In vivo macromolecular crowding is differentially modulated by aquaporin 0 in zebrafish lens: Insights from a nanoenvironment sensor and spectral imaging

I Vorontsova, A Vallmitjana, B Torrado, TF Schilling… - Science …, 2022 - science.org
Macromolecular crowding is crucial for cellular homeostasis. In vivo studies of
macromolecular crowding and water dynamics are needed to understand their roles in …

In vivo macromolecular crowding is differentially modulated by aquaporin 0 in zebrafish lens: Insights from a nanoenvironment sensor and spectral imaging

I Vorontsova, A Vallmitjana, B Torrado… - Science …, 2022 - escholarship.org
Macromolecular crowding is crucial for cellular homeostasis. In vivo studies of
macromolecular crowding and water dynamics are needed to understand their roles in …

[PDF][PDF] • In vivo macromolecular crowding is differentially modulated by Aquaporin 0 in 2 zebrafish lens: insights from a nano-environment sensor and spectral imaging …

I Vorontsova, A Vallmitjana, B Torrado, T Schilling… - scholar.archive.org
Macromolecular crowding is crucial for cellular homeostasis. In vivo studies of 26
macromolecular crowding and ultimately water-dynamics are needed to understand their 27 …

[PDF][PDF] In vivo macromolecular crowding is differentially modulated by aquaporin 0 in zebrafish lens: Insights from a nanoenvironment sensor and spectral imaging

I Vorontsova, A Vallmitjana, B Torrado, TF Schilling… - 2022 - researchgate.net
Macromolecular crowding is crucial for cellular homeostasis. In vivo studies of
macromolecular crowding and water dynamics are needed to understand their roles in …

In vivo macromolecular crowding is differentially modulated by Aquaporin 0 in zebrafish lens: insights from a nano-environment sensor and spectral imaging

I Vorontsova, A Vallmitjana, B Torrado, T Schilling… - (No Title), 2021 - cir.nii.ac.jp
抄録< jats: title> Abstract</jats: title>< jats: p> Macromolecular crowding is crucial for cellular
homeostasis.< jats: italic> In vivo</jats: italic> studies of macromolecular crowding and …

In vivo macromolecular crowding is differentially modulated by aquaporin 0 in zebrafish lens: Insights from a nanoenvironment sensor and spectral imaging.

I Vorontsova, A Vallmitjana, B Torrado… - Science …, 2022 - europepmc.org
Macromolecular crowding is crucial for cellular homeostasis. In vivo studies of
macromolecular crowding and water dynamics are needed to understand their roles in …

In vivo macromolecular crowding is differentially modulated by aquaporin 0 in zebrafish lens: Insights from a nanoenvironment sensor and spectral imaging

I Vorontsova, A Vallmitjana, B Torrado… - Science …, 2022 - ui.adsabs.harvard.edu
Macromolecular crowding is crucial for cellular homeostasis. In vivo studies of
macromolecular crowding and water dynamics are needed to understand their roles in …

[HTML][HTML] In vivo macromolecular crowding is differentially modulated by aquaporin 0 in zebrafish lens: Insights from a nanoenvironment sensor and spectral imaging

I Vorontsova, A Vallmitjana, B Torrado… - Science …, 2022 - ncbi.nlm.nih.gov
Macromolecular crowding is crucial for cellular homeostasis. In vivo studies of
macromolecular crowding and water dynamics are needed to understand their roles in …

[PDF][PDF] In vivo macromolecular crowding is differentially modulated by aquaporin 0 in zebrafish lens: Insights from a nanoenvironment sensor and spectral imaging

I Vorontsova, A Vallmitjana, B Torrado, TF Schilling… - 2022 - pdfs.semanticscholar.org
Macromolecular crowding is crucial for cellular homeostasis. In vivo studies of
macromolecular crowding and water dynamics are needed to understand their roles in …

In vivo macromolecular crowding is differentially modulated by aquaporin 0 in zebrafish lens: Insights from a nanoenvironment sensor and spectral imaging

I Vorontsova, A Vallmitjana, B Torrado… - Science …, 2022 - pubmed.ncbi.nlm.nih.gov
Macromolecular crowding is crucial for cellular homeostasis. In vivo studies of
macromolecular crowding and water dynamics are needed to understand their roles in …