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N,N‘-[(3,6-dimethoxy-2-nitrophenyl)methanediyl]diformamide is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

19819-19-3

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19819-19-3 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 19819-19-3 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 1,9,8,1 and 9 respectively; the second part has 2 digits, 1 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 19819-19:
(7*1)+(6*9)+(5*8)+(4*1)+(3*9)+(2*1)+(1*9)=143
143 % 10 = 3
So 19819-19-3 is a valid CAS Registry Number.

19819-19-3Downstream Products

19819-19-3Relevant academic research and scientific papers

Synthesis and antiproliferative activity of new cytotoxic tri- and tetraazabenzo[3,2-a]fluorene-5,6-dione derivatives

Leepasert, Theerachart,Shahabi, Manochehr,Shanab, Karem,Schirmer, Eva,Holzer, Wolfgang,Spreitzer, Helmut,Aicher, Babette,Mueller, Gilbert,Guenther, Eckhard

, p. 5264 - 5266 (2013)

A new series of substituted tri-/tetraazabenzo[3,2-a]fluorene-5,6-diones and their corresponding oxime derivatives have been synthesized and spectroscopically characterized. The antiproliferative activities of all compounds were evaluated on at least thre

A Novel Redox Modulator Induces a GPX4-Mediated Cell Death That Is Dependent on Iron and Reactive Oxygen Species

Hu, Shuai,Sechi, Mario,Singh, Pankaj Kumar,Dai, Lipeng,Mccann, Sean,Sun, Duxin,Ljungman, Mats,Neamati, Nouri

, p. 9838 - 9855 (2020/10/19)

Redox modulators have been developed as an attractive approach to treat cancer. Herein, we report the synthesis, identification, and biological evaluation of a quinazolinedione reactive oxygen species (ROS) inducer, QD394, with significant cytotoxicity in pancreatic cancer cells. QD394 shows a transcriptomic profile remarkably similar to napabucasin, a cancer stemness inhibitor. Both small molecules inhibit STAT3 phosphorylation, increase cellular ROS, and decrease the GSH/GSSG ratio. Moreover, QD394 causes an iron- and ROS-dependent, GPX4 mediated cell death, suggesting ferroptosis as a major mechanism. Importantly, QD394 decreases the expression of LRPPRC and PNPT1, two proteins involved in mitochondrial RNA catabolic processes and both negatively correlated with the overall survival of pancreatic cancer patients. Pharmacokinetics-guided lead optimization resulted in the derivative QD394-Me, which showed improved plasma stability and reduced toxicity in mice compared to QD394. Overall, QD394 and QD394-Me represent novel ROS-inducing drug-like compounds warranting further development for the treatment of pancreatic cancer.

Design and Synthesis of Novel Reactive Oxygen Species Inducers for the Treatment of Pancreatic Ductal Adenocarcinoma

Kuang, Yuting,Sechi, Mario,Nurra, Salvatore,Ljungman, Mats,Neamati, Nouri

, p. 1576 - 1594 (2018/03/06)

Altering redox homeostasis provides distinctive therapeutic opportunities for the treatment of pancreatic cancer. Quinazolinediones (QDs) are novel redox modulators that we previously showed to induce potent growth inhibition in pancreatic ductal adenocarcinoma (PDAC) cell lines. Our lead optimization campaign yielded QD325 as the most potent redox modulator candidate inducing substantial reactive oxygen species (ROS) in PDAC cells. Nascent RNA sequencing following treatments with the QD compounds revealed induction of stress responses in nucleus, endoplasmic reticulum, and mitochondria of pancreatic cancer cells. Furthermore, the QD compounds induced Nrf2-mediated oxidative stress and unfolded protein responses as demonstrated by dose-dependent increases in RNA synthesis of representative genes such as NQO1, HMOX1, DDIT3, and HSPA5. At higher concentrations, the QDs blocked mitochondrial function by inhibiting mtDNA transcription and downregulating the mtDNA-encoded OXPHOS enzymes. Importantly, treatments with QD325 were well tolerated in vivo and significantly delayed tumor growth in mice. Our study supports the development of QD325 as a new therapeutic in the treatment of PDAC.

SMALL MOLECULE INDUCERS OF REACTIVE OXYGEN SPECIES AND INHIBITORS OF MITOCHONDRIAL ACTIVITY

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Page/Page column 58; 61, (2017/09/27)

This invention is in the field of medicinal chemistry. In particular, the invention relates to a new class of small-molecules having a quinazolinedione structure which function as reactive oxygen species (ROS) inducers and inhibitors of mitochondrial activity within cancer cells (e.g., pancreatic cancer cells), and their use as therapeutics for the treatment of cancer (e.g., pancreatic cancer) and other diseases.

Targeted Nanoparticles for the Delivery of Novel Bioactive Molecules to Pancreatic Cancer Cells

Sanna, Vanna,Nurra, Salvatore,Pala, Nicolino,Marceddu, Salvatore,Pathania, Divya,Neamati, Nouri,Sechi, Mario

, p. 5209 - 5220 (2016/07/06)

Pancreatic ductal adenocarcinoma (PDAC) is an aggressive disease with poor prognosis and limited therapeutic options. Therefore, there is an urgent need to identify new, safe, and targeted therapeutics for effective treatment of late as well as early stage disease. Plectin-1 (Plec-1) was recently identified as specific biomarker for detecting PDAC at an early stage. We envisioned that multivalent attachment of nanocarriers incorporating certain drugs to Plec-1-derived peptide would increase specific binding affinity and impart high specificity for PDAC cells. Previously, we discovered a novel class of compounds (e.g., quinazolinediones, QDs) that exert their cytotoxic effects by modulating ROS-mediated cell signaling. Herein, we prepared novel QD242-encapsulated polymeric nanoparticles (NPs) functionalized with a peptide to selectively bind to Plec-1. Similarly, we prepared QD-based NPs densely decorated with an isatoic anhydride derivative. Furthermore, we evaluated their impact on ligand binding and antiproliferative activity against PDAC cells. The targeted NPs were more potent than the nontargeted constructs in PDAC cells warranting further development.

6-Arylamino-7-chloro-quinazoline-5,8-diones as novel cytotoxic and DNA topoisomerase inhibitory agents

Park, Hyen Joo,Kim, Young-Shin,Kim, Jin Sung,Lee, Eun-Jin,Yi, You-Jin,Hwang, Hye Jin,Suh, Myung-Eun,Ryu, Chung-Kyu,Lee, Sang Kook

, p. 3385 - 3388 (2007/10/03)

A series of 6-arylamino-7-chloro-quinazoline-5,8-diones were prepared and evaluated for their in vitro cytotoxicity in cultured human cancer cell lines A549 (lung cancer), Col2 (colon cancer), and SNU-638 (stomach cancer). The preliminary structure-activity relationship has been described for providing further development of potent antitumor agents. To further investigate the cytotoxic mechanism, the effects of test compounds on DNA topoisomerase I and II activities have been assessed.

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