Alina Gorshkova’s research while affiliated with Scientific Center of Children's Health, Russian Academy of Sciences and other places

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Publications (2)


The percentage of dead THP-1 cells after their co-culturing with LEVs derived from NK-92 cells. THP-1(control)–THP-1 cells stained with 7-AAD; 5 μg/10 μg/20 μg LEVs (int)–THP-1 cells stained with 7-AAD after a co-culture with LEVs(int) at three different concentrations (5, 10, or 20 μg of protein per 100 μL); and 5 μg/10 μg/20 μg LEVs(TNFα)—THP-1 cells stained with 7-AAD after a co-culture with LEVs(TNFα) at three different concentrations (5, 10, or 20 μg of protein per 100 μL). Significant differences: *—p < 0.05.
The percentage (A) and mean fluorescence intensity (MFI) (B) of THP-1 cells, incubated with LEVs derived from NK-92 cells. THP-1 intact cells; THP-1 + LEVs(int)—THP-1 cells cultivated in the presence of LEVs(int); and THP-1 + LEVs(CFSE)—THP-1 cells cultivated in the presence of LEVs(CFSE). Significant differences: **—p < 0.01.
The percentage of FITC-positive THP-1 cells after the phagocytosis of FITC-labeled E. coli. THP-1(unst)—intact THP-1 cells; THP-1(control)—THP-1 cells stained with tripan blue (TB) and propidium iodide (PI); THP-1(E. coli)—THP-1 cells stained with TB and PI after incubation with FITC-labeled E. coli; +TNFα—THP-1 cells pre-incubated with TNFα; +LEVs(int)—THP-1 cells pre-incubated with LEVs(int); and +LEVs(TNFα)—THP-1 cells pre-incubated with LEVs(TNFα). Significant differences: *—p < 0.05; **—p < 0.01; and ***—p < 0.001.
The mean fluorescent intensity (MFI) of THP-1 cells after the phagocytosis of unstained E. coli in the presence of dihydrorhodamine 123. THP-1(unst)—intact THP-1 cells; THP-1(PMA)—THP-1 cells treated with phorbol-12-myristate-13-acetate (PMA); THP(E. coli)—THP-1 cells that have undergone oxidative explosion after activation with FITC-labeled E. coli; +TNFα—THP-1 cells pre-incubated with TNFα; +LEVs(int)—THP-1 cells pre-incubated with LEVs(int); and +LEVs(TNFα)—THP-1 cells pre-incubated with LEVs(TNFα). Significant differences: *—p < 0.05; **—p < 0.01; and ***—p < 0.001.
The percentage of THP-1 cells expressing receptors in the presence of LEVs(int) or LEVs(TNFα). IC—isotypic control; THP(int)—intact THP-1 cells; THP + TNFα—THP-1 cells pre-incubated with TNFα; THP + LEVs(int)—THP-1 cells pre-incubated with LEVs(int); and THP + LEVs(TNFα)—THP-1 cells pre-incubated with LEVs(TNFα). Significant differences: *—p < 0.05; **—p < 0.01; ***—p < 0.001; #–the difference with isotypic control; #—p < 0.05; ##—p < 0.01; and ###—p < 0.001.

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Large Extracellular Vesicles Derived from Natural Killer Cells Affect the Functions of Monocytes
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August 2024

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49 Reads

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4 Citations

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Alina Gorshkova

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Communication between natural killer cells (NK cells) and monocytes/macrophages may play an important role in immunomodulation and regulation of inflammatory processes. The aim of this research was to investigate the impact of NK cell-derived large extracellular vesicles on monocyte function because this field is understudied. We studied how NK-cell derived large extracellular vesicles impact on THP-1 cells characteristics after coculturing: phenotype, functions were observed with flow cytometry. In this study, we demonstrated the ability of large extracellular vesicles produced by NK cells to integrate into the membranes of THP-1 cells and influence the viability, phenotype, and functional characteristics of the cells. The results obtained demonstrate the ability of large extracellular vesicles to act as an additional component in the immunomodulatory activity of NK cells in relation to monocytes.

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Natural Killer Cell Derived Microvesicles Affect the Function of Trophoblast Cells

February 2023

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98 Reads

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6 Citations

The interaction of natural killer (NK) and trophoblast cells underlies the formation of immune tolerance in the mother–fetus system and the maintenance of the physiological course of pregnancy. In addition, NK cells affect the function of trophoblast cells, interacting with them via the receptor apparatus and through the production of cytokines. Microvesicles (MVs) derived from NK cells are able to change the function of target cells. However, in the overall pattern of interactions between NK cells and trophoblasts, the possibility that both can transmit signals to each other via MVs has not been taken into account. Therefore, the aim of this study was to assess the effect of NK cell-derived MVs on the phenotype, proliferation, and migration of trophoblast cells and their expression of intracellular messengers. We carried out assays for the detection of content transferred from MV to trophoblasts. We found that NK cell-derived MVs did not affect the expression of CD54, CD105, CD126, CD130, CD181, CD119, and CD120a receptors in trophoblast cells or lead to the appearance of CD45 and CD56 receptors in the trophoblast membrane. Further, the MVs reduced the proliferation but increased the migration of trophoblasts with no changes to their viability. Incubation of trophoblast cells in the presence of MVs resulted in the activation of STAT3 via pSTAT3(Ser727) but not via pSTAT3(Tyr705). The treatment of trophoblasts with MVs did not result in the phosphorylation of STAT1 and ERK1/2. The obtained data indicate that NK cell-derived MVs influence the function of trophoblast cells, which is accompanied by the activation of STAT3 signaling.

Citations (2)


... Previous studies have shown that LEVs, ranging from 1 to 10 µm, contain proteins and small RNAs, highlighting their potential for development as biomarkers in cancer [23]. LEVs produced by a natural killer cell line in vitro regulated the surface marker expression and function of monocyte/macrophage cell lines [24]. Moreover, some LEVs contain, transport, and release SEVs [25]. ...

Reference:

Immune System-Related Plasma Pathogenic Extracellular Vesicle Subpopulations Predict Osteoarthritis Progression
Large Extracellular Vesicles Derived from Natural Killer Cells Affect the Functions of Monocytes

... Ранее нами были получены данные о влиянии микровезикул NK-клеток на функциональное состояние клеток трофобласта в системе in vitro [11]. Было установлено, что микровезикулы не влияют на экспрессию рецепторов CD54, CD105, CD126, CD130, CD181, CD119 и CD120a клетками трофобласта линии JEG-3 и не приводят к появлению рецепторов CD45 и CD56 на мембранах этих клеток. ...

Natural Killer Cell Derived Microvesicles Affect the Function of Trophoblast Cells