Epithelial-mesenchymal plasticity comprises reversible transitions among epithelial, hybrid epithelial/mesenchymal (E/M) and mesenchymal phenotypes, and underlies various aspects of aggressive tumor progression such as metastasis, therapy resistance, and immune evasion. The process of cells attaining one or more hybrid E/M phenotypes is termed as partial epithelial mesenchymal transition (EMT). Cells in hybrid E/M phenotype(s) can be more aggressive than those in either fully epithelial or mesenchymal state. Thus, identifying regulators of hybrid E/M phenotypes is essential to decipher the rheostats of phenotypic plasticity and consequent accelerators of metastasis. Here, using a computational systems biology approach, we demonstrate that SLUG (SNAIL2) - an EMT-inducing transcription factor - can inhibit cells from undergoing a complete EMT and thus stabilize them in hybrid E/M phenotype(s). It expands the parametric range enabling the existence of a hybrid E/M phenotype, thereby behaving as a phenotypic stability factor. Our simulations suggest that this specific property of SLUG emerges from the topology of the regulatory network it forms with other key regulators of epithelial-mesenchymal plasticity. Clinical data suggest that SLUG associates with worse patient prognosis across multiple carcinomas. Together, our results indicate that SLUG can stabilize hybrid E/M phenotype(s).
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Clin Trials
January 2025
Department of Medical Social Sciences, Feinberg School of Medicine, Northwestern University, Chicago, IL, USA.
Background: Implementation and hybrid effectiveness-implementation trials aspire to speed the translation of science into practice by generating crucial evidence for improving the uptake of effective health interventions. By design, they pose unique recruitment and retention challenges due to their aims, units of analysis, and sampling plans, which typically require many clinical sites (i.e.
View Article and Find Full Text PDFCancers (Basel)
December 2024
Legorreta Cancer Center, The Warren Alpert Medical School, Brown University, Providence, RI 02912, USA.
The epithelial-mesenchymal transition (EMT) program is critical to metastatic cancer progression. EMT results in the expression of mesenchymal proteins and enhances migratory and invasive capabilities. In a small percentage of cells, EMT results in the expression of stemness-associated genes that provide a metastatic advantage.
View Article and Find Full Text PDFHypertension
February 2025
Department of Physiology (E.M.F., J.G., M.G., K.K., P.C.M., A.H.G., I.V., M.X., A.G., D.G., N.M.M., K.-T.L., K.K.W., D.T.B., G.C.M., M.R.H., J.L.S., J.L.G., C.D.S., P.N.), Medical College of Wisconsin, Milwaukee.
Background: The importance of the brain renin-angiotensin system in cardiovascular function is well accepted. However, not knowing the precise source of renin in the brain has been a limitation toward a complete understanding of how the brain renin-angiotensin system operates.
Methods: Highly sensitive in situ hybridization techniques and conditional knockout mice were used to address the location and function of renin in the brainstem.
Chirurgie (Heidelb)
December 2024
MVZ Chirurgie Kiel, Schönberger Str. 11, 24148, Kiel, Deutschland.
The introduction of hybrid diagnosis-related groups (DRG) presents new challenges for healthcare providers and health insurances. The same applied in 2023 to the institute designated by the Federal Ministry of Health (BMG) to extract medical procedures and calculate remuneration levels for the first hybrid DRGs. A responsible calculation methodology and a realistic data basis are required as the result of the calculation can lead to controversy, even to a splitting among specialist groups and constructs.
View Article and Find Full Text PDFPlants (Basel)
October 2024
"Aldo Moro" University of Bari, 70125 Bari, Italy.
Based on our karyological findings in the Rich., L., and L.
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