Publications by authors named "G E Onishchenko"

Article Synopsis
  • Industrial multi-walled carbon nanotubes (ig-MWCNTs) are common carbon nanomaterials that people are likely to encounter, but their biodegradation by immune cells has not been thoroughly researched.
  • This study examined how proinflammatory macrophages degrade two types of ig-MWCNTs, focusing on their behavior both inside and outside the cells.
  • Results indicated that while ig-MWCNTs are significantly biodegraded by these cells, the mechanisms differ: intracellular nanotubes break down into graphene flakes, while extracellular nanotubes simply become thinner, highlighting the potential for developing nanomaterials with tailored biodegradation properties.
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Normalization of secretory activity and differentiation status of mesenchymal cells, including fibroblasts, is an important biomedical problem. One of the possible solutions is modulation of unfolded protein response (UPR) activated during fibroblast differentiation. Here, we investigated the effect of phytohormones on the secretory activity and differentiation of cultured human skin fibroblasts.

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Mitophagy is the selective degradation of mitochondria by autophagy. This process is considered to be one of the stages of mitochondrial quality control, as a result of which damaged depolarized mitochondria are eliminated, thus limiting the formation of reactive oxygen species and the release of apoptogenic factors. Selective degradation of mitochondria by autophagy is one of the main ways to protect cells from cadmium toxicity, which results in dysfunction of the mitochondrial electron transport chain, leading to electron leakage, production of reactive oxygen species and cells death.

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Objectives: To evaluate on animal models the health effects of the combined or separate exposure to main chemical and physical hazards of plasma-based material processing technology environment.

Materials And Methods: Male Wistar rats were exposed to actual levels of hazardous factors in plasma technology occupational environment: i.e.

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Endoplasmic reticulum (ER) is a multifunctional membrane-enclosed organelle. One of the major ER functions is cotranslational transport and processing of secretory, lysosomal, and transmembrane proteins. Impaired protein processing caused by disturbances in the ER homeostasis results in the ER stress.

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