Liu, Limin’s team published research in Bioorganic & Medicinal Chemistry Letters in 51 | CAS: 620-20-2

Bioorganic & Medicinal Chemistry Letters published new progress about 620-20-2. 620-20-2 belongs to chlorides-buliding-blocks, auxiliary class Chloride,Benzyl chloride,Benzene, name is 3-Chlorobenzylchloride, and the molecular formula is C7H6Cl2, HPLC of Formula: 620-20-2.

Liu, Limin published the artcileDesign, synthesis and antitumor activity evaluation of trifluoromethyl-substituted pyrimidine derivatives, HPLC of Formula: 620-20-2, the publication is Bioorganic & Medicinal Chemistry Letters (2021), 128268, database is CAplus and MEDLINE.

In order to find efficient new antitumor drugs, a series of novel trifluoromethyl-substituted pyrimidine derivatives were designed and synthesized and the bioactivity against four human tumor cells (PC-3, MGC-803, MCF-7 and H1975) was evaluated by MTT assay. Compound I displayed potent anti-proliferative activity on H1975 (IC50 = 2.27 μM), which was better than the pos. control 5-FU (IC50 = 9.37 μM). Further biol. evaluation studies showed that compound I apoptosis of H1975 cells and arrested the cell cycle at G2/M phase. Furthermore, compound I induced H1975 cells apoptosis through increasing the expression of pro-apoptotic proteins Bax and p53 and down-regulating the anti-apoptotic protein Bcl-2. In addition, compound I was able to be tightly embedded in the active pocket of EGFR. These results demonstrated that compound I has a potential as a lead compound for further investigation.

Bioorganic & Medicinal Chemistry Letters published new progress about 620-20-2. 620-20-2 belongs to chlorides-buliding-blocks, auxiliary class Chloride,Benzyl chloride,Benzene, name is 3-Chlorobenzylchloride, and the molecular formula is C7H6Cl2, HPLC of Formula: 620-20-2.

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

Ran, Fen’s team published research in Electrochimica Acta in 258 | CAS: 23616-79-7

Electrochimica Acta 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, Formula: C19H34ClN.

Ran, Fen published the artcileNano vanadium nitride incorporated onto interconnected porous carbon via the method of surface-initiated electrochemical mediated ATRP and heat-treatment approach for supercapacitors, Formula: C19H34ClN, the publication is Electrochimica Acta (2017), 405-413, database is CAplus.

A neg. electrode material of nano V nitride/interconnected porous C (Nano-VN/IPC) is fabricated via a novel method combining surface-initiated electrochem. mediated ATRP and heat-treatment process. The structural and composition characterization display that a low crystallinity of VN nanoparticles was obtained, which distributes uniformly in the interconnected pores of the C scaffold materials. The high-distribution of nano-VN particles in the interconnected pores significantly enhances the usage efficiency of the electrochem.-active materials to ensure the high electrochem. performance of the electrode materials. The interconnected pore structure is convenient for diffusion and transfer of electrolyte ions during charging-discharging process. The Nano-VN/IPC electrodes exhibit a high specific capacitance of 284.0 F/g at 0.5 A/g in 2 M KOH aqueous electrolyte with a low resistance and good rate capability. An asym. supercapacitor is assembled with Ni(OH)2 and Nano-VN/IPC electrodes as the pos. and neg. electrodes. The device presents a high specific capacitance of 122 F/g at the c.d. of 0.5 A/g, and when the c.d. increases to 5 A/g the capacitance still remains 70 F/g. Remarkably, the device delivers an ultrahigh power d. of 35.6 Wh/kg at a power d. of 362.5 W/kg.

Electrochimica Acta 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, Formula: C19H34ClN.

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

Li, Zhen’s team published research in Science (Washington, DC, United States) in 372 | CAS: 939-99-1

Science (Washington, DC, United States) 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 C8H6ClF3, Computed Properties of 939-99-1.

Li, Zhen published the artcileA tautomeric ligand enables directed C-H hydroxylation with molecular oxygen, Computed Properties of 939-99-1, the publication is Science (Washington, DC, United States) (2021), 372(6549), 1452-1457, database is CAplus and MEDLINE.

Hydroxylation of aryl carbon-hydrogen bonds with transition metal catalysts has proven challenging when oxygen is used as the oxidant. Here, we report a palladium complex bearing a bidentate pyridine/pyridone ligand that efficiently catalyzes this reaction at ring positions adjacent to carboxylic acids. IR, x-ray, and computational anal. support a possible role of ligand tautomerization from mono-anionic (L,X) to neutral (L,L) coordination in the catalytic cycle of aerobic carbon-hydrogen hydroxylation reaction. The conventional site selectivity dictated by heterocycles is overturned by this catalyst, thus allowing late-stage modification of compounds of pharmaceutical interest at previously inaccessible sites.

Science (Washington, DC, United States) 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 C8H6ClF3, Computed Properties of 939-99-1.

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

Li, Zhen’s team published research in Science (Washington, DC, United States) in 372 | CAS: 6313-54-8

Science (Washington, DC, United States) published new progress about 6313-54-8. 6313-54-8 belongs to chlorides-buliding-blocks, auxiliary class Pyridine,Chloride,Carboxylic acid, name is 2-Chloroisonicotinic acid, and the molecular formula is C6H4ClNO2, Computed Properties of 6313-54-8.

Li, Zhen published the artcileA tautomeric ligand enables directed C-H hydroxylation with molecular oxygen, Computed Properties of 6313-54-8, the publication is Science (Washington, DC, United States) (2021), 372(6549), 1452-1457, database is CAplus and MEDLINE.

Hydroxylation of aryl carbon-hydrogen bonds with transition metal catalysts has proven challenging when oxygen is used as the oxidant. Here, we report a palladium complex bearing a bidentate pyridine/pyridone ligand that efficiently catalyzes this reaction at ring positions adjacent to carboxylic acids. IR, x-ray, and computational anal. support a possible role of ligand tautomerization from mono-anionic (L,X) to neutral (L,L) coordination in the catalytic cycle of aerobic carbon-hydrogen hydroxylation reaction. The conventional site selectivity dictated by heterocycles is overturned by this catalyst, thus allowing late-stage modification of compounds of pharmaceutical interest at previously inaccessible sites.

Science (Washington, DC, United States) published new progress about 6313-54-8. 6313-54-8 belongs to chlorides-buliding-blocks, auxiliary class Pyridine,Chloride,Carboxylic acid, name is 2-Chloroisonicotinic acid, and the molecular formula is C6H4ClNO2, Computed Properties of 6313-54-8.

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

Kang, Dongwei’s team published research in Chemical Biology & Drug Design in 93 | CAS: 10543-42-7

Chemical Biology & Drug Design published new progress about 10543-42-7. 10543-42-7 belongs to chlorides-buliding-blocks, auxiliary class Other Aromatic Heterocyclic,Chloride,Sulfonyl chlorides,Ester, name is Coumarin-6-sulfonyl chloride, and the molecular formula is C9H5ClO4S, COA of Formula: C9H5ClO4S.

Kang, Dongwei published the artcileDiscovery of potent HIV-1 non-nucleoside reverse transcriptase inhibitors by exploring the structure-activity relationship of solvent-exposed regions I, COA of Formula: C9H5ClO4S, the publication is Chemical Biology & Drug Design (2019), 93(4), 430-437, database is CAplus and MEDLINE.

Two novel series of human immunodeficiency virus-1 (HIV-1) non-nucleoside reverse transcriptase inhibitors (NNRTIs) bearing a thiophene[3,2-d]pyrimidine scaffold and sulfonamide linker in the right wing have been identified, which demonstrated activity against the wild-type (WT) HIV-1 strain in MT-4 cells with inhibitory concentrations ranging from micromolar to submicromolar. Especially, against the mutant strains K103N and E138K, most compounds exhibited more potent activity than against WT HIV-1. Compound 7(I) (EC50 = 0.014, 0.031 μM) achieved the most potent activity against the two mutants, being more effective than that of nevirapine (NVP, EC50 = 7.572, 0.190 μM) and comparable to that of etravirine (ETV, EC50 = 0.004, 0.014 μM). Mol. docking experiments on the novel analogs have also suggested that the extensive network of main chain hydrogen bonds are important in the binding mode, which may provide valuable insights for further optimization.

Chemical Biology & Drug Design published new progress about 10543-42-7. 10543-42-7 belongs to chlorides-buliding-blocks, auxiliary class Other Aromatic Heterocyclic,Chloride,Sulfonyl chlorides,Ester, name is Coumarin-6-sulfonyl chloride, and the molecular formula is C9H5ClO4S, COA of Formula: C9H5ClO4S.

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

Wei, Xiaoxiao’s team published research in Chemical Engineering Journal (Amsterdam, Netherlands) in 392 | CAS: 23616-79-7

Chemical Engineering Journal (Amsterdam, Netherlands) 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 C15H14O3, Synthetic Route of 23616-79-7.

Wei, Xiaoxiao published the artcileAdsorption of pharmaceuticals and personal care products by deep eutectic solvents-regulated magnetic metal-organic framework adsorbents, Synthetic Route of 23616-79-7, the publication is Chemical Engineering Journal (Amsterdam, Netherlands) (2020), 124808, database is CAplus.

The ecol. and human health threats brought by emerging pollutants are increasingly serious. Development of efficient removal methods is urgent. Herein, seven deep eutectic solvents (DESs) composed by quaternary ammonium salts and lactic acid or glycolic acid were synthesized and used to regulate magnetic (Fe3O4) metal organic framework (MUiO-66-NH2) composites. The obtained nanoparticles (named as DES-MUiO-66-NH2) were used as adsorbents to adsorb pharmaceuticals and personal care products (PPCPs). Langmuir isotherm model and pseudo-second-order kinetics model were suitable to analyze the adsorption process of DES-MUiO-66-NH2 to PPCPs, indicated that the adsorption of PPCPs was chemisorption on homogeneous surface of DES-MUiO-66-NH2 adsorbents. Under the optimal conditions, the adsorption capacity of DES-MUiO-66-NH2 toward ofloxacin and mefenamic acid reached up to 97.60 and 79.22 mg/g, resp. Mechanism exploration indicated that DES-MUiO-66-NH2 selectively adsorbed PPCPs through electrostatic interaction, chelation, π-π stacking, hydrophobic interaction and hydrogen bonding. D. functional theory proved the chelation through theor. calculation Selective experiments manifested that the structures of DESs directly determined the specificity of DES-MUiO-66-NH2 for different PPCPs, and the investigation of structure-activity relationship provided new ideas for designing efficient tailor-made adsorbents for PPCPs. The proposed PPCPs removal approach focused on the guiding role of DESs in selective adsorption. And this green DESs regulation idea provided more options for the synthesis of high-efficiency and functional adsorbents for emerging pollutants.

Chemical Engineering Journal (Amsterdam, Netherlands) 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 C15H14O3, Synthetic Route of 23616-79-7.

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

Wei, Xiaoxiao’s team published research in Chemical Engineering Journal (Amsterdam, Netherlands) in 421 | CAS: 23616-79-7

Chemical Engineering Journal (Amsterdam, Netherlands) 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 C18H28N2O7, HPLC of Formula: 23616-79-7.

Wei, Xiaoxiao published the artcileFabrication of di-selective adsorption platform based on deep eutectic solvent stabilized magnetic polydopamine: Achieving di-selectivity conversion through adding CaCl2, HPLC of Formula: 23616-79-7, the publication is Chemical Engineering Journal (Amsterdam, Netherlands) (2021), 421(Part_2), 127815, database is CAplus.

Seeking effective synthesis strategy of adsorbents with di-selective adsorption ability to remove dyes in wastewater is of great significance for solving the increasing environmental problems. Hence, three deep eutectic solvents (DESs) were synthesized and polymerized on the surface of magnetic (Fe3O4) polydopamine (MPDA), in which DES acted as both stabilizer and surface modifier for PDA coating. The fabricated nanoparticles (named as MPDA-PDES) were used as adsorbents for selective adsorption of binary dyes solution Langmuir and Dubinin-Radushkevich isotherm models were suitable to describe adsorption process of malachite green (MG) and sunset yellow FCF (SY) on MPDA-PDES1, resp., indicated that the adsorption of MG was monolayer uptake, and that of SY was phys. adsorption. The effect of solution pH and ionic strength suggested that electrostatic interaction was mainly adsorption driving force. Interestingly, the addition of CaCl2 in adsorption system realized dynamic transformation from selective adsorption of MG by MPDA-PDES1 to selective adsorption of SY. And selectivity factor reduced from 37.57 to 0.30. MPDA-PDES1 adsorbent possessed excellent anti-interference ability, regeneration and reusability, can be continuously reused six times and adsorption capacity remained basically unchanged. The adsorption of MG-SY from synthetic wastewater manifested that MPDA-PDES1 had unlimited potential for selective removal of target dyes in actual wastewater. Mechanism exploration revealed that MPDA stabilized by DES containing long-chain alkyl groups exhibited better selective adsorption capacity for cationic dyes in binary dyes solutions This was due to the synergistic effect of electrostatic interaction, hydrophobic interaction, hydrogen bonding and π-π stacking between MPDA-PDES1 and dyes. Therefore, proposed DES-based PDA modification strategy improved the stability and reusability of PDA materials, and achieved outstanding selective adsorption ability because of tailorability of DES structure, which provided new ideas for design and synthesis of high-efficiency adsorbents.

Chemical Engineering Journal (Amsterdam, Netherlands) 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 C18H28N2O7, HPLC of Formula: 23616-79-7.

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

Chen, Jing’s team published research in Talanta in 223 | CAS: 23616-79-7

Talanta 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, Safety of N-Benzyl-N,N-dibutylbutan-1-aminium chloride.

Chen, Jing published the artcileA novel”turn-off”fluorescence assay based on acid-copper nanoclusters in deep eutectic solvent micelles for co-aggregation inducing fluorescence enhancement and its application, Safety of N-Benzyl-N,N-dibutylbutan-1-aminium chloride, the publication is Talanta (2021), 223(Part_1), 121731, database is CAplus and MEDLINE.

As mixtures, deep eutectic solvent (DES) is designability. By adjusting the long alkyl chain hydrogen bond acceptors (HBAs) or hydrogen bond donors (HBDs), the DES displays surfactant characteristics and can form micelles. Hence, a novel, simple, facile and green natural organic acids capped copper nanoclusters (Aci-CuNCs) was synthesized and the spectrum behavior of Aci-CuNCs in DES micelles was researched. It was found that the surfactant-like DES can form micellar co-aggregation with Aci-CuNCs, resulting in the fluorescence (FL) intensive of Aci-CuNCs increase. Corresponding performance of spectral properties of Aci-CuNCs in DES medium were systematically studied by fourier transform IR spectrometer, 3D FL spectroscopy, FL emission/excitation spectra, UV absorption spectroscopy. In the mechanism exploration part, on the one hand, the existence of micellar co-aggregation was confirmed by the conductivity, the mass effect of DES, dynamic light scattering and transmission electron microscopy. On the other hand, the influence of different kinds of DESs (types of HBAs/HBDs, molar ratio) and some possible factors (ionic strength and temperature) were discussed in detail to investigate the main driving forces for the formation of micellar co-aggregates. The results of mechanism exploration prove that the long alkyl chain of DES is amphiphilic which can form micellar co-aggregation with Aci-CuNCs through hydrogen bonding. The DES micelle provides Aci-CuNCs with a relatively stable and closed micro-environment which can effectively prevent collisions with water mols. and weakening of fluorescence intensity. On the basic of the above research, a “turn-off” fluorimetric method based on Aci-CuNCs in DES medium was applied for the determination of Fe3+. Under the optimum conditions, the assay worked in the Fe3+ concentration ranges from 1 to -20μM and had a detection limit of 0.0374μM. Method validation study illustrates the proposed system can provide a good accuracy, repeatability and stability conditions. Furthermore, the real sample anal. result demonstrates that no obvious matrix effect is found. As a consequence, the FL assays (Aci-CuNCs-based DES) composed of natural organic acid capped CuNCs and green solvent DES provides a simple, gentle and environmentally friendly method for the detection of iron ions.

Talanta 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, Safety of N-Benzyl-N,N-dibutylbutan-1-aminium chloride.

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

Hu, Yuhan’s team published research in Journal of Controlled Release in 344 | CAS: 42074-68-0

Journal of Controlled Release published new progress about 42074-68-0. 42074-68-0 belongs to chlorides-buliding-blocks, auxiliary class Chloride,Benzyl chloride,Benzene, name is 2-Chlorotrityl chloride, and the molecular formula is C19H14Cl2, Recommanded Product: 2-Chlorotrityl chloride.

Hu, Yuhan published the artcileEnzyme-instructed self-assembly of peptide-drug conjugates in tear fluids for ocular drug delivery, Recommanded Product: 2-Chlorotrityl chloride, the publication is Journal of Controlled Release (2022), 261-271, database is CAplus and MEDLINE.

In vivo self-assembly of small mols. offers an excellent opportunity for targeted and long-term accumulation of a therapeutic agent at the lesion site. Here we demonstrate the strategy of enzyme-instructed self-assembly (EISA) by designing a phosphorylated peptide-drug (IBF-HYD-GFFpY) precursor through the ester bond to release active drugs at the target site. Meanwhile, the in vivo assembly can be achieved by the catalysis of alk. phosphatase (ALP) in the tear fluid for ocular drug delivery efficiently. The in vitro enzymic experiments indicate that the dephosphorylation of IBF-HYD-GFFpY occurs firstly with the yield of IBF-HYD-GFFY which subsequently self-assembles into the supramol. hydrogel to afford sustained drug release over 96 h. In the treatment of lipopolysaccharide (LPS)-activated Raw 264.7 macrophages, IBF-HYD-GFFpY exerts the more potent anti-inflammatory efficacy than that of free ibuprofen (IBF) at the concentration of 200 μM. Moreover, the aqueous solution of IBF-HYD-GFFpY via topical instillation hardly causes ocular irritation, and displays longer precorneal retention compared to the conventional eye drop formulation. In addition, in the in vivo study, a rabbit model of endotoxin-induced uveitis (EIU) evidences the comparable therapeutic efficacy of IBF-HYD-GFFpY eye drops with that of clin. used 0.1 wt% diclofenac (DIC) sodium eye drops by the reduction of macrophage and leukocyte influx. This work, in situ EISA in the tear microenvironment directing in vivo self-assembly of small mols., may guide a powerful approach for developing enzymic self-assembled mols. as an efficient delivery system of ocular drugs.

Journal of Controlled Release published new progress about 42074-68-0. 42074-68-0 belongs to chlorides-buliding-blocks, auxiliary class Chloride,Benzyl chloride,Benzene, name is 2-Chlorotrityl chloride, and the molecular formula is C19H14Cl2, Recommanded Product: 2-Chlorotrityl chloride.

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

Chen, Rongxiang’s team published research in Tetrahedron Letters in 98 | CAS: 1263414-46-5

Tetrahedron Letters published new progress about 1263414-46-5. 1263414-46-5 belongs to chlorides-buliding-blocks, auxiliary class Fluoride,Chloride,Alkenyl,Benzene, name is 4-Chloro-3-fluorostyrene, and the molecular formula is C8H6ClF, Related Products of chlorides-buliding-blocks.

Chen, Rongxiang published the artcileCobalt-catalyzed decarboxylative oxyalkylation of styrenes with α-cyanoacid: Access to γ-ketonitriles, Related Products of chlorides-buliding-blocks, the publication is Tetrahedron Letters (2022), 153807, database is CAplus.

A cobalt-catalyzed decarboxylative oxyalkylation of styrenes ArCH=CH2 (Ar = 3,4-dimethoxyphenyl, 2-naphthyl, 4-cyanophenyl, etc.) and (E)-prop-1-en-1-ylbenzene with α-cyanoacid has been established, leading to a variety of γ-ketonitriles ArC(O)CH2CH2CN and 3-methyl-4-oxo-4-phenylbutanenitrile in moderate yields. An α-Cyanoacid was applied as the nitrile sources. This methodol. was distinguished by operational simplicity, easily available starting materials and good functionality tolerance.

Tetrahedron Letters published new progress about 1263414-46-5. 1263414-46-5 belongs to chlorides-buliding-blocks, auxiliary class Fluoride,Chloride,Alkenyl,Benzene, name is 4-Chloro-3-fluorostyrene, and the molecular formula is C8H6ClF, Related Products of chlorides-buliding-blocks.

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