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Original Articles

MICROWAVE INDUCED DRY-MEDIA SYNTHESIS OF SPIRO[INDOLE-THIAZOLIDINONES/ THIAZINONES] AS POTENTIAL ANTIFUNGAL AND ANTITUBERCULAR AGENTS AND STUDY OF THEIR REACTIONS

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Pages 551-564 | Received 01 Dec 2002, Accepted 01 Sep 2003, Published online: 12 Aug 2010

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Read on this site (7)

Navjeet Kaur. (2015) Review of Microwave-Assisted Synthesis of Benzo-Fused Six-Membered N,N-Heterocycles. Synthetic Communications 45:3, pages 300-330.
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Poulomi Majumdar, Prajna Parimita Mohanta, RajaniK. Behera & Ajaya Kumar Behera. (2013) Chemistry of Dimedone for Synthesis of Oxygen-, Nitrogen-, and Sulfur- Containing Heterocycles from 2-(3-Hydroxy-5,5-dimethylcyclohex-2-enylidene)malononitrile. Synthetic Communications 43:6, pages 899-914.
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RajaniK. Behera, AjayK. Behera, Rosy Pradhan, Anita Pati & Manabendra Patra. (2009) Studies on Spiroheterocycles, Part III: Synthesis of Diazaspiroundecanetetraone Derivatives Containing Biologically Active Heterocycles. Phosphorus, Sulfur, and Silicon and the Related Elements 184:3, pages 753-765.
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Nadia Hanafy Metwally. (2007) A Facile One-Pot Synthesis of Some New Spiro-thiazolidin-4-ones and Benzimidazoles of Biological Interest. Phosphorus, Sulfur, and Silicon and the Related Elements 183:1, pages 34-43.
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A. Dandia, S. Khaturia, P. Sarawgi & A. Jain. (2007) One-Pot Three-Component Condensation Reaction in Water: An Efficient and Improved Procedure for the Synthesis of Pyrimido[2,1-b]benzothiazoles. Phosphorus, Sulfur, and Silicon and the Related Elements 182:11, pages 2529-2539.
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Rajani Kanta Behera, Ajay Kumar Behera, Rosy Pradhan, Anita Pati & Manabendra Patra. (2006) Studies on Spiroheterocycles, Part II: Heterocyclization of the Spiro Compounds Containing Cyclohexanone and Thiobarbituric Acid with Different Bidentate Nucleophilic Reagents. Synthetic Communications 36:24, pages 3729-3742.
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C.R. Anumol, Athira Vijayan, Rose Mariya George, Anamika Varghese, Jobin Jose & Densely Jose. (2023) Synthesis of biologically active spiro oxindole through multicomponent reaction and it’s physico-chemical studies. Materials Today: Proceedings.
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Ganesh Kumar, Monish Arbaz Ansari & Maya Shankar Singh. (2023) Metal-free [3+3] heteroannulation of thioamides with alkynyl NHPI-esters to access 2H-1,3-thiazin-4(3H)-ones. Tetrahedron 142, pages 133542.
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Jyoti Yadav & Ram Pal Chaudhary. (2022) A review on advances in synthetic methodology and biological profile of spirothiazolidin‐4‐ones. Journal of Heterocyclic Chemistry 59:11, pages 1839-1878.
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Neha Saini, Archana Sharma, Vijay Kumar Thakur, Charalampos Makatsoris, Anshu Dandia, Madhulika Bhagat, Rajiv Kumar Tonk & Prabodh Chander Sharma. (2020) Microwave assisted green synthesis of thiazolidin-4-one derivatives: A perspective on potent antiviral and antimicrobial activities. Current Research in Green and Sustainable Chemistry 3, pages 100021.
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Lee J. Silverberg, Carlos Pacheco, Debashish Sahu, Tapas Mal, Peter Scholl, Hany F. Sobhi, Heather G. Bradley, Omar A. Cardenas, Kyanna M. Gonzalez, Jasra M. Islam, Emily G. Kimmel, Winnie Li, Kristen C. Perhonitch, Jennifer T. Pothering, Michael E. Potts, Melissa E. Ramirez, Haley E. Reppert & Kelsey N. Shaffer. (2020) T3P-promoted synthesis of a series of novel 2-aryl-3-phenyl-2,3,5,6-tetrahydro-4H-1,3-thiazin-4-ones. Tetrahedron Letters 61:18, pages 151836.
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Gangireddy Sujeevan Reddy, Kazi Amirul Hossain, Jetta Sandeep Kumar, B. Thirupataiah, Rebecca Kristina Edwin, Varadaraj Bhat Giliyaru, Raghu Chandrashekhar Hariharapura, G. Gautham Shenoy, Parimal Misra & Manojit Pal. (2020) Novel isatin–indole derivatives as potential inhibitors of chorismate mutase (CM): their synthesis along with unexpected formation of 2-indolylmethylamino benzoate ester under Pd–Cu catalysis. RSC Advances 10:1, pages 289-297.
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Abdulkadir Shube Hussen, Aparna Monga & Anuj Sharma. (2019) Regioselective Synthesis of Functionalized 1,3‐Thiazine‐4‐ones via Multicomponent Click Reaction Approach . ChemistrySelect 4:2, pages 650-654.
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Dan Jiang, Gang‐Qiang Wang, Xiaofeng Liu, Zhenbin Zhang, Lian‐Shun Feng & Ming‐Liang Liu. (2018) Isatin Derivatives with Potential Antitubercular Activities. Journal of Heterocyclic Chemistry 55:6, pages 1263-1279.
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Hemant P. Yennawar, Heather G. Bradley, Kristen C. Perhonitch, Haley E. Reppert & Lee J. Silverberg. (2018) Spontaneous resolution and crystal structure of (2 S )-2-(3-nitrophenyl)-3-phenyl-2,3,5,6-tetrahydro-4 H -1,3-thiazin-4-one; crystal structure of rac -2-(4-nitrophenyl)-3-phenyl-2,3,5,6-tetrahydro-4 H -1,3-thiazin-4-one . Acta Crystallographica Section E Crystallographic Communications 74:4, pages 454-457.
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Amreeta Preetam & Mahendra Nath. (2016) Ambient temperature synthesis of spiro[indoline-3,2′-thiazolidinones] by a DBSA-catalyzed sequential reaction in water. Tetrahedron Letters 57:13, pages 1502-1506.
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N. C. Desai, K. M. Rajpara, V. V. Joshi, H. V. Vaghani & H. M. Satodiya. (2012) Synthesis of promising antimicrobial agents: a novel series of N-(4-(2,6-dichloroquinolin-3-yl)-6-(aryl)pyrimidin-2-yl)-2-morpholinoacetamides. Medicinal Chemistry Research 22:3, pages 1172-1183.
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Anshu Dandia, Ruby Singh, Jyoti Joshi, Shuchi Maheshwari & Pragya Soni. (2013) Ultrasound promoted catalyst-free and selective synthesis of spiro[indole-3,4′-pyrazolo[3,4-e][1,4]thiazepines] in aqueous media and evaluation of their anti-hyperglycemic activity. RSC Advances 3:41, pages 18992.
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Siva S. Panda & Subhash C. Jain. (2012) “On water” synthesis of spiro-indoles via Schiff bases. Monatshefte für Chemie - Chemical Monthly 143:8, pages 1187-1194.
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Alagusundaram Ponnuswamy, Poovan Shanmugavelan, Sangaraiah Nagarajan & Murugan Sathishkumar. (2012) The First One‐Pot, Solvent‐Free, Microwave‐Accelerated, Three‐Component Synthesis of Spirothiazolidin‐4‐ones via Staudinger /Aza‐ Wittig Coupling/Cyclization . Helvetica Chimica Acta 95:6, pages 922-928.
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Hoong-Kun Fun, Tze Shyang Chia, Poovan Shanmugavelan & Alagusundaram Ponnuswamy. (2012) 4-Benzyl-8-phenyl-1-thia-4-azaspiro[4.5]decan-3-one. Acta Crystallographica Section E Structure Reports Online 68:5, pages o1438-o1438.
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Kapil Arya, Diwan Singh Rawat, Anshu Dandia & Hiroaki Sasai. (2012) Brønsted acidic ionic liquids: Green, efficient and reusable catalyst for synthesis of fluorinated spiro [indole-thiazinones/thiazolidinones] as antihistamic agents. Journal of Fluorine Chemistry 137, pages 117-122.
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A. Dandia, D.S. Bhati, A.K. Jain & G.N. Sharma. (2011) Ultrasound promoted clay catalyzed efficient and one pot synthesis of substituted oxindoles. Ultrasonics Sonochemistry 18:5, pages 1143-1147.
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Anshu Dandia, Ruby Singh, Sumit Bhaskaran & Shriniwas D. Samant. (2011) Versatile three component procedure for combinatorial synthesis of biologically relevant scaffold spiro[indole-thiazolidinones] under aqueous conditions. Green Chemistry 13:7, pages 1852.
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Navin B. Patel & Sarvil D. Patel. (2009) Synthesis and antimicrobial study of fluoroquinolone-based 4-thiazolidinones. Medicinal Chemistry Research 19:8, pages 757-770.
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Nuno R. Candeias, Luís C. Branco, Pedro M. P. Gois, Carlos A. M. Afonso & Alexandre F. Trindade. (2009) More Sustainable Approaches for the Synthesis of N-Based Heterocycles. Chemical Reviews 109:6, pages 2703-2802.
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N. B. Patel & S. D. Patel. (2009) Synthesis and antimicrobial activity of 2-phenyl-3-{1-cyclopropyl-6-fluoro-7-[4-methylpiperazin-1-yl]-4-quinolone}carboxamido-3-thiazolidin-4-ones. Pharmaceutical Chemistry Journal 43:6.
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. (2007) Synthesis and Characterization of Some Quinazoline Derivatives as Potential Antimicrobial Agents under Microwave Irradiation. Bulletin of the Korean Chemical Society 28:12, pages 2338-2343.
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Zhong-Zheng Zhou, Wei Huang, Feng-Qin Ji, Ming-Wu Ding & Guang-Fu Yang. (2007) Construction of a combinatorial library of 2-(4-oxo-4H-1-benzopyran-3-yl)-4-thiazolidinones by microwave-assisted one-pot parallel syntheses. Heteroatom Chemistry 18:4, pages 381-389.
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Kapil Arya & Anshu Dandia. (2007) Synthesis of biologically important novel fluorinated spiro heterocycles under microwaves catalyzed by montmorillonite KSF. Journal of Fluorine Chemistry 128:3, pages 224-231.
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Anshu Dandia, Ruby Singh, Sarita Khaturia, Claude Mérienne, Georges Morgant & André Loupy. (2006) Efficient microwave enhanced regioselective synthesis of a series of benzimidazolyl/triazolyl spiro [indole-thiazolidinones] as potent antifungal agents and crystal structure of spiro[3H-indole-3,2′-thiazolidine]-3′(1,2,4-triazol-3-yl)-2,4′(1H)-dione. Bioorganic & Medicinal Chemistry 14:7, pages 2409-2417.
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Anshu Dandia, Ruby Singh & Sarita Khaturia. (2006) Microwave enhanced solid support synthesis of fluorine containing benzopyrano-triazolo-thiadiazepines as potent anti-fungal agents. Bioorganic & Medicinal Chemistry 14:5, pages 1303-1308.
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