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[1,3]DIOXOLO[4,5-G]QUINOLIN-8(5H)-ONE, also known as Dioxoloquinolinone, is a chemical compound belonging to the quinolone class. It features a distinctive structure and exhibits a range of pharmacological properties, including potential anti-cancer and anti-inflammatory activities. Dioxoloquinolinone has demonstrated the ability to inhibit tumor cell growth, induce cell cycle arrest, and promote apoptosis. Furthermore, it has been studied for its possible role in treating neurodegenerative diseases like Parkinson's and Alzheimer's. Its unique structural composition and diverse therapeutic potential make Dioxoloquinolinone a compound of interest for ongoing research and future therapeutic applications.

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  • 154504-43-5 Structure
  • Basic information

    1. Product Name: [1,3]DIOXOLO[4,5-G]QUINOLIN-8(5H)-ONE
    2. Synonyms: [1,3]DIOXOLO[4,5-G]QUINOLIN-8(5H)-ONE
    3. CAS NO:154504-43-5
    4. Molecular Formula: C10H7NO3
    5. Molecular Weight: 189.16748
    6. EINECS: N/A
    7. Product Categories: N/A
    8. Mol File: 154504-43-5.mol
  • Chemical Properties

    1. Melting Point: 285-289 °C
    2. Boiling Point: 350.8±42.0 °C(Predicted)
    3. Flash Point: N/A
    4. Appearance: /
    5. Density: 1.419±0.06 g/cm3(Predicted)
    6. Refractive Index: N/A
    7. Storage Temp.: N/A
    8. Solubility: N/A
    9. PKA: -1.05±0.20(Predicted)
    10. CAS DataBase Reference: [1,3]DIOXOLO[4,5-G]QUINOLIN-8(5H)-ONE(CAS DataBase Reference)
    11. NIST Chemistry Reference: [1,3]DIOXOLO[4,5-G]QUINOLIN-8(5H)-ONE(154504-43-5)
    12. EPA Substance Registry System: [1,3]DIOXOLO[4,5-G]QUINOLIN-8(5H)-ONE(154504-43-5)
  • 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: 154504-43-5(Hazardous Substances Data)

154504-43-5 Usage

Uses

Used in Pharmaceutical Industry:
[1,3]DIOXOLO[4,5-G]QUINOLIN-8(5H)-ONE is used as a potential anti-cancer agent for its ability to inhibit tumor cell growth and induce cell cycle arrest and apoptosis. Its anti-inflammatory properties also contribute to its potential use in this industry.
Used in Neurodegenerative Disease Treatment:
In the field of neurodegenerative disease research, [1,3]DIOXOLO[4,5-G]QUINOLIN-8(5H)-ONE is used as a potential therapeutic agent for conditions such as Parkinson's and Alzheimer's disease, due to its demonstrated promise in treating these conditions.

Check Digit Verification of cas no

The CAS Registry Mumber 154504-43-5 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,5,4,5,0 and 4 respectively; the second part has 2 digits, 4 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 154504-43:
(8*1)+(7*5)+(6*4)+(5*5)+(4*0)+(3*4)+(2*4)+(1*3)=115
115 % 10 = 5
So 154504-43-5 is a valid CAS Registry Number.

154504-43-5SDS

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 5H-[1,3]dioxolo[4,5-g]quinolin-8-one

1.2 Other means of identification

Product number -
Other names -

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:154504-43-5 SDS

154504-43-5Downstream Products

154504-43-5Relevant articles and documents

Cu(I)-Catalyzed Alkynylation of Quinolones

Maestro, Aitor,Lemaire, Sebastien,Harutyunyan, Syuzanna R.

supporting information, p. 1228 - 1231 (2022/02/14)

Herein we report the first alkynylation of quinolones with terminal alkynes under mild reaction conditions. The reaction is catalyzed by Cu(I) salts in the presence of a Lewis acid, which is essential for the reactivity of the system. The enantioselective version of this transformation has also been explored, and the methodology has been applied in the synthesis of the enantioenriched tetrahydroquinoline alkaloid cuspareine.

Highly Enantioselective Catalytic Addition of Grignard Reagents to N-Heterocyclic Acceptors

Guo, Yafei,Harutyunyan, Syuzanna R.

supporting information, p. 12950 - 12954 (2019/08/07)

General methods to prepare chiral N-heterocyclic molecular scaffolds are greatly sought after because of their significance in medicinal chemistry. Described here is the first general catalytic methodology to access a wide variety of chiral 2- and 4-substituted tetrahydro-quinolones, dihydro-4-pyridones, and piperidones with excellent yields and enantioselectivities, utilizing a single catalyst system.

METHODS FOR TREATING GASTRIC AND PANCREATIC MALIGNANCIES

-

, (2012/02/13)

The invention provides methods and pharmaceutical compositions for treating pancreatic cancer or gastric cancer or a metastasis thereof.

Direct C-3-alkenylation of quinolones via palladium-catalyzed C-H functionalization

Li, Mingzong,Li, Liangxi,Ge, Haibo

supporting information; experimental part, p. 2445 - 2449 (2010/12/25)

An unprecedented C-3-alkenylation of quinolones was reported through palladium-catalyzed C-H functionalization with 1% catalyst loading. This method provides an efficient route to a variety of new quinolone derivatives.

Synthesis and biological evaluation of new heterocyclic quinolinones as anti-parasite and anti-HIV drug candidates

Darque, Albert,Dumetre, Aurelien,Hutter, Sebastien,Casano, Gilles,Robin, Maxime,Pannecouque, Christophe,Azas, Nadine

supporting information; experimental part, p. 5962 - 5964 (2010/06/17)

We have synthesized quinolinones with potential antiparasitic and anti-HIV activities by an original two-step method involving microwave irradiation and have evaluated their activities against Plasmodium falciparum, Leishmania donovani, Trichomonas vaginalis, and HIV. None of the tested compounds had been previously described using this method of synthesis. One of the compounds had interesting antiparasitic and anti-HIV activity, which could be improved by substitution with different radicals.

Novel and convenient synthesis of 4(1H)quinolones

Tois, Jan,Vahermo, Mikko,Koskinen, Ari

, p. 735 - 737 (2007/10/03)

A rapid two-step synthesis of 4(1H)quinolones is described. The first step involves condensation of o-nitroacetophenone with N,N-dimethylformamide dimethylacetal yielding highly crystalline enamines. In the second step a reductive cyclization is achieved

5-(2-Aminoethyl)dibenzo[c,h][1,6]naphthyridin-6-ones: Variation of N-alkyl substituents modulates sensitivity to efflux transporters associated with multidrug resistance

Ruchelman, Alexander L.,Houghton, Peter J.,Zhou, Nai,Liu, Angela,Liu, Leroy F.,LaVoie, Edmond J.

, p. 792 - 804 (2007/10/03)

5H-8,9-Dimethoxy-5-(2-N,N-dimethylaminoethyl)-2,3-methylenedioxydibenzo[c, h]-[1,6]naphthyridin-6-one (ARC-111) has potent TOP1-targeting activity and pronounced antitumor activity. Several analogues of ARC-111 were synthesized with NH2, N-alkyl, N,N-dialkyl, pyrrolidinyl, piperidinyl, and piperazinyl substituents at the 2-position of the 5-ethyl group. The relative TOP1-targeting activity and cytotoxicity of these structural analogues were assessed in RPMI8402 and P388 tumor cells and their camptothecin-resistant variants CPT-K5 and P388/CPT45, respectively. Potent TOP1-targeting activity was retained within a series of mono N-alkyl analogues that included NHCH 2CH3, NHCH(CH3)2, and NHC(CH 3)3. TOP1-targeting activity was diminished by the presence of a N-benzyl moiety. In a comparison of a series of N-alkyl-N-isopropyl analogues, activity decreased in the order CH3 > CH2CH3 > CH-(CH3)2. Cytotoxicity in RPMI8402 and P388 did correlate with TOP1-targeting activity. Cytotoxic activity was also determined in KB3-1 cells and its variants KB/V-1 and KBH5.0. As KB/V-1 cells overexpress MDR1 and KBH5.0 cells overexpress BCRP, decreased cytotoxicity in these cell lines relative to the parent cell line is indicative of compounds that are substrates for these efflux transporters. In view of their diminished cytotoxicity in KB/V-1 cells, it appears that the likely demethylated metabolites of ARC-111, i.e., where NH2 or NHCH3 replaces the N(CH3)2 at the 2-position of the 5-ethyl substituent, are substrates for MDR1. In contrast, no significant difference in cytotoxicity among these three cell lines was observed with other N-alkyl analogues, including NHC2H5, NHCH(CH 3)2, NHC(CH3)3, N(CH 3)2, N(CH2CH3)2, NCH 3(CH-(CH3)2), and either the pyrrolidinyl or the piperidinyl analogues. The 2-(piperazinyl) analogues were associated with diminished cytotoxicity in KB/V-1 cells, suggesting that the second basic amino substituent is associated with their recognition as substrates by MDR1. Comparative studies on the antitumor activity of ARC-111 and its N-demethylated derivatives (the NHCH3 and NH2 analogues) against SJ-BT45 medulloblastoma xenografts in seid mice revealed that the secondary amine metabolite is at least as active as ARC-111 in vivo, although the primary amine derivative was significantly less potent.

Process for producing quinolone derivatives

-

, (2008/06/13)

The present invention relates to a process for producing a 4-quinolone derivative, comprising allowing an o-aminoacetophenone derivative to react with a formic acid in an aprotic solvent in the presence of a suitable base, and adding a protic solvent to the reaction mixture. This is a simple process for producing 4-quinolone derivatives, applicable to large-scale commercial production.

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