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81.
Brustolin S Souza C Puga AC Refosco L Pires R Peres R Giugliani R 《Community genetics》2006,9(2):127-132
The Information Service on Inborn Errors of Metabolism (SIEM), a pioneer toll-free service in both Brazil and South America, is based in Porto Alegre, Southern Brazil. SIEM has been operating since October 2001 providing support to health care professionals involved in the diagnosis and management of suspected metabolic diseases. We analyzed the demographic and clinical characteristics of the 376 consults received and followed in the first two and half years of SIEM. Our results show that the suspicion of a metabolic disease was most often associated with neurological symptoms. Among the consults, 24.4% were eventually confirmed as inborn errors of metabolism (IEM), with organic acidurias and amino acid disorders being the two most frequent diagnostic groups. Our conclusion shows this kind of service to provide helpful support to the diagnosis and acute management of IEM, especially to health professionals working in developing countries who are often far from reference centers. 相似文献
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Duffau Boris Ettienne Laurie Rossana Camila Rojas Sonia Rocha René 《平面色谱法杂志一现代薄层色谱法》2016,29(5):394-396
JPC – Journal of Planar Chromatography – Modern TLC - 相似文献
84.
Andreea Ionescu Rossella Caligiuri Nicolas Godbert Loredana Ricciardi Massimo La Deda Mauro Ghedini Nicola Ferri Maria Giovanna Lupo Giorgio Facchetti Isabella Rimoldi Iolinda Aiello 《应用有机金属化学》2020,34(3):e5455
The in vitro biological activity towards the MDA-MB-231 triple-negative breast cancer cell line of two different series of anionic Pt(II) organometallic complexes was tested. For the first time, cytotoxic activity of anionic Pt(II) complexes has been observed. The anionic compounds of general formula NBu4[(C^N)Pt(O^O)], where (C^N) represents the cyclometalated form of 2-phenylpyridine (H(PhPy)), 2-thienylpyridine (H(Thpy)) or 2-benzo[h]quinoline (H(Bzq)), feature two different (O^O) chelated ligands: tetrabromocatechol [BrCat]2− ( 1 – 3 ) or alizarine [Aliz]2− ( 4 – 6 ). Complexes 1 – 6 displayed a significant cytotoxic effect against the studied cell line (IC50 range of 1.9–52.8 μM). For BrCat-containing complexes 1 – 3 , the biological activity was independent of the nature of the coordinated (C^N) ligand. In contrast, in the case of 4 – 6 , the cytotoxicity (significantly high for 4 ) was concomitantly induced by the presence of either the PhPy or the [Aliz]2− ligand. Since complexes 1–6 are emissive in solution, the potential use of 4 as a theranostic agent was investigated using confocal analysis. The fluorescence signal from MDA-MB-231 cells incubated with 4 indicated the localization of the compound into the cytosol region. 相似文献
85.
Peroxyl Radical Reactions in Water Solution: A Gym for Proton‐Coupled Electron‐Transfer Theories
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Dr. Riccardo Amorati Dr. Andrea Baschieri Gloria Morroni Rossana Gambino Prof. Luca Valgimigli 《Chemistry (Weinheim an der Bergstrasse, Germany)》2016,22(23):7924-7934
The reactions of alkylperoxyl radicals with phenols have remained difficult to investigate in water. We describe herein a simple and reliable method based on the inhibited autoxidation of water/THF mixtures, which we calibrated against pulse radiolysis. With this method we measured the rate constants kinh for the reactions of 2‐tetrahydrofuranylperoxyl radicals with reference compounds: urate, ascorbate, ferrocenes, 2,2,5,7,8‐pentamethyl‐6‐chromanol, Trolox, 6‐hydroxy‐2,5,7,8‐tetramethylchroman‐2‐acetic acid, 2,6‐di‐tert‐butyl‐4‐methoxyphenol, 4‐methoxyphenol, catechol and 3,5‐di‐tert‐butylcatechol. The role of pH was investigated: the value of kinh for Trolox and 4‐methoxyphenol increased 11‐ and 50‐fold from pH 2.1 to 12, respectively, which indicate the occurrence of a SPLET‐like mechanism. H(D) kinetic isotope effects combined with pH and solvent effects suggest that different types of proton‐coupled electron transfer (PCET) mechanisms are involved in water: less electron‐rich phenols react at low pH by concerted electron‐proton transfer (EPT) to the peroxyl radical, whereas more electron‐rich phenols and phenoxide anions react by multi‐site EPT in which water acts as proton relay. 相似文献
86.
Gerardo Perozziello Giuseppina Simone Natalia Malara Rosanna La Rocca Rossana Tallerico Rossella Catalano Francesca Pardeo Patrizio Candeloro Giovanni Cuda Ennio Carbone Enzo Di Fabrizio 《Electrophoresis》2013,34(13):1845-1851
In this study, we propose a fast, simple method to biofunctionalise microfluidic systems for cellomic investigations based on micro‐fluidic protocols. Many available processes either require expensive and time‐consuming protocols or are incompatible with the fabrication of microfluidic systems. Our method differs from the existing since it is applicable to an assembled system, uses few microlitres of reagents and it is based on the use of microbeads. The microbeads have specific surface moieties to link the biomolecules and couple cell receptors. Furthermore, the microbeads serve as arm spacer and offer the benefit of the multi‐valent interaction. Microfluidics was adapted together with topology and biochemistry surface modifications to offer the microenvironment for cellomic studies. Based on this principle, we exploit the streptavidin–biotin interaction to couple antibodies to the biofunctionalised microfluidic environment within 5 h using 200 μL of reagents and biomolecules. We selected the antibodies able to form complexes with the MHC class I (MHC‐I) molecules present on the cell membrane and involved in the immune surveillance. To test the microfluidic system, tumour cell lines (RMA) were rolled across the coupled antibodies to recognise and strip MHC‐I molecules. As result, we show that cell rolling performed inside a microfluidic chamber functionalised with beads and the opportune antibody facilitate the removal of MHC class I molecules. We showed that the level of median fluorescent intensity of the MHC‐I molecules is 300 for cells treated in a not biofunctionalised surface. It decreased to 275 for cells treated in a flat biofunctionalised surface and to 250 for cells treated on a surface where biofunctionalised microbeads were immobilised. The cells with reduced expression of MHC‐I molecules showed, after cytotoxicity tests, susceptibility 3.5 times higher than normal cells. 相似文献
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88.
Neogen Corp. has developed the Neocolumn for Aflatoxin DR for the detection of total aflatoxin by HPLC or solution fluorometry. The purpose of this study was to validate the method under the requirements of the AOAC Research Institute Performance Tested Methods (PTM) program. There are several AOAC Official Methods for detection of total aflatoxin in corn; they consist of rapid and analytical-based methods and two rapid methods (PTMs 030701 and 050901) that have been performance tested by the AOAC Research Institute. A widely used reference method, however, is AOAC Official Method 991.31, which uses immumoaffinity cleanup followed by HPLC or solution fluorometry and is referred to as the reference method in this document. In internal studies, the Neocolumn method coupled with solution fluorometry demonstrated a relative recovery from peanuts of 101.6% of the reference value, with a CV of 3.9% across all levels analyzed; when coupled with HPLC, the Neocolumn method demonstrated a relative recovery from peanuts of 103.0% of the reference value with a CV of 3.5% across all levels analyzed. The Neocolumn method coupled with solution fluorometry demonstrated a relative recovery from corn of 116.9% of the reference value with a CV of 6.1% across all levels analyzed; when coupled with HPLC, the Neocolumn method demonstrated a relative recovery from corn of 91.2% of the reference value, with a CV of 5.4% across all levels analyzed. Calculations were made by comparison with the mean result obtained by the HPLC reference method, which showed respective CV values of 3.9 and 2.0% for recoveries from peanuts and corn, respectively. 相似文献
89.
Federica Guarra Alessio Terenzi Christine Pirker Rossana Passannante Dina Baier Ennio Zangrando Vanessa Gmez‐Vallejo Tarita Biver Chiara Gabbiani Walter Berger Jordi Llop Luca Salassa 《Angewandte Chemie (International ed. in English)》2020,59(39):17130-17136
AuIII complexes with N‐heterocyclic carbene (NHC) ligands have shown remarkable potential as anticancer agents, yet their fate in vivo has not been thoroughly examined and understood. Reported herein is the synthesis of new AuIII‐NHC complexes by direct oxidation with radioactive [124I]I2 as a valuable strategy to monitor the in vivo biodistribution of this class of compounds using positron emission tomography (PET). While in vitro analyses provide direct evidence for the importance of AuIII‐to‐AuI reduction to achieve full anticancer activity, in vivo studies reveal that a fraction of the AuIII‐NHC prodrug is not immediately reduced after administration but able to reach the major organs before metabolic activation. 相似文献
90.
Filippo Samperi Concetto Puglisi Rossana Alicata Giorgio Montando 《Journal of polymer science. Part A, Polymer chemistry》2003,41(18):2778-2793
A combination of NMR and matrix‐assisted laser desorption/ionization time‐of‐flight mass spectrometry (MALDI‐TOF) techniques were suitable tools for examining the exchange reactions that occur during the melt‐mixing of nylon‐6 and poly(ethylene terephthalate) (Ny6/PET) blends in the presence of p‐toluene sulfonic acid (TsOH) at 285 °C. Some researchers believe that TsOH is an efficient catalyst for the amide–ester exchange reactions in PET/Ny6 and PET/nylon‐66 blends in the molten state. Instead, we have found that TsOH is able to react in the molten state with PET, yielding PET oligomers terminated with carboxyl groups. Because the latter oligomers can quickly react with Ny6 producing a Ny6/PET copolymer, the role of TsOH in the melt‐mixing process is not that of a catalyst but of a reactant. Our study allowed the structural identification of the Ny6/PET copolyesteramide produced in the exchange as a function of melt‐mixing time. The results revealed the essential role of carboxyl end groups in the exchange reaction between Ny6 and PET and allowed a detailed mechanism for this reaction. © 2003 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 41: 2778–2793, 2003 相似文献