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Disruption of epigenetic processes can lead to altered gene function and malignant cellular transformation.
Classical studies in animals show that stimulation or lesions of certain brain structures lead to altered immune functions.
The structural changes are mainly located to the basolateral part of the cells along the nephron which could lead to altered OCT2 function.
Cancer is the most deadly genetic disease, and it occurs either through acquired mutations or epigenetic changes that lead to altered gene expressions profile of cancerous cells.
Repeated and detailed monitoring of maternal care during a future cross-fostering may reveal interesting insights into how maternal behavioral differences lead to altered adult profiles.
It is conceivable that reduced dopamine ratio changes can lead to altered physiological changes in the firing patterns within the neural circuits involved in memory processing.
This could lead to altered, ceased, or disordered activity patterns.
Simultaneous expression of cutoRNA gene pairs could lead to altered stability of one or both transcripts.
There are three major groups of distinctly regulated MAPKs that lead to altered gene expression.
These changes lead to altered Ca2+ signaling in the cytoplasmic and nuclear compartments in response vasopressin.
These processes lead to altered myocardial relaxation and manifest as diastolic dysfunction.
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CEO of Professional Science Editing for Scientists @ prosciediting.com