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Research Article

Synthesis and evaluation of in vitro antiviral activity of novel phenoxy acetic acid derivatives

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Pages 876-882 | Received 05 Apr 2008, Accepted 09 Aug 2008, Published online: 01 Jun 2009

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Mohamed R Shaaban, Abdelrahman S Mayhoub & Ahmad M Farag. (2012) Recent advances in the therapeutic applications of pyrazolines. Expert Opinion on Therapeutic Patents 22:3, pages 253-291.
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R. K. ManjushaM. Reddemma M. ReddemmaShaheen Begum, Arifa Begum Sk, Mohammad Zubair ShareefK.Bharathi K.Bharathi. (2022) Synthesis, Antioxidant, Antinociceptive Activity of Novel Phenoxy acetyl carboxamides. Oriental Journal Of Chemistry 38:3, pages 709-717.
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Fares Hezam Al-Ostoot, Zabiulla, Salma Salah & Shaukath Ara Khanum. (2021) Recent investigations into synthesis and pharmacological activities of phenoxy acetamide and its derivatives (chalcone, indole and quinoline) as possible therapeutic candidates. Journal of the Iranian Chemical Society 18:8, pages 1839-1875.
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Gonca ÇELİK. (2021) Yeni pirazolin türevlerinin sentezi ve yapı karakterizasyonu. Gümüşhane Üniversitesi Fen Bilimleri Enstitüsü Dergisi.
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Dimitris Matiadis & Marina Sagnou. (2020) Pyrazoline Hybrids as Promising Anticancer Agents: An Up-to-Date Overview. International Journal of Molecular Sciences 21:15, pages 5507.
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Vinutha V. Salian, Badiadka Narayana, Balladka K. Sarojini, Madan S. Kumar, K. Sharath Chandra & Anupam G. Lobo. (2019) Tailor made biheterocyclic pyrazoline-thiazolidinones as effective inhibitors of Escherichia coli FabH: Design, synthesis and structural studies. Journal of Molecular Structure 1192, pages 91-104.
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Alireza Hasaninejad, Sanaz Mojikhalifeh & Maryam Beyrati. (2018) Highly efficient, catalyst-free, one-pot, pseudo five-component synthesis of novel pyrazoline-containing Schiff bases, metal complexes formation and computational studies via DFT method . Applied Organometallic Chemistry 32:7, pages e4380.
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Sanaz Mojikhalifeh & Alireza Hasaninejad. (2018) Highly efficient, catalyst-free, one-pot, pseudo-seven-component synthesis of novel poly-substituted pyrazolyl-1,2-diazepine derivatives. Organic Chemistry Frontiers 5:9, pages 1516-1521.
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Artania Adnin Tri Suma, Tutik Dwi Wahyuningsih & Deni Pranowo. (2017) Synthesis and Antibacterial Activities of <i>N</i>-Phenylpyrazolines from Veratraldehyde. Materials Science Forum 901, pages 124-132.
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M. C Sharma. (2017) A QSAR STUDY OF SUBSTITUTED PYRAZOLINE DERIVATIVES AS POTENTIAL ANTI-TUBERCULOSIS AGENTS. INDIAN DRUGS 54:04, pages 22-31.
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Nuran Kahriman, Zeynep Haşimoğlu, Vildan Serdaroğlu, Fatih Şaban Beriş, Burak Barut & Nurettin Yaylı. (2017) Synthesis of Novel Pyrazolines, Their Boron-Fluorine Complexes, and Investigation of Antibacterial, Antioxidant, and Enzyme Inhibition Activities. Archiv der Pharmazie 350:2, pages 1600285.
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Pankaj B. Miniyar, Mahesh A. Barmade & Anand A. Mahajan. (2015) Synthesis and biological evaluation of 1-(5-(2-chloroquinolin-3-yl)-3-phenyl-1H-pyrazol-1-yl)ethanone derivatives as potential antimicrobial agents. Journal of Saudi Chemical Society 19:6, pages 655-660.
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Y. Sheena Mary, C. Yohannan Panicker, M. Sapnakumari, B. Narayana, B.K. Sarojini, Abdulaziz A. Al-Saadi, Christian Van Alsenoy, Javeed Ahmad War & H.K. Fun. (2015) Molecular structure, FT-IR, vibrational assignments, HOMO–LUMO analysis and molecular docking study of 1-[5-(4-Bromophenyl)-3-(4-fluorophenyl)-4,5-dihydro-1H-pyrazol-1-yl]ethanone. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 136, pages 473-482.
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Nguyen Huu Dinh, Trinh Thi Huan, Duong Ngoc Toan, Peter Mangwala Kimpende & Luc Van Meervelt. (2010) Isolation, structure, and properties of quinone-aci tautomer of a phenol-nitro compound related to eugenoxyacetic acid. Journal of Molecular Structure 980:1-3, pages 137-142.
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