Wani, Gulzar A’s team published research in Cell Reports in 2022-02-15 | 112-63-0

Cell Reports published new progress about Adult, mammalian. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, SDS of cas: 112-63-0.

Wani, Gulzar A.; Sprenger, Hans-Georg; Ndoci, Kristiano; Chandragiri, Srikanth; Acton, Richard James; Schatton, Desiree; Kochan, Sandra M. V.; Sakthivelu, Vignesh; Jevtic, Milica; Seeger, Jens M.; Mueller, Stefan; Giavalisco, Patrick; Rugarli, Elena I.; Motori, Elisa; Langer, Thomas; Bergami, Matteo published the artcile< Metabolic control of adult neural stem cell self-renewal by the mitochondrial protease YME1L>, SDS of cas: 112-63-0, the main research area is mitochondrial protease adult neural stem cell selfrenewal metabolic control; OMA1; YME1L; adult neurogenesis; metabolic rewiring; mitochondria; mitochondrial dynamics; mitochondrial proteome; neural stem cells; proliferation; self-renewal.

The transition between quiescence and activation in neural stem and progenitor cells (NSPCs) is coupled with reversible changes in energy metabolism with key implications for lifelong NSPC self-renewal and neurogenesis. How this metabolic plasticity is ensured between NSPC activity states is unclear. We find that a state-specific rewiring of the mitochondrial proteome by the i-AAA peptidase YME1L is required to preserve NSPC self-renewal. YME1L controls the abundance of numerous mitochondrial substrates in quiescent NSPCs, and its deletion activates a differentiation program characterized by broad metabolic changes causing the irreversible shift away from a fatty-acid-oxidation-dependent state. Conditional Yme1l deletion in adult NSPCs in vivo results in defective self-renewal and premature differentiation, ultimately leading to NSPC pool depletion. Our results disclose an important role for YME1L in coordinating the switch between metabolic states of NSPCs and suggest that NSPC fate is regulated by compartmentalized changes in protein network dynamics.

Cell Reports published new progress about Adult, mammalian. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, SDS of cas: 112-63-0.

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

Seemaisamy, Revathi’s team published research in International Journal of Pharmaceutical Sciences and Research in 2019 | 112-63-0

International Journal of Pharmaceutical Sciences and Research published new progress about Aegle marmelos. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Formula: C19H34O2.

Seemaisamy, Revathi; Faruck, Lukmanul Hakkim; Gattu, Sampath; Neelamegam, Rameshkumar; Bakshi, Hamid A.; Rashan, Luay; Al-Buloshi, Mohammed; Hasson, Sidgi Syed Anwar Abdo; Nagarajan, Kayalvizhi published the artcile< Anti-microbial and anti-cancer activity of Aegle marmelos and gas chromatography coupled spectrometry analysis of their chemical constituents>, Formula: C19H34O2, the main research area is Staphylococcus Bacillus Aegle breast cancer cell anticancer antimicrobial.

In this study, we investigated anti-cancer and antimicrobial activity of Aegle marmelos leaf extracts and their chem. profile characterized by gas chromatog. coupled mass spectrometry (GC-MS). A. marmelos leaves were extracted with acetone, methanol, ethanol, and chloroform. Presence of phenolic compounds was identified in these extracts by qual. anal. All the extracts were subjected for anti-bacterial activity against the different strains of bacteria (Staphylococcus aureus, Bacillus subtilis, Bacillus cereus, Bacillus ariyabattai, Bacillus megaterium, Pseudomonas putida, Klebsiella pneumonia, Serratia marcescens, and Escherichia coli). It is noteworthy that acetone extract elicited maximum growth inhibition on Serratia marcescens. Based on profound anti bacterial activity, acetone and methanol extract of A. marmelos were checked for cytotoxicity against MDA-MB-231, HEp-2 and vero cells. MDA-MB-231 cells were more sensitive to acetone extract of A. marmelos with an IC50 value of 79.62 μg/mL where as HEp-2 cells are more sensitive to methanol extract of A. marmelos with an IC50 value of 47.08 μg/mL. Vero cells withstand 24 h treatment of both extract, and it is evidenced that both acetone and methanol extract of A. marmelos exhibited chemo sensitive property towards cancer cells. GCMS anal. was performed to characterize the active principles of acetone and methanol extracts of A. marmelos. GC MS data revealed the presence of ten major components. Overall, both acetone and methanol extract of A. marmelos found to be promising anti antibacterial and anti-cancer agent however the active principle of these should be isolated and characterized before reaching a concrete scientific conclusion.

International Journal of Pharmaceutical Sciences and Research published new progress about Aegle marmelos. 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

Anand, Namrata’s team published research in Organic & Biomolecular Chemistry in 2015 | 112-63-0

Organic & Biomolecular Chemistry published new progress about Aryl ketones Role: RCT (Reactant), RACT (Reactant or Reagent). 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Synthetic Route of 112-63-0.

Anand, Namrata; Koley, Suvajit; Ramulu, B. Janaki; Singh, Maya Shankar published the artcile< Metal-free aerobic one-pot synthesis of substituted/annulated quinolines from alcohols via indirect Friedlander annulation>, Synthetic Route of 112-63-0, the main research area is quinoline preparation green chem; aminobenzyl alc aminobenzophenone alc tandem oxidation Friedlander annulation.

Metal-free, operationally simple, and highly efficient one-pot aerobic process for the synthesis of functionalized/annulated quinolines e.g., I is devised from easily available 2-aminobenzyl alc./2-aminobenzophenones and alkyl/aryl alcs. for the first time. The process involves two sequential reactions, namely in situ aerial oxidation of alcs. to the corresponding aldehydes/ketones followed by Friedlander annulation.

Organic & Biomolecular Chemistry published new progress about Aryl ketones Role: RCT (Reactant), RACT (Reactant or Reagent). 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Synthetic Route of 112-63-0.

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

Peeters, Emiel’s team published research in Chemistry – A European Journal in 2002-10-04 | 112-63-0

Chemistry – A European Journal published new progress about Electrooptical effect. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, COA of Formula: C19H34O2.

Peeters, Emiel; Van Hal, Paul A.; Meskers, Stefan C. J.; Janssen, Rene A. J.; Meijer, E. W. published the artcile< Photoinduced electron transfer in a mesogenic donor-acceptor-donor system>, COA of Formula: C19H34O2, the main research area is photoinduced electron transfer mesogenic oligophenylenevinylene; liquid crystalline mesogenic oligophenylenevinylene photoinduced electron transfer.

A novel donor-acceptor-donor mol. consisting of two oligo(p-phenylene vinylene) (OPV4) units attached to a central perylene bisimide (PERY) core is described. This OPV4-PERY-OPV4 is the first mesogenic mol. that incorporates both p- and n-type semiconducting properties and possesses a liquid-crystalline mesophase, in which donor and acceptor functionalities self-assemble into an ordered material. Upon photoexcitation of the donor, a subpicosecond electron-transfer reaction occurs in OPV4-PERY-OPV4, both in solution and in (ordered) thin solid films. The lifetime of the charge-separated state is significantly longer in (ordered) thin films than in solution as a result of a reduction of geminate recombination by migration and spatial separation of charges in the film.

Chemistry – A European Journal published new progress about Electrooptical effect. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, COA of Formula: C19H34O2.

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

Demiray, Hatice’s team published research in Revista Brasileira de Farmacognosia in 2022-02-28 | 112-63-0

Revista Brasileira de Farmacognosia published new progress about Aedes aegypti. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Category: esters-buliding-blocks.

Demiray, Hatice; Estep, Alden S.; Tabanca, Nurhayat; Becnel, James J.; Demirci, Betul published the artcile< Chemical constituents from Rheum ribes shoots and its insecticidal activity against Aedes aegypti>, Category: esters-buliding-blocks, the main research area is methyl linoleate insecticidal Rheum Aedes.

A phytochem. investigation of hexane extract of Rheum ribes L., Polygonaceae, shoots was analyzed by gas chromatog. with flame ionization dection and mass specrometry and revealed seven components including Me hexadecanoate (Me palmitate) (2.4%), (Z)-9-Me octadecenoate (Me oleate) (2.9%), (Z,Z,Z)-9,12,15-Me octadecatrienoate (Me linolenate) (3.5%), 1-octadecanol (4.3%), (Z,Z)-9,12-Me octadecadienoate (Me linoleate) (5.7%), heptacosane (13.5%), and hexadecanoic acid (palmitic acid) (67.7%). The hexane extract was bioassayed for larvicidal and adult topical activity against an insecticide susceptible strain of Aedes aegypti, the yellow fever mosquito. Results demonstrated a 90% mortality against adults at 5μg/mosquito and first instar larvae at 1μg/μl. The major compound hexadecanoic acid showed 20% mortality at 6.25 ppm against adults whereas the compound provided 100% mortality at the highest screening dose of 1000 ppm against 1st instar larvae. The mosquitocidal activity of the analyzed plant material may be related to a specific combination of compounds present in the hexane extract Graphical abstract

Revista Brasileira de Farmacognosia published new progress about Aedes aegypti. 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

Sherin, D R’s team published research in Scientific Reports in 2021-12-31 | 112-63-0

Scientific Reports published new progress about Antitumor agents. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Computed Properties of 112-63-0.

Sherin, D. R.; Manojkumar, T. K. published the artcile< Exploring the selectivity of guanine scaffold in anticancer drug development by computational repurposing approach>, Computed Properties of 112-63-0, the main research area is exploring selectivity guanine scaffold anticancer drug development computational repurposing.

Drug repurposing is one of the modern techniques used in the drug discovery to find out the new targets for existing drugs. Insilico methods have a major role in this approach. We used 60 FDA approved antiviral drugs reported in the last 50 years to screen against different cancer cell receptors. The thirteen compounds selected after virtual screening are analyzed for their druggability based on ADMET parameters and found the selectivity of guanine derivatives-didanosine, entecavir, acyclovir, valganciclovir, penciclovir, ganciclovir and valacyclovir as suitable candidates. The pharmacophore model, AARR, suggested based on the common feature alignment, shows that the two fused rings as in guanine and two acceptors-one from keto-oxygen (A5) and other from the substituent attached to nitrogen of imidazole ring (A4) give the druggability to the guanine derivatives The NBO anal. on N9 is indicative of charge distribution from the ring to substituents, which results in delocalization of neg. character in most of the ligands. The mol. dynamics simulations also pointed out the importance of guanine scaffold, which stabilizes the ligands inside the binding pocket of the receptor. All these results are indicative of the selectivity of guanine scaffold in anticancer drug development, especially as PARP1 inhibitors in breast, ovarian and prostate cancer. As these seven mols. are already approved by FDA, we can safely go for further preclin. trials.

Scientific Reports published new progress about Antitumor agents. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Computed Properties of 112-63-0.

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

Koenig, Wilfried A’s team published research in Journal of Chromatography in 1981-11-06 | 112-63-0

Journal of Chromatography published new progress about Amines. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Recommanded Product: (9Z,12Z)-Methyl octadeca-9,12-dienoate.

Koenig, Wilfried A.; Benecke, Ingrid; Sievers, Susanne published the artcile< New results in the gas chromatographic separation of enantiomers of hydroxy acids and carbohydrates>, Recommanded Product: (9Z,12Z)-Methyl octadeca-9,12-dienoate, the main research area is chiral phase enantiomer gas chromatog; hydroxyisopentanoic acid packing gas chromatog; hydroxyoctanoic acid packing gas chromatog; phenylethylamine packing gas chromatog enantiomer; valinephenylethylamide packing gas chromatog enantiomer; amino acid modified polysiloxane packing; amine enantiomer separation gas chromatog; amino acid enantiomer gas chromatog; hydroxy acid enantiomer gas chromatog; carbohydrate enantiomer gas chromatog.

New chiral stationary phases for gas chromatog. separation of the enantiomers of amines, amino alcs., hydroxy acids and carbohydrates are described. Hydroxy acids were separated on stationary phases prepared from S-2-hydroxyisopentanoic acid and S-2-hydroxyoctanoic acid by coupling with S-α-phenylethylamine. For the first time, separation of carbohydrate enantiomers was achieved on a stationary phase obtained by connecting L-valine-S-α-phenylethylamide to the functionalized cyanoethyl side-chains of the polysiloxane XE-60.

Journal of Chromatography published new progress about Amines. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Recommanded Product: (9Z,12Z)-Methyl octadeca-9,12-dienoate.

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

Xu, Zhigang’s team published research in ACS Combinatorial Science in 2012-08-13 | 112-63-0

ACS Combinatorial Science published new progress about Cyclocondensation reaction. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Reference of 112-63-0.

Xu, Zhigang; Ayaz, Muhammad; Cappelli, Alexandra A.; Hulme, Christopher published the artcile< General One-pot, Two-Step Protocol Accessing a Range of Novel Polycyclic Heterocycles with High Skeletal Diversity>, Reference of 112-63-0, the main research area is Ugi three component coupling cyclodehydration; benzimidazole polycyclic heterocycle preparation skeletal diversity.

An Ugi one-pot three-component four-center reaction was coupled with a subsequent acid mediated cyclodehydration step to furnish a multitude of unique scaffolds having in common an embedded or attached benzimidazole and often a ring system formed through lactamization, e.g. I. Using combinations of tethered Ugi inputs typically via tethered acid-ketone inputs and supporting reagents containing masked internal nucleophiles, such scaffolds were produced in good to excellent yields in an operationally friendly manner.

ACS Combinatorial Science published new progress about Cyclocondensation reaction. 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

Xie, Hui’s team published research in European Journal of Medicinal Chemistry in 2012 | 112-63-0

European Journal of Medicinal Chemistry published new progress about Antidiabetic agents. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Reference of 112-63-0.

Xie, Hui; Zeng, Lili; Zeng, Shaogao; Lu, Xin; Zhang, Guicheng; Zhao, Xin; Cheng, Na; Tu, Zhengchao; Li, Zhiyuan; Xu, Hongjiang; Yang, Ling; Zhang, Xiquan; Huang, Min; Zhao, Junling; Hu, Wenhui published the artcile< Novel pyrrolopyrimidine analogues as potent dipeptidyl peptidase IV inhibitors based on pharmacokinetic property-driven optimization>, Reference of 112-63-0, the main research area is pyrrolopyrimidine analog peptidase DPPIV inhibitor preparation structure pharmacokinetics antidiabetic.

We previously reported a highly potent DPP-IV inhibitor 6 with low in vivo efficacy. While trying to maintain consistent in vitro and in vivo biol. activity, we initiated a pharmacokinetic property-driven optimization to improve the metabolic stability and permeability of inhibitor 6. A simple scaffold replacement of thienopyrimidine with pyrrolopyrimidine (21a) led to significantly improved metabolic stability (4% vs. 65% remaining). Further modification of the pyrrolopyrimidine scaffold to produce compound 21j resulted in much better oral bioavailability than 6. Importantly, compound 21j exhibits greater in vivo efficacy than does 6 and Alogliptin and is worthy of further development.

European Journal of Medicinal Chemistry published new progress about Antidiabetic agents. 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

Kaur, Sukhdeep’s team published research in Gels in 2022 | 112-63-0

Gels published new progress about Anti-inflammatory agents. 112-63-0 belongs to class esters-buliding-blocks, and the molecular formula is C19H34O2, Formula: C19H34O2.

Kaur, Sukhdeep; Sharma, Priyanka; Bains, Aarti; Chawla, Prince; Sridhar, Kandi; Sharma, Minaxi; Inbaraj, Baskaran Stephen published the artcile< Antimicrobial and Anti-Inflammatory Activity of Low-Energy Assisted Nanohydrogel of Azadirachta indica Oil>, Formula: C19H34O2, the main research area is Azadirachta indica oil nanohydrogel antimicrobial antiinflammatory activity; GC–MS; HPLC; anti-inflammatory; bactericidal; fungicidal; minimum inhibitory concentration; phenolic compounds.

Plant-based bioactive compounds have been utilized to cure diseases caused by pathogenic microorganisms and as a substitute to reduce the side effects of chem. synthesized drugs. Therefore, in the present study, Azadirachta indica oil nanohydrogel was prepared to be utilized as an alternate source of the antimicrobial compound The total phenolic compound in Azadirachta indica oil was quantified by chromatog. anal. and revealed gallic acid (0.0076 ppm), caffeic acid (0.077 ppm), and syringic acid (0.0129 ppm). Gas chromatog.-mass spectrometry anal. of Azadirachta indica oil revealed the presence of bioactive components, namely hexadecenoic acid, heptadecanoic acid, c-linolenic acid, 9-octadecanoic acid (Z)-Me ester, methyl-8-methyl-nonanoate, eicosanoic acid, Me ester, and 8-octadecane3-ethyl-5-(2 ethylbutyl). The nanohydrogel showed droplet size of 104.1 nm and -19.3 mV zeta potential. The nanohydrogel showed potential antimicrobial activity against S. aureus, E. coli, and C. albicans with min. inhibitory, bactericidal, and fungicidal concentrations ranging from 6.25 to 3.125 (μg/mL). The nanohydrogel showed a significantly (p < 0.05) higher (8.40 log CFU/mL) value for Gram-neg. bacteria E. coli compared to Gram-pos. S. aureus (8.34 log CFU/mL), and in the case of pathogenic fungal strain C. albicans, there was a significant (p < 0.05) reduction in log CFU/mL value (7.79-6.94). The nanohydrogel showed 50.23-82.57% inhibition in comparison to standard diclofenac sodium (59.47-92.32%). In conclusion, Azadirachta indica oil nanohydrogel possesses great potential for antimicrobial and anti-inflammatory activities and therefore can be used as an effective agent. Gels published new progress about Anti-inflammatory agents. 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