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1.
Mar Drugs ; 19(2)2021 Jan 27.
Article in English | MEDLINE | ID: mdl-33513982

ABSTRACT

Exopolysaccharide (EPS) from marine microalgae are promising sources of a new generation of drugs. However, lot of them remain to be discovered and tested. In this study, EPS produced by Porphyridium marinum and its oligomers prepared by High Pressure Homogenizer have been tested for different biological activities, i.e., antibacterial, anti-fungal and antibiofilm activities on Candida albicans, as well as for their effects on the viability of murine breast cancer cells. Results have shown that all EPS samples present some biological activity. For antibacterial and antibiofilm activities, the native EPS exhibited a better efficiency with Minimum Inhibitory Concentration (MIC) from 62.5 µg/mL to 1000 µg/mL depending on the bacterial strain. For Candida albicans, the biofilm formation was reduced by about 90% by using only a 31.3 µg/mL concentration. Concerning breast cancer cells, lower molar masses fractions appeared to be more efficient, with a reduction of viability of up to 55%. Finally, analyses of polymers composition and viscosity measurements were conducted on all samples, in order to propose hypotheses involving the activities caused by the intrinsic properties of polymers.


Subject(s)
Anti-Bacterial Agents/pharmacology , Biofilms/drug effects , Breast Neoplasms , Cell Survival/drug effects , Polysaccharides, Bacterial/pharmacology , Porphyridium , Animals , Anti-Bacterial Agents/isolation & purification , Anti-Bacterial Agents/therapeutic use , Biofilms/growth & development , Breast Neoplasms/drug therapy , Cell Line, Tumor , Cell Survival/physiology , Dose-Response Relationship, Drug , Female , Mice , Microalgae/isolation & purification , Microbial Sensitivity Tests/methods , Polysaccharides, Bacterial/isolation & purification , Polysaccharides, Bacterial/therapeutic use , Porphyridium/isolation & purification
2.
Molecules ; 24(8)2019 Apr 20.
Article in English | MEDLINE | ID: mdl-31009991

ABSTRACT

As the interest in biorefinery approaches is continuously increasing, new alternatives for the downstream valorization of biomasses are sought. Porphyridium cruentum microalga is a good natural source for a variety of interesting bioactive compounds, including carotenoids, phycoerythrin, and sulfated polysaccharides. In the present contribution, the use of compressed fluids-based techniques is explored towards the efficient and green extraction of bioactive compounds to valorize microalgal biomass. The extraction of carotenoids was first optimized using pressurized ethanol. The best extraction conditions involved the use of 125 °C for 20 min at 10.5 MPa. Subsequently, a sequential valorization process was devised based on the application of different steps directed towards the extraction of phycoerythrin, sulfated polysaccharides, and carotenoids, respectively. The applied pressurized conditions allowed the attainment of a good recovery of polar components without compromising the stability and extraction of carotenoids. Therefore, the proposed approach could be employed to obtain different bioactives from P. cruentum microalgal biomass employing green extraction processes.


Subject(s)
Biomass , Green Chemistry Technology , Porphyridium/chemistry , Porphyridium/isolation & purification , Carotenoids/chemistry , Carotenoids/isolation & purification , Chromatography, High Pressure Liquid , Liquid-Liquid Extraction , Mass Spectrometry , Microalgae
3.
Mar Drugs ; 13(4): 2541-58, 2015 Apr 22.
Article in English | MEDLINE | ID: mdl-25913708

ABSTRACT

A fast and high-resolution UPLC-MSE analysis was used to identify phytoplankton pigments in an ethanol extract of Porphyridium purpureum (Pp) devoid of phycobiliproteins. In a first step, 22 standard pigments were analyzed by UPLC-MSE to build a database including retention time and accurate masses of parent and fragment ions. Using this database, seven pigments or derivatives previously reported in Pp were unequivocally identified: ß,ß-carotene, chlorophyll a, zeaxanthin, chlorophyllide a, pheophorbide a, pheophytin a, and cryptoxanthin. Minor amounts of Divinyl chlorophyll a, a chemotaxonomic pigment marker for prochlorophytes, were also unequivocally identified using the database. Additional analysis of ionization and fragmentation patterns indicated the presence of ions that could correspond to hydroxylated derivatives of chlorophyll a and pheophytin a, produced during the ethanolic extraction, as well as previously described galactosyldiacylglycerols, the thylakoid coenzyme plastoquinone, and gracilamide B, a molecule previously reported in the red seaweed Gracillaria asiatica. These data point to UPLC-MSE as an efficient technique to identify phytoplankton pigments for which standards are available, and demonstrate its major interest as a complementary method for the structural elucidation of ionizable marine molecules.


Subject(s)
Phytoplankton/metabolism , Pigments, Biological/biosynthesis , Porphyridium/metabolism , Biomarkers/metabolism , Chromatography, High Pressure Liquid , Cyclopropanes/chemistry , Cyclopropanes/isolation & purification , Cyclopropanes/metabolism , Databases, Chemical , Drug Discovery/methods , Galactolipids/biosynthesis , Galactolipids/chemistry , Galactolipids/isolation & purification , Hydroxylation , Metabolomics/methods , Microalgae/growth & development , Microalgae/isolation & purification , Microalgae/metabolism , Molecular Structure , Molecular Weight , Photobioreactors , Phytoplankton/growth & development , Phytoplankton/isolation & purification , Pigments, Biological/chemistry , Pigments, Biological/isolation & purification , Plant Extracts/chemistry , Plastoquinone/chemistry , Plastoquinone/isolation & purification , Plastoquinone/metabolism , Porphyridium/growth & development , Porphyridium/isolation & purification , Software , Spectrometry, Mass, Electrospray Ionization , Tandem Mass Spectrometry
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