Acido solfidrico nella letteratura internazionale
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(1) Zhu A, Luo Z, Ding C, Li B, Zhou S, Wang R, et al. A two-photon "turn-on" fluorescent probe based on carbon nanodots for imaging and selective biosensing of hydrogen sulfide in live cells and tissues. Analyst 2014 Feb 27. Abstract: Determination of hydrogen sulfide (H2S) in live cells and tissues is still a challenge for evaluating the key roles that H2S plays in physiological and pathological processes. In this work, a "turn-on" two-photon fluorescent (TPF) sensor for H2S is developed, in which carbon nanodot (C-Dot) was employed as a two-photon fluorophore due to its large two-photon absorption cross-section (sigma), and AE-TPEA-Cu2+ complex [AE-TPEA = N-(2-aminoethyl)-N,N,N'-tris(pyridin-2-ylmethyl)ethane-1,2-diamine] was first designed as a specific receptor for H2S. The fluorescence of C-Dot conjugated with AE-TPEA (C-Dot-TPEA) was quenched upon the addition of Cu2+. Then, the fluorescence was restored after the addition of H2S, because Cu2+ could be released from TPEA binding site when H2S interacted with the Cu2+ ion. The designed C-DotTPEA-Cu2+ fluorescent sensor exhibited high specificity for H2S over biothiols, sulfurcontaining compounds, reactive oxygen species (ROS), and other biological interferences. Meanwhile, a broad linear range from 5 muM to 100 muM was obtained and the detection limit was achieved to 0.7 muM. In addition, the C-Dot-based TPF probe exhibited bright two-photon fluorescence, favourable photostability against light illumination and pH change, and low cytotoxicity. Accordingly, the nanohybridized TPF sensor with high selectivity and sensitivity, as well as the fascinating properties of C-Dot themselves, successfully provided a new way for TPF imaging and biosensing of H2S in live cells and tissues. We believe this is the first report of TPF imaging and biosensing of H2S in live cells and tissues using a specially engineered C-Dot-based nanosystem
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Acido solfidrico nella letteratura internazionale
(2) Dehaut A, Midelet-Bourdin G, Brisabois A, Duflos G. Phenotypic and genotypic characterization of H S positive and negative strains of Shewanella baltica isolated from spoiled whiting (Merlangius merlangus). Lett Appl Microbiol 2014 Jul 29. Abstract: Four strains were isolated from a spoiled whiting (Merlangius merlangus). All of them were able to grow aerobically from 4 degrees C to 30 degr...
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(1) Boudens R, Reid T, VanMensel D, Prakasan MRS, Ciborowski JJ, Weisener CG. Biophysicochemical effects of gamma irradiation treatment for naphthenic acids in oil sands fluid fine tailings. Sci Total Environ 2016 Jan 1;539:114-24. Abstract: Naphthenic acids (NAs) are persistent compounds that are components of most petroleum, including those found in the Athabasca oil sands. Their presence in ...
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(1) Tan LK, Ooi PT, Carniel E, Thong KL. Evaluation of a Modified Cefsulodin-Irgasan-Novobiocin Agar for Isolation of Yersinia spp. PLoS One 2014;9(8):e106329. Abstract: Y. enterocolitica and Y. pseudotuberculosis are important food borne pathogens. However, the presence of competitive microbiota makes the isolation of Y. enterocolitica and Y. pseudotuberculosis from naturally contaminated food...
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An inexpensive paper-based sensor was developed for detecting low ppm concentrations of hydrogen sulfide gas. A piece of filter paper containing aquohydroxocobinamide [OH(H2O)Cbi] was placed on the end of a bifurcated optical fiber, and the reflectance spectrum of the OH(H2O)Cbi was monitored during exposure to 10.0 ppm hydrogen sulfide gas (NIOSH recommended exposure limit). Reaction of sulfid...
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Sulfate-reducing bacteria (SRB) are widely existed in oil production system, and its H2S product inhibits rhamnolipid producing bacteria. In-situ production of rhamnolipid is promising for microbial enhanced oil recovery. Inhibition of SRB, removal of H2S and production of rhamnolipid by recombinant Pseudomonas stutzeri Rhl were investigated. Strain Rhl can simultaneously remove S(2-) (>92%) an...
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