Taylor, Scott D’s team published research in Tetrahedron in 1998-02-26 | 112-63-0

Tetrahedron published new progress about Carbanions Role: RCT (Reactant), RACT (Reactant or Reagent). 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Reference of 112-63-0.

Taylor, Scott D.; Kotoris, Christopher C.; Dinaut, A. Nicole; Chen, Mei-Jin published the artcile< Synthesis of aryl(difluoromethylene phosphonates) via electrophilic fluorination of α-carbanions of benzylic phosphonates with N-fluorobenzenesulfonimide>, Reference of 112-63-0, the main research area is benzylic phosphonate carbanion electrophilic fluorination fluorobenzenesulfonimide.

The electrophilic fluorination of a wide variety of benzylic phosphonates with N-fluorobenzenesulfonimide was examined The fluorination reaction proceeds well in the presence of an array of functional groups such as nitro, bromo, ketone, ester, Ph and ether groups. Ph and biphenyl derivatives containing two α,α-difluoromethylenephosphonate groups can also be prepared This procedure is compatible with Me or Et phosphonate esters but not with t-Bu esters or with benzylic phosphonates containing an addnl. benzylic moiety at the para-position.

Tetrahedron published new progress about Carbanions Role: RCT (Reactant), RACT (Reactant or Reagent). 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Reference of 112-63-0.

Referemce:
Ester – Wikipedia,
Ester – an overview | ScienceDirect Topics

Liang, Xiaobo’s team published research in Polymers for Advanced Technologies in 2022-09-30 | 112-63-0

Polymers for Advanced Technologies published new progress about Acrylic polymers, polyester-polyoxyalkylene-polyurethane-, graft Role: POF (Polymer in Formulation), PRP (Properties), SPN (Synthetic Preparation), USES (Uses), PREP (Preparation). 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Quality Control of 112-63-0.

Liang, Xiaobo; Deng, Yunjiao; Li, Songsong; Wu, Jingtao; Zhang, Huixuan; Zhang, Zijian published the artcile< Waterborne polyurethane-acrylate-polyaniline: Interfacial hydrogen bonding for enhancing the antistatic, damping, and mechanical properties>, Quality Control of 112-63-0, the main research area is waterborne polyurethane acrylate polyaniline hydrogen bonding antistatic damping coating.

Damping coatings can convert kinetic energy into other forms of energy for consumption and have been widely used for vibration and noise reduction in rail trains, aerospace, automobile industry, and other fields. However, many aspects of damping coating such as, damping, water resistance, heat resistance, mech. properties and antistatic properties require further improvement. In this study, a low-cost conductive polyaniline (PANI) with a simple preparation method was dispersed in N-Me pyrrolidone and added to waterborne polyurethane-acrylate (WPUA) hybrid latexes. The interfacial hydrogen bonding increases the interaction force between mol. chains, effectively improve the water resistance, heat resistance, damping, and mech. properties of WPUA, and endowed WPUA with antistatic properties. Among them, PANI was used as an antistatic medium to be synthesized by chem. oxidation and doped with dodecylbenzene sulfonic acid, and the matrix polymer WPUA was the used of hydroxyethyl methacrylate (HEMA) to combine polyacrylate with waterborne polyurethane (WPU) by chem. bonds. The waterborne polyurethane-acrylate-polyaniline (WPUA-PANI) films were investigated using dynamic light scattering , contact angle measurements , dynamic mech. anal., Fourier-transform IR spectroscopy (FTIR), digital high resistance meter and other characterization methods. It was concluded that the base latex has good stability, and when the PANI dispersion content was 35%, the comprehensive performance of the WPUA-PANI films were the best, in which the maximum water contact angle was 106.8°, the tensile strength was increased from 0.7 MPa to 2.3 MPa, the effective damping temperature range (Tanδ ≥ 0.3) was increased from 50°C to 87°C, and the resistivity was reduced from 6.41E + 7 Ω·cm to 1.38E + 4 Ω·cm, which had better antistatic properties. This study will promote the development and application of damping coatings.

Polymers for Advanced Technologies published new progress about Acrylic polymers, polyester-polyoxyalkylene-polyurethane-, graft Role: POF (Polymer in Formulation), PRP (Properties), SPN (Synthetic Preparation), USES (Uses), PREP (Preparation). 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Quality Control of 112-63-0.

Referemce:
Ester – Wikipedia,
Ester – an overview | ScienceDirect Topics

Larina, L I’s team published research in Doklady Akademii Nauk SSSR in 1979-12-31 | 112-63-0

Doklady Akademii Nauk SSSR published new progress about Inductive effect. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Product Details of C19H34O2.

Larina, L. I.; Vakul’skaya, T. I.; Nefedova, O. B.; Shibanova, E. F.; Lopyrev, V. A.; Voronkov, M. G. published the artcile< Study of electron effects of substituents in 2-substituted benzimidazole derivatives by a proton NMR method>, Product Details of C19H34O2, the main research area is NMR benzimidazole LFER.

NMR chem. shifts (δ) were determined for the protons on C-4 and C-7 and on C-5 and C-6 of 2-substituted benzimidazoles and their anions and protonated forms. In the neutral mols. substituent effects were transmitted to positions 4 and 7 exclusively by conjugation but were transmitted to positions 5 and 6 by both field and resonance mechanisms in a 1:3 ratio. In the anions transmission to positions 5 and 6 involved only conjugation, whereas transmission to positions 4 and 7 involved inductive and resonance effects in a 1:8 ratio. The effects in the protonated forms could not be separated

Doklady Akademii Nauk SSSR published new progress about Inductive effect. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Product Details of C19H34O2.

Referemce:
Ester – Wikipedia,
Ester – an overview | ScienceDirect Topics

Zhao, Xinhong’s team published research in Medicinal Plant in 2021-08-31 | 112-63-0

Medicinal Plant published new progress about Absorption. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Reference of 112-63-0.

Zhao, Xinhong; Sun, Chao; Zhao, Yanwu; Jin, Ying; Kang, Bingya; Chen, Tianchao published the artcile< Effects of different material ratios on the dissolution of Tongmai pills>, Reference of 112-63-0, the main research area is tongmai dissolution pill grease resin fiber.

To study the effects of different material ratios on the dissolution of Tongmai pills. Based on mixture uniform experiment design, the fiber, starch and grease-resin materials in Tongmai pills were proportioned. The contents of strychnine, brucine, paeoniflorin, calycosin, ferulic acid, hesperidin and salvianolic acid B in the solution were determined by HPLC, and the content of total flavonoids was determined by UV spectrophotometry. The weight coefficient of index components was determined by analytic hierarchy process, and the SAS software was used to optimize the dissolution model and calculate the dissolution parameter T40. MATLAB was used to establish a math. model and realize the data visualization between material ratio and dissolution parameter T40. The math. model between material ratio and dissolution parameter was T40 = 8.93 – 5.31X1 – 5.83X2 + 17.67X1X3 (X1, X2, X3 are fiber, starch and grease-resin materials resp., r2 = 0.970 6, P = 0.01, RMSE = 0.569 6). Fiber can effectively promote the dissolution (P < 0.05).Starch can promote the dissolution, but the effect is not obvious (P = 0.05). The interaction between fiber and grease-resin can inhibit the dissolution, but was not significant (P = 0.07). Medicinal Plant published new progress about Absorption. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Reference of 112-63-0.

Referemce:
Ester – Wikipedia,
Ester – an overview | ScienceDirect Topics

Wu, Mengfan’s team published research in Arabian Journal of Chemistry in 2021-10-31 | 112-63-0

Arabian Journal of Chemistry published new progress about Angelica sinensis. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Product Details of C19H34O2.

Wu, Mengfan; Lin, Ruimei; Yin, Jiaxin; Ding, Hui; Han, Lifeng; Yang, Wenzhi; Bie, Songtao; Wang, Chunhua; Zheng, Wei; Song, Xinbo; Ma, Baiping; Yu, Heshui; Li, Zheng published the artcile< The multicomponent characterization of Shuanghe decoction by dimension-enhanced data-independent HDMSE: Focusing on the performance comparison between MSE and HDMSE>, Product Details of C19H34O2, the main research area is Shuanghe decoction chinese medicine ion mobility quadrupole mass spectrometry.

The co-elution, pervasive isomers, and frequently occurring in-source fragmentation definitely hinder the comprehensive characterization of the multiple components from traditional Chinese medicine (TCM) by liquid chromatog./mass spectrometry. Herein, a dimension-enhanced strategy, by utilizing an ion mobility quadrupole time-of-flight mass spectrometer coupled to ultra-high performance liquid chromatog. (UHPLC/IM-QTOF-MS) with the ability of offering four-dimensional information (retention time, Rt; drift time or collision cross section, CCS; accurate mass of precursors; and accurate MS2 product ions), is presented. Shuanghe Decoction (SHD) is a classic tonifying formula composed of nine herbs, however, little is known to its chem. complexity, hitherto. Good chromatog. separation was achieved on an HSS T3 column, and by the Vion IMS-QTOF high-resolution mass spectrometer, data-independent MSE and High-Definition MSE (HDMSE) in both the neg. and pos. electrospray ionization modes were employed for acquiring the collision-induced dissociation-MS2 data. A self-built database, including 642 known compounds, was established, which assisted to perform the automated peak annotation by UNIFI. By reference to 55 compounds, totally 236 components were identified or tentatively characterized from SHD with 4D data recorded. The combination of neg. and pos. modes could yield more information complementary to structural elucidation. Compared with the conventional MSE, HDMSE exhibit of merits in the provision of CCS, better separation and detection those easily co-eluting components, and reduction of the false positives in the identification results. Conclusively, the combination of HDMSE acquisition, inhouse library, and UNIFI-facilitated automated peak annotation, renders a potent approach dedicated to deconvoluting the chem. composition of complex systems like TCM formulas.

Arabian Journal of Chemistry published new progress about Angelica sinensis. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Product Details of C19H34O2.

Referemce:
Ester – Wikipedia,
Ester – an overview | ScienceDirect Topics

Hirasawa, Makoto’s team published research in Pharmaceutical Research in 2022-07-31 | 112-63-0

Pharmaceutical Research published new progress about Blood microvessel. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Name: (9Z,12Z)-Methyl octadeca-9,12-dienoate.

Hirasawa, Makoto; Saleh, Mohammed A. A.; de Lange, Elizabeth C. M. published the artcile< The Extension of the LeiCNS-PK3.0 Model in Combination with the ""Handshake"" Approach to Understand Brain Tumor Pathophysiology>, Name: (9Z,12Z)-Methyl octadeca-9,12-dienoate, the main research area is brain tumor pathophysiol LeiCNS pharmacokinetic model drug development BBB; blood-tumor barrier; brain tumors; physiologically based pharmacokinetic model; tumor pathophysiology.

Micrometastatic brain tumor cells, which cause recurrence of malignant brain tumors, are often protected by the intact blood-brain barrier (BBB). Therefore, it is essential to deliver effective drugs across not only the disrupted blood-tumor barrier (BTB) but also the intact BBB to effectively treat malignant brain tumors. Our aim is to predict pharmacokinetic (PK) profiles in brain tumor regions with the disrupted BTB and the intact BBB to support the successful drug development for malignant brain tumors. LeiCNS-PK3.0, a comprehensive central nervous system (CNS) physiol. based pharmacokinetic (PBPK) model, was extended to incorporate brain tumor compartments. Most pathophysiol. parameters of brain tumors were obtained from literature and two missing parameters of the BTB, paracellular pore size and expression level of active transporters, were estimated by fitting existing data, like a “”handshake””. Simultaneous predictions were made for PK profiles in extracellular fluids (ECF) of brain tumors and normal-appearing brain and validated on existing data for six small mol. anticancer drugs. The LeiCNS-tumor model predicted ECF PK profiles in brain tumor as well as normal-appearing brain in rat brain tumor models and high-grade glioma patients within twofold error for most data points, in combination with estimated paracellular pore size of the BTB and active efflux clearance at the BTB. Our model demonstrated a potential to predict PK profiles of small mol. drugs in brain tumors, for which quant. information on pathophysiol. alterations is available, and contribute to the efficient and successful drug development for malignant brain tumors.

Pharmaceutical Research published new progress about Blood microvessel. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Name: (9Z,12Z)-Methyl octadeca-9,12-dienoate.

Referemce:
Ester – Wikipedia,
Ester – an overview | ScienceDirect Topics

Feng, Shao-Wei’s team published research in International Journal of Molecular Sciences in 2022 | 112-63-0

International Journal of Molecular Sciences published new progress about 112-63-0. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Electric Literature of 112-63-0.

Feng, Shao-Wei; Chang, Pei-Chi; Chen, Hsuan-Yu; Hueng, Dueng-Yuan; Li, Yao-Feng; Huang, Shih-Ming published the artcile< Exploring the Mechanism of Adjuvant Treatment of Glioblastoma Using Temozolomide and Metformin>, Electric Literature of 112-63-0, the main research area is O6-methylguanine-DNA methyltransferase; adjuvant treatment; glioblastoma; glioma; metformin; temozolomide.

Glioblastoma is the most frequent and lethal primary central nervous system tumor in adults, accounting for around 15% of intracranial neoplasms and 40-50% of all primary malignant brain tumors, with an annual incidence of 3-6 cases per 100,000 population. Despite maximum treatment, patients only have a median survival time of 15 mo. Metformin is a biguanide drug utilized as the first-line medication in treating type 2 diabetes. Recently, researchers have noticed that metformin can contribute to antineoplastic activity. The objective of this study is to investigate the mechanism of metformin as a potential adjuvant treatment drug in glioblastoma. Glioblastoma cell lines U87MG, LNZ308, and LN229 were treated with metformin, and several cellular functions and metabolic states were evaluated. First, the proliferation capability was investigated using the MTS assay and BrdU assay, while cell apoptosis was evaluated using the annexin V assay. Next, a wound-healing assay and mesenchymal biomarkers (N-cadherin, vimentin, and Twist) were used to detect the cell migration ability and epithelial-mesenchymal transition (EMT) status of tumor cells. Gene set enrichment anal. (GSEA) was applied to the transcriptome of the metformin-treated glioblastoma cell line. Then, DCFH-DA and MitoSOX Red dyes were used to quantify reactive oxygen species (ROS) in the cytosol and mitochondria. JC-1 dye and Western blotting anal. were used to evaluate mitochondrial membrane potential and biogenesis. In addition, the combinatory effect of temozolomide (TMZ) with metformin treatment was assessed by combination index anal. Metformin could decrease cell viability, proliferation, and migration, increase cell apoptosis, and disrupt EMT in all three glioblastoma cell lines. The GSEA study highlighted increased ROS and hypoxia in the metformin-treated glioblastoma cells. Metformin increased ROS production, impaired mitochondrial membrane potential, and reduced mitochondrial biogenesis. The combined treatment of metformin and TMZ had U87 as synergistic, LNZ308 as antagonistic, and LN229 as additive. Metformin alone or combined with TMZ could suppress mitochondrial transcription factor A, Twist, and O6-methylguanine-DNA methyltransferase (MGMT) proteins in TMZ-resistant LN229 cells. In conclusion, our study showed that metformin decreased metabolic activity, proliferation, migration, mitochondrial biogenesis, and mitochondrial membrane potential and increased apoptosis and ROS in some glioblastoma cells. The sensitivity of the TMZ-resistant glioblastoma cell line to metformin might be mediated via the suppression of mitochondrial biogenesis, EMT, and MGMT expression. Our work provides new insights into the choice of adjuvant agents in TMZ-resistant GBM therapy.

International Journal of Molecular Sciences published new progress about 112-63-0. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Electric Literature of 112-63-0.

Referemce:
Ester – Wikipedia,
Ester – an overview | ScienceDirect Topics

Ambur, Austin’s team published research in Journal of Oncology Pharmacy Practice in 2022-04-30 | 112-63-0

Journal of Oncology Pharmacy Practice published new progress about Allergy immunotherapy. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Product Details of C19H34O2.

Ambur, Austin; Ambur, Lindsay; Khan, Leila; Nathoo, Rajiv published the artcile< Drug-induced hypersensitivity syndrome following temozolimide for glioblastoma multiforme and the role of desensitization therapy>, Product Details of C19H34O2, the main research area is glioblastoma multiforme drug hypersensitivity melanoma temozolomide prednisone desensitization therapy; Drug-induced hypersensitivity syndrome; drug reaction with eosinophilia and systemic symptoms; glioblastoma multiforme; melanoma; temozolomide.

Introduction: Temozolomide is an oral alkylating agent used as first line treatment of glioblastoma multiforme (GBM). It has also been used in the treatment of certain solid tumors such as metastatic melanoma. Commonly reported adverse effects include nausea and vomiting, constipation, headache, fatigue and myelosuppression. Cutaneous hypersensitivity reactions are rare and include an urticarial hypersensitivity reaction, alopecia, and Stevens-Johnson syndrome. To our knowledge, there are minimal reports of temozolomide-induced DRESS syndrome. Case Report: We present a 54-yr-old man with glioblastoma multiforme who presented with a fever, diarrhea and progressively worsening rash 6 wk after starting temozolomide. Management & Outcome: The patient was diagnosed recurrent DRESS syndrome and restarted on a gradual prednisone taper with resolution over the following weeks. Unfortunately, the patient was unable to be followed long-term due to relocation to a different state. Discussion: To our knowledge, there are minimal reports of temozolomide-induced DRESS syndrome. The diagnosis can be life-threatening, which makes management of patients with GBM and no alternative treatment option challenging. The use of de-sensitization therapy to temozolomide has been proposed for the management of severe adverse cutaneous reactions.

Journal of Oncology Pharmacy Practice published new progress about Allergy immunotherapy. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Product Details of C19H34O2.

Referemce:
Ester – Wikipedia,
Ester – an overview | ScienceDirect Topics

Yan, L’s team published research in Science of Synthesis in 2006-10-25 | 112-63-0

Science of Synthesis published new progress about Aldehydes Role: RCT (Reactant), RACT (Reactant or Reagent). 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Category: esters-buliding-blocks.

Yan, L.; Lin, S.; Liu, P. published the artcile< Carboxylic acid esters: synthesis from aldehydes, ketones, and derivatives (including enol ethers)>, Category: esters-buliding-blocks, the main research area is review carboxylic acid ester preparation organic synthesis; aldehyde reaction review; ketone reaction review.

A review of methods to prepare carboxylic acid esters from aldehydes, ketones, and derivatives including enol ethers.

Science of Synthesis published new progress about Aldehydes Role: RCT (Reactant), RACT (Reactant or Reagent). 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Category: esters-buliding-blocks.

Referemce:
Ester – Wikipedia,
Ester – an overview | ScienceDirect Topics

Ernst, Ludger’s team published research in Organic Magnetic Resonance in 1977 | 112-63-0

Organic Magnetic Resonance published new progress about NMR (nuclear magnetic resonance). 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Formula: C19H34O2.

Ernst, Ludger published the artcile< Carbon-13 NMR spectroscopy of diethyl alkyl- and benzyl-phosphonates. A study of phosphorus-carbon spin-spin coupling constants over one to seven bonds>, Formula: C19H34O2, the main research area is phosphonate phosphorus carbon spin coupling; NMR phosphonate.

13C chem. shifts and 31P-13C coupling constants are reported for 10 alkyl-, 20 benzyl-, and 3 (naphthylmethyl)phosphonates. In saturated aliphatic chains 31P-13C couplings over >4 bonds could not be resolved whereas in benzyl type systems couplings over 7 bonds were observed Conformational and substituent effects on the coupling constants are discussed. NJ31P-19F (n = 4-6) are reported for the isomeric (fluorobenzyl)phosphonates and nJ31P-31P (n = 5-7) for the isomeric C6H4[CH2P(O)(OEt)2]2 (I) were obtained from 13C satellites. The relative signs of nJ31P-13C (n = 2-6) were obtained by comparison of the 13C absorptions of I (representing X of an ABX or AA’X system) with the spectra of MeC6H4CH2P(O)(OEt)2.

Organic Magnetic Resonance published new progress about NMR (nuclear magnetic resonance). 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Formula: C19H34O2.

Referemce:
Ester – Wikipedia,
Ester – an overview | ScienceDirect Topics