Results 131 to 140 of about 992,860 (360)
Competence for Transfection in Staphylococcus aureus [PDF]
Jan-Eric Sjöström+2 more
openalex +1 more source
Emerging microphysiological systems reproduce the spatial, biochemical, and cellular complexity of the tumor microenvironment, surpassing 2D cultures and murine models. By integrating patient‐derived tumors, perfusable vasculature, and immune trafficking, these organ‐on‐chip platforms reveal mechanisms of immune evasion, predict therapeutic responses ...
Fabiana Moresi+5 more
wiley +1 more source
Genetic Engineering Methods in Primary T Cells
Primary T cells can be engineered to confer them with novel therapeutic functions, allowing them to treat a variety of conditions. Genetic engineering can be either stable or transient, aiming to either express or inhibit a target gene. This review discusses the various genetic engineering tools available as well as their characteristics and ...
Anthony Youssef, Hui‐Shan Li
wiley +1 more source
The Influence of Foster Nursing on the Survival and Immunologic Competence of Mice and Rats [PDF]
Willys K. Silvers, Timothy W. Poole
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The oncogenic ETS factor ETV4 exerts a pleiotropic control over DNA replication both in a transcription‐dependent and ‐independent fashion in NSCLC cells. High‐ETV4 expression leads to R‐loop formation and DNA damage in response to TOP1 inhibition.
Jiaxi Zhang+14 more
wiley +1 more source
The Morphological, Behavioral, and Transcriptomic Life Cycle of Anthrobots
DNA is thought to determine shape, behavior, and lifespan, with developmental plasticity reserved for stem cells, embryos, and species like amphibia. How much morphogenetic plasticity do adult somatic human cells exhibit? Anthrobots are a self‐organizing, motile synthetic living construct made of genetically normal human epithelial cells.
Gizem Gumuskaya+6 more
wiley +1 more source
Isolation of Group H Streptococcal Competence Factor [PDF]
Dennis Perry
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EGR1 Promotes Craniofacial Bone Regeneration via Activation of ALPL⁺PDGFD⁺ Periosteal Stem Cells
ALPL+PDGFD+ (AP+) cells are distinct calvarial periosteal stem cells (PeSCs) with diminished postnatal activity. EGR1 drives PeSCs development via BMP signaling through its Znf2 domain and activates them via CTNNB1/WNT10B signaling through its Znf2/3 domains.
Yang Li+15 more
wiley +1 more source
Lean-proteome strains – next step in metabolic engineering
Kaspar eValgepea+6 more
doaj +1 more source
On the Nature of Competence of Transformable Streptococci
R Pakuła, W. Walczak
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