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Mechanics and functional consequences of nuclear deformations
As the home of cellular genetic information, the nucleus has a critical role in determining cell
fate and function in response to various signals and stimuli. In addition to biochemical …
fate and function in response to various signals and stimuli. In addition to biochemical …
Cellular mechanotransduction: from tension to function
Living cells are constantly exposed to mechanical stimuli arising from the surrounding
extracellular matrix (ECM) or from neighboring cells. The intracellular molecular processes …
extracellular matrix (ECM) or from neighboring cells. The intracellular molecular processes …
[HTML][HTML] Substrate curvature as a cue to guide spatiotemporal cell and tissue organization
Recent evidence clearly shows that cells respond to various physical cues in their
environments, guiding many cellular processes and tissue morphogenesis, pathology, and …
environments, guiding many cellular processes and tissue morphogenesis, pathology, and …
Hydraulic control of mammalian embryo size and cell fate
Size control is fundamental in tissue development and homeostasis,. Although the role of
cell proliferation in these processes has been widely studied, the mechanisms that control …
cell proliferation in these processes has been widely studied, the mechanisms that control …
Cancer diagnosis: from tumor to liquid biopsy and beyond
Technological advancements in research on circulating biomarkers from patient derived
blood have enabled a less invasive means of diagnosing non-hematologic cancers …
blood have enabled a less invasive means of diagnosing non-hematologic cancers …
Chromatin and lamin A determine two different mechanical response regimes of the cell nucleus
The cell nucleus must continually resist and respond to intercellular and intracellular
mechanical forces to transduce mechanical signals and maintain proper genome …
mechanical forces to transduce mechanical signals and maintain proper genome …
Surface curvature differentially regulates stem cell migration and differentiation via altered attachment morphology and nuclear deformation
M Werner, SBG Blanquer, SP Haimi, G Korus… - Advanced …, 2017 - Wiley Online Library
Signals from the microenvironment around a cell are known to influence cell behavior.
Material properties, such as biochemical composition and substrate stiffness, are today …
Material properties, such as biochemical composition and substrate stiffness, are today …
Regulation of nuclear architecture, mechanics, and nucleocytoplasmic shuttling of epigenetic factors by cell geometric constraints
Cells sense mechanical signals from their microenvironment and transduce them to the
nucleus to regulate gene expression programs. To elucidate the physical mechanisms …
nucleus to regulate gene expression programs. To elucidate the physical mechanisms …
Genetically engineered and enucleated human mesenchymal stromal cells for the targeted delivery of therapeutics to diseased tissue
H Wang, CN Alarcón, B Liu, F Watson… - Nature biomedical …, 2022 - nature.com
Targeting the delivery of therapeutics specifically to diseased tissue enhances their efficacy
and decreases their side effects. Here we show that mesenchymal stromal cells with their …
and decreases their side effects. Here we show that mesenchymal stromal cells with their …
Single-cell mechanics: Structural determinants and functional relevance
The mechanical phenotype of a cell determines its ability to deform under force and is
therefore relevant to cellular functions that require changes in cell shape, such as migration …
therefore relevant to cellular functions that require changes in cell shape, such as migration …