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Rationale: Adhesion formation is a frequent complication after abdominal surgery. Adhesion formation might be reduced by laparoscopic surgery, however sound evidence is lacking. Colorectal surgery would be a good clinical model to investigate adhesion formation between open and laparoscopic surgery ...
JUN promotes abdominal adhesions in mice and humans
Sustained-release anti-JUN therapeutic abrogates post-operative adhesions
Mouse Mesothelial cells from peritoneal adhesions for the study of RNA-seq MMT-related changes.
Adhesions are fibrotic scars that form between abdominal organs following surgery or infection, and may cause bowel obstruction, chronic pain, or infertility. Adhesions occur post-operatively in 50-90% of all open abdominal operations and as such, represent an enormous clinical problem impacting hun...
ORGANISM(S): Homo sapiens Mus musculus 
2020-07-08 | GSE153929 | GEO
Integrins bind extracellular matrix proteins and, when clustered, form integrin adhesion complexes (IACs) that connect to and regulate the cytoskeleton, shaping normal and tumour cell behaviour. In addition to well-known nascent adhesions, focal adhesions (FAs), fibrillar adhesions (FBs), and hemide...
ORGANISM(S): Homo sapiens (Human) 
2026-06-15 | PXD071922 | Pride
CYRI proteins promote lamellipodial dynamics by opposing Rac1-mediated activation of the Scar/WAVE complex. This activity also supports resolution of macropinocytic cups, promoting internalisation of surface proteins, including integrins. Here, we show that CYRI-B also promotes focal adhesion matu...
ORGANISM(S): Mus musculus (Mouse) 
2025-12-29 | PXD062975 | Pride
Intraperitoneal microbial contamination drives post-surgical peritoneal adhesions by mesothelial EGFR-signaling.
Post-operative abdominal adhesions are the leading cause of bowel obstruction and a major cause of chronic pain and infertility. Further, adhesion formation complicates any re-operative strategy, increasing the length of surgery and rendering a safe minimally invasive approach impossible. Despite th...
ORGANISM(S): Sus scrofa 
2025-02-06 | GSE255052 | GEO
Macrophage accumulations on the injured pulmonary surface accelerate intrathoracic adhesions
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