Explore how natural bioactive compounds are revolutionizing cancer chemotherapy through multi-targeted approaches that overcome drug resistance and reduce side effects.
Discover how cells control bivalent genes like NR2F1 through a delicate balance of activation and silencing mechanisms during development.
Explore the fascinating epigenetic balance between Polycomb and COMPASS families that control gene expression in your cells.
Explore how epigenetics shapes brain development, behavior, and neurological disorders through DNA methylation, histone modification, and non-coding RNAs.
Discover how the non-canonical Wnt pathway drives dendritic cell aging and the potential for immune system rejuvenation.
Exploring how H3K27 trimethylation loss serves as a critical biomarker for predicting aggressive meningioma behavior and recurrence risk.
Explore the groundbreaking work of Paolo Sassone-Corsi on circadian rhythms and how his discoveries revolutionized our understanding of biological clocks in every cell.
Explore recent advances in molecular pathobiology of gastric carcinoma, including TCGA classifications, biomarkers, and innovative research tools transforming cancer treatment.
New research suggests cancer originates from tissue-resident OCT-4 positive VSELs through excessive self-renewal and blocked differentiation pathways.
Discover how innovative breeding technologies and eco-genetic arrangement theory created the Grenada spring soft wheat variety, revolutionizing sustainable agriculture.