Finger-prick iPSCs Facilitate the Development of Stem cell banking
收藏官方服务:
资源简介:
Finger-prick iPSCs Facilitate the Development of Stem cell banking
应用场景:
创建时间:
2014-03-28
相关数据集
Coordination of engineered factors with TET1/2 promotes early stage epigenetic modification during somatic cell reprogramming
Somatic cell reprogramming towards induced pluripotent stem cells (iPSCs) holds great promise in future regenerative medicine, however, the reprogramming process mediated by the traditional defined fa
NIAID Data Ecosystem40
Systematic in vitro and in vivo characterization of Leukemia-inhibiting factor (LIF)- and Fibroblast growth factor (FGF) -derived porcine induced pluripotent stem cells (piPSC) vs. embryonic stages. Sus scrofa
Systematic in vitro and in vivo characterization of Leukemia-inhibiting factor (LIF)- and Fibroblast growth factor (FGF) -derived porcine induced pluripotent stem cells (Cell reprogramming -basic deve
NIAID Data Ecosystem20
Integrated Transcriptomic and Epigenomic Comparison of Human Induced Pluripotent Stem Cells Generated from Various Reprogramming Methods
Within the last decade, multiple reprogramming methods have been developed to generate human induced pluripotent stem cells (hiPSCs) which closely resemble human embryonic stem cells (hESCs). This has
NIAID Data Ecosystem10
Genetic Neuroscience: How Human Genes and Alleles Shape Neuronal Phenotypes
The goal of this collaborative, interdisciplinary project is to develop powerful, generalizable approaches for discovering how risk variants for psychiatric disorders shape neurobiological processes a
NIAID Data Ecosystem30
Genome-wide analysis of base editing specificity in human iPSCs. Homo sapiens
Targeting specificity of genome editing tools is crucial for their applications in research and medicine. This project studies the specificity of cytosine base editor in human induced pluripotent stem
NIAID Data Ecosystem10



