Yang, Dingwei’s team published research in Journal of Nephrology in 2013-10-31 | CAS: 117-96-4

Journal of Nephrology published new progress about Apoptosis. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Application In Synthesis of 117-96-4.

Yang, Dingwei published the artcileNa+/Ca2+ exchange inhibitor, KB-R7943, attenuates contrast-induced acute kidney injury, Application In Synthesis of 117-96-4, the main research area is KBR7943 renoprotectant sodium calcium exchanger inhibitor acute kidney injury.

Background: Intracellular Ca2+ overload is considered to be a key factor in contrast-induced acute kidney injury (CI-AKI). The Na+/Ca2+ exchanger (NCX) system is one of the main pathways of intracellular Ca2+ overload. We investigated the effects of KB-R7943, an inhibitor of the reverse mode of NCX, on CI-AKI in a rat model. Method: Rats were divided into control group, CI-AKI group and pretreatment groups (with KB-R7943 dose of 5 or 10 mg/kg). CI-AKI was induced by diatrizoate administration in rats with cholesterol-supplemented diet for 8 wk. Renal function and renal hemodynamics were determined 1 day following contrast medium administration. Renal histopathol. was observed by light microscope. Renal tubular apoptosis was examined by TUNEL. Renal endothelin-1 (ET-1) was measured by RIA. Renal malondialdehyde (MDA) and catalase (CAT) were measured as oxidative markers. Results: Levels of serum creatinine (Scr), renal ET-1, MDA and CAT, and resistance index (RI) of renal blood vessels increased significantly in CI-AKI rats. The increases in Scr and RI of renal blood vessels induced by diatrizoate were suppressed significantly and dose-dependently by pretreatment with KB-R7943. Histopathol. and TUNEL results showed that the contrast medium-induced severe renal tubular necrosis and apoptosis were significantly and dose-dependently attenuated by KB-R7943. KB-R7943 significantly suppressed the increment of renal ET-1 content and MDA and CAT level induced by contrast medium administration. Conclusion: Activation of the reverse mode of NCX, followed by ET-1 overproduction and increased oxidative stress, seems to play an important role in the pathogenesis of CI-AKI. The inhibitor of the reverse mode of NCX, KB-R7943, has renoprotective effects on CI-AKI.

Journal of Nephrology published new progress about Apoptosis. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Application In Synthesis of 117-96-4.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Hennebel, Tom’s team published research in Biotechnology Letters in 2011-01-31 | CAS: 117-96-4

Biotechnology Letters published new progress about Catalysis. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Application In Synthesis of 117-96-4.

Hennebel, Tom published the artcileDehalogenation of environmental pollutants in microbial electrolysis cells with biogenic palladium nanoparticles, Application In Synthesis of 117-96-4, the main research area is microbial electrolysis cell palladium trichloroethylene dechlorination catalytic groundwater remediation.

Purpose of work Hydrodehalogenation of persistent pollutants, such as the groundwater contaminants trichloroethylene and diatrizoate, are catalyzed by biogenic Pd nanoparticles. As H2 gas supply for the dehalogenation reactions is still the limiting factor, this study examines in situ H2 production in the cathode of a microbial electrolysis cell. In a biogenic Pd nanoparticle (bio-Pd) free microbial electrolysis cell (MEC), dechlorination of trichloroethylene (TCE) with concomitant chloride and ethane formation was achieved in the cathode compartment at a removal rate of 120 g TCE m-3 total cathode compartment (TCC) day-1, applying -0.8 V with a power source. When the cathode granules were coated with 5 mg bio-Pd g-1 graphite, chloride and ethane formation increased to 151 g TCE m-3 TCC day-1 corresponding with a specific removal rate of 48 mg TCE g-1 Pd day-1. In both cases, formation of unwanted byproducts, such as vinyl chloride, was not significant. When the same setup was applied for transformation of the iodinated contrast medium diatrizoate (diaI3), reduction in a catalyst-free cathode of a MEC resulted in a removal of 48 ± 9% during the first h corresponding to 3 g diaI3 m-3 TCC day-1. Coating the cathodic graphite granules with bio-Pd enhanced the transformation resulting in a 93 ± 4% removal during the first h corresponding to 6 g diaI3 m-3 TCC day-1. These results suggest that MECs can produce H2 in a sustainable way to provide an economical interesting reactant for bio-Pd catalyzed dehalogenation reactions.

Biotechnology Letters published new progress about Catalysis. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Application In Synthesis of 117-96-4.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Van Nevel, S.’s team published research in Communications in Agricultural and Applied Biological Sciences in 2011 | CAS: 117-96-4

Communications in Agricultural and Applied Biological Sciences published new progress about Catalysis. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Formula: C11H9I3N2O4.

Van Nevel, S. published the artcilePalladium nanoparticles produced by fermentatively grown bacteria as catalyst for diatrizoate removal with biogenic hydrogen, Formula: C11H9I3N2O4, the main research area is Citrobacter Clostridium biogenic palladium nanoparticle formation.

This study demonstrated the general applicability of fermentatively grown bacteria (Clostridium butyricum and Citrobacter braakii) to generate catalytic Pd(0) nanoparticles and biol. produced hydrogen as electron donor. A process consisting of microbial hydrogen formation and Pd nanoparticle catalysis without the need for an external electron donor was studied in dehalogenation reactions in batch tests as well as in a membrane bioreactor (MBR) using diatrizoate as model compound The results of using biogenic Pd(0) for diatrizoate dehalogenation in batch experiments and for removal of diatrizoate in an MBR are presented.

Communications in Agricultural and Applied Biological Sciences published new progress about Catalysis. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Formula: C11H9I3N2O4.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Yanina, Irina Yu.’s team published research in Journal of Biophotonics in 2022-07-31 | CAS: 117-96-4

Journal of Biophotonics published new progress about Adipocyte. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Quality Control of 117-96-4.

Yanina, Irina Yu. published the artcileImmersion optical clearing of adipose tissue in rats: ex vivo and in vivo studies, Quality Control of 117-96-4, the main research area is diatrizoic acid dimethylsulfoxide adipose tissue; adipose tissue; diffusion coefficient; ex vivo and in vivo optical clearing; reduced scattering coefficient; refractive index.

Optical clearing (OC) of adipose tissue has not been studied enough, although it can be promising in medical applications, including surgery and cosmetol., for example, to visualize blood vessels or increase the permeability of tissues to laser beams. The main objective of this work is to develop technol. for OC of abdominal adipose tissue in vivo using hyperosmotic optical clearing agents (OCAs). The maximum OC effect (77) was observed for ex vivo rat adipose tissue samples exposed to OCA on fructose basis for 90 min. For in vivo studies, the maximum effect of OC (65) was observed when using OCA based on diatrizoic acid and dimethylsulfoxide for 120 min. Histol. anal. showed that in vivo application of OCAs may induce a limited local necrosis of fat cells. The efficiency of OC correlated with local tissue damage through cell necrosis due to accompanied cell lipolysis.

Journal of Biophotonics published new progress about Adipocyte. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Quality Control of 117-96-4.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Loos, Robert’s team published research in Water Research in 2013-11-01 | CAS: 117-96-4

Water Research published new progress about Pesticides. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Safety of Diatrizoic Acid.

Loos, Robert published the artcileEU-wide monitoring survey on emerging polar organic contaminants in wastewater treatment plant effluents, Safety of Diatrizoic Acid, the main research area is polar organic chem effluent marine water pollution Europe; Effluent water; European wide monitoring; Pharmaceuticals and personal care products (PPCPs); Polar organic contaminants; Wastewater treatment plants (WWTPs).

In the year 2010, effluents from 90 European wastewater treatment plants (WWTPs) were analyzed for 156 polar organic chem. contaminants. The analyses were complemented by effect-based monitoring approaches aiming at estrogenicity and dioxin-like toxicity analyzed by in vitro reporter gene bioassays, and yeast and diatom culture acute toxicity optical bioassays. Analyses of organic substances were performed by solid-phase extraction (SPE) or liquid-liquid extraction (LLE) followed by liquid chromatog. tandem mass spectrometry (LC-MS-MS) or gas chromatog. high-resolution mass spectrometry (GC-HRMS). Target microcontaminants were pharmaceuticals and personal care products (PPCPs), veterinary (antibiotic) drugs, perfluoroalkyl substances (PFASs), organophosphate ester flame retardants, pesticides (and some metabolites), industrial chems. such as benzotriazoles (corrosion inhibitors), iodinated x-ray contrast agents, and gadolinium magnetic resonance imaging agents; in addition biol. endpoints were measured. The obtained results show the presence of 125 substances (80% of the target compounds) in European wastewater effluents, in concentrations ranging from low nanograms to milligrams per L. These results allow for an estimation to be made of a European median level for the chems. investigated in WWTP effluents. The most relevant compounds in the effluent waters with the highest median concentration levels were the artificial sweeteners acesulfame and sucralose, benzotriazoles (corrosion inhibitors), several organophosphate ester flame retardants and plasticizers (e.g. tris(2-chloroisopropyl)phosphate; TCPP), pharmaceutical compounds such as carbamazepine, tramadol, telmisartan, venlafaxine, irbesartan, fluconazole, oxazepam, fexofenadine, diclofenac, citalopram, codeine, bisoprolol, eprosartan, the antibiotics trimethoprim, ciprofloxacine, sulfamethoxazole, and clindamycine, the insect repellent N,N’-diethyltoluamide (DEET), the pesticides MCPA and mecoprop, perfluoroalkyl substances (such as PFOS and PFOA), caffeine, and gadolinium.

Water Research published new progress about Pesticides. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Safety of Diatrizoic Acid.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Thamaraiselvan, Chidambaram’s team published research in Journal of Environmental Chemical Engineering in 2022-06-30 | CAS: 117-96-4

Journal of Environmental Chemical Engineering published new progress about Acylation. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Computed Properties of 117-96-4.

Thamaraiselvan, Chidambaram published the artcileCoupled electrochemical transformation and filtration of water pollutants by cathodic-carbon nanotube membranes, Computed Properties of 117-96-4, the main research area is electrochem transformation filtration water pollution cathodic carbon nanotube membrane.

This study aimed at evaluating the concomitant electrochem. reduction and separation of organic and inorganic model contaminants from water. A highly conductive (40,000 S/m) support free carbon nanotube (CNT) membrane was used as a cathode in a three-electrode electrochem. crossflow membrane filtration system. Diatrizoate (DTZ), a recalcitrant iodinated contrast media; resazurin (RZ), a redox indicator; and hexavalent chromium ion (Cr(VI)), a ‘gold’ standard for characterization of reducing systems, were tested as model contaminants. Voltages of -0.6 to -1.0 V were enough to remove between 90% and 95% of the three model contaminants tested. Removal of Cr(VI) proceeded by reduction to Cr(III) followed by adsorption onto the cathode, which could be efficiently regenerated (up to 95%) applying reversal (anodic) potential. Preliminary findings applying AC current (0.6-1.5 V, 10 Hz-1 kHz) suggest that it could be a feasible approach for detoxification with minimization of membrane clogging. Resazurin was immediately transformed into resorufin to near completion which was in turn further reduced to dihydroresorufin. The reductive transformation of DTZ resulted in almost complete deiodination, leading to the accumulation of 3,5-diacetamidobenzoic acid as the main end-product. Although other five secondary transformation products were detected, four of them were fully deiodinated. Concluding, the proposed electrochem. filtration cell equipped with a highly conductive CNT-cathodic membrane can be regarded as a potential technique for water decontamination and effective dehalogenation of organic compounds

Journal of Environmental Chemical Engineering published new progress about Acylation. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Computed Properties of 117-96-4.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Sayess, Rassil’s team published research in Water Research in 2017-01-01 | CAS: 117-96-4

Water Research published new progress about Combustion. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Category: isoquinoline.

Sayess, Rassil published the artcileAn improved method for total organic iodine in drinking water, Category: isoquinoline, the main research area is total organic iodine drinking water detection method; Analytical techniques; Drinking water; ICP-MS; Iodinated disinfection by-products; Total organic iodine.

A concise, rapid, and sensitive method is developed to measure organically-bound iodine in water. Total organic iodine (TOI) is used as an integrative surrogate that reflects the amount of iodinated organics in a water sample and is quantified using a refined method that builds on previous adsorption and detection approaches. The proposed method combines adsorption, combustion, and trapping of combustion products, with an offline inductively coupled plasma/mass spectrometer (ICP-MS) for iodide detection. During method development, three anal. variables (factors) were varied across two levels each in order to optimize the method for iodine recovery: 1) the sample pH prior to adsorption on the granular activated carbon (GAC); 2) the amount of base addition to the trap solution; and 3) composition of the ICP-MS wash solution These factors were tested with solutions of eight iodinated model organic compounds, two iodinated inorganic compounds, and field water samples using a full factorial exptl. design. An anal. of variance (ANOVA) and related statistical methods were deployed to identify the best combination of conditions (i.e., treatment) that results in the most complete recovery of iodine from the model compounds and the highest rejection of inorganic iodine. The chosen treatment for TOI measurement incorporates a sample pH of less than 1 prior to adsorption onto the GAC, a solution of 2% (volume/volume) tetra-Me ammonium hydroxide (TMAH) for trapping of combustion products, and a TMAH wash solution of 0.1% (volume/volume) for the ICP-MS.

Water Research published new progress about Combustion. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Category: isoquinoline.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Lee, Minju’s team published research in Environmental Science & Technology in 2017-01-03 | CAS: 117-96-4

Environmental Science & Technology published new progress about Conformers. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Recommanded Product: Diatrizoic Acid.

Lee, Minju published the artcileAbatement of Polychoro-1,3-butadienes in Aqueous Solution by Ozone, UV Photolysis, and Advanced Oxidation Processes (O3/H2O2 and UV/H2O2), Recommanded Product: Diatrizoic Acid, the main research area is polychorobutadiene water hydrogen peroxide ozone UV photolysis.

The abatement of 9 polychloro-1,3-butadienes (CBDs) in aqueous solution by ozone, UV-C(254 nm) photolysis, and the corresponding advanced oxidation processes (AOPs) (i.e., O3/H2O2 and UV/H2O2) was investigated. The following parameters were determined for 9 CBDs: Second-order rate constants for the reactions of CBDs with ozone (kO3) (< 0.1 - 7.9×103 M-1s-1) or with hydroxyl radicals (k•OH) (0.9×109 - 6.5×109 M-1s-1), photon fluence-based rate constants (k') (210 - 2730 m2 einstein-1), and quantum yields (Φ) (0.03 - 0.95 mol einstein-1). During ozonation of CBDs in a natural groundwater, appreciable abatements ( > 50% at specific ozone doses of 0.5 gO3/gDOC to âˆ?00% at â‰?1.0 gO3/gDOC) were achieved for tetra-CBDs followed by (Z)-1,1,2,3,4-penta-CBD and hexa-CBD. This is consistent with the magnitude of the determined kO3 and k•OH. The formation of bromate, a potentially carcinogenic ozonation byproduct, could be significantly reduced by addition of H2O2. For a typical UV disinfection dose (400 J/m2), various extents of phototransformations (10-90%) could be achieved. However, the efficient formation of photoisomers from CBDs with E/Z configuration must be taken into account because of their potential residual toxicity. Under UV-C(254 nm) photolysis conditions, no significant effect of H2O2 addition on CBDs abatement was observed due to an efficient direct phototransformation of CBDs.

Environmental Science & Technology published new progress about Conformers. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Recommanded Product: Diatrizoic Acid.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Boleda, M. Rosa’s team published research in Environmental Science and Pollution Research in 2014-09-30 | CAS: 117-96-4

Environmental Science and Pollution Research published new progress about Analgesics. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Recommanded Product: Diatrizoic Acid.

Boleda, M. Rosa published the artcileSurvey of the occurrence of pharmaceuticals in Spanish finished drinking waters, Recommanded Product: Diatrizoic Acid, the main research area is pharmaceutical tandem mass spectrometry finished drinking water pollution Spain.

Fifty samples of finished drinking waters (FDWs) from Spain covering 12 million inhabitants were tested for 53 pharmaceuticals pertaining to 12 different Anatomical Therapeutic Chem. (ATC) classification system codes. The studied compounds are a combination of most commonly consumed pharmaceuticals with other barely reported in the literature. Five compounds, azithromycin, clarithromycin, erythromycin, sulfamethoxazole, and ibuprofen were tentatively identified by liquid chromatog. coupled to tandem mass spectrometry (LC-MS/MS) in some samples (2 to 15 %), but only ibuprofen and azithromycin could be confirmed when analyzed by liquid chromatog.-high-resolution mass spectrometry (LC-HRMS) with a quadrupole-Orbitrap instrument. Concentration levels of ibuprofen in the pos. samples ranged from 12 to 17 ng/L (n = 6) while for azithromycin values from 5 to 9.5 ng/L (n = 3) were found. Ibuprofen fragmentation behavior in different mass spectrometry instrument configurations (triple quadrupole, quadrupole-ion trap, and quadrupole-Orbitrap) was evaluated.

Environmental Science and Pollution Research published new progress about Analgesics. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Recommanded Product: Diatrizoic Acid.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Casas, Monica Escola’s team published research in Water Research in 2015-10-15 | CAS: 117-96-4

Water Research published new progress about Analgesics. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Application of Diatrizoic Acid.

Casas, Monica Escola published the artcileBiodegradation of pharmaceuticals in hospital wastewater by staged Moving Bed Biofilm Reactors (MBBR), Application of Diatrizoic Acid, the main research area is hospital wastewater pharmaceutical MBBR biodegradation; Biodegradation; Conjugates; Degradation kinetics; Hospital wastewater; Pharmaceuticals; X-ray contrast media.

Hospital wastewater represents a significant input of pharmaceuticals into municipal wastewater. As Moving Bed Biofilm Reactors (MBBRs) appear to remove organic micro-pollutants, hospital wastewater was treated with a pilot plant consisting of three MBBRs in series. The removal of pharmaceuticals was studied in two experiments: (1) A batch experiment where pharmaceuticals were spiked to each reactor and (2) a continuous flow experiment at native concentrations DOC removal, nitrification as well as removal of pharmaceuticals (including X-ray contrast media, β-blockers, analgesics and antibiotics) occurred mainly in the first reactor. In the batch experiment most of the compounds followed a single first-order kinetics degradation function, giving degradation rate constants ranged from 5.77 × 10-3 to 4.07 h-1, from -5.53 × 10-3 to 9.24 × 10-1 h-1 and from 1.83 × 10-3 to 2.42 × 10-1 h-1 for first, second and third reactor resp. Generally, the highest removal rate constants were found in the first reactor while the lowest were found in the third one. This order was inverted for most compounds, when the removal rate constants were normalized to biomass, indicating that the last tank had the most effective biofilms. In the batch experiment, 21 out of 26 compounds were assessed to be degraded with more than 20% within the MBBR train. In the continuous flow experiment the measured removal rates were lower than those estimated from the batch experiments

Water Research published new progress about Analgesics. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Application of Diatrizoic Acid.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem