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Generation of mutations is an essential prerequisite for culture adaptation.
CONCLUSIONS: Individuals with partial viral suppression tend to remain immunologically stable, however, the accumulation of drug resistance mutations is an ongoing risk.
This model implies that the ability to rapidly acquire mutations is an inherent aspect of influenza HA and nonstructural protein 1 proteins; further, this may explain why rapid antigenic drift and a broad host range is observed with influenza A virus and not with some other RNA viruses.
Drug resistance, acquired by mutations, is an obstacle to success.
Our results also show that the presence of KRAS mutations is an independent prognostic factor in the prediction of disease-free survival (reaching statistical significance).
The multivariate analysis shows that the presence of KRAS mutations is an independent prognostic factor in the prediction of disease-free survival (reaching statistical significance), thus highlighting the relevance of KRAS mutational status in the present series of patients.
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The result of these mutations is a reduced amount of phosphatidylcholine in bile.
Distinguishing driver and passenger mutations is a major challenge.
P53 mutations are an adverse prognostic factor in esophageal cancer.
Mitochondrial DNA mutations are an important cause of neurological disease.
KRAS mutations are an early event in mucinous tumorigenesis.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com