4 resultados para PHOSPHATE BINDERS

em AMS Tesi di Dottorato - Alm@DL - Università di Bologna


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Lo studio CAVE PTX ha lo scopo di valutare la reale prevalenza della paratiroidectomia nei pazienti dializzati in Italia, verificare l’aderenza ai targets ematochimici proposti dalle linee guida internazionali K/DOQI e ricercare la presenza di fratture vertebrali e calcificazioni vascolari. Al momento attuale riportiamo i dati preliminari sulla prevalenza e le caratteristiche cliniche generali dei pazienti finora arruolati. Il nostro studio ha ricevuto contributi da 149 centri dialisi italiani, su un totale di 670, pari al 22%. La popolazione dialitica dalla quale sono stati ottenuti i casi di paratiroidectomia è risultata pari a 12515 pazienti;l’87,7% dei pazienti effettuava l’emodialisi mentre il 12,3% la dialisi peritoneale. Cinquecentoventotto, pari al 4,22%, avevano effettuato un intervento di paratiroidectomia (4,5%emodializzati, 1,9% in dialisi peritoneale;p<0.001). Abbiamo considerato tre gruppi differenti di PTH: basso (<150 pg/ml), ottimale (150 -300 pg/ml) ed elevato (>300 pg/ml). I valori medi di PTH e calcemia sono risultati significativamente diversi (più alti) tra casi e controlli nei due gruppi con PTH basso (PTX = 40±39 vs controllo = 92±42 pg/ml; p<.0001) e PTH alto (PTX= 630 ± 417 vs controllo 577 ±331; p<.05). La percentuale di pazienti con PTH troppo basso è risultata più elevata nei pazienti chirurgici rispetto al resto della popolazione (64vs23%; p<0.0001), mentre la percentuale dei casi con PTH troppo alto è risultata significativamente più alta nel gruppo di controllo (38%vs19%; p<0.003). Il 61% dei casi assumeva vitamina D rispetto al 64 % dei controlli; l’88% vs 75% un chelante del fosforo ed il 13%vs 35% il calciomimentico. In conclusione, la paratiroidectomia ha una bassa prevalenza in Italia, i pazienti sono più spesso di sesso femminile, in emodialisi e con età relativamente giovane ma da più tempo in dialisi.

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In the last decades, the building materials and construction industry has been contributing to a great extent to generate a high impact on our environment. As it has been considered one of the key areas in which to operate to significantly reduce our footprint on environment, there has been widespread belief that particular attention now has to be paid and specific measures have to be taken to limit the use of non-renewable resources.The aim of this thesis is therefore to study and evaluate sustainable alternatives to commonly used building materials, mainly based on ordinary Portland Cement, and find a supportable path to reduce CO2 emissions and promote the re-use of waste materials. More specifically, this research explores different solutions for replacing cementitious binders in distinct application fields, particularly where special and more restricting requirements are needed, such as restoration and conservation of architectural heritage. Emphasis was thus placed on aspects and implications more closely related to the concept of non-invasivity and environmental sustainability. A first part of the research was addressed to the study and development of sustainable inorganic matrices, based on lime putty, for the pre-impregnation and on-site binding of continuous carbon fiber fabrics for structural rehabilitation and heritage restoration. Moreover, with the aim to further limit the exploitation of non-renewable resources, the synthesis of chemically activated silico-aluminate materials, as metakaolin, ladle slag or fly ash, was thus successfully achieved. New sustainable binders were hence proposed as novel building materials, suitable to be used as primary component for construction and repair mortars, as bulk materials in high-temperature applications or as matrices for high-toughness fiber reinforced composites.

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Top1-DNA cleavage complexes (Top1ccs) trigger an accumulation of antisense RNAPII transcripts specifically at active divergent CpG-island promoters in a replication independent and Top1 dependent manner, leading to transcription-dependent genome instability and altered transcription regulation. Using different cancer cell lines of colon and osteo origins, we show that they display different sensitivity to CPT and G4 binder that is independent from Top1 level. To look at the interactions between Top1 and G4, we show that co-treatment with G4 binders potentiate the cell cytotoxicity of CPT regardless of the treatment sequences. Potentiation is indicated by a reduced inhibition concentration (IC50) with a more profound cytotoxicity in CPT-resistant cell lines, HCT15 and U2OS, hence, indicating an interaction between Top1inhibitor and G4 binders. Moreover, computational analysis confirmed the present of G4 motifs in genes with CPT-induced antisense transcription. G4 motifs are present mostly 5000 bp upstream from transcription start site and notably lower in genes. Comparisons between genes with no antisense transcription and genes with antisense transcription show that G4 motifs in this region are notably lower in the genes with antisense transcripts. Since CPT increases negative supercoils at promoters of intermediate activity, the formation of G4 is also increased in CPT-treated cells. Suprisingly, formation of G4 is regulated in parallel to the transient stabilization of R-loops, indicating a role in response to CPT-induced stress. G4 formation is highly elevated in Pyridostatin treated cells, which previous study shows increased formation of γH2Ax foci. This effect is also seen in the CPT-resistant cell lines, HCT15, indicating that the formation is a general event in response to CPT. We also show that R-loop formation is greatly increased in Pyridostatin treated cells. In order to study the role of R-loops and G4 structures in Top1cc-dependant repair pathway, we inhibited tyrosyl-phosphodiestrase 1 (TDP-1) using a TDP-1 inhibitor.

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The concepts of circular economy and sustainability are the basis of the present experimental research that seeks to reduce the environmental impact of traditional road construction materials. This study mainly focuses on the development and the chemo-mechanical characterization of bitumen extenders containing rubber (R) from end-of-life tyres (ELTs) and re-refined engine oil bottoms (REOBs) for the production of innovative and eco-friendly extended bitumens (i.e. bituminous binders containing 25%wt. of recycled products) and asphalt mixtures. In order to create more sustainable asphalt mixes, also recycled aggregates are used for partial replacement of virgin natural aggregates in the aggregate skeleton. The experimental program encompassed five successive steps: (i) the evaluation of physicochemical properties of R and REOB, (ii) the definition of the optimal extenders by the development of a new protocol and their characterizations, (iii) the realization and investigation of the chemo-rheological responses of the extended bitumens at different boundary conditions, (iv) the assessment of the effectiveness of analytical method to predict the rheological parameters of extended bitumens and, finally, (v) the analysis of the mechanical performances of the corresponding asphalt mixtures. A standard 50/70 penetration grade bitumen was chosen as a reference material and the main constituent of the innovative bituminous products. The results of this study underlined the importance of material characterization. The incorporation of R-REOB extenders strongly affects the chemo-rheological responses of the resulting extended bitumens and asphalt mixtures overall the boundary conditions. While the presence of R and the consequent formation of a polymer network improves the elasticity of the final products, especially at high test temperatures; the addition of REOB, softens the bituminous binders and asphalt mixes increasing their response at low test temperatures. Nonetheless, the use of recycled products increased the susceptibility of bituminous material under damaging conditions, which would need further investigations.