932 resultados para Defense and Security Studies
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The physico-chemical properties of the new 3d-4f heteronuclear complexes with general formula LnCu3(C11H8N2 O4Br)3·13H2O (where Ln = Pr, Eu, Gd, Tb, Er, Yb and H3(C11H8N2 O4Br) - 5-bromosalicylideneglycylglycine) were studied. The compounds were characterized by elemental, spectral and thermal analyses and magnetic measurements. The formation of Schiff base is evidenced by a strong band at ca. 1646-1650 cm-1 attributable to C=N stretching mode. The presence of water molecules is confirmed by broad absorptions with maximum at 3360 - 3368 cm-1. The Cu(II)-Ln(III) complexes are stable up to ca. 318 K. During dehydration process the water molecules are lost probably in two stages. The magnetic susceptibility data for these complexes change with temperature according to the Curie-Weiss law.
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The combination of two low-cost classical procedures based on titrimetric techniques is presented for the determination of pyridoxine hydrochloride in pharmaceuticals samples. Initially some experiments were carried out aiming to determine both pKa1 and pKa2 values, being those compared to values of literature and theoretical procedures. Commercial samples containing pyridoxine hydrochloride were electrochemically analysed by exploiting their acid-base and precipitation reactions. Potentiometric titrations accomplished the reaction between the ionizable hydrogens present in pyridoxine hydrochloride, being NaOH used as titrant; while the conductimetric method was based on the chemical precipitation between the chloride of pyridoxine hydrochloride molecule and Ag+ ions from de silver nitrate, changing the conductivity of the solution. Both methods were applied to the same commercial samples leading to concordant results when compared by statistical tests (95 and 98% confidence levels). Recoveries ranging from 99.0 to 108.1% were observed, showing no significant interference on the results.
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The aim of the present study was to investigate a cytotoxic oxidative cell stress related and the antioxidant profile of kaempferol, quercetin, and isoquercitrin. The flavonol compounds were able to act as scavengers of superoxide anion (but not hydrogen peroxide), hypochlorous acid, chloramine and nitric oxide. Although flavonoids are widely described as antioxidants and this activity is generally related to beneficial effects on human health, here we show important cytotoxic actions of three well known flavonoids. They were able to promote hemolysis which one was exacerbated on the presence of hypochlorous acid but not by AAPH radical. Therefore, despite they expected scavenger action over free radicals an oxidants, these compounds could be very lesive to living organisms by acting over erythrocytes and maybe other cellular types.
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Integrum-aineistokoulutuksen 28.9. - 29.9.2011 koulutusmateriaalia
DPS-Like Peroxide Resistance Protein: Structural and Functional Studies on a Versatile Nanocontainer
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Oxidative stress is a constant threat to almost all organisms. It damages a number of biomolecules and leads to the disruption of many crucial cellular functions. It is caused by reactive oxygen species (ROS), such as hydrogen peroxide (H
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Avhandlingen undersöker den Afrikanska Unionens freds- och säkerhetsråd och dess roll i framhävandet och upprätthållandet av fred, säkerhet och stabilitet i Afrika. Detta freds- och säkerhetsråd etablerades formellt 2004 och opererar under den Afrikanska Unionen (AU) som å sin sida upprättades 2002. Den Afrikanska Unionens freds- och säkerhetsråds roll i framhävandet av fred, säkerhet och stabilitet gör rådet till en hörnsten inom ramen för konfliktförebyggande och -hantering, samt konfliktlösning på den afrikanska kontinenten. Den Afrikanska Unionens freds- och säkerhetsråd spelar också en högst viktig roll i implementeringen av ansvaret att beskydda civilbefolkningen i konfliktsituationer. För uppfyllandet av sitt mandat att framhäva och upprätthålla fred, säkerhet och stabilitet i Afrika krävs det att freds- och säkerhetsrådet samarbetar med andra institutioner och mekanismer som handhar internationella och regionala freds- och säkerhetsärenden. Avhandlingen analyserar tre dimensioner av denna typ av relationer som freds- och säkerhetsrådet bör etablera med dessa organ och mekanismer för att kunna utföra sitt mandat effektivt. Först analyseras relationen mellan Afrikanska Unionens freds- och säkerhetsråd och Förenta Nationernas säkerhetsråd som också beskrivs i artikel 17 (1) i protokollet som förde till etablerandet av AU:s freds- och säkerhetsråd. Analysen understryker FN:s säkerhetsråd som det organ som bär det primära ansvaret i förhållande till fred och säkerhet, medan AU:s freds- och säkerhetsråd fungerar som en kompletterande komponent i sin roll som ett regionalt organ. Avhandlingen fortsätter med att analysera förhållandet mellan AU:s freds- och säkerhetsråd och andra organ inom AU, samt andra relevanta institutioner som framgår av artikel 10, 18 (1), 19 och 20 i protokollet för rådets etablerande. Avhandlingen diskuterar i detalj hur samarbetet mellan AU:s freds- och säkerhetsråd och dessa institutioner och organ kunde förstärkas till fördel för effektivt framhävande och upprätthållande av fred och säkerhet i Afrika. Slutligen analyserar avhandlingen samarbetet mellan AU:s freds- och säkerhetsråd och sub-regionala mekanismer etablerade under regionala ekonomiska gemenskaper som beskrivs i artikel 16 i protokollet för etablerandet av rådet. Avhandlingen diskuterar i detalj rollen för de sub-regionala mekanismerna i den afrikanska freds- och säkerhetsarkitekturen. Avhandlingen diskuterar vidare förhållandet mellan de sub-regionala mekanismerna och den afrikanska stand-by styrkan ASF och förutsättningarna för detta arrangemang att bemöta afrikanska konflikter. Avhandlingen fokuserar också på en harmoniserings- och samarbetsprocess i förhållande till de sub-regionala mekanismerna, de regionala ekonomiska gemenskaperna och den Afrikanska Unionens freds- och säkerhetsråd. Kort sagt beskriver avhandlingen hur förhållandet mellan AU:s freds- och säkerhetsråd och de ovan nämnda organ och mekanismer har en faktisk och potentiell möjlighet att effektivt bidra till fred, säkerhet och stabilitet i Afrika. Avhandlingen identifierar utmaningarna kring att göra detta till ett fungerande förhållande samtidigt som den genererar både generella och specifika rekommendationer om hur dessa utmaningar bäst kan bemötas. Några av dessa utmaningar utgörs av följande aspekter: konflikten mellan AU:s och FN:s reglemang i bemötandet av freds- och säkerhetsutmaningar; de olika metoderna i FN och AU vid implementeringen av principen av universell jurisdiktion; konflikten mellan de olika mandaten som AU:s freds- och säkerhetsråd och FN:s säkerhetsråd har i förhållande till implementeringen av principen om intervention; och konflikten mellan lagarna och metoderna i förhållande till AU:s freds- och säkerhetsråd och de regionala mekanismerna. En av de huvudsakliga rekommendationerna i avhandlingen i bemötandet av de ovan nämnda utmaningarna är att harmonisera de olika systemen för att försäkra att det föreligger ett samordnat bemötande av konflikter i Afrika. Efter att ha identifierat luckorna i AU:s freds- och säkerhetsprotokoll med speciell fokus på förhållandet mellan rådet och de relevanta organen och mekanismerna rekommenderar avhandlingen ett antal tillägg och modifieringar till instrumentet ifråga för att effektivera, stärka och upprätthålla detta förhållande. Avhandlingen föreslår att dessa tillägg och modifieringar skulle företas under 2014 då detta år markerar 10 år efter att AU:s freds- och säkerhetsråd etablerades. Idén bakom detta företagandet ligger i att 10 år torde vara en tillfredställande tidsperiod för att mäta hur freds- och säkerhetsrådet har fungerat och hur dess förhållande med de relevanta institutionerna och mekanismerna kunde förbättras. Avhandlingen representerar den bredaste och nyaste studien inom ramen för artikel 16, 17, 18, 19 och 20 i protokollet för AU:s freds- och säkerhetsråd och introducerar ett innovativt bemötande av utmaningar till fred, säkerhet och stabilitet på den afrikanska kontinenten. Avhandlingen bidrar till teorin och praxisen i AU:s freds- och säkerhetsråd vilket kan vara av intresse för både forskare och praktiker i folkrätt såväl som i internationella freds- och säkerhetsstudier, speciellt i Afrika.
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Mitochondria are present in all eukaryotic cells. They enable these cells utilize oxygen in the production of adenosine triphosphate in the oxidative phosphorylation system, the mitochondrial respiratory chain. The concept ‘mitochondrial disease’ conventionally refers to disorders of the respiratory chain that lead to oxidative phosphorylation defect. Mitochondrial disease in humans can present at any age, and practically in any organ system. Mitochondrial disease can be inherited in maternal, autosomal dominant, autosomal recessive, or X-chromosomal fashion. One of the most common molecular etiologies of mitochondrial disease in population is the m.3243A>G mutation in the MT-TL1 gene, encoding mitochondrial tRNALeu(UUR). Clinical evaluation of patients with m.3243A>G has revealed various typical clinical features, such as stroke-like episodes, diabetes mellitus and sensorineural hearing loss. The prevalence and clinical characteristics of mitochondrial disease in population are not well known. This thesis consists of a series of studies, in which the prevalence and characteristics of mitochondrial disease in the adult population of Southwestern Finland were assessed. Mitochondrial haplogroup Uk was associated with increased risk of occipital ischemic stroke among young women. Large-scale mitochondrial DNA deletions and mutations of the POLG1 gene were the most common molecular etiologies of progressive external ophthalmoplegia. Around 1% of diabetes mellitus emerging between the ages 18 – 45 years was associated with the m.3243A>G mutation. Moreover, among these young diabetic patients, mitochondrial haplogroup U was associated with maternal family history of diabetes. These studies demonstrate the usefulness of carefully planned molecular epidemiological investigations in the study of mitochondrial disorders.
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Pathological gambling, a form of behavioral addiction, refers to maladaptive, compulsive gambling behavior severely interfering with an individual’s normal life. The prevalence of pathological gambling has been estimated to be 1–2% in western societies. The reward deficiency hypothesis of addiction assumes that individuals that have, or are prone, to addictions have blunted mesolimbic dopamine reward signaling, which leads to compulsive reward seeking in an attempt to compensate for the malfunctioning brain reward network. In this research project, the effects of gambling were measured using brain [11C] raclopride PET during slot machine gambling and possible brain structural changes associated with pathological gambling using MRI. The subjects included pathological gamblers and healthy volunteers. In addition, impulse control disorders associated with Parkinson’s disease were investigated by using brain [18F]fluorodopa PET and conducting an epidemiological survey. The results demonstrate mesolimbic dopamine release during gambling in both pathological gamblers and healthy volunteers. Striatal dopamine was released irrespective of the gambling outcome, whether the subjects won or not. There was no difference in gambling induced dopamine release between pathological gamblers and control subjects, although the magnitude of the dopamine release correlated with gambling related symptom severity in pathological gamblers. The results also show that pathological gambling is associated with extensive abnormality of brain white matter integrity, as measured with diffusion tensor imaging, similar to substance-addictions. In Parkinson’s disease patients with impulse control disorders, enhanced brain [18F] fluorodopa uptake in the medial orbitofrontal cortex was observed, indicating increased presynaptic monoamine function in this region, which is known to influence signaling in the mesolimbic system and reward processing. Finally, a large epidemiological survey in Finnish Parkinson’s disease patients showed that compulsive behaviors are very common in Parkinson disease and they are strongly associated with depression. These findings demonstrate the role of dopamine in pathological gambling, without support for the concept of reward deficiency syndrome.
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Morphological, anatomical and biochemical alterations in foliar galls of Alstonia scholaris R. Br. induced by the insect Pauropsylla tuberculata (Psyllidae) are described and quantified. Galls occur isolated or agglomerated on the abaxial surface of the leaf. The insect along with the egg deposits some physiologic fluid which act as a stimulant for the induction of the gall. This stimulus brings about hypertrophy followed by hyperplasia of cells next to the location of the deposited eggs. The psyllid presents three nymphal instars, from eclosion of the egg to the adult. Hyperplasia in the palisade cells is very distinctly noticed. Hypertrophy followed by hyperplasia takes place and brings about elevation of hypodermal and palisade parenchyma which undergoes repeated anticlinal divisions. Neoformation of phloematic bundles were distinctly noticed close to the site of infection. With an increase in the growth of the gall, chlorophyll content in the gall tissue decreases. A steady increase of sugar content is noticed. The immature galled tissue showed almost two fold increases in the protein content. The mature galled tissue showed a very high increase in the proline content compared to the immature galled tissue indicating a stressed condition of the galled tissue.
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A decade of studies on long-term habituation (LTH) in the crab Chasmagnathus is reviewed. Upon sudden presentation of a passing object overhead, the crab reacts with an escape response that habituates promptly and for at least five days. LTH proved to be an instance of associative memory and showed context, stimulus frequency and circadian phase specificity. A strong training protocol (STP) (³15 trials, intertrial interval (ITI) of 171 s) invariably yielded LTH, while a weak training protocol (WTP) (£10 trials, ITI = 171 s) invariably failed. STP was used with a presumably amnestic agent and WTP with a presumably hypermnestic agent. Remarkably, systemic administration of low doses was effective, which is likely to be due to the lack of an endothelial blood-brain barrier. LTH was blocked by inhibitors of protein and RNA synthesis, enhanced by protein kinase A (PKA) activators and reduced by PKA inhibitors, facilitated by angiotensin II and IV and disrupted by saralasin. The presence of angiotensins and related compounds in the crab brain was demonstrated. Diverse results suggest that LTH includes two components: an initial memory produced by spaced training and mainly expressed at an initial phase of testing, and a retraining memory produced by massed training and expressed at a later phase of testing (retraining). The initial memory would be associative, context specific and sensitive to cycloheximide, while the retraining memory would be nonassociative, context independent and insensitive to cycloheximide
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The characterization of proteins from Brucella spp, the causative agent of brucellosis, has been the subject of intensive research. We have described an 18-kDa cytoplasmic protein of Brucella abortus and shown the potential usefulness of this protein as an antigen for the serologic diagnosis of brucellosis. The amino acid sequence of the protein showed a low but significant homology with that of lumazine synthases. Lumazine is an intermediate product in bacterial riboflavin biosynthesis. The recombinant form of the 18-kDa protein (expressed in E. coli) folds like the native Brucella protein and has lumazine-synthase enzymatic activity. Three-dimensional analysis by X-ray crystallography of the homolog Bacillus subtilis lumazine synthase has revealed that the enzyme forms an icosahedral capsid. Recombinant lumazine synthase from B. abortus was crystallized, diffracted X rays to 2.7-Å resolution at room temperature, and the structure successfully solved by molecular replacement procedures. The macromolecular assembly of the enzyme differs from that of the enzyme from B. subtilis. The Brucella enzyme remains pentameric (90 kDa) in its crystallographic form. Nonetheless, the active sites of the two enzymes are virtually identical at the structural level, indicating that inhibitors of these enzymes could be viable pharmaceuticals across a broad species range. We describe the structural reasons for the differences in their quaternary arrangement and also discuss the potential use of this protein as a target for the development of acellular vaccines.
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Reconstitution of membrane proteins into lipid bilayers is a powerful tool to analyze functional as well as structural areas of membrane protein research. First, the proper incorporation of a purified membrane protein into closed lipid vesicles, to produce proteoliposomes, allows the investigation of transport and/or catalytic properties of any membrane protein without interference by other membrane components. Second, the incorporation of a large amount of membrane proteins into lipid bilayers to grow crystals confined to two dimensions has recently opened a new way to solve their structure at high resolution using electron crystallography. However, reconstitution of membrane proteins into functional proteoliposomes or 2-D crystallization has been an empirical domain, which has been viewed for a long time more like "black magic" than science. Nevertheless, in the last ten years, important progress has been made in acquiring knowledge of lipid-protein-detergent interactions and has permitted to build upon a set of basic principles that has limited the empirical approach of reconstitution experiments. Reconstitution strategies have been improved and new strategies have been developed, facilitating the success rate of proteoliposome formation and 2-D crystallization. This review deals with the various strategies available to obtain proteoliposomes and 2-D crystals from detergent-solubilized proteins. It gives an overview of the methods that have been applied, which may be of help for reconstituting more proteins into lipid bilayers in a form suitable for functional studies at the molecular level and for high-resolution structural analysis.
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Polyketides are a diverse group of natural products produced in many bacteria, fungi and plants. These metabolites have diverse biological activities and several members of this group are in clinical use as antibiotics, anticancer agents, antifungals and immunosuppressants. The different polyketides are produced by polyketide synthases, which catalyze the condensation of extender units into various polyketide scaffolds. After the biosynthesis of the polyketide backbone, more versatility is created to the molecule by tailoring enzymes catalyzing for instance hydroxylations, methylations and glycosylations. Flavoprotein monooxygenases (FPMO) and short-chain alcohol dehydrogenases/reductases (SDR) are two enzyme families that catalyze unusual tailoring reactions in the biosynthesis of natural products. In the experimental section, functions of homologous FPMO and SDR tailoring enzymes from five different angucycline pathways were studied in vitro. The results revealed how different angucyclinones are produced from a common intermediate and that FPMO JadH and SDR LanV are responsible for the divergence of jadomycins and landomycins, respectively, from other angucyclines. Structural studies of these tailoring enzymes revealed differences between homologous enzymes and enabled the use of structure-based protein engineering. Mutagenesis experiments gave important information about the enzymes behind the evolution of distinct angucycline metabolites. These experiments revealed a correlation between the substrate inhibition and bi-functionality in JadH homologue PgaE. In the case of LanV, analysis of mutagenesis results revealed that the difference between the stereospecificities of LanV and its homologues CabV and UrdMred is unexpectedly related to the conformation of the substrate rather than to the structure of the enzyme. Altogether, the results presented here have improved our knowledge about different steps of angucycline biosynthesis and the reaction mechanisms used by the tailoring enzymes behind these steps. This information can hopefully be used to modify these enzymes to produce novel metabolites, which have new biological targets or possess novel modes-of-action. The understanding of these unusual enzyme mechanisms is also interesting to enzymologists outside the field of natural product research.