Examples of 'cell fate' in a sentence

Meaning of "cell fate"

Cell fate refers to the predetermined outcome or behavior of a cell in a biological system. It is determined by various factors, including genetic and environmental cues. Cell fate can determine the role and function of a cell in the development and functioning of an organism. Understanding cell fate is essential in fields such as developmental biology and regenerative medicine

How to use "cell fate" in a sentence

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cell fate
Stem cell fate analysis and manipulation.
Signaling conflicts and cell fate determination.
Cell fate is dictated by how sticky the cell is.
Role of kinins in cardiovascular cell fate in hypertension.
The cell fate decisions are taken by individual cells.
Maternal determinants of embryonic cell fate.
It plays a role in mediating cell fate decisions during hematopoiesis.
Achaete functions to specify sensory hair cell fate.
Genetic control of stem cell fate in plant roots.
This differential response may be an important determinant of cell fate.
This cell fate determination process is governed by tightly regulated patterns of gene expression.
Other factors might be involved in cell fate commitment.
Cell fate potential Cross species developmental timing.
Microenvironmental control of stem cell fate.
How epigenetic factors can modify the cell fate and be actively involved in carcinogenesis.

See also

Protein complex proves valuable for changing cell fate.
Cell release and cell fate are controlled by manipulating the biophysical and biochemical properties e . g.
Functional genomics to identify stem cell fate determinants.
During development, cell fate is governed through the carefully controlled activity of various transcription factors.
Signal transduction pathways controlling cell fate determination.
Abstract, Cell fate determination involves key transcription factors.
Directed differentiation of oligodendrocyte precursor cells to a myelinating cell fate.
Analysis of Hoxa5 gene function in cell fate during mammalian organogenesis.
Bayesian analysis of signaling networks governing embryonic stem cell fate decisions.
Neuronal cell fate specification and guidance of commissural axons by morphogens and Netrin 1.
Our observations are coherent with a stochastic model of cell fate decision.
Scientists find cell fate switch that decides liver, or pancreas?
Biomaterials can be used to control stem cell fate and function.
RANKL can influence cell fate decisions during differentiation e.g. towards M-cells.
Abnormal expression of one or many genes can dramatically influence cell fate.
GLI1 is a transcription factor involved in cell fate determination, proliferation, oncogenesis, and cancer progression.
These parameters are harnessed to design the bulk phase to regulate cell fate.
Notch proteins are single-pass transmembrane receptors that regulate cell fate decisions during development.
The modulation of electrical properties has been shown to control stem cell fate.
Nevertheless, the direct impact of FXII on neuronal cell fate remains unknown.
Sites within functional genetic elements can also be used to track cell fate.
Zhang X et al . Pax6 is a human neuroectoderm cell fate determinant.
Various techniques can be used to provide stimulus patterns that modify stem cell fate.
Beyond growth, do mechanical signals contribute to the determination of cell fate and patterning?
Neurotransmitter receptor modulating agents induce the differentiation of OPCs to a myelinating oligodendrocyte cell fate.
A homologue of the Notch Delta ligand, it mediates cell fate decisions.
Cell contractility not only regulates cell architecture and internal organization but also affects cell fate.
Transcription factors control gene expression and regulate the variety of cell fate choices.
These modifications to DNA can regulate gene transcription and cell fate.
Changes in NSC metabolism can impact cell fate.
We characterize the epigenetic mechanisms controlling T cell fate.
The Agonist and Antagonist Therapeutics have therapeutic utility for disorders of cell fate.
Primary cultures often suffer undesirable differentiation, modifying behavior and cell fate.
Consequently, may alter cell signaling by modifying gene expression, behavior and cell fate.
Notch and TGF-beta signaling pathways have been implicated in biliary cell fate in vivo.

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