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7-chloroisoquinolin-4-amine is a chemical compound with the molecular formula C9H7ClN2. It is an amino derivative of isoquinoline, a heterocyclic compound with a fused benzene and pyridine ring structure. 7-chloroisoquinolin-4-amine has potential applications in the pharmaceutical industry, particularly in the development of new drugs and therapeutic agents. Its unique structure and properties make it a valuable building block for the synthesis of various biologically active compounds, and it has been studied for its potential use in the treatment of diseases and disorders. With further research and development, 7-chloroisoquinolin-4-amine may contribute to the advancement of medical science and the improvement of human health.

1369294-23-4

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1369294-23-4 Usage

Uses

Used in Pharmaceutical Industry:
7-chloroisoquinolin-4-amine is used as a building block for the synthesis of biologically active compounds for the development of new drugs and therapeutic agents. Its unique structure and properties make it a valuable component in creating innovative pharmaceutical formulations.
Used in Drug Development:
7-chloroisoquinolin-4-amine is used as a key intermediate in the development of new drugs, potentially contributing to the treatment of various diseases and disorders. Its presence in the molecular structure of these drugs can enhance their efficacy and selectivity, leading to improved patient outcomes.
Used in Research and Development:
7-chloroisoquinolin-4-amine is used as a research compound to study its potential applications in medicine. Scientists and researchers utilize 7-chloroisoquinolin-4-amine to explore its interactions with biological systems and to develop a deeper understanding of its therapeutic potential.
Used in the Treatment of Diseases and Disorders:
7-chloroisoquinolin-4-amine is used as a potential therapeutic agent for the treatment of various diseases and disorders. Its unique structure allows it to target specific biological pathways, offering new avenues for treatment and potentially leading to more effective therapies.

Check Digit Verification of cas no

The CAS Registry Mumber 1369294-23-4 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,3,6,9,2,9 and 4 respectively; the second part has 2 digits, 2 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 1369294-23:
(9*1)+(8*3)+(7*6)+(6*9)+(5*2)+(4*9)+(3*4)+(2*2)+(1*3)=194
194 % 10 = 4
So 1369294-23-4 is a valid CAS Registry Number.

1369294-23-4Downstream Products

1369294-23-4Relevant academic research and scientific papers

Hit-to-lead optimization of a latency-associated nuclear antigen inhibitor against Kaposi's sarcoma-associated herpesvirus infections

Berwanger, Aylin,Empting, Martin,Jakob, Valentin,Kirsch, Philine,Rinkes, Julia,Schulz, Thomas F.,Stein, Saskia C.

supporting information, (2020/07/07)

The Latency-associated nuclear antigen (LANA) plays a central role for the latent persistence of the Kaposi's Sarcoma Herpesvirus (KSHV) in the human host and helps to establish lifelong infections. Herein, we report our efforts towards hit-to-lead generation starting from a previously discovered LANA-DNA inhibitor. By tethering the viral genome to the host nucleosomes, LANA ensures the segregation and persistence of the viral DNA during mitosis. LANA is also required for the replication of the latent viral episome during the S phase of the cell cycle. We aim to inhibit the interaction between LANA and the viral genome to prevent the latent persistence of KSHV in the host organism. Medicinal chemistry-driven optimization studies and structure-activity-relationship investigation led to the discovery of an improved LANA inhibitor. The functional activity of our compounds was evaluated using a fluorescence polarization (FP)-based interaction inhibition assay and electrophoretic mobility shift assay (EMSA). Even though a crystal structure of the ligand protein complex was not available, we successfully conducted hit optimization toward a low micromolar protein-nucleic acid-interaction inhibitor. Additionally, we applied STD-NMR studies to corroborate target binding and to gain insights into the binding orientation of our most potent inhibitor, providing opportunities for further rational design of more efficient LANA-targeting anti KSHV agents in future studies.

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