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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 uptake pharmaceutical contaminants in the environment.
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http://dx.doi.org/10.3390/antibiotics13080738 | DOI Listing |
J Parasit Dis
September 2025
Buryat State University, Ulan-Ude, 670000 Russia.
At the end of June 2019, out of 1000 oligochaetes, consisting of several species, collected in the coastal zone of Lake Baikal at a depth of 1 m, 1 specimen of the oligochaete (0.1%) was infected with actinospores of Triactinomyxon type MNV. Actinospores developed in the intestinal epithelium of the oligochaete.
View Article and Find Full Text PDFMol Phylogenet Evol
December 2025
Department of Biological and Environmental Sciences, The University of West Alabama, Livingston, AL, USA; Department of Biological Sciences, The University of Alabama, Tuscaloosa, AL, USA.
Lake Baikal ranks among the world's most species-rich freshwater ecosystems; however, the evolutionary histories of endemic taxa remain poorly understood. The unique abiotic environments of Lake Baikal include the only bathybenthic, bathypelagic, and deep hydrothermal vent communities in freshwater, each of which supports species with derived morphological and physiological traits. As the only known vertebrate radiation endemic to a non-tropical ancient lake, Baikal sculpins represent an underappreciated resource for investigating evolutionary processes that underlie adaptive radiation.
View Article and Find Full Text PDFThe winters in the region of the vast global freshwater biodiversity hotspot Lake Baikal are extremely cold. Although the conditions for reproduction may seem unfavorable during winter, the lake is inhabited by a major endemic winter-reproducing amphipod species complex. Compared with Baikal's summer-reproducing amphipod species, the duration of a reproduction cycle in the winter-reproducing species is more extended.
View Article and Find Full Text PDFComp Biochem Physiol A Mol Integr Physiol
August 2025
Institute of Biology, Irkutsk State University, Irkutsk, Russia; Baikal Research Centre, Irkutsk, Russia. Electronic address:
Lake Baikal harbors freshwater profundal amphipods, including the eurybathic species Ommatogammarus flavus and O. albinus. O.
View Article and Find Full Text PDFWe isolated a novel bacteriophage from Lake Baikal that infects Pseudomonas fluorescens. Transmission electron microscopy revealed that phage PfAn1 has a head with a diameter of 50 nm and a short tail. Its genome is 39,156 bp in length with a GC content of 57%.
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