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Publications by Gaku YAMAMURA
The Chemistry of Indoles. Part 85. Novel and Simple Syntheses of 5h-Pyrido(4,3-B)indole (.GAMMA.-Carboline) Derivatives Having a Methoxycarbonyl Group at the 4-Position Based on 1-Hydroxyindole Chemistry.
Chemical and Pharmaceutical Bulletin
Medicine
Drug Discovery
Chemistry
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Structural Identification of a Modified Base in DNA Covalently Bound With Mutagenic 3-Amino-1-Methyl-5h-Pyrido[4,3-B]indole.
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A Novel Preparation of 3-Hydroxy-3h-Indole-3-Ethanamines and -3h-Indole-3-Acetamides Having Either a 4-Morpholinyl or 1-Pyrrolidinyl Group at the 2-Position.
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Stereoselective Synthesis of 2-(2-Aminoalkyl)- And 1,3-Disubstituted Tetrahydro-1h-Pyrido[4,3-B]- Benzofuran and Indole Derivatives
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3-Amino-1,4-Dimethyl-5h-Pyrido[4,3-B]indole Induces Apoptosis and Necrosis With Activation of Different Caspases in Rat Splenocytes
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Synthesis and Antiinflammatory Activity of Pyrido[4, 3-E]-1, 2-Thiazine-3-Carboxamide Derivatives (Medicinal Chemistry)
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Novel Applications of the “T-Amino Effect” in Heterocyclic Chemistry; Synthesis of 5h-Pyrrolo- And 1h,6h-Pyrido[1,2-A][3,1]benzoxazines
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Studies on the Syntheses of N-Heterocyclic Compounds. XII. Syntheses of Pyrido[3, 4-D]pyridazine and Pyrido[2, 3-D]pyridazine Derivatives
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3-Amino-1,4-Dimethyl-5h-Pyrido[4,3-B]indole (Trp-P-1) Is Incorporated Into Rat Splenocytes, Thymocytes, and Hepatocytes Through Monoamine Transporters and Induces Apoptosis
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Regiospecific Synthesis of Pyrido(3,4-B)- And Pyrido(4,3-B)carbazole-5,11-Dione Derivatives. Evaluation of Their in Vitro Antifungal or Antiprotozoological Activities.
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