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Biology subjects

Malygina, E. V.

Publications and source records attributed to Malygina, E. V..

3 recordsLinked to original sources

Evaluation of intercellular and extracellular synthesis of biogenic amines by the aquatic moss Vesicularia dubyana

Natural compounds of mosses are an understudied area of phytochemistry. Over the last 20 years, the amount of information on the chemistry of natural compounds in mosses has increased considerably, but is still underwhelming. Historically, only a few hundred natural products have been described for mosses, whereas the potential for bacteria or fungi is measured in hundreds of thousands of metabolites. Although metabolites with antimicrobial, antiviral, fungicidal, and cytotoxic activities have been discovered in mosses, only few studies have been devoted to compounds with neurogenic properties. In our study, the ability of the aquatic moss Vesicularia dubyana to synthesize biogenic amines intercellularly and extracellularly has been evaluated. Aquatic moss was grown in laboratory conditions, and methanol extraction of cell biomass and moss-environment medium was conducted. The presence of biogenic amines was confirmed by UHPLC-MS-MRM analysis. The following compounds were revealed in the cellular biomass of V. dubyana: histamine, kynurenine, kynurenic acid, tryptamine, and tyramine. Histamine was also detected in the moss-environment medium, indicating the extracellular synthesis of this natural compound. Methanol extracts of the studied moss showed low antibacterial and antioxidant activities. Thus, this study for the first time demonstrates biogenic amine synthesis by aquatic mosses.

plant biology↗

Effect of truffle extracts on growth of Chlorella vulgaris

Truffles are hypogeous ectomycorrhizal fungi with a complex system of chemical communications and biotic interactions. This study examines the influence of truffle extracts on the growth of the alga Chlorella vulgaris as a model organism commonly employed in pharmacology, food industry and biomonitoring. The study involved sampling of fruiting bodies of black truffles in a number of regions across Russia, over a number of years. The observed differences in truffle condition were used to illustrate a potential correlation between the quality and biological activity of truffles. Methanolic extracts were prepared and added to the culture of C. vulgaris to evaluate the growth of algae using the spectrophotometry methods. For the first time, we demonstrated that truffle extracts had biological activity in terms of the algae C. vulgaris growth stimulation. We observed the effects of short-term and long-term growth stimulation. To date, it can be concluded that there is no direct correlation between the stimulating effects on algae and the state of truffles, place of their sampling, or their quality. Finally, it is crucial to examine biological regulations that operate in complex systems such as truffles. It is suggested that in the near future truffles may become a model system for the study of complex biotic and chemical communications.

biochemistry↗

Detection of pharmaceutical contamination in amphipods of Lake Baikal by the HPLC-MS method

Pollution by active ingredients is one of the most significant and widespread forms of pollution on Earth. Medicines can have a negative impact on ecosystems, and contamination can have unpredictable consequences. An urgent and unexplored task is to study the Lake Baikal ecosystem and its organisms for the presence of trace concentrations of active pharmaceutical ingredients. Our study aimed to conduct a qualitative analysis of active pharmaceutical ingredients, and quantitative analysis of ibuprofen in endemic amphipods of Lake Baikal, using methods of high-performance liquid chromatography and mass spectrometry (HPLC-MS). Acetylsalicylic acid (aspirin), ibuprofen, acetaminophen, azithromycin, dimetridazole, metronidazole, amikacin, spiramycin, and some tetracycline antibiotics were detected in the studied littoral amphipods. We also detected different annual loads of active pharmaceutical ingredients on amphipods. Using the multiple reaction monitoring (MRM) mode mentioned in GOST International Technical Standards, we detected molecules, fragmented as amikacin, chlortetracycline, doxycycline, oxytetracycline, dimetridazole, metronidazole and spiramycin. Thus, we first revealed that invertebrates of Lake Baikal can encounter pharmaceutical contaminants in the environment.

ecology↗