP on leptin secretion. A tendency for negative correlation between leptin and FT4 was seen. There was no influence of leptin on FT3 and TSH. Conclusion: Our population is greatly exposed to phthalates. MEP and MEHP influence certain thyroid indicators i.e. cause thyroid disruption. Phthalates do not influence leptin secretion in our study. There is a mild effect of leptin on FT4.</p>
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