Literature DB >> 32472704

Distinguishing Activities in the Photodynamic Arsenals of the Pigmented Ciliates Blepharisma sinuosum Sawaya, 1940 and Blepharisma japonicum Suzuki, 1954 (Ciliophora: Heterotrichea).

Jéssica Cavaleiro1,2, Nathally B Oliveira1,2, Talita A Ribeiro1,2, Lohaine F Guimarães1,2, Noemi M Fernandes3, Inácio D da Silva-Neto3, Flávia Marszaukowski4, Karen Wohnrath4, Cleber B Barreto5, Michael Schweikert6, Giulio Petroni7, Claudio Ortenzi8, Federico Buonanno8, Paulo H S Picciani2,9, Osvaldo N Oliveira10, Carlos Augusto G Soares1,2.   

Abstract

Blepharismins are photodynamic hypericin-like dianthrones produced as a variable pigment blend in Blepharisma ciliates and mostly studied in the Afro-Asiatic Blepharisma japonicum. The present work describes the bioactivity of pigments from the Brazilian Blepharisma sinuosum. Comparative analyses showed that the pigments from both species can trigger photo-induced modifications in phospholipids, but different redox properties and biological activities were assigned for each pigment blend. Stronger activities were detected for B. sinuosum pigments, with the lethal concentration LC50 10 × lower than B. japonicum pigments in light-irradiated tests against Bacillus cereus and less than half for treatments on the human HeLa tumor cells. HPLC showed B. sinuosum producing a simpler pigment blend, mostly with the blepharismin-C (~ 70%) and blepharismin-E (~ 30%) types. Each blepharismin engaged a specific dose-response profile on sensitive cells. The blepharismin-B and blepharismin-C were the most toxic pigments, showing LC50  ~ 2.5-3.0 µm and ~ 100 µm on B. cereus and HeLa cells, respectively, after illumination. Similarity clustering analysis compiling the bioactivity data revealed two groups of blepharismins: the most active, B and C, and the less active, A, D and E. The B. sinuosum pigment blend includes one representative of each clade. Functional and medical implications are discussed.
© 2020 American Society for Photobiology.

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Year:  2020        PMID: 32472704     DOI: 10.1111/php.13288

Source DB:  PubMed          Journal:  Photochem Photobiol        ISSN: 0031-8655            Impact factor:   3.421


  1 in total

Review 1.  Bioactive molecules from ciliates: Structure, activity, and applicative potential.

Authors:  Claudio Alimenti; Federico Buonanno; Graziano Di Giuseppe; Graziano Guella; Pierangelo Luporini; Claudio Ortenzi; Adriana Vallesi
Journal:  J Eukaryot Microbiol       Date:  2022-01-28       Impact factor: 3.880

  1 in total

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