An increasing body of evidence suggests that disturbances in the pulmonary mechanical microenvironment, a complex interplay of extracellular matrix (ECM) stiffness, alveolar surface tension, cellular forces, and cell-matrix interactions, play a crucial role in the pathogenesis and progression of these diseases ( Owing to their unique size and highly tunable physicochemical properties, nanomaterials present unparalleled opportunities to finely adjust the pathological microenvironment within the lungs ( Here, we explore how nanomaterials can address dysregulation in the lungs mechanical microenvironment by modulating ECM properties, normalizing alveolar surface tension, and influencing mechanotransduction pathways in pertinent lung cells
Informations sur les allergies Sans colorants, agents de conservation ou dulcorants artificiels
0:00 - Introductions: Reconnecting with Katie Emerson at Expo West 2025 The episode opens with Mike and Ben welcoming Katie Emerson back to the podcast after roughly 18 months
However, over the long term, the effects of gluten go deeper
Alterations in oestrogen metabolism: implications for higher penetrance of familial pulmonary arterial hypertension in females
The overexpression of arginine methyltransferase 5 (PRMT5) in solid and hematological tumors leads to the elevation of the methylation level of arginine residues on functionally related proteins in tumor cells, which affects cell cycle regulation, mRNA splicing, cell differentiation, signal transduction, and other physiological processes