日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Sulfur compounds navigate redox processes, leukotriene synthesis, and ω-hydroxylation of leukotriene B4 in neutrophil interaction with the bacteria Salmonella typhimurium: the way to manipulate neutrophil swarming

硫化合物在嗜中性粒细胞与鼠伤寒沙门氏菌相互作用过程中调控氧化还原过程、白三烯合成以及白三烯B4的ω-羟基化:这是操控嗜中性粒细胞群体运动的关键。

Golenkina, Ekaterina A; Navarnova, Sofia V; Viryasova, Galina M; Galkina, Svetlana I; Gaponova, Tatjana V; Romanova, Yulia M; Sud'ina, Galina F

Physico-chemical properties and substrate specificity of α-(1→3)-d-glucan degrading recombinant mutanase from Trichoderma harzianum expressed in Penicillium verruculosum

哈茨木霉α-(1→3)-D-葡聚糖降解重组突变酶在疣状青霉中的表达及其理化性质和底物特异性

Sinitsyna, Olga A; Volkov, Pavel V; Zorov, Ivan N; Rozhkova, Alexandra M; Emshanov, Oleg V; Romanova, Yulia M; Komarova, Bozhena S; Novikova, Natalia S; Nifantiev, Nikolay E; Sinitsyn, Arkady P

Redox processes are major regulators of leukotriene synthesis in neutrophils exposed to bacteria Salmonella typhimurium; the way to manipulate neutrophil swarming

氧化还原过程是中性粒细胞暴露于鼠伤寒沙门氏菌时白三烯合成的主要调节因子;这是调控中性粒细胞聚集运动的方法。

Golenkina, Ekaterina A; Viryasova, Galina M; Galkina, Svetlana I; Kondratenko, Natalia D; Gaponova, Tatjana V; Romanova, Yulia M; Lyamzaev, Konstantin G; Chernyak, Boris V; Sud'ina, Galina F

ATP and Formyl Peptides Facilitate Chemoattractant Leukotriene-B4 Synthesis and Drive Calcium Fluxes, Which May Contribute to Neutrophil Swarming at Sites of Cell Damage and Pathogens Invasion

ATP和甲酰肽促进趋化因子白三烯B4的合成并驱动钙离子内流,这可能有助于中性粒细胞在细胞损伤部位和病原体入侵部位的聚集。

Golenkina, Ekaterina A; Viryasova, Galina M; Galkina, Svetlana I; Iakushkina, Iuliia V; Gaponova, Tatjana V; Romanova, Yulia M; Sud'ina, Galina F

Magic Peptide: Unique Properties of the LRR11 Peptide in the Activation of Leukotriene Synthesis in Human Neutrophils.

神奇肽:LRR11肽在激活人类中性粒细胞白三烯合成中的独特特性

Viryasova Galina M, Golenkina Ekaterina A, Hianik Tibor, Soshnikova Nataliya V, Dolinnaya Nina G, Gaponova Tatjana V, Romanova Yulia M, Sud'ina Galina F

Synthetic Hexanucleotides as a Tool to Overcome Excessive Neutrophil Activation Caused by CpG-Containing Oligonucleotides

合成六核苷酸作为克服含CpG寡核苷酸引起的中性粒细胞过度活化的工具

Golenkina, Ekaterina A; Galkina, Svetlana I; Dolinnaya, Nina G; Arifulin, Evgenii A; Romanova, Yulia M; Sud'ina, Galina F

Integrated into Environmental Biofilm Chromobacterium vaccinii Survives Winter with Support of Bacterial Community

融入环境生物膜的痘苗色杆菌在细菌群落的支持下越冬

Egorova, Daria A; Voronina, Olga L; Solovyev, Andrey I; Kunda, Marina S; Aksenova, Ekaterina I; Ryzhova, Natalia N; Danilova, Ksenya V; Rykova, Valentina S; Scherbakova, Anastasya A; Semenov, Andrey N; Polyakov, Nikita B; Grumov, Daniil A; Shevlyagina, Natalia V; Dolzhikova, Inna V; Romanova, Yulia M; Gintsburg, Alexander L

Polarization-Sensitive Surface-Enhanced In Situ Photoluminescence Spectroscopy of S. aureus Bacteria on Gold Nanospikes

金纳米尖上金黄色葡萄球菌的偏振敏感表面增强原位光致发光光谱

Saraeva, Irina; Kudryashov, Sergey I; Danilov, Pavel; Busleev, Nikolay; Tolordava, Eteri R; Rudenko, Andrey A; Zayarny, Dmitriy; Ionin, Andrey; Romanova, Yulia M

Surface-Enhanced IR-Absorption Microscopy of Staphylococcus aureus Bacteria on Bactericidal Nanostructured Si Surfaces

利用表面增强红外吸收显微镜观察杀菌纳米结构硅表面上的金黄色葡萄球菌

Kudryashov, Sergey I; Nastulyavichus, Alena A; Tolordava, Eteri R; Kirichenko, Alexey N; Saraeva, Irina N; Rudenko, Andrey A; Romanova, Yulia M; Panarin, Andrey Yu; Ionin, Andrey A; Itina, Tatiana E

Polymorphonuclear leukocyte apoptosis is accelerated by sulfatides or sulfatides-treated Salmonella Typhimurium bacteria

硫脂或经硫脂处理的鼠伤寒沙门氏菌可加速多形核白细胞凋亡。

Grishina, Zoryana V; Viryasova, Galina M; Romanova, Yulia M; Sud'ina, Galina F