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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Polychlorinated biphenyl exposure reduces reproductive performance of male bluegills (Lepomis macrochirus)

Hillis, Jeffrey Jackson 01 December 2013 (has links)
Endocrine disrupting chemicals in wild animals, including fish, can disrupt reproduction by causing intersexuality. Organic pollutants, specifically polychlorinated biphenyls (PCBs), have been shown to be estrogenic or anti-androgenic likely contributing to intersexuality in males. Organic pollutants persist in the environment despite being restricted for use in the United States. Bluegills, Lepomis macrochirus, play a crucial role in lake food webs as forage and sport fish and may be affected by PCBs. In the current study, male bluegills collected in 2010 from selected Illinois lakes were analyzed to quantify PCB body residues and the incidence of intersexuality (n=200). Experiments were then conducted in 2011 and 2012 to assess the reproductive output of mature males with varying PCB body residues paired with mature females containing no detectable PCB body residues held in uncontaminated 0.05-hectare research ponds (Southern Illinois University Touch of Nature Pond Facility). Lake-specific male bluegill whole-body tissue PCB body residues ranged from below reporting limit to 2 mg/kg dry weight (non-lipid normalized basis) and varied significantly among lakes (F7,32= 9.59, p<0.0001). No male intersex bluegills were found. In both reproductive experiments, abundance of young declined as male PCB body residues increased (F 4,18 = 13.28; P=0.002). Adult survival was unrelated to reproductive output. Taken together, these results suggest PCBs, which are ubiquitous in aquatic and terrestrial habitats, have the ability to alter male reproductive performance, and possibly population dynamics and community structure through reduced recruitment, in the absence of overt intersexuality.
2

Environmental Releases of Neonicotinoid and Fipronil Insecticides via U.S. Wastewater Infrastructure

January 2017 (has links)
abstract: This dissertation is focused on environmental releases from U.S. wastewater infrastructure of recently introduced, mass-produced insecticides, namely neonicotinoids as well as fipronil and its major degradates (sulfone, sulfide, amide, and desulfinyl derivatives), jointly known as fiproles. Both groups of compounds recently have caught the attention of regulatory agencies worldwide due to their toxic effects on pollinators and on aquatic invertebrates at very low, part-per-trillion levels (Chapter 1). Mass balance studies conducted for 13 U.S. wastewater treatment plants (WWTPs) showed ubiquitous occurrence (3-666 ng/L) and persistence of neonicotinoids (Chapter 2). For the years 2001 through 2016, a longitudinal nationwide study was conducted on the occurrence of fiproles, via analysis of sludge as well as raw and treated wastewater samples. Sludge analysis revealed ubiquitous fiprole occurrence since 2001 (0.2-385 µg/kg dry weight) and a significant increase (2.4±0.3-fold; p<0.005) to elevated levels found both in 2006/7 and 2015/6. This study established a marked persistence of fiproles during both wastewater and sludge treatment, while also identifying non-agricultural uses as a major source of fiprole loading to wastewater (Chapter 3). Eight WWTPs were monitored in Northern California to assess pesticide inputs into San Francisco Bay from wastewater discharge. Per-capita-contaminant-loading calculations identified flea and tick control agents for use on pets as a previously underappreciated source term dominating the mass loading of insecticides to WWTPs in sewage and to the Bay in treated wastewater (Chapter 4). A nationwide assessment of fipronil emissions revealed that pet products, while representing only 22±7% of total fipronil usage (2011-2015), accounted for 86±5% of the mass loading to U.S. surface waters (Chapter 5). In summary, the root cause for considerable annual discharges into U.S. surface waters of the neonicotinoid imidacloprid (3,700-5,500 kg/y) and of fipronil related compounds (1,600-2,400 kg/y) is domestic rather than agricultural insecticide use. Reclaimed effluent from U.S. WWTPs contained insecticide levels that exceed toxicity benchmarks for sensitive aquatic invertebrates in 83% of cases for imidacloprid and in 67% of cases for fipronil. Recommendations are provided on how to limit toxic inputs in the future. / Dissertation/Thesis / Doctoral Dissertation Civil, Environmental and Sustainable Engineering 2017
3

REGULATION OF CIRCADIAN CLOCKS AND METABOLISM BY ARYL HYDROCARBON RECEPTOR

XU, CANXIN 01 December 2014 (has links)
The aryl hydrocarbon receptor (AhR), a ligand-dependent transcription factor, plays a crucial role in regulation of xenobiotic metabolism. AhR is also involved in dioxin-induced metabolic disorders and alteration of circadian rhythm. Furthermore, circadian clock disruption and metabolic dysfunction are integrally associated with each other. This study was designed to understand the mechanisms by which AhR contributes to regulation of circadian clocks, fat metabolism and glucose homeostasis. In the first aim, I have tested whether AhR interacts with the core clock gene, brain and muscle AhR nuclear translocator like-1(BMAL1), disrupting circadian locomotor output cycle kaput (CLOCK)/BMAL1 complex activity, and leading to the suppression of period1 gene (Per1) expression rhythm. My studies indicate that AhR activation by its agonists 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) and beta-naphoflavone (BNF) disrupts the rhythm and inhibits the expression of Per1 in mouse liver and hepatoma cell lines, respectively. Mechanistically, the disruption of the rhythm and the inhibition of Per1 expression occur secondary to the interaction between AhR and BMAL1, which attenuates transcriptional activity of the core clock complex CLOCK/BMAL1. These results suggest alteration of the circadian clock as a novel signaling event downstream of AhR activation. The integral relationship between the clock and metabolic function further suggest that AhR activation may cause metabolic dysfunction. In the second aim, I have tested whether AhR activation inhibits Per1 gene induction and influences circadian clock resetting through activation of JNK pathway. AhR activation by it agonists TCDD and BNF decreases light-induced phase shifts in the early night and inhibits light-induced Per1 expression in both suprachiasmatic nucleus (SCN) and liver. Inhibition of Per1 induction results from increased phospho-JNK induced by AhR activation. Taken together, activation of AhR disrupts circadian clock resetting which also could cause metabolic dysfunction. In the third aim, I have tested whether AhR deficiency regulates nuclear receptor peroxisome proliferator-activated receptor a; (PPARa) and alters glucose homeostasis. PPARa, a clock-controlled gene (CCG) that acts as a fat metabolism sensor, is important for lipid metabolism and glucose homeostasis. AhR knockout (AhRKO or AhR-/-) mice exhibit enhanced insulin sensitivity and glucose tolerance, accompanied by decreased expression of PPARa, key gluconeogenic genes, glucose-6 phosphatase (G6Pase) and phosphoenolpyruvate carboxykinase (PEPCK) and key fatty acid oxidation enzymes, carnitine palmitoyl transferase1b (CPT1b) and acyl-CoA oxidase (ACO). Conversely, AhR agonists increase PPARa; expression in a BMAL1-dependent manner. In addition, AhRKO mice display altered rhythm for clock genes, clock-controlled genes (CCGs) and physiological blood glucose. These data suggest that AhR may modulate the glucose homeostasis through regulation of CCGs such as PPARa and that PPARa may be an important link between the circadian clock and metabolism. In the fourth aim, I have tested the effects of AhR ablation or attenuation in high-fat diet (HFD)-induced obesity, insulin resistance and hepatic steatosis in mice. Recent studies suggest that PPARα expression is elevated with HFD feeding as an adaptive response to attenuate hepatic steatosis, and PPARa deficiency protects against HFD-induced insulin resistance. AhR-/- as well as AhR heterozygous (AhR+/-) mice are protected from the HFD-induced obesity, insulin resistance, hepatic steatosis and show reduced inflammatory cytokine expression. In addition, AhR-/- and AhR+/- mice display protected insulin signaling, a higher adiponectin and a lower leptin and insulin in serum. Food intake and physical activity are not significantly different among WT, AhR-/- and AhR+/- mice with HFD feeding. Indirect calorimetry has demonstrated that the AhR+/- mice have higher oxygen consumption, CO2 production and heat production. In addition, Real-time PCR data show that uncoupling protein 1(Ucp1) is higher in brown adipose tissue which supports the higher heat production; moreover, the muscle gene profile reveals that the fatty acid beta-oxidation genes and mitochondrial respiratory genes are higher in AHR+/- mice which further support higher energy expenditure in these mice. Collectively, these data suggest that AhR signaling could be a potential target for treatment of obesity and type 2 diabetes, and AhR antagonist may be developed into a drug for these metabolic diseases.
4

Nivoi koncentracija i upravljanje perzistentnim organskim polutantima u heterogenom sistemu deponija komunalnog otpada / Concentration levels of persistent organic pollutants and management of POP inheterogeneous system of municipal waste landfills

Đogo Maja 21 September 2017 (has links)
<p>Istraživanje u okviru doktorkse disertacije obuhvata reprezentativan izbor tačaka uzorkovanja na deponijskim lokalitetima Bečej, Subotica, Sombor, Zrenjanin, Pančevo, Bačka Palanka, Vrbas, Temerin, Novi Sad i Ruma, primenu savremenih metodologija uzorkovanja, pripremu i analizu uzoraka najnovijim metodama determinacije organskih polutanata, statističku obradu podataka, procenu uticaja na humanu populaciju i ključne kompartimente životne sredine i razvoj metodologije kreiranja budućeg istraživačkog i kontrolnog monitoring programa. Dobijeni rezultati obrađeni su primenom metode analiza glavnih komponenti i hijerarhijske klaster analize. Procena uticaja kontaminanata i statusa životne sredine sprovedena je primenom jedne od metodologija evropske komisije za procenu i predikciju različitih efekata na humanu populaciju i životnu sredinu dejstvom toksičnih hemijskih supstanci. Na osnovu eksperimentalnih rezultata i stečenih tehničko-inženjerskih iskustava razvijena je Metodologija kreiranja budućeg istraživačkog i kontrolnog monitoring programa heterogenog medijuma deponijskih tela sa ciljem unapređenja upravljanja frakcijama komunalnog otpada koji generiše POP.</p> / <p>The selection of representative municipal solid waste landfill locations (Bečej, Subotica,<br />Sombor, Zrenjanin, Pančevo, Bačka Palanka, Vrbas, Temerin, Novi Sad and Ruma),<br />the application of contemporary sampling methodologies, preparation, extraction and<br />analyses of samples using modern analitical methods and techiques, statistical data<br />evaluation, human and environment risk assessment, HERA, and the development of<br />methodology for designig of future research and control monitoring programmes have<br />been conducted within doctoral dissertation. Obtained results for POPs and PAHs were<br />evaluated applying principal component analysis (PCA) and hierarchical cluster<br />analysis (CA). HERA was conducted using recommended EPA methodolgy for<br />assessment and prediction of hazard effectes of toxic chemical substances on human<br />population and environment. On the basis of experimental results and the levels of<br />obtained technico-engineering experience Methodology for designig of future research<br />and control monitoring programmes for landfilld heterogeneous system was developed<br />in order to improve the POP waste management practice.</p>

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