Pashynska, V. A.’s team published research in Rapid Communications in Mass Spectrometry in 20 | CAS: 38146-42-8

Rapid Communications in Mass Spectrometry published new progress about 38146-42-8. 38146-42-8 belongs to chlorides-buliding-blocks, auxiliary class Achiral Phase-Transfer Catalysts, name is N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride, and the molecular formula is C38H74Cl2N2O4, Formula: C38H74Cl2N2O4.

Pashynska, V. A. published the artcileThe effect of cone voltage on electrospray mass spectra of the bisquaternary ammonium salt decamethoxinum, Formula: C38H74Cl2N2O4, the publication is Rapid Communications in Mass Spectrometry (2005), 20(5), 755-763, database is CAplus.

The effect of cone voltage (CV) variation on the mass spectral pattern of the bisquaternary ammonium salt decamethoxinum in the electrospray ionization (ESI) mode was studied. The advantage of decamethoxinum as a test compound in ESI mass spectrometry lies in the production of two types of precursor ions, i.e. the doubly charged organic dication Cat2+ and its singly charged cluster with a Cl counterion, Cat · Cl+. This makes it possible to monitor the fragmentation patterns of these ions under identical exptl. conditions. Pronounced qual. and quant. changes in the ESI mass spectra were observed upon a gradual increase of the CV. The model compound decamethoxinum allowed us to reveal the extreme situation, in which the mass spectra at a CV below and over approx. 100 V look quite different, in that they contain different product ions of Cat2+ and Cat · Cl+. While this effect may be much less pronounced for other classes of organic compounds, it should be properly taken into account for the adequate description of fragmentation pathways of bisquaternary ammonium compounds with ESI. Comparison of ESI, FAB-SIMS and MALDI mass spectra of decamethoxinum shows that taking into account CV effects also permits us to gain information on energy deposition into ions generated with the different ionization techniques.

Rapid Communications in Mass Spectrometry published new progress about 38146-42-8. 38146-42-8 belongs to chlorides-buliding-blocks, auxiliary class Achiral Phase-Transfer Catalysts, name is N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride, and the molecular formula is C38H74Cl2N2O4, Formula: C38H74Cl2N2O4.

Referemce:
https://en.wikipedia.org/wiki/Chloride,
Chlorides – an overview | ScienceDirect Topics

Pashynska, V. A.’s team published research in Functional Materials in 29 | CAS: 38146-42-8

Functional Materials published new progress about 38146-42-8. 38146-42-8 belongs to chlorides-buliding-blocks, auxiliary class Achiral Phase-Transfer Catalysts, name is N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride, and the molecular formula is C38H74Cl2N2O4, Synthetic Route of 38146-42-8.

Pashynska, V. A. published the artcileDimethyl sulfoxide as a functional agent for antimicrobial drug’s transport facilitating: mechanistic study by mass spectrometry, Synthetic Route of 38146-42-8, the publication is Functional Materials (2022), 29(1), 100-106, database is CAplus.

Electrospray ionization mass spectrometry (ESI MS) study has been performed to examine biol. significant intermol. interactions between the mols. of DMSO (DMSO, known as a functional agent for transdermal and transmembrane drug’s transfer facilitation) and some antimicrobial drugs. Formation of stable noncovalent complexes of DMSO with the mols. of antibiotics levofloxacin (LEF) and cycloserine (CYS) in the polar solvent methanol has been revealed by ESI MS probing of model binary systems of DMSO with the mentioned drugs. At the same time ESI MS investigation of the similar model systems containing DMSO and antimicrobial chemotherapeutic preparation decamethoxinum (DEC) has shown that any peaks of the noncovalent complexes between DMSO and DEC are not recorded in the mass spectra, that points to the dependence of DMSO-drug complexation peculiarities on the drug’s structure. The data of ESI MS examining of DMSO+d ipalm itoylp hosphatidyl choline model system reveal that the DMSO mols. also do not form stable noncovalent clusters with the membrane phospholipid mols. in the polar surrounding. The obtained results as to formation of stable noncovalent complexes of DMSO with LEF and CYS in the polar solvent are proposed to be considered as one of the possible mol. mechanisms of action of DMSO as transdermal and transmembrane penetration enhancer in drug delivery. The current study confirms the ESI MS method applicability to examining the DMSO complexation with the drugs mole-cules and biomols. with the purpose to predict the DMSO usage efficiency as an agent for the drug’s transdermal and transmembrane transport facilitating.

Functional Materials published new progress about 38146-42-8. 38146-42-8 belongs to chlorides-buliding-blocks, auxiliary class Achiral Phase-Transfer Catalysts, name is N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride, and the molecular formula is C38H74Cl2N2O4, Synthetic Route of 38146-42-8.

Referemce:
https://en.wikipedia.org/wiki/Chloride,
Chlorides – an overview | ScienceDirect Topics

Pashynska, V. A.’s team published research in Biopolymers and Cell in 29 | CAS: 38146-42-8

Biopolymers and Cell published new progress about 38146-42-8. 38146-42-8 belongs to chlorides-buliding-blocks, auxiliary class Achiral Phase-Transfer Catalysts, name is N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride, and the molecular formula is C38H74Cl2N2O4, Safety of N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride.

Pashynska, V. A. published the artcileModel mass spectrometric study of competitive interactions of antimicrobial bisquaternary ammonium drugs and aspirin with membrane phospholipids, Safety of N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride, the publication is Biopolymers and Cell (2013), 29(2), 157-162, database is CAplus.

Aim: The aim of the study is to reveal mol. mechanisms of possible activity modulation of antimicrobial bisquaternary ammonium compounds (BQAC) and aspirin (ASP) through noncovalent competitive complexation under their combined introduction into the model systems with membrane phospholipids. Methods: Binary and triple systems containing either decamethoxinum or ethonium, or thionium and aspirin, as well as dipalmitoylphosphatidylcholine (DPPC) have been investigated by electrospray ionization mass spectrometry. Results: Basing on the anal. of associates recorded in the mass spectra, the types of nonocovalent complexes formed in the systems studied were determined and the supposed role of the complexation in the BQAC and ASP activity modulation was discussed. The formation of associates of BQA C dications with ASP anion is considered as one of the possible ways of deactivation of ionic forms of the medications. The formation of stable complexes of BQAC with DPPC and ASP with DPPC in binary systems as well as the complexes distribution in triple-components systems BQACASP:DPPC point to the existence of competition between drugs of these two types for the binding to DPPC. Conclusions: The results obtained point to the competitive complexation in the model mol. systems containing the BQAC, aspirin and membrane phospholipids. The observed phenomenon testifies to the possibility of nodularizing the activity of bisquaternary antimicrobial agents and aspirin under their combined usage, due to the competition between the drugs for binding to the target membrane phospholipid mols. and also due to the formation of stable noncovalent complexes between BQAC and ASP.

Biopolymers and Cell published new progress about 38146-42-8. 38146-42-8 belongs to chlorides-buliding-blocks, auxiliary class Achiral Phase-Transfer Catalysts, name is N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride, and the molecular formula is C38H74Cl2N2O4, Safety of N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride.

Referemce:
https://en.wikipedia.org/wiki/Chloride,
Chlorides – an overview | ScienceDirect Topics

Bretschneider, Leonore’s team published research in Polymer Bulletin (Heidelberg, Germany) in 72 | CAS: 6249-56-5

Polymer Bulletin (Heidelberg, Germany) published new progress about 6249-56-5. 6249-56-5 belongs to chlorides-buliding-blocks, auxiliary class Phase Transfer Catalyst,Inhibitor,Natural product, name is 3-Carboxy-N,N,N-trimethylpropan-1-aminium chloride, and the molecular formula is C7H16ClNO2, Product Details of C7H16ClNO2.

Bretschneider, Leonore published the artcileCationically modified 6-deoxy-6-azido cellulose as a water-soluble and reactive biopolymer derivative, Product Details of C7H16ClNO2, the publication is Polymer Bulletin (Heidelberg, Germany) (2015), 72(3), 473-485, database is CAplus.

Cellulose p-toluenesulfonic acid ester was obtained by conversion of cellulose with p-toluenesulfonic acid chloride and triethylamine in N,N-dimethylacetamide/LiCl solution Further reaction with sodium azide afforded the corresponding 6-deoxy-6-azido cellulose with almost complete displacement of the sulfonate groups. Conversion of 6-deoxy-6-azido cellulose with carboxypropyltrimethylammonium chloride in the presence of N,N’-carbonyldiimidazole yielded 6-deoxy-6-azido cellulose-2,3-O-[4-(N,N,N-trimethylammonium)]butyrate chloride with the degree of substitution of cationic groups up to 0.24. Alternatively, conversion of 6-deoxy-6-azido cellulose with 4-bromobutyltrimethylammonium bromide in the presence of sodium hydroxide in 2-propanol slurry afforded 6-deoxy-6-azido-2,3-O-(4-trimethylammonium)butyl cellulose bromide with a DS of cationic groups up to 0.30. The resulting products are water soluble provided that the content of cationic groups is sufficiently high. Etherification was found to influence the d.p. much more than esterification. Utilization of DMSO and sodium hydride caused predominant polymer degradation

Polymer Bulletin (Heidelberg, Germany) published new progress about 6249-56-5. 6249-56-5 belongs to chlorides-buliding-blocks, auxiliary class Phase Transfer Catalyst,Inhibitor,Natural product, name is 3-Carboxy-N,N,N-trimethylpropan-1-aminium chloride, and the molecular formula is C7H16ClNO2, Product Details of C7H16ClNO2.

Referemce:
https://en.wikipedia.org/wiki/Chloride,
Chlorides – an overview | ScienceDirect Topics

Struwe, Julia’s team published research in Chemistry – A European Journal in 27 | CAS: 939-99-1

Chemistry – A European Journal published new progress about 939-99-1. 939-99-1 belongs to chlorides-buliding-blocks, auxiliary class Fluoride,Chloride,Benzyl chloride,Benzene, name is 1-(Chloromethyl)-4-(trifluoromethyl)benzene, and the molecular formula is C17H14O5, Name: 1-(Chloromethyl)-4-(trifluoromethyl)benzene.

Struwe, Julia published the artcilePhoto-Induced Ruthenium-Catalyzed C-H Benzylations and Allylations at Room Temperature, Name: 1-(Chloromethyl)-4-(trifluoromethyl)benzene, the publication is Chemistry – A European Journal (2021), 27(65), 16237-16241, database is CAplus and MEDLINE.

The ruthenium-catalyzed synthesis of diarylmethane compounds was realized under exceedingly mild photoredox conditions without the use of exogenous photocatalysts. The versatility and robustness of the ruthenium-catalyzed C-H benzylation was reflected by an ample scope, including multifold C-H functionalizations, as well as transformable pyrazoles, imidates and sensitive nucleosides. Mechanistic studies were indicative of a photoactive cyclometalated ruthenium complex, which also enabled versatile C-H allylations.

Chemistry – A European Journal published new progress about 939-99-1. 939-99-1 belongs to chlorides-buliding-blocks, auxiliary class Fluoride,Chloride,Benzyl chloride,Benzene, name is 1-(Chloromethyl)-4-(trifluoromethyl)benzene, and the molecular formula is C17H14O5, Name: 1-(Chloromethyl)-4-(trifluoromethyl)benzene.

Referemce:
https://en.wikipedia.org/wiki/Chloride,
Chlorides – an overview | ScienceDirect Topics

Gabov, N. I.’s team published research in Zhurnal Analiticheskoi Khimii in 30 | CAS: 866-23-9

Zhurnal Analiticheskoi Khimii published new progress about 866-23-9. 866-23-9 belongs to chlorides-buliding-blocks, auxiliary class Aliphatic Chain, name is Diethyltrichloromethylphosphonate, and the molecular formula is C5H10Cl3O3P, SDS of cas: 866-23-9.

Gabov, N. I. published the artcileThin-layer chromatography of chloromethylphosphonic acid esters, SDS of cas: 866-23-9, the publication is Zhurnal Analiticheskoi Khimii (1975), 30(5), 1024-7, database is CAplus.

The methyl hexyl ketone-Me2CO-heptane (4:1:5) system ensures effective thin-layer chromatog. separation (on silufol plates) of normal esters of methylphosphonic and chloromethylphosphoacids. There is a linear correlation between the Rf values and the number of Cl atoms in the chloromethyl radical. A procedure was developed for the identification of 32P-labeled chloromethylphosphonic acid esters in CCl4 and CHCl3 mixtures with PrOH produced by hot-atom reactions of 32P.

Zhurnal Analiticheskoi Khimii published new progress about 866-23-9. 866-23-9 belongs to chlorides-buliding-blocks, auxiliary class Aliphatic Chain, name is Diethyltrichloromethylphosphonate, and the molecular formula is C5H10Cl3O3P, SDS of cas: 866-23-9.

Referemce:
https://en.wikipedia.org/wiki/Chloride,
Chlorides – an overview | ScienceDirect Topics

Volyanskii, Yu. L.’s team published research in Antibiotiki (Moscow) in 23 | CAS: 38146-42-8

Antibiotiki (Moscow) published new progress about 38146-42-8. 38146-42-8 belongs to chlorides-buliding-blocks, auxiliary class Achiral Phase-Transfer Catalysts, name is N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride, and the molecular formula is C12H25Br, Category: chlorides-buliding-blocks.

Volyanskii, Yu. L. published the artcileEffect of gentamicin, decamethoxin and prodigiozan on the course and outcome of experimental pyocyanic infection in white mice, Category: chlorides-buliding-blocks, the publication is Antibiotiki (Moscow) (1978), 23(3), 254-7, database is CAplus.

Gentamicin [1403-66-3] (0.2 mg/kg) and decamethoxin [38146-42-8] (5 mg/kg) given i.p. to mice 12 h before, at the time of, or for 3 days beginning 2 days after inoculation with Pseudomonas aeruginosa increased survival of the infected animals. Combined treatment with gentamicin and decamethoxin gave the highest survival rates. Prodigiozan [9057-00-5] (1 mg/kg) was ineffective against the infection.

Antibiotiki (Moscow) published new progress about 38146-42-8. 38146-42-8 belongs to chlorides-buliding-blocks, auxiliary class Achiral Phase-Transfer Catalysts, name is N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride, and the molecular formula is C12H25Br, Category: chlorides-buliding-blocks.

Referemce:
https://en.wikipedia.org/wiki/Chloride,
Chlorides – an overview | ScienceDirect Topics

Palii, G. K.’s team published research in Antibiotiki (Moscow) in 20 | CAS: 38146-42-8

Antibiotiki (Moscow) published new progress about 38146-42-8. 38146-42-8 belongs to chlorides-buliding-blocks, auxiliary class Achiral Phase-Transfer Catalysts, name is N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride, and the molecular formula is C38H74Cl2N2O4, Related Products of chlorides-buliding-blocks.

Palii, G. K. published the artcileMicrobiological characteristics and antibiotic sensitivity of Pseudomonas aeruginosa at pedigree cattle stations, Related Products of chlorides-buliding-blocks, the publication is Antibiotiki (Moscow) (1975), 20(11), 998-1001, database is CAplus.

In the 464 strains of P. aeruginosa tested, resistance or low sensitivity to erythromycin [114-07-8] was observed in 95.8%, to chlortetracycline [57-62-5] in 95.8%, to tetracycline [60-54-8] in 84.36%, and to levomycetin [56-75-7] in 70.7%. About half of the strains were sensitive to streptomycin [57-92-1] and monomycin [54597-56-7], and 73.5% were sensitive to neomycin [1404-04-2]. All of the strains were resistant to penicillin [1406-05-9]. The range of bactericidal concentrations of gentamycin [1403-66-3] was 0.31-20 μg/ml, and for neomycin and decamethoxin [38146-42-8], 62.5-125 μg/ml.

Antibiotiki (Moscow) published new progress about 38146-42-8. 38146-42-8 belongs to chlorides-buliding-blocks, auxiliary class Achiral Phase-Transfer Catalysts, name is N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride, and the molecular formula is C38H74Cl2N2O4, Related Products of chlorides-buliding-blocks.

Referemce:
https://en.wikipedia.org/wiki/Chloride,
Chlorides – an overview | ScienceDirect Topics

Kabashnaya, L. V.’s team published research in Mikrobiologichnii Zhurnal (1934-1977) in 37 | CAS: 38146-42-8

Mikrobiologichnii Zhurnal (1934-1977) published new progress about 38146-42-8. 38146-42-8 belongs to chlorides-buliding-blocks, auxiliary class Achiral Phase-Transfer Catalysts, name is N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride, and the molecular formula is C38H74Cl2N2O4, Safety of N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride.

Kabashnaya, L. V. published the artcileSensitivity of hyacinth and callalily soft rot agents to certain antimicrobic substances, Safety of N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride, the publication is Mikrobiologichnii Zhurnal (1934-1977) (1975), 37(4), 492-5, database is CAplus.

Of 8 bactericides tested in vitro, Decamethoxin [38146-42-8] was the most effective, exerting bacteriostatic and bactericidal activity on Erwinia carotovora at 4-20 μg/ml., in dependence on strain, on E. aroideae at 4 μg/ml., and on Pseudomonas at 4-10 μg/ml.

Mikrobiologichnii Zhurnal (1934-1977) published new progress about 38146-42-8. 38146-42-8 belongs to chlorides-buliding-blocks, auxiliary class Achiral Phase-Transfer Catalysts, name is N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride, and the molecular formula is C38H74Cl2N2O4, Safety of N1,N10-Bis(2-((2-isopropyl-5-methylcyclohexyl)oxy)-2-oxoethyl)-N1,N1,N10,N10-tetramethyldecane-1,10-diaminium chloride.

Referemce:
https://en.wikipedia.org/wiki/Chloride,
Chlorides – an overview | ScienceDirect Topics

Peristyy, Anton’s team published research in Diamond and Related Materials in 75 | CAS: 23616-79-7

Diamond and Related Materials published new progress about 23616-79-7. 23616-79-7 belongs to chlorides-buliding-blocks, auxiliary class Phase Transfer Catalyst, name is N-Benzyl-N,N-dibutylbutan-1-aminium chloride, and the molecular formula is C19H34ClN, HPLC of Formula: 23616-79-7.

Peristyy, Anton published the artcileIon-exchange properties of High Pressure High Temperature synthetic diamond, HPLC of Formula: 23616-79-7, the publication is Diamond and Related Materials (2017), 131-139, database is CAplus.

The adsorption and chromatog. properties of microparticulated diamond (1-2 μm and 4-6 μm fractions) from high pressure and high temperature synthesis (HPHT diamond) are investigated, with a focus on their cation-exchange capacity. Several adsorbents were prepared, either by wet oxidation of the surface of HPHT with H2O2/H2SO4 or HNO3/H2SO4 mixtures, or by oxidation in air at 700 °C, or following a four-step reduction using LiAlH4 and n-butyllithium. The zeta-potential profiles as a function of pH and ion-exchange capacities were measured for the prepared adsorbents as well as isotherms of adsorption. The ion-exchange selectivity of oxidised HPHT diamond was studied towards alkali, alk.-earth and transition metal cations.

Diamond and Related Materials published new progress about 23616-79-7. 23616-79-7 belongs to chlorides-buliding-blocks, auxiliary class Phase Transfer Catalyst, name is N-Benzyl-N,N-dibutylbutan-1-aminium chloride, and the molecular formula is C19H34ClN, HPLC of Formula: 23616-79-7.

Referemce:
https://en.wikipedia.org/wiki/Chloride,
Chlorides – an overview | ScienceDirect Topics