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Antimicrobial activity of different substituted meso-porphyrin derivatives Cover

Antimicrobial activity of different substituted meso-porphyrin derivatives

Open Access
|May 2020

References

  1. 1. Taylor P, Stapleton P, Paul Luzio J. New ways to treat bacterial infections. Drug Discov Today. 2002 Nov 1;7(21):1086-91. DOI: 10.1016/S1359-6446(02)02498-410.1016/S1359-6446(02)02498-4
  2. 2. Tomé J, Neves M, Tomé A, Cavaleiro J, Soncin M, Magaraggia M et al. Synthesis and Antibacterial Activity of New Poly-S-lysine−Porphyrin Conjugates. JJ Med Chem. 2004 Dec 16;47(26):6649-52. DOI: 10.1021/jm040802v10.1021/jm040802v15588101
  3. 3. Amos-Tautua B, Songca S, Oluwafemi O. Application of Porphyrins in Antibacterial Photodynamic Therapy. Molecules. 2019; 24(13):2456. DOI: 10.3390/molecules2413245610.3390/molecules24132456665091031277423
  4. 4. YuanY, Liu ZQ, Jin H, Sun S, Liu TJ, Wang X, et al. Photodynamic antimicrobial chemotherapy with the novel amino acid-porphyrin conjugate 4I: In vitro and in vivo studies. PLOS ONE, 2017,12(5): e0176529. DOI: 10.1371/journal.pone.017652910.1371/journal.pone.0176529542662928493985
  5. 5. Gyulkhandanyan GV, Ghazaryan RK, Paronyan MH, Ulikhanyan GI, Gyulkhandanyan AG, Sahakyan L A. Mechanisms of low-Light Therapy VII edited by Michael R. Hamblin, Juanita Anders, James D. Carroll, Proc. of SPIE. 2012;8211:821107.
  6. 6. Ramesh J, Sujatha S, Arunkumar C. Synthesis, structure, electrochemical, DNA interaction and antimicrobial studies of fluorinated trans-dicationic pyridinium porphyrins. RSC Advances. 2016;6(68):63271-85. DOI: 10.1039/C6RA09148B10.1039/C6RA09148B
  7. 7. Caminos D, Durantini E. Photodynamic inactivation of Escherichia coli immobilized on agar surfaces by a tricationic porphyrin. Bioorg Med Chem. 2006 Jun 15;14(12):4253-9. DOI: 10.1016/j.bmc.2006.01.05810.1016/j.bmc.2006.01.05816481175
  8. 8. Zhao S, Chen N, Zhang H, Zhang J, Li Z. Microwave Synthesis and Antibacterial Activity of Novel Asymmetric Porphyrin Metal Complexes from Substituted Piperonal. Chinese Journal of Applied Chemistry 2015; 32(5):542-546.
  9. 9. Sol V, Branland P, Chaleix V, Granet R, Guilloton M, Lamarche F, et al. Amino porphyrins as photo inhibitors of Gram-positive and -negative bacteria. Bioorganic & Medicinal Chemistry Letters. 2004;14(16):4207-4211. DOI: 10.1016/j.bmcl.2004.06.01610.1016/j.bmcl.2004.06.01615261271
  10. 10. Krychowiak M, Kawiak A, Narajczyk M, Borowik A, Królicka A. Silver Nanoparticles Combined With Naphthoquinones as an Effective Synergistic Strategy Against Staphylococcus aureus. Front Pharmacol. 2018 Jul 26;9:816 DOI: 10.3389/fphar.2018.0081610.3389/fphar.2018.00816609496830140226
  11. 11. Lascu A, Palade A, Birdeanu M. Procaine detection using hybrids of cobalt-metalloporphyrin with gold and silver nanoparticles. Journal of the Chemical Society of Pakistan. 2019;41(1):43-51.10.52568/000725/JCSP/41.01.2019
  12. 12. Palade A. Comparative Diclofenac Detection For Chronic Toxicity Levels Using Water Soluble Zn-Metalloporphyrin, Gold Nanoparticles And Their Hybrid. Farmacia. 2018; 66(3):468-76. DOI: 10.31925/farmacia.2018.3.1110.31925/farmacia.2018.3.11
  13. 13. Fagadar-Cosma E, Lascu A, Shova S, Zaltariov M, Birdeanu M, Croitor L, et al. X-ray Structure Elucidation of a Pt-Metalloporphyrin and Its Application for Obtaining Sensitive AuNPs-Plasmonic Hybrids Capable of Detecting Triiodide Anions. Int J Mol Sci. 2019 Feb; 20(3): 710. DOI: 10.3390/ijms2003071010.3390/ijms20030710638707330736413
  14. 14. Alexandrova R, Kalfin R, Tudose R, Fagadar-Cosma E. Comparative cytotoxicity assays performed using a free porphyrin and its Zn(II), Co(II) and Cu() Complexes. Influence of optical and aggregation properties. Studia Universitatis Babeș-Bolyai Chemia. 2018;63(4):65-77. DOI: 10.24193/subbchem.2018.4.0510.24193/subbchem.2018.4.05
  15. 15. Lascu A, Birdeanu M, Taranu B, Fagadar-Cosma E. Hybrid Mn-Porphyrin-Nanogold Nanomaterial Applied for the Spectrophotometric Detection of β-Carotene. Journal of Chemistry. 2018; 2018:1-11. DOI: 10.1155/2018/532356110.1155/2018/5323561
  16. 16. Fagadar-Cosma E, Enache C, Tudose R, Armeanu I, Mosoarca E, Vlascici D, et al. UV-Vis and fluorescence spectra of meso-tetraphenylporphyrin and meso-tetrakis-(4-methoxyphenyl) porphyrin in THF and THF-water systems. The influence of pH. Revista de Chimie. 2007;58(5):451-5.
  17. 17. Fagadar-Cosma E, Enache C. Armeanu I, Fagadar-Cosma G. Comparative Investigations of the Absorption and Fluorescence Spectra of Tetrapyridylporphyrine and Zn (II) Tetrapyridylporphyrine. Dig J Nanomat Biostruct. 2007; 2:175-83.
  18. 18. Fagadar-Cosma E, Enache C, Armeanu I. Dascalu D, Fagadar-Cosma G, Vasile M, et al. The influence of pH over topography and spectroscopic properties of silica hybrid materials embedding meso-tetratolylporphyrin. Mater Res Bull. 2009; 44:426-431. DOI: 10.1016/j.materresbull.2008.04.02310.1016/j.materresbull.2008.04.023
  19. 19. Vlascici D, Fagadar-Cosma E, Bizerea-Spiridon O. A New Composition for Co(II)-porphyrin-based Membranes Used in Thiocyanate-selective Electrodes. Sensors. 2006; 6(8):892-900. DOI: 10.3390/s608089210.3390/s6080892
  20. 20. Fagadar-Cosma E, Badea V, Fagadar-Cosma G, Palade A, Lascu A, Fringu I, et al. Trace Oxygen Sensitive Material Based on Two Porphyrin Derivatives in a Heterodimeric Complex. Molecules. 2017; 22(10):1787. DOI: 10.3390/molecules2210178710.3390/molecules22101787615140929065493
  21. 21. Dudás Z, Fagadar-Cosma E, Len A, Románszki L, Almásy L, Vlad-Oros B, et al. Improved Optical and Morphological Properties of Vinyl-Substituted Hybrid Silica Materials Incorporating a Zn-Metalloporphyrin. Materials. 2018;11(4):565. DOI: 10.3390/ma1104056510.3390/ma11040565595144929642404
  22. 22. Bettelheim A, White B, Raybuck S, Murray R. Electrochemical polymerization of amino-, pyrrole-, and hydroxy-substituted tetraphenylporphyrins. Inorganic Chemistry. 1987; 26(7):1009-17. DOI: 10.1021/ic00254a01110.1021/ic00254a011
  23. 23. Araghi M, Mirkhani V, Moghadam M, Tangestaninejad S, Mohammdpoor-Baltork I. Synthesis and characterization of a new porphyrin-polyoxometalate hybrid material and investigation of its catalytic activity. Dalton Transactions. 2012;41(10):3087. DOI: 10.1039/c2dt11865c10.1039/c2dt11865c22286169
  24. 24. Ledeţi I, Bercean V, Alexa A, Şoica C, Şuta L, Dehe-lean C et al. Preparation and Antibacterial Properties of Substituted 1,2,4-Triazoles. Journal of Chemistry. 2015; 2015:1-5. DOI: 10.1155/2015/87934310.1155/2015/879343
  25. 25. Boda FA, Mare A, Szabó ZI, Berta L, Curticapean A, Dogaru M, et al. Antibacterial activity of selected snake venoms on pathogenic bacterial strains. Rev Romana Med Lab. 2019; 27(3):305-17. DOI: 10.2478/rrlm-2019-001510.2478/rrlm-2019-0015
  26. 26. Muntean D, Licker M, Alexa E, Popescu I, Jianu C, Buda V, et al. Evaluation of essential oil obtained from Mentha×piperita L. against multidrug-resistant strains. Infect Drug Resist. 2019 Sep 13;12:2905-14. DOI: 10.2147/IDR.S21814110.2147/IDR.S218141675151131686869
  27. 27. Corina D, Bojin F, Ambrus R, Muntean D, Soica C, Paunescu V, et al. Physico-chemical and biological evaluation of flavonols: fisetin, quercetin and kaempferol alone and incorporated in beta cyclodextrins. Anticancer Agents Med Chem. 2017;17(4):615-26. DOI: 10.2174/187152061666616062110530610.2174/187152061666616062110530627338298
  28. 28. Danciu C, Muntean D, Alexa E, Farcas C, Oprean C, Zupko I, et al. Phytochemical Characterization and Evaluation of the Antimicrobial, Antiproliferative and Pro-Apoptotic Potential of Ephedra alata Decne. Hydroalcoholic Extract against the MCF-7 Breast Cancer Cell Line. Molecules. 2018; 24(1):13. DOI: 10.3390/molecules2401001310.3390/molecules24010013633752630577537
  29. 29. Clinical and Laboratory Standards Institute. Performance Standards for Antimicrobial Susceptibility Testing 2013; Twenty third informational supplement M 100-S23.Wayne PA: CLSI.
  30. 30. EUCAST-AFST. Arendrup MC, Cuenca-Estrella M, Lass-Flörl C, Hope W. EUCAST technical note on the EUCAST definitive document EDef 7.2: Method for the determination of broth dilution minimum inhibitory concentrations of antifungal agents for yeasts EDef 7.2 (EUCAST-AFST). Clin Microbiol Infect. 2012;18:E246-E247. DOI: 10.1111/j.1469-0691.2012.03880.x10.1111/j.1469-0691.2012.03880.x22563750
  31. 31. Tahlan S, Kumar S, Ramasamy K, Lim S, Shah S, Mani V et al. In-silico molecular design of heterocyclic benzimidazole scaffolds as prospective anticancer agents. BMC Chemistry. 2019;13(1). DOI: 10.1186/s13065-019-0608-510.1186/s13065-019-0608-5666177231384837
  32. 32. Tahlan S, Kumar S, Ramasamy K, Lim SM, Ali Shah SA, Mani V, et al. Design, synthesis and biological profile of heterocyclic benzimidazole analogues as prospective antimicrobial and antiproliferative agents. BMC Chemistry 2019;13(50). DOI: 10.1186/s13065-019-0567-x10.1186/s13065-019-0567-x666175831384798
DOI: https://doi.org/10.2478/rrlm-2020-0014 | Journal eISSN: 2284-5623 | Journal ISSN: 1841-6624
Language: English
Page range: 205 - 216
Submitted on: Oct 9, 2019
Accepted on: Jan 29, 2020
Published on: May 4, 2020
Published by: Romanian Association of Laboratory Medicine
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2020 Luminița Sălăgeanu, Delia Muntean, Horhat Florin George, Anca Lascu, Diana Anghel, Iulia Cristina Bagiu, Eugenia Fagadar-Cosma, published by Romanian Association of Laboratory Medicine
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.