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Isoquinoline thiosemicarbazone displays potent anticancer activity with: In vivo efficacy against aggressive leukemias

A potent class of isoquinoline-based Alpha-N-heterocyclic carboxaldehyde thiosemicarbazone (HCT) compounds has been rediscovered; based upon this scaffold, three series of antiproliferative agents were synthesized through iterative rounds of methylation and fluorination modifications, with anticancer activities being potentiated by physiologically relevant levels of copper. The lead compound, HCT-13, was highly potent against a panel of pancreatic, small cell lung carcinoma, prostate cancer, and leukemia models, with IC50 values in the low-to-mid nanomolar range. Density functional theory (DFT) calculations showed that fluorination at the 6-position of HCT-13 was beneficial for ligand-copper complex formation, stability, and ease of metal-center reduction. Through a chemical genomics screen, we identify DNA damage response/replication stress response (DDR/RSR) pathways, specifically those mediated by ataxia-telangiectasia and Rad3-related protein kinase (ATR), as potential compensatory mechanism(s) of action following HCT-13 treatment. We further show that the cytotoxicity of HCT-13 is copper-dependent, that it promotes mitochondrial electron transport chain (mtETC) dysfunction, induces production of reactive oxygen species (ROS), and selectively depletes guanosine nucleotide pools. Lastly, we identify metabolic hallmarks for therapeutic target stratification and demonstrate the in vivo efficacy of HCT-13 against aggressive models of acute leukemias in mice.

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SULFONAMIDE COMPOUND

A compound represented by the formula (1) [A represents a nitrogen-containing saturated ring; m represents an integer of 0 to 2; n represents an integer of 1 to 4; G1 represents hydrogen atom, chlorine atom, hydroxyl group, an alkoxy group, or amino group; G2 represents a halogen atom, hydroxyl group, cyano group, carboxy group, an alkyl group, an alkenyl group, and the like; G3 represents hydrogen atom, a halogen atom, hydroxyl group, cyano group, carboxy group, an alkyl group, an alkenyl group, and the like; G4 represents hydroxyl group, or ?N(R1)(R2) (R1 and R2 represent hydrogen atom, an alkyl group, an aralkyl group, an alkenyl group, an alkynyl group, or a saturated heterocyclic group); G5 is a substituent on a ring-constituting carbon atom of A, and represents hydrogen atom, fluorine atom, or an alkyl group] or a salt thereof, or a derivative thereof that is a prodrug, which potently inhibits Rho kinase. [image]

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Photoredox-Catalyzed Redox-Neutral Minisci C?H Formylation of N-Heteroarenes

We report a protocol for redox-neutral Minisci C?H formylation of N-heteroarenes using 1,3-dioxoisoindolin-2-yl 2,2-diethoxyacetate as a formyl equivalent at room temperature. This scalable benchtop protocol offers a distinct advantage over traditional reductive carbonylation and Minisci C?H formylation methods in not requiring the use of carbon monoxide, pressurized gas, a stoichiometric reductant, or a stoichiometric oxidant. (Figure presented.).

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Electrophotocatalytic C-H Functionalization of Ethers with High Regioselectivity

The highly regioselective electrophotocatalytic C-H functionalization of ethers is described. These reactions are catalyzed by a trisaminocyclopropenium (TAC) ion at mild electrochemical potential with visible light irradiation. Ethers undergo oxidant-free coupling with isoquinolines, alkenes, alkynes, pyrazoles, and purines with typically high regioselectivity for the less-hindered alpha-position. The reaction is proposed to operate via hydrogen atom transfer (HAT) from the substrate to the photoexcited TAC radical dication, thus demonstrating a new reactivity mode for this electrophotocatalyst.

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Rapid Synthesis of Aryl Fluorides in Continuous Flow through the Balz?Schiemann Reaction

The Balz?Schiemann reaction remains a highly utilized means for preparing aryl fluorides from anilines. However, the limitations associated with handling aryl diazonium salts often hinder both the substrate scope and scalability of this reaction. To address this, a new continuous flow protocol was developed that eliminates the need to isolate the aryl diazonium salts. The new process has enabled the fluorination of an array of aryl and heteroaryl amines.

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Pd-catalyzed nucleophilic fluorination of aryl bromides

On the basis of mechanism-driven reaction design, a Pd-catalyzed nucleophilic fluorination of aryl bromides and iodides has been developed. The method exhibits a broad substrate scope, especially with respect to nitrogen-containing heteroaryl bromides, and proceeds with minimal formation of the corresponding reduction products. A facilitated ligand modification process was shown to be critical to the success of the reaction.

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PROCESS FOR PRODUCTION OF 4-FLUOROISOQUINOLINE-5-SULFONYL HALIDE OR SALT THEREOF

A process for production of a 4-fluoroisoquinoline-5-sulfonyl halide or a salt thereof comprising the steps of reacting 4-fluoroisoquinoline or a salt thereof with sulfuric anhydride in the presence or absence of sulfuric acid to give 4-fluoroisoquinoline-5-sulfonic acid or a salt thereof, and then reacting the resulting 4-fluoroisoquinoline-5-sulfonic acid or salt thereof with a halogenation reagent to give a 4-fluoroisoquinoline-5-sulfonyl halide or a salt thereof. This process can produce a 4-fluoroisoquinoline-5-sulfonyl halide or a salt thereof effectively and easily and can also separate and purify the 4-fluoroisoquinoline-5-sulfonyl halide or salt thereof from a position isomer by-product easily.

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Sulfonamide compound

A compound represented by the formula (1) [A represents a nitrogen-containing saturated ring; m represents an integer of 0 to 2; n represents an integer of 1 to 4; G1 represents hydrogen atom, chlorine atom, hydroxyl group, an alkoxy group, or amino group; G2 represents a halogen atom, hydroxyl group, cyano group, carboxy group, an alkyl group, an alkenyl group, an alkynyl group, an alkoxy group, an alkylthio group, an amino group, an alkylsulfinyl group, an alkylsulfonyl group, or an aryl group; G3 represents hydrogen atom, a halogen atom, hydroxyl group, cyano group, carboxy group, an alkyl group, an alkenyl group, an alkynyl group, an alkoxy group, an alkylthio group, an amino group, an alkoxycarbonyl group, an acyl group, an acyloxy group, an alkylsulfinyl group, an alkylsulfonyl group, or an aryl group; Y represents a single bond, or -C(R3)(R4)-(R3 and R4 represent hydrogen atom, or an alkyl group, or alkylene groups which combine together to form a saturated hydrocarbon ring group); G4 represents hydroxyl group (Y is a single group), or -N(R1)(R2) (R1 and R2 represent hydrogen atom, an alkyl group, an aralkyl group, an alkenyl group, an alkynyl group, a saturated heterocyclic group, an alkylsulfonyl group, an acyl group, or an amidino group); G5 is a substituent on a ring-constituting carbon atom of A, and represents hydrogen atom, fluorine atom, or an alkyl group] or a salt thereof, or a derivative thereof that is a prodrug, which potently inhibits Rho kinase

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With the rapid development and complex challenges of chemical substances, new drug synthesis pathways are usually the most effective.394-67-2,4-Fluoroisoquinoline,as a common compound, the synthetic route is as follows.

4-Fluoroisoquinoline (3.6 g) obtained in Reference Example 1 was dissolved in concentrated sulfuric acid (20 ml), and the solution was added dropwise with a solution of potassium nitrate (3.25 g, Wako Pure Chemical Industries) in concentrated sulfuric acid (28 ml) under cooling at -5¡ã C. so that the temperature of the reaction mixture should not exceed 5¡ã C. The reaction mixture was stirred at 0¡ã C. for 1 hour, poured into ice water, neutralized with 28percent aqueous ammonia (pH 8), and extracted 3 times with ethyl acetate (150 ml for each time). The combined organic layer was washed with saturated aqueous sodium hydrogencarbonate (300 ml), and dried over anhydrous magnesium sulfate. The solvent was evaporated under reduced pressure, and the residue was purified by silica gel chromatography (n-hexane:ethyl acetate=3:1) to obtain the title compound (2.2 g)., 394-67-2

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Reference£º
Patent; Asahi Kasei Pharma Corporation; US2009/48223; (2009); A1;,
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394-67-2, 4-Fluoroisoquinoline is a isoquinoline compound, ?involved in a variety of chemical synthesis. Rlated chemical reaction is continuously updated

4-fluoroisoquinoline (10 mmol, 1.47 g), 98percent by weight of concentrated sulfuric acid (22 mmol, 2.2 eq), and three were added to the reaction flask.Sulfur oxide (86mmol, 8.6eq), additive (0.3g, ~20percent wt) reacted at 30 ¡ã C, HPLC detection of 4-fluoroisoquinoline no longerDuring the conversion, the starting material 4-fluoroisoquinoline (Compound A compound), the target product 4-fluoroisoquinoline-5-sulfonic acid (Compound B compound) and its by-product 4-fluoroisoquinoline-8 were counted in the reaction solution. The area percentage of the -sulfonic acid (compound of formula C), 394-67-2

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Reference£º
Patent; Wang Shuying; Song Tao; (7 pag.)CN108912046; (2018); A;,
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