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3-hydroxy-3-[2-(1-naphthyl)-2-oxoethyl]-1,3-dihydro-2H-indol-2-one is a complex organic compound with a molecular formula of C20H15NO3. It is a derivative of indole-2,3-dione, featuring a hydroxyl group at the 3-position and a 2-(1-naphthyl)-2-oxoethyl substituent at the same position. 3-hydroxy-3-[2-(1-naphthyl)-2-oxoethyl]-1,3-dihydro-2H-indol-2-one is characterized by its unique structure, which includes a fused indole ring system and a naphthalene moiety. It is likely to be found in research settings, particularly in the fields of organic chemistry and medicinal chemistry, where it may be studied for its potential biological activities or as a synthetic intermediate in the preparation of more complex molecules. The compound's specific applications and properties would depend on its reactivity, stability, and interaction with other molecules, which are typically evaluated through experimental studies.

6765-49-7

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6765-49-7 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 6765-49-7 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 6,7,6 and 5 respectively; the second part has 2 digits, 4 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 6765-49:
(6*6)+(5*7)+(4*6)+(3*5)+(2*4)+(1*9)=127
127 % 10 = 7
So 6765-49-7 is a valid CAS Registry Number.

6765-49-7Downstream Products

6765-49-7Relevant academic research and scientific papers

Green catalytic synthesis method of isatin derivative

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Paragraph 0013; 0014; 0040; 0041; 0042, (2018/01/17)

The invention discloses a green catalytic synthesis method of isatin derivative. The method comprises the following steps: adopting isatin compound and ketone containing alpha-hydrogen as raw materials, adopting water as a solvent to perform Aldol reactio

C U 2O-Catalyzed C(SP 3)-H/C(SP 3)-H Cross-Coupling Using TEMPO: Synthesis of 3-(2-Oxoalkyl)-3-hydroxyoxindoles

Wang, Baoshuang,Zhu, Jiayi,Wei, Yang,Luo, Guotian,Qu, Hongen,Liu, Liang-Xian

, p. 2841 - 2848 (2015/12/23)

A simple, convenient, and efficient oxidative cross-coupling reaction of oxindoles with ketones toward a variety of 3-(2-oxoalkyl)-3-hydroxyoxindoles in moderate to excellent yields has been developed. This transformation proceeds via a tandem oxidative cross-coupling by using 2,2,6,6-tetramethylpiperidine N-oxyl (TEMPO) in air as an environmentally benign oxidant. This methodology provides an alternative approach for the direct generation of all-carbon quaternary centers at the C3 position of oxindoles.

Chalcone based azacarboline analogues as novel antitubulin agents: Design, synthesis, biological evaluation and molecular modelling studies

Sharma, Sahil,Kaur, Charanjit,Budhiraja, Abhishek,Nepali, Kunal,Gupta, Manish K.,Saxena,Bedi

, p. 648 - 660 (2014/09/17)

The present study involves the design of a series of 3-aryl-9-acetyl- pyridazino[3,4-b]indoles as constrained chalcone analogues. A retrosynthetic route was proposed for the synthesis of target compounds. All the synthesized compounds were evaluated for in-vitro cytotoxicity against THP-1, COLO-205, HCT-116 and A-549 human cancer cell lines. The results indicated that 2a, 3a, 5a and 6a possessed significant cytotoxic potential with an IC50 value ranging from 1.13 to 5.76 μM. Structure activity relationship revealed that the nature of both Ring A and Ring B influences the activity. Substitution of methoxy groups on the phenyl ring (Ring A) and unsubstituted phenyl ring (Ring B) were found to be the preferred structural features. The most potent compound 2a was further tested for tubulin inhibition. Compound 2a was found to significantly inhibit the tubulin polymerization (IC50 value - 2.41 μM against THP-1). Compound 2a also caused disruption of microtubule assembly as evidenced by Immunoflourescence technique. The significant cytotoxicity and tubulin inhibition by 2a was rationalized by molecular modelling studies. The most potent structure was docked at colchicine binding site (PDB ID-1SA0) and was found to be stabilized in the cavity via various hydrophobic and hydrogen bonding interactions.

Catalyst-free aldol condensation of ketones and isatins under mild reaction conditions in DMF with molecular sieves 4 A as additive

Chen, Wen-Bing,Liao, Yu-Hua,Du, Xi-Lin,Zhang, Xiao-Mei,Yuan, Wei-Cheng

experimental part, p. 1465 - 1476 (2010/05/18)

In the presence of molecular sieve (MS) 4 A in DMF, a catalyst-free aldol condensation of a variety of aromatic and aliphatic ketones with isatins under mild reaction conditions has been developed. This approach may provide access to a wide range of 3-sub

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