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While it is accepted that extracellular vesicles (EVs)-mediated transfer of microRNAs contributes to intercellular communication, the knowledge about molecular mechanisms controlling the selective and ...
Macrophage immunometabolism, the changes in intracellular metabolic pathways that alter the function of these highly plastic cells, has been the subject of intense interest in the past few years, in ...
Intercellular communication is crucial for organ function, with extracellular vesicles (EVs) acting as common messengers for almost all cells. This study proposes a novel EV-mediated intercellular ...
Extracellular vesicles, along with exogenous stimuli, play a pivotal role in mediating intercellular communication and augmenting peripheral nerve regeneration, offering promising clinical ...
Recent findings about the possible intercellular signalling role of glutamate, GABA, and melatonin might help to establish hypotheses concerning the evolutionary factors that caused intercellular ...
3 Extracellular vesicles Like RNA granules help connecting and regulating different intracellular mechanisms, cells release vesicles into the extracellular space. EVs participate in intercellular ...
In the last decade of research works upon plasma medicine using cold atmospheric plasmas (CAP), reactive oxygen and nitrogen species (RONS) are believed to be the major role of these applications.
This intracellular transformation of the protein corona further modulated nanoparticle-induced biological processes, including proteostasis and metabolic stress responses, especially glycolysis and ...
However, knowledge of intercellular communication is scarce, scattered across resources, and not linked to intracellular processes. To address this gap, we combined over 100 resources covering ...
It has been well established that the early-stage interactions of nanoparticles with cells are governed by the extracellular protein corona. However, after entering into the cells, the evolving ...
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