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Keyword [Fate]
Result: 121 - 140 | Page: 7 of 10
121.
Regulation of Satellite Cells During Skeletal Muscle repair and Regeneration
122.
The post-terminal differentiation fate of RNAs revealed by next-generation sequencing
123.
The Cell's Fate, Apoptosis or Senescence, Depends on Dose and Duration of Exposure to DNA Damaging Agents such as Mitomycin C
124.
Elucidating the mechanical milieu of stem cells in situ and delivering mechanical signals to direct cell fate in tissue engineering scaffolds
125.
Role of bone morphogenetic protein-4 in primitive human hematopoietic cell fate
126.
Functional analysis of Notch signaling during vertebrate retinal development
127.
The development of RNA-based control systems to regulate signaling and dictate cell fate in a model MAPK pathway
128.
Understanding the role of fezf2 in adult neural stem cell maintenance and fate: A study in zebrafish
129.
An evaluation of diarrheagenic Escherichia colisurvival after ingestion by Tetrahymena sp. and Helicobacter pylori's fate after ingestion by Tetrahymena sp. and Acanthamoeba polyphaga
130.
Control of cell fate decisions of embryonic stem cells by mechanical forces
131.
Determining the Fate of Bone Marrow Mononuclear Cells in Tissue Engineered Vascular Grafts using MRI
132.
Directed Adult Neural Stem/Progenitor Cell Fate in Microsphere-Loaded Chitosan Channels
133.
Insights into p53-Dependent Apoptotic Signaling and Cell Fate vis-a-vis Functional Cooperation among BCL-xL, Cytoplasmic p53, and PUMA
134.
The molecular mechanisms mediating neural fate decisions in the developing forebrain
135.
Chromosome segregational defects: Their origin, fate and contribution to genomic instability
136.
Drosophila EGF receptor signaling: More than a cell fate specification pathway
137.
Mechanisms underlying neural cell fate specification in the Drosophila sensory organ precursor lineage
138.
Fate Mapping and Gene Interaction Studies of the Preimplantation Embryo
139.
The role of Numb in T cell development and signaling
140.
Development of Novel Cell Fate Control Gene Therapy for Applications in Cancer and Immune Disorders
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