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Matrix rigidity and cardiac reprogramming
Disease-specific protein corona adsorbed on nanocarriers critically determines their in vivo delivery efficiency. Given that macrophages can orchestrate inflammation resolution and mucosa repair, they are regarded as promising therapeutic targets in colitis. Here, we reveal that by altering the phys...
ORGANISM(S): Rattus norvegicus (Rat) 
2026-01-21 | PXD071116 | Pride
Very little is known about the mechanism controlling petiole rigidity in sacred lotus (Nelumbo nucifera Gaertn.). To investigate the mechanism controlling the lotus petiole rigidity, morphological and proteomic analyses were performed. Anatomically, there is a great variation between the petioles of...
ORGANISM(S): Nelumbo nucifera (Sacred lotus) 
2021-07-29 | PXD009136 | Pride
Direct cardiac reprogramming from fibroblasts holds great potential for disease modeling, drug screening, and regeneration. However, cardiac reprogramming remains inefficient in vitro, and induced cardiomyocytes (iCMs) generated in vitro are less mature than those in vivo, suggesting undefined bioph...
ORGANISM(S): Mus musculus 
2020-08-28 | GSE125811 | GEO
Tissue rigidity mechano-priming microglia cytoskeleton-nucleus interplays with biochemical signals to amplify neuroinflammatory responses
Transcriptomic analysis of engineered myometrial tissues with varied tissue architecture and matrix rigidity
Disease-specific protein corona adsorbed on nanocarriers critically determines their in vivo delivery efficiency. Given that macrophages can orchestrate inflammation resolution and mucosa repair, they are regarded as promising therapeutic targets in colitis. Here, we reveal that by altering the phys...
ORGANISM(S): Rattus norvegicus (Rat) 
2026-01-21 | PXD071199 | Pride
Microglia play a pivotal role in modulating the pathophysiology of the central nervous system, including disease progression and injury repair. While the microenvironmental factors governing microglial activation are well understood, the impact of biophysical cues, such as tissue mechanics, remains ...
ORGANISM(S): Mus musculus 
2026-09-06 | GSE287382 | GEO
Effects of ECM rigidity on normal and keloid dermal fibroblasts
We report the use of RNA-seq for transcriptional analysis of engineered myometrial tissues cultured on hydrogels with varied matrix rigidity and tissue alignment.
ORGANISM(S): Homo sapiens 
2023-12-20 | GSE233288 | GEO
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