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Biology subjects

Latour, G.

Publications and source records attributed to Latour, G..

2 recordsLinked to original sources

Advanced Optical Microscopy Reveals Spatio-Temporal Dynamics of Cervix Remodeling during Gestation

Collagen remodeling in the uterine cervix is a vital process in pregnancy that allows for timely fetal delivery, yet its spatio-temporal details are still not fully understood. In this study, we measured collagen reorganization at different stages of murine gestation and at various cervical depths. We used polarization-resolved Second Harmonic Generation microscopy to specifically detect fibrillar collagen and assess its orientation with sub-micrometer resolution. We imaged large cervical areas using automated mosaicking and implemented an analysis pipeline that showed significant region-dependent changes in collagen quantity, porosity, and orientation disorder. Notably, we found that collagen disorganization begins in the lower cervix at gestation day 12 and extends throughout the entire cervix by day 15. Additionally, we demonstrated that the temporal dynamics of disorganization, without spatial sensitivity, can also be tracked using Mueller Matrix imaging, which is a clinically deployable method. These findings should improve understanding and diagnosis of gestation-related issues such as premature birth.

biophysics↗

Role of Neural Crest Cells in Establishing Corneal Transparency During Embryonic Development in Mice

This study deciphers the exquisitely timed cellular and molecular symphony orchestrating corneal development in mice, revealing how neural crest cells (NCCs) transition from multipotent progenitors to architects of a light-transmitting, mechanically robust stroma. Between embryonic day 10 until birth, NCCs undergo posteroanterior differentiation marked by sequential downregulation of stemness markers, paralleled by collagen I deposition initiating at E12. Stromal expansion and keratocyte-driven ECM remodelling yield precisely aligned collagen fibrils within lamellae a configuration enabling transparency through destructive interference of scattered light. Keratocytes adopt a dendritic morphology to minimize light scatter, while secreting crystallin-like proteins that match refractive indices between cells and matrix. Corneal endothelial maturation and dynamic ECM stratification culminate in a tissue optimized for both optical clarity and structural resilience. Our study elucidates the complex choreography of cellular and molecular events underpinning corneal development, offering novel insights into the acquisition of the corneas unique optical and biomechanical properties.

cell biology↗