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1H-Indole,5-fluoro-1-methyl-(9CI) is a chemical compound with the molecular formula C9H8FN. It is a derivative of indole, a heterocyclic aromatic compound that is commonly found in plant-based compounds and pharmaceuticals. The incorporation of a fluorine atom and a methyl group into the indole structure endows the compound with unique properties, making it a promising candidate for various applications in the pharmaceutical and chemical industries. However, further research and studies are required to fully explore its potential uses and effects.

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  • 116176-92-2 Structure
  • Basic information

    1. Product Name: 1H-Indole,5-fluoro-1-methyl-(9CI)
    2. Synonyms: 1H-Indole,5-fluoro-1-methyl-(9CI);5-Fluoro-1-methylindole;5-fluoro-1-methyl-1H-indole
    3. CAS NO:116176-92-2
    4. Molecular Formula: C9H8FN
    5. Molecular Weight: 149.167
    6. EINECS: N/A
    7. Product Categories: HALIDE
    8. Mol File: 116176-92-2.mol
  • Chemical Properties

    1. Melting Point: N/A
    2. Boiling Point: N/A
    3. Flash Point: N/A
    4. Appearance: /
    5. Density: N/A
    6. Refractive Index: N/A
    7. Storage Temp.: N/A
    8. Solubility: N/A
    9. CAS DataBase Reference: 1H-Indole,5-fluoro-1-methyl-(9CI)(CAS DataBase Reference)
    10. NIST Chemistry Reference: 1H-Indole,5-fluoro-1-methyl-(9CI)(116176-92-2)
    11. EPA Substance Registry System: 1H-Indole,5-fluoro-1-methyl-(9CI)(116176-92-2)
  • Safety Data

    1. Hazard Codes: N/A
    2. Statements: N/A
    3. Safety Statements: N/A
    4. WGK Germany:
    5. RTECS:
    6. HazardClass: N/A
    7. PackingGroup: N/A
    8. Hazardous Substances Data: 116176-92-2(Hazardous Substances Data)

116176-92-2 Usage

Uses

Used in Pharmaceutical Industry:
1H-Indole,5-fluoro-1-methyl-(9CI) is used as a pharmaceutical intermediate for the synthesis of various drugs and drug candidates. Its unique structure and properties may contribute to the development of new therapeutic agents with improved efficacy and selectivity.
Used in Chemical Industry:
1H-Indole,5-fluoro-1-methyl-(9CI) is used as a building block or reagent in the synthesis of various organic compounds and materials. Its unique structure and properties may enable the development of new chemical processes and products with enhanced performance and functionality.
Note: The specific applications and reasons for using 1H-Indole,5-fluoro-1-methyl-(9CI) in the pharmaceutical and chemical industries are not provided in the given materials. The above uses are inferred based on the general properties and potential of indole derivatives in these industries. Further research and studies are needed to identify the specific applications and benefits of this compound.

Check Digit Verification of cas no

The CAS Registry Mumber 116176-92-2 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,1,6,1,7 and 6 respectively; the second part has 2 digits, 9 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 116176-92:
(8*1)+(7*1)+(6*6)+(5*1)+(4*7)+(3*6)+(2*9)+(1*2)=122
122 % 10 = 2
So 116176-92-2 is a valid CAS Registry Number.

116176-92-2SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 12, 2017

Revision Date: Aug 12, 2017

1.Identification

1.1 GHS Product identifier

Product name 5-fluoro-1-methylindole

1.2 Other means of identification

Product number -
Other names 5-Methylfluorindol

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:116176-92-2 SDS

116176-92-2Relevant articles and documents

Rhodium(III)-Catalyzed Regioselective C?H Allylation and Prenylation of Indoles at C4-Position

Zhang, Shang-Shi,Liu, Yan-Zhi,Zheng, Yi-Chuan,Xie, Hui,Chen, Shao-Yong,Song, Jia-Lin,Shu, Bing

supporting information, p. 64 - 70 (2021/11/03)

Herein, Rh(III)-catalyzed C4-selective C?H allylation and prenylation of indoles by using a weak carbonyl coordination directing group have been reported. By employing 5-methylene-1,3-dioxan-2-ones, 4-vinyl-1,3-dioxolan-2-ones and 2-methyl-2,3-butadiene as scalable cross-coupling partners, these divergent synthesis protocols proceed smoothly under redox-neutral reaction conditions, delivering various allylated and prenylated indoles in moderate to satisfied yields. This transformation exhibits high functional-groups compatibility and broad substrate scope. Scale-up experiment and mechanistic studies were also accomplished. (Figure presented.).

Preparation method of nitrogen-alkyl (deuterated alkyl) aromatic heterocycle and alkyl (deuterated alkyl) aryl ether compound

-

Paragraph 0039-0041, (2021/04/03)

The invention provides a method for preparing nitrogen-alkyl(deuterated alkyl)aromatic heterocycle and alkyl(deuterated alkyl)aryl ether compounds. The method adopted in the invention specifically comprises the following steps: firstly, adding an alkoxy base (MOR') or a combination reagent Q (comprising a base M'X, an alcohol C and a molecular sieve E) into a solvent B to be stirred; then, addingan aromatic compound D of nitrogen sulfonyl or oxygen sulfonyl into a mixture; separating and purifying after reaction to obtain nitrogen-alkyl(deuterated alkyl)aromatic heterocycle or alkyl(deuterated alkyl)aryl ether. The method can realize one-step conversion from an electron withdrawing benzenesulfonyl protecting group on a nitrogen or oxygen atom to an electron donating alkyl protecting group, avoids using highly toxic alkyl halide, and has advantages of being efficient, economical, environmentally friendly, mild in condition, good in substrate universality and high in yield; the prepareddeuterated compounds can be widely applied to the fields of pharmaceutical chemistry and organic chemistry synthesis.

1,2,4-Oxadiazole Topsentin Analogs with Antiproliferative Activity against Pancreatic Cancer Cells, Targeting GSK3β Kinase

Carbone, Daniela,Parrino, Barbara,Cascioferro, Stella,Pecoraro, Camilla,Giovannetti, Elisa,Di Sarno, Veronica,Musella, Simona,Auriemma, Giulia,Cirrincione, Girolamo,Diana, Patrizia

, p. 537 - 554 (2020/12/01)

A new series of topsentin analogs, in which the central imidazole ring of the natural lead was replaced by a 1,2,4-oxadiazole moiety, was efficiently synthesized. All derivatives were pre-screened for antiproliferative activity against the National Cancer Institute (NCI-60) cell lines panel. The five most potent compounds were further investigated in various pancreatic ductal adenocarcinoma (PDAC) cell lines, including SUIT-2, Capan-1, and Panc-1 cells, eliciting EC50 values in the micromolar and sub-micromolar range, associated with significant reduction of cell migration. These remarkable results might be explained by the effects of these new topsentin analogues on epithelial-to-mesenchymal transition markers, including SNAIL-1/2 and metalloproteinase-9. Moreover, flow cytometric analysis after Annexin V-FITC and propidium iodide staining demonstrated that these derivatives enhanced apoptosis of PDAC cells. Keeping with these data, the PathScan intracellular signaling and ELISA array revealed cleavage of caspase-3 and PARP and a significant inhibition of GSK3β phosphorylation, suggesting this kinase as a potential downstream target of our novel compounds. This was further supported by a specific assay for the evaluation of GSK3β activity, showing IC50 values for the most active compounds against this enzyme in the micromolar range.

Tandem iridium-catalyzed decarbonylative c-h activation of indole: Sacrificial electron-rich ketone-assisted bis-arylsulfenylation

Kathiravan, Subban,Anaspure, Prasad,Zhang, Tianshu,Nicholls, Ian A.

supporting information, p. 3331 - 3336 (2021/05/29)

Described herein is a decarbonylative tandem C-H bis-arylsulfenylation of indole at the C2 and C4 C-H bonds through the use of pentamethylcyclopentadienyl iridium dichloride dimer ([Cp?IrCl2]2) catalyst and disulfides. A new sacrificial electron-rich adamantoyl-directing group facilitates indole C-H bis-functionalization with a traceless in situ removal. Various differently substituted disulfides can be easily accommodated in this reaction by a coordination to Ir(III) through the formation of six- and five-membered iridacycles at the C2 and C4 positions, respectively. Mechanistic studies show that a C-H activation-induced C-C activation is involved in the catalytic cycle.

The palladium-catalyzed direct C3-cyanation of indoles using acetonitrile as the cyanide source

Feng, Kejun,Li, Qiang,Li, Yuanhua,Liu, Bifu,Liu, Min,Zhou, Yongbo

supporting information, p. 6108 - 6114 (2020/10/21)

The ligand-free palladium-catalyzed C3-cyanation of indoles via direct C-H functionalization was achieved. This protocol, utilizing CH3CN as a green and readily available cyanide source, produced the desired products in moderate to good yields through transition-metal-catalyzed C-CN bond cleavage. This journal is

Design, synthesis and 3D-QSAR analysis of novel thiopyranopyrimidine derivatives as potential antitumor agents inhibiting A549 and Hela cancer cells

Zhao, Bingbing,Zhao, Chengwu,Hu, Xiaohan,Xu, Shan,Lan, Zhou,Guo, Yuping,Yang, Zunhua,Zhu, Wufu,Zheng, Pengwu

, (2019/11/03)

Four series of thiopyranopyrimidine AZD9291 derivatives containing acrylamide structure were designed, synthesized and evaluated for their antiproliferative activity against A549 and Hela cancer cells. Most of the compounds exhibited excellent antiproliferative activity against A549 cells. Moreover, the compounds with indole ring fluorine substituted exhibited better antiproliferative activity against Hela cells. The most promising compound 23g exhibited excellent enzymatic inhibitory activity and selectivity for EGFRL858R/T790M double mutations. The IC50 value against EGFRL858R/T790M kinase was 16 nM. The compound 23g inhibits selectively against the mutated form of EGFR, with the selectivity more than 125-fold. Furthermore, compound 23g also inhibited A549 cells, Hela cells and H1975 cells proliferation at a low concentration, and the IC50 values were 0.057 μM, 0.104 μM and 0.916 μM, respectively. To further investigate the QSARs of thiopyranopyrimidine derivatives, the CoMFA (q [2] = 0.765, r2 = 0.965) and CoMSIA (q [2] = 0.875, r2 = 0.956) models on Hela cancer cells were established. The generated 3D-QSAR model was validated to be reliable and can be used for further design and optimization of novel and selective EGFR inhibitors.

Synthesis of Cyclopenta[b]indoles via a Formal [3+2] Cyclization of N-Sulfonyl-1,2,3-triazoles and Indoles

Duan, Shengguo,Zhang, Wan,Hu, Yuntong,Xu, Ze-Feng,Li, Chuan-Ying

supporting information, p. 3570 - 3575 (2020/08/05)

Annulation of benzoxy-tethered N-sulfonyl-1,2,3-triazoles and indoles has been developed in this paper, providing an efficient and convenient access to valuable cyclopenta[b]indoles in moderate to good yields. α,β-Unsaturated imine, which generated in situ from denitrogenation and 1,2-OBz migration of triazole, provided three carbons for the formal [3+2] cyclization reaction for the first time. (Figure presented.).

Catalytic Aerobic Dehydrogenatin of N-Heterocycles by N-Hydoxyphthalimide

Chen, Weidong,Tang, Hao,Wang, Weilin,Fu, Qiang,Luo, Junfei

supporting information, p. 3905 - 3911 (2020/08/10)

Catalytic methods for the aerobic dehydrogenation of N-heterocycles are reported. In most cases, indoles are accessed efficiently from indolines using catalytic N-hydroxyphthalimide (NHPI) as the sole additive under air. Further studies revealed an improved catalytic system of NHPI and copper for the preparation of other heteroaromatics, for example quinolines. (Figure presented.).

Method for preparing indole compound through air oxidation catalyzed by N-hydroxyphthalimide

-

Paragraph 0047-0049, (2020/11/23)

The invention discloses a method for preparing an indole compound through non-transition metal catalyzed air oxidation. According to the method, the low-cost N-hydroxyphthalimide is used as a catalystand air is used as an oxidizing agent, wherein indoline compounds are oxidized in an organic solvent, and synthesis of the indoline compounds is achieved. The method has the advantages of simple reaction operation, low reaction cost, high yield, mild conditions, no heavy metal pollution and the like.

Design, synthesis and biological evaluation of AZD9291 derivatives as selective and potent EGFRL858R/T790M inhibitors

Zhao, Bingbing,Xiao, Zhen,Qi, Jianguo,Luo, Rong,Lan, Zhou,Zhang, Yanzhuo,Hu, Xiaohan,Tang, Qidong,Zheng, Pengwu,Xu, Shan,Zhu, Wufu

, p. 367 - 380 (2018/12/13)

Third-generation epidermal growth factor receptor (EGFR)L858R/T790M inhibitors are still the main drugs for the treatment of advanced non-small cell lung cancer (NSCLC), and these drugs have achieved remarkable clinical efficacy. However, there are still many patients suffering from drug-resistant mutations and drug side effects caused by NSCLC. In this study, guided by the molecular simulation, we applied a structure-based drug design strategy (SBDD) and optimized the structure to obtain a series of potent and selective EGFRL858R/T790M inhibitors. The most potent compound 18e demonstrated excellent kinase inhibitory activity and selectivity for EGFRL858R/T790M double mutants and the IC50 value reached nanomolar level. The selectivity of 18e against wild-type EGFR was near to 200-fold. In addition, compound 18e also inhibited H1975 cells proliferation at G2/M phase and induced apoptosis at a concentration of 0.25 μM, which makes it more valuable for potential lung cancer research.

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