Emerging evidence indicates that metabolism not only is a source of energy and biomaterials for cell division but also acts as a driver of cancer cell plasticity and treatment resistance. This is because metabolic changes lead to remodeling of chromatin and reprogramming of gene expression patterns, furthering tumor cell phenotypic transitions. Therefore, the crosstalk between metabolism and epigenetics seems to hold immense potential for the discovery of novel therapeutic targets for various aggressive tumors.
View Article and Find Full Text PDFChromatin structure is regulated through posttranslational modifications of histone variants that modulate transcription. Although highly homologous, histone variants display unique amino acid sequences associated with specific functions. Abnormal incorporation of histone variants contributes to cancer initiation, therapy resistance, and metastasis.
View Article and Find Full Text PDFIn eukaryotic cells, ATP generation is generally viewed as the primary function of mitochondria under normoxic conditions. Reactive oxygen species (ROS), in contrast, are regarded as the by-products of respiration, and are widely associated with dysfunction and disease. Important signaling functions have been demonstrated for mitochondrial ROS in recent years.
View Article and Find Full Text PDFObjective: To identify useful cytological findings for detecting premalignant lesions in postmenopausal women, cervicovaginal smear samples were analyzed and compared between women with or without premalignant lesions based on endocrine indices and presence of parakeratosis (PK).
Methods: The cervicovaginal smear samples of postmenopausal women with premalignant lesions (n = 94) and those who were without (n = 344), who were diagnosed between 2012 and 2014 were retrieved and analyzed. Women cytologically diagnosed with malignancy or those with suspicion of malignancy were excluded from this study.