iAccount based inUnited States
About this account
- Account based in
- United States
- Connected via
- United States App Store
Account-level information from X, not a live location or the device used for a specific post.
Flagship journal of @Intlsocdiff. Published by #Elsevier for 40+ years. All things relating to differentiation, development, stem cells and regeneration
- Tweets245
- Following332
- Followers350
- Likes144
ALT Fig. 2. Model of endocardial cushion EndMT. This figure illustrates the developmental progression of endocardial cushion EndMT. Firstly, the cardiac jelly is generated between the endocardium and myocardium. Secondly, endocardial cells (ECs) sense blood flow shear forces, lose their primary cilia, and initiate EndMT. ECs detach from the endocardium, migrate into the cardiac jelly, and transform into mesenchymal cells. During post-EndMT development, mesenchymal cells undergo proliferation, migration, and secretion of extracellular matrix, participating in the shaping of valves and the atrioventricular septum.
ALT Fig. 3. Image Analysis reveals proliferation differences based on differentiation stimuli. (A) Confluency seen within each well is graphed over the measurement period. (B) Representative images comparing macrophages at day 0 and day 18, with the differentiation agent concentration increasing down the image pairs.
ALT Fig. 7. Proposed model for promoter-level reciprocal repression during Xenopus gastrulation. In ventral mesodermal regions, BMP signaling activates Ventx1.1 expression through Smad1/5/8–Smad4 signaling. Ventx1.1 represses gsc transcription through VRE elements within the proximal gsc promoter. In the neuroectodermal domain, reduced BMP signaling permits Foxd4l1.1 expression, which further represses gsc transcription through BRE/FRE-containing promoter region. In dorsal organizer regions, Activin/Nodal signaling activates gsc through Smad2/3–Smad4 signaling, and Gsc represses ventx1.1 transcription through the GRE1-containing region of the ventx1.1 promoter. The FRE partially overlaps with VRE2 on the reverse strand, suggesting spatially distinct promoter occupancy by Ventx1.1 and Foxd4l1.1 during gastrulation.
ALT Fig. 6. Proposed model of the IHH signaling pathway modulation by RAB23-GDP, -GTP and -Resveratrol molecular interactions. The rendered images represent the functional state of RAB23 protein (active or inactive) according of molecular docking with GDP, GTP and Resveratrol, and its impact in the IHH gene transcription (promotion or inhibition) induced by GLI1 transcription factor, in l-PDLCs cultivated in osteogenic medium with and without resveratrol pretreatment (OM and OM/RESV groups, respectively).
ALT Fig. 2. Roles of SRSF3 in RNA metabolism. SRSF3 (magenta) contributes to alternative RNA splicing, binding to m6A modifications, transcription termination, polyadenylation, transcript stability, nuclear export and miRNA biogenesis. Pol II, RNA polymerase II; YTHDC1, YTH domain-containing protein 1; NEXT, nuclear exosome targeting complex; NXF1, nuclear RNA export factor 1.
ALT Fig. 1. The core mechanisms of NNMT-mediated fibrosis: NAD depletion, methylation imbalance, inflammation, and oxidative stress NAD+, Nicotinamide adenine dinucleotide; MAPK, Mitogen-activated protein kinase; SAH, S-adenosyl-L-homocysteine; SAA, Serum amyloid A; NAM, Nicotinamide; ROS, Reactive oxygen species; SAM, S-Adenosylmethionine; NNMT, Nicotinamide N-methyltransferase; MNA, 1-Methylnicotinamide; Hcy, Homocysteine; PARPs, Poly (ADP-ribose) polymerases.
ALT Fig. 3. Differentiation strategies employed for brown adipocyte induction from human stem cells. (A) Schematic representation of genetic factors and their mode of modulation (overexpression or knockdown) across different cell sources, indicating whether each manipulation enhanced or reduced brown adipocyte differentiation. (B) Diagrammatic summary of non-genetic factors applied to various human cell sources, depicting the range of stimuli such as growth factors, small molecules, hormones, phytochemicals, and physiological or developmental cues reported to promote brown adipocyte differentiation.