Literature DB >> 1406343

Photosensitizing activity of water- and lipid-soluble phthalocyanines on prokaryotic and eukaryotic microbial cells.

G Bertoloni1, F Rossi, G Valduga, G Jori, H Ali, J E van Lier.   

Abstract

The photosensitizing activity of lipophilic zinc-phthalocyanine (Zn-Pc) and its water-soluble sulphonated derivative (Zn-PcS) towards Streptococcus faecium and Candida albicans was studied and correlated with the amount of cell-bound photosensitizer. With both micro-organisms Zn-PcS was more tightly bound in larger amounts than Zn-Pc in the protoplasts of the cytoplasmic membrane. As a consequence, the photoinduced damage in S. faecium initially involved membrane proteins, while DNA was modified only upon prolonged irradiation. For C. albicans only Zn-PcS showed a preferential affinity for the spheroplasts and the decrease in cell survival was not accompanied by detectable modifications of the electrophoretic pattern of membrane proteins. The photoinduced ultrastructural alteration of both micro-organisms suggests damage at membrane level. This would indicate the involvement of different targets in bacteria and yeast for phthalocyanine photosensitization.

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Year:  1992        PMID: 1406343

Source DB:  PubMed          Journal:  Microbios        ISSN: 0026-2633


  31 in total

1.  Photodynamic therapy: a new antimicrobial approach to infectious disease?

Authors:  Michael R Hamblin; Tayyaba Hasan
Journal:  Photochem Photobiol Sci       Date:  2004-02-12       Impact factor: 3.982

Review 2.  [Antibacterial photodynamic therapy. A new treatment for superficial bacterial infections?].

Authors:  T Maisch; R-M Szeimies; N Lehn; C Abels
Journal:  Hautarzt       Date:  2005-11       Impact factor: 0.751

3.  In vitro resistance selection studies of RLP068/Cl, a new Zn(II) phthalocyanine suitable for antimicrobial photodynamic therapy.

Authors:  Francesco Giuliani; Manuele Martinelli; Annalisa Cocchi; Debora Arbia; Lia Fantetti; Gabrio Roncucci
Journal:  Antimicrob Agents Chemother       Date:  2009-12-14       Impact factor: 5.191

4.  Photodynamic therapy of persistent pockets in maintenance patients-a clinical study.

Authors:  Andreas Rühling; Jutta Fanghänel; Mohammad Houshmand; Alexander Kuhr; Peter Meisel; Christian Schwahn; Thomas Kocher
Journal:  Clin Oral Investig       Date:  2009-10-13       Impact factor: 3.573

5.  Photodynamic therapy as an adjunctive treatment for chronic periodontitis: a meta-analysis.

Authors:  Momen A Atieh
Journal:  Lasers Med Sci       Date:  2009-12-19       Impact factor: 3.161

Review 6.  Photosensitizers in antibacterial photodynamic therapy: an overview.

Authors:  Jaber Ghorbani; Dariush Rahban; Shahin Aghamiri; Alireza Teymouri; Abbas Bahador
Journal:  Laser Ther       Date:  2018-12-31

7.  Mechanism of uptake of a cationic water-soluble pyridinium zinc phthalocyanine across the outer membrane of Escherichia coli.

Authors:  A Minnock; D I Vernon; J Schofield; J Griffiths; J H Parish; S B Brown
Journal:  Antimicrob Agents Chemother       Date:  2000-03       Impact factor: 5.191

8.  Advances in antimicrobial photodynamic inactivation at the nanoscale.

Authors:  Nasim Kashef; Ying-Ying Huang; Michael R Hamblin
Journal:  Nanophotonics       Date:  2017-08-01       Impact factor: 8.449

Review 9.  Can microbial cells develop resistance to oxidative stress in antimicrobial photodynamic inactivation?

Authors:  Nasim Kashef; Michael R Hamblin
Journal:  Drug Resist Updat       Date:  2017-07-26       Impact factor: 18.500

10.  Effects of antimicrobial photodynamic therapy on antibiotic-resistant Escherichia coli.

Authors:  Aguinaldo S Garcez; Mohammed Kaplan; Grant J Jensen; Fábio R Scheidt; Eduardo M Oliveira; Selly S Suzuki
Journal:  Photodiagnosis Photodyn Ther       Date:  2020-09-24       Impact factor: 3.631

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