Results 181 to 190 of about 51,733 (247)
CD93—An emerging vascular target in cancer therapy
Abstract CD93 is a single‐pass transmembrane glycoprotein that belongs to the C‐type lectin domain group XIV family of proteins. Although it is known to be expressed in other cell types, namely, in some subsets of immune cells, CD93 is primarily expressed on endothelial cells, where it acts as a crucial regulator of angiogenesis.
Beatriz de Alves Pereira +3 more
wiley +1 more source
Mice expressing only mutant PTEN Y138L, a protein which shows normal suppression of cellular AKT yet lacks protein phosphatase activity, die in utero, and heterozygous mice display a range of tumors. This indicates both the lipid and protein phosphatase activities of PTEN work together for normal tumor suppression and embryonic development.
Priyanka Tibarewal +16 more
wiley +1 more source
Genetics in Heterotaxy: A Case Series and Literature Review on DNAH9, PKD1L1, MMP21, and GDF1
Integrating trio‐based genomic sequencing with detailed clinical evaluation across seven French–Vietnamese heterotaxy cases alongside a review of 108 published patients reveals strong genotype–phenotype correlations. Variants in DNAH9, PKD1L1, MMP21, and GDF1 define a broad spectrum from isolated situs inversus to complex conotruncal heart defects and ...
Thi Bich Tuyen Ho +23 more
wiley +1 more source
Cell‐Migration Visualization: Task Taxonomy, Systematic Review and Research Agenda
We present an expert‐validated task taxonomy for cell migration analysis and a PRISMA‐based systematic review that maps visualization tools to the tasks they support and the techniques they employ. This synthesis identifies current gaps and outlines opportunities for future research in cell migration visualization.
Ana Carla Correia +3 more
wiley +1 more source
The use of FG‐4592 in the process of myeloablation can promote haematopoietic cell apoptosis for more effective myeloablation, maintain the number of RBC and may create a pluripotent microenvironment suitable for donor cells, so as to enable more effective haematopoietic reconstruction of donor cells in vivo.
Guanheng Yang +8 more
wiley +1 more source
Derivation of Mouse Dome‐Shaped Trophoblast Stem Cells With Low Heterogeneity From Blastocysts
Here, Liu et al. report the generation of mouse dome‐shaped trophoblast stem cells (dTSCs) with low heterogeneity and autonomous differentiation potential. dTSCs robustly generate all trophoblast lineages in vitro and contribute to the placenta in vivo, providing a refined model for studying trophoblast development and related disorders.
Minli Liu +8 more
wiley +1 more source
From hepatic to hematopoietic: LRH‐1's expanding cellular repertoire to the immune system
The nuclear receptor LRH‐1 is a well‐characterized regulator of endodermal tissue. Yet, increasing evidence indicates that LRH‐1, although expressed at low levels, is also a critical regulator of the hematopoietic system. LRH‐1 regulates the immune system by contributing to immune cell‐specific functions.
Lukas Meisinger +3 more
wiley +1 more source
Macromolecule‐dependent increases in extracellular fluid viscosity alter cell phenotype. These distinct macromolecules create different extracellular environments that modulate cell morphology and mechanoprotein expression, migration and invasion capacity, and cellular mechanical properties.
Ian M. Smith +6 more
wiley +1 more source
Reactive oxygen species, antioxidants and the regulation of plant development
The regulation of axillary bud outgrowth by the interplay between phytohormone and redox signals. Axillary bud outgrowth is regulated by cellular energy status and the balance between phytohormones, notably abscisic acid (ABA) and gibberellic acid (GA).
Juwita R. Dewi +2 more
wiley +1 more source
Ploidy‐dependent modulation of DNA replication kinetics in Xenopus
Using an interspecies replication system with Xenopus frog species of different ploidy levels, we investigated how DNA replication adapts to polyploidization. While replication was slower in tetraploid than in diploid nuclei, dodecaploid nuclei unexpectedly replicated faster than tetraploid nuclei. Our findings show that increasing genome size does not
Hemalatha Narassimprakash +4 more
wiley +1 more source

