Results 171 to 180 of about 175,723 (295)
Methyl Jasmonate-Induced Ethylene Production Is Responsible for Conifer Phloem Defense Responses and Reprogramming of Stem Cambial Zone for Traumatic Resin Duct Formation [PDF]
J. W. Hudgins, Vincent R. Franceschi
openalex +1 more source
Current preclinical studies of AAV‐mediated gene therapy explore different strategies based on the characteristics of inner ear diseases. For genetic hearing loss, approaches include the replacement of a “good gene,” removal of a “bad gene,” or direct correction of mutations through base editing.
Fan Wu+7 more
wiley +1 more source
The Multifaceted Roles of Zinc Finger Proteins in Pluripotency and Reprogramming. [PDF]
Qian Y, Wu Q.
europepmc +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
The role and mechanism of fatty acid oxidation in cancer drug resistance. [PDF]
Lei Y+7 more
europepmc +1 more source
Methylation Reprogramming and Chromosomal Aneuploidy in In Vivo Fertilized and Cloned Rabbit Preimplantation Embryos1 [PDF]
Shi Wei+4 more
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METTL14/IGF2BP2‐mediated m6A modification drives LINC01094 upregulation in BC. Then, LINC01094 interacts with PKM2 monomers to promote their dimerization, while serving as a flexible scaffold to facilitate the assembly of the PKM2/JMJD5 complex, synergistically stabilizing PKM2 dimers and enhancing their nuclear translocation.
Mengqi Wang+8 more
wiley +1 more source
Nuclear Cloning, Epigenetic Reprogramming, and Cellular Differentiation [PDF]
Rudolf Jaenisch+5 more
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The Reconstruction of Peripheral Auditory Circuit: Recent Advances and Future Challenges
This paper summarizes the potential of biomaterials, stem cells, and gene editing technologies in the regeneration of inner ear hair cells, spiral ganglion neurons, and inner ear organoids. Challenges and potential developments are discussed and explored.
Zhe Li+3 more
wiley +1 more source