Scientific Resources
-
文献Pei Y et al. (MAR 2015) Scientific reports 5 9205
A platform for rapid generation of single and multiplexed reporters in human iPSC lines.
Induced pluripotent stem cells (iPSC) are important tools for drug discovery assays and toxicology screens. In this manuscript,we design high efficiency TALEN and ZFN to target two safe harbor sites on chromosome 13 and 19 in a widely available and well-characterized integration-free iPSC line. We show that these sites can be targeted in multiple iPSC lines to generate reporter systems while retaining pluripotent characteristics. We extend this concept to making lineage reporters using a C-terminal targeting strategy to endogenous genes that express in a lineage-specific fashion. Furthermore,we demonstrate that we can develop a master cell line strategy and then use a Cre-recombinase induced cassette exchange strategy to rapidly exchange reporter cassettes to develop new reporter lines in the same isogenic background at high efficiency. Equally important we show that this recombination strategy allows targeting at progenitor cell stages,further increasing the utility of the platform system. The results in concert provide a novel platform for rapidly developing custom single or dual reporter systems for screening assays. View Publication -
文献Nejadnik H et al. (APR 2015) Stem Cell Reviews and Reports 11 2 242--253
Improved Approach for Chondrogenic Differentiation of Human Induced Pluripotent Stem Cells
Human induced pluripotent stem cells (hiPSCs) have demonstrated great potential for hyaline cartilage regeneration. However,current approaches for chondrogenic differentiation of hiPSCs are complicated and inefficient primarily due to intermediate embryoid body formation,which is required to generate endodermal,ectodermal,and mesodermal cell lineages. We report a new,straightforward and highly efficient approach for chondrogenic differentiation of hiPSCs,which avoids embryoid body formation. We differentiated hiPSCs directly into mesenchymal stem /stromal cells (MSC) and chondrocytes. hiPSC-MSC-derived chondrocytes showed significantly increased Col2A1,GAG,and SOX9 gene expression compared to hiPSC-MSCs. Following transplantation of hiPSC-MSC and hiPSC-MSC-derived chondrocytes into osteochondral defects of arthritic joints of athymic rats,magnetic resonance imaging studies showed gradual engraftment,and histological correlations demonstrated hyaline cartilage matrix production. Results present an efficient and clinically translatable approach for cartilage tissue regeneration via patient-derived hiPSCs,which could improve cartilage regeneration outcomes in arthritic joints. View Publication -
文献Varela I et al. (DEC 2014) Cellular reprogramming 16 6 447--455
Generation of human $\$-thalassemia induced pluripotent cell lines by reprogramming of bone marrow-derived mesenchymal stromal cells using modified mRNA.
Synthetic modified mRNA molecules encoding pluripotency transcription factors have been used successfully in reprogramming human fibroblasts to induced pluripotent stem cells (iPSCs). We have applied this method on bone marrow-derived mesenchymal stromal cells (BM-MSCs) obtained from a patient with $$-thalassemia ($$-thal) with the aim to generate trangene-free $$-thal-iPSCs. Transfection of 10(4) BM-MSCs by lipofection with mRNA encoding the reprogramming factors Oct4,Klf4,Sox2,cMyc,and Lin28 resulted in formation of five iPSC colonies,from which three were picked up and expanded in $$-thal-iPSC lines. After 10 serial passages in vitro,$$-thal-iPSCs maintain genetic stability as shown by array comparative genomic hybridization (aCGH) and are capable of forming embryoid bodies in vitro and teratomas in vivo. Their gene expression profile compared to human embryonic stem cells (ESCs) and BM-MSCs seems to be similar to that of ESCs,whereas it differs from the profile of the parental BM-MSCs. Differentiation cultures toward a hematopoietic lineage showed the generation of CD34(+) progenitors up to 10%,but with a decreased hematopoietic colony-forming capability. In conclusion,we report herein the generation of transgene-free $$-thal-iPSCs that could be widely used for disease modeling and gene therapy applications. Moreover,it was demonstrated that the mRNA-based reprogramming method,used mainly in fibroblasts,is also suitable for reprogramming of human BM-MSCs. View Publication
过滤器
筛选结果
资源类别
细胞类型
- B 细胞 134 项目
- CD4+ 84 项目
- CD8+ 48 项目
- Endoderm 1 项目
- Neural Cells 17 项目
- NK 细胞 79 项目
- PSC-Derived 18 项目
- PSC衍生 6 项目
- Regulatory 11 项目
- T Cells 56 项目
- T 细胞 252 项目
- 上皮细胞 47 项目
- 乳腺细胞 68 项目
- 先天性淋巴细胞 3 项目
- 内皮细胞 2 项目
- 前列腺细胞 7 项目
- 单个核细胞 33 项目
- 单核细胞 106 项目
- 多能干细胞 1692 项目
- 心肌细胞 3 项目
- 杂交瘤细胞 76 项目
- 树突状细胞(DCs) 59 项目
- 气道细胞 40 项目
- 癌细胞及细胞系 116 项目
- 白细胞单采样本 1 项目
- 白血病/淋巴瘤细胞 8 项目
- 真皮细胞 1 项目
- 神经元 136 项目
- 神经干/祖细胞 384 项目
- 神经细胞 2 项目
- 粒细胞及其亚群 61 项目
- 肝细胞 3 项目
- 肠道细胞 13 项目
- 肾脏细胞 2 项目
- 脑肿瘤干细胞 81 项目
- 血小板 1 项目
- 血浆 3 项目
- 调节性细胞 7 项目
- 造血干/祖细胞 779 项目
- 间充质干/祖细胞 133 项目
- 髓系细胞 99 项目