技术资料
-
Musah S et al. (SEP 2014) Proceedings of the National Academy of Sciences of the United States of America 111 38 13805--10Substratum-induced differentiation of human pluripotent stem cells reveals the coactivator YAP is a potent regulator of neuronal specification.
Physical stimuli can act in either a synergistic or antagonistic manner to regulate cell fate decisions,but it is less clear whether insoluble signals alone can direct human pluripotent stem (hPS) cell differentiation into specialized cell types. We previously reported that stiff materials promote nuclear localization of the Yes-associated protein (YAP) transcriptional coactivator and support long-term self-renewal of hPS cells. Here,we show that even in the presence of soluble pluripotency factors,compliant substrata inhibit the nuclear localization of YAP and promote highly efficient differentiation of hPS cells into postmitotic neurons. In the absence of neurogenic factors,the effective substrata produce neurons rapidly (2 wk) and more efficiently (textgreater75%) than conventional differentiation methods. The neurons derived from substrate induction express mature markers and possess action potentials. The hPS differentiation observed on compliant surfaces could be recapitulated on stiff surfaces by adding small-molecule inhibitors of F-actin polymerization or by depleting YAP. These studies reveal that the matrix alone can mediate differentiation of hPS cells into a mature cell type,independent of soluble inductive factors. That mechanical cues can override soluble signals suggests that their contributions to early tissue development and lineage commitment are profound. View Publication -
Ramos TV et al. (SEP 2014) Current protocols in cell biology 64 A.3I.1--8Standardized cryopreservation of human primary cells.
Cryopreservation is the use of low temperatures to preserve structurally intact living cells. The cells that survive the thermodynamic journey from the 37 °C incubator to the -196 °C liquid nitrogen storage tank are free from the influences of time. Thus,cryopreservation is a critical component of cell culture and cell manufacturing protocols. Successful cryopreservation of human cells requires that the cells be derived from patient samples that are collected in a standardized manner,and carefully handled from blood draw through cell isolation. Furthermore,proper equipment must be in place to ensure consistency,reproducibility,and sterility. In addition,the correct choice and amount of cryoprotectant agent must be added at the correct temperature,and a controlled rate of freezing (most commonly 1 °C/min) must be applied prior to a standardized method of cryogenic storage. This appendix describes how human primary cells can be frozen for long-term storage and thawed for growth in a tissue culture vessel. View Publication -
Tani H et al. (AUG 2014) PloS one 9 8 e106282Long non-coding RNAs as surrogate indicators for chemical stress responses in human-induced pluripotent stem cells.
In this study,we focused on two biological products as ideal tools for toxicological assessment: long non-coding RNAs (lncRNAs) and human-induced pluripotent stem cells (hiPSCs). lncRNAs are an important class of pervasive non-protein-coding transcripts involved in the molecular mechanisms associated with responses to cellular stresses. hiPSCs possess the capabilities of self-renewal and differentiation into multiple cell types,and they are free of the ethical issues associated with human embryonic stem cells. Here,we identified six novel lncRNAs (CDKN2B-AS1,MIR22HG,GABPB1-AS1,FLJ33630,LINC00152,and LINC0541471v2) that respond to model chemical stresses (cycloheximide,hydrogen peroxide,cadmium,or arsenic) in hiPSCs. Our results indicated that the lncRNAs responded to general and specific chemical stresses. Compared with typical mRNAs such as p53-related mRNAs,the lncRNAs highly and rapidly responded to chemical stresses. We propose that these lncRNAs have the potential to be surrogate indicators of chemical stress responses in hiPSCs. View Publication -
Pipino C et al. (OCT 2014) Cellular reprogramming 16 5 331--344Trisomy 21 mid-trimester amniotic fluid induced pluripotent stem cells maintain genetic signatures during reprogramming: implications for disease modeling and cryobanking.
Trisomy 21 is the most common chromosomal abnormality and is associated primarily with cardiovascular,hematological,and neurological complications. A robust patient-derived cellular model is necessary to investigate the pathophysiology of the syndrome because current animal models are limited and access to tissues from affected individuals is ethically challenging. We aimed to derive induced pluripotent stem cells (iPSCs) from trisomy 21 human mid-trimester amniotic fluid stem cells (AFSCs) and describe their hematopoietic and neurological characteristics. Human AFSCs collected from women undergoing prenatal diagnosis were selected for c-KIT(+) and transduced with a Cre-lox-inducible polycistronic lentiviral vector encoding SOX2,OCT4,KLF-4,and c-MYC (50,000 cells at a multiplicity of infection (MOI) 1-5 for 72 h). The embryonic stem cell (ESC)-like properties of the AFSC-derived iPSCs were established in vitro by embryoid body formation and in vivo by teratoma formation in RAG2(-/-),$\$-chain(-/-),C2(-/-) immunodeficient mice. Reprogrammed cells retained their cytogenetic signatures and differentiated into specialized hematopoietic and neural precursors detected by morphological assessment,immunostaining,and RT-PCR. Additionally,the iPSCs expressed all pluripotency markers upon multiple rounds of freeze-thawing. These findings are important in establishing a patient-specific cellular platform of trisomy 21 to study the pathophysiology of the aneuploidy and for future drug discovery. View Publication -
West JA et al. (AUG 2014) Nature communications 5 4719Nucleosomal occupancy changes locally over key regulatory regions during cell differentiation and reprogramming.
Chromatin structure determines DNA accessibility. We compare nucleosome occupancy in mouse and human embryonic stem cells (ESCs),induced-pluripotent stem cells (iPSCs) and differentiated cell types using MNase-seq. To address variability inherent in this technique,we developed a bioinformatic approach to identify regions of difference (RoD) in nucleosome occupancy between pluripotent and somatic cells. Surprisingly,most chromatin remains unchanged; a majority of rearrangements appear to affect a single nucleosome. RoDs are enriched at genes and regulatory elements,including enhancers associated with pluripotency and differentiation. RoDs co-localize with binding sites of key developmental regulators,including the reprogramming factors Klf4,Oct4/Sox2 and c-Myc. Nucleosomal landscapes in ESC enhancers are extensively altered,exhibiting lower nucleosome occupancy in pluripotent cells than in somatic cells. Most changes are reset during reprogramming. We conclude that changes in nucleosome occupancy are a hallmark of cell differentiation and reprogramming and likely identify regulatory regions essential for these processes. View Publication -
Huijskens MJAJ et al. (DEC 2014) Journal of leukocyte biology 96 6 1165--75Technical advance: ascorbic acid induces development of double-positive T cells from human hematopoietic stem cells in the absence of stromal cells.
The efficacy of donor HSCT is partly reduced as a result of slow post-transplantation immune recovery. In particular,T cell regeneration is generally delayed,resulting in high infection-related mortality in the first years post-transplantation. Adoptive transfer of in vitro-generated human T cell progenitors seems a promising approach to accelerate T cell recovery in immunocompromised patients. AA may enhance T cell proliferation and differentiation in a controlled,feeder-free environment containing Notch ligands and defined growth factors. Our experiments show a pivotal role for AA during human in vitro T cell development. The blocking of NOS diminished this effect,indicating a role for the citrulline/NO cycle. AA promotes the transition of proT1 to proT2 cells and of preT to DP T cells. Furthermore,the addition of AA to feeder cocultures resulted in development of DP and SP T cells,whereas without AA,a preT cell-stage arrest occurred. We conclude that neither DLL4-expressing feeder cells nor feeder cell conditioned media are required for generating DP T cells from CB and G-CSF-mobilized HSCs and that generation and proliferation of proT and DP T cells are greatly improved by AA. This technology could potentially be used to generate T cell progenitors for adoptive therapy. View Publication -
Xiao Z et al. ( 2014) The international journal of biochemistry & cell biology 55 65--71The Notch γ-secretase inhibitor ameliorates kidney fibrosis via inhibition of TGF-β/Smad2/3 signaling pathway activation.
Kidney fibrosis is a common feature of chronic kidney disease (CKD). A recent study suggests that abnormal Notch signaling activation contributes to the development of renal fibrosis. However,the molecular mechanism that regulates this process remains unexplored. Unilateral ureteral obstruction (UUO) or sham-operated C57BL6 mice (aged 10 weeks) were randomly assigned to receive dibenzazepine (DBZ,250 μg/100g/d) or vehicle for 7 days. Histologic examinations were performed on the kidneys using Masson's trichrome staining and immunohistochemistry. Real-time PCR and western blot analysis were used for detection of mRNA expression and protein phosphorylation. The expression of Notch 1,3,and 4,Notch intracellular domain (NICD),and its target genes Hes1 and HeyL were upregulated in UUO mice,while the increase in NICD protein was significantly attenuated by DBZ. After 7 days,the severity of renal fibrosis and expression of fibrotic markers,including collagen 1α1/3α1,fibronectin,and α-smooth muscle actin,were markedly increased in UUO compared with sham mice. In contrast,administration of DBZ markedly attenuated these effects. Furthermore,DBZ significantly inhibited UUO-induced expression of transforming growth factor (TGF)-β,phosphorylated Smad 2,and Smad 3. Mechanistically,Notch signaling activation in tubular epithelial cells enhanced fibroblast proliferation and activation in a coculture experiment. Our study provides evidence that Notch signaling is implicated in renal fibrogenesis. The Notch inhibitor DBZ can ameliorate this process via inhibition of the TGF-β/Smad2/3 signaling pathway,and might be a novel drug for preventing chronic kidney disease. View Publication -
Wen Y and Jin S (OCT 2014) Journal of Biotechnology 188 122--129Production of neural stem cells from human pluripotent stem cells
Despite significant advances in commercially available media and kits and the differentiation approaches for human neural stem cell (NSC) generation,NSC production from the differentiation of human pluripotent stem cell (hPSC) is complicated by its time-consuming procedure,complex medium composition,and purification step. In this study,we developed a convenient and simplified NSC production protocol to meet the demand of NSC production. We demonstrated that NSCs can be generated efficiently without requirement of specific small molecules or embryoid body formation stage. Our experimental results suggest that a short suspension culture period may facilitate ectoderm lineage specification rather than endoderm or mesoderm lineage specification from hPSCs. The method developed in this study shortens the turnaround time of NSC production from both human embryonic stem cells (hESCs) and induced pluripotent stem cells (iPSCs) differentiation. It provides a straightforward and useful strategy for generating NSCs that can benefit a wide range of research applications for human brain research. View Publication -
Gilpin SE et al. (NOV 2014) The Annals of thoracic surgery 98 5 1721--------9; discussion 1729Enhanced lung epithelial specification of human induced pluripotent stem cells on decellularized lung matrix.
BACKGROUND Whole-lung scaffolds can be created by perfusion decellularization of cadaveric donor lungs. The resulting matrices can then be recellularized to regenerate functional organs. This study evaluated the capacity of acellular lung scaffolds to support recellularization with lung progenitors derived from human induced pluripotent stem cells (iPSCs). METHODS Whole rat and human lungs were decellularized by constant-pressure perfusion with 0.1% sodium dodecyl sulfate solution. Resulting lung scaffolds were cryosectioned into slices or left intact. Human iPSCs were differentiated to definitive endoderm,anteriorized to a foregut fate,and then ventralized to a population expressing NK2 homeobox 1 (Nkx2.1). Cells were seeded onto slices and whole lungs,which were maintained under constant perfusion biomimetic culture. Lineage specification was assessed by quantitative polymerase chain reaction and immunofluorescent staining. Regenerated left lungs were transplanted in an orthotopic position. RESULTS Activin-A treatment,followed by transforming growth factor-$\$,induced differentiation of human iPSCs to anterior foregut endoderm as confirmed by forkhead box protein A2 (FOXA2),SRY (Sex Determining Region Y)-Box 17 (SOX17),and SOX2 expression. Cells cultured on decellularized lung slices demonstrated proliferation and lineage commitment after 5 days. Cells expressing Nkx2.1 were identified at 40% to 60% efficiency. Within whole-lung scaffolds and under perfusion culture,cells further upregulated Nkx2.1 expression. After orthotopic transplantation,grafts were perfused and ventilated by host vasculature and airways. CONCLUSIONS Decellularized lung matrix supports the culture and lineage commitment of human iPSC-derived lung progenitor cells. Whole-organ scaffolds and biomimetic culture enable coseeding of iPSC-derived endothelial and epithelial progenitors and enhance early lung fate. Orthotopic transplantation may enable further in vivo graft maturation. View Publication -
Diekmann U et al. (JAN 2015) Stem cells and development 24 2 190--204A reliable and efficient protocol for human pluripotent stem cell differentiation into the definitive endoderm based on dispersed single cells.
Differentiation of pluripotent cells into endoderm-related cell types initially requires in vitro gastrulation into the definitive endoderm (DE). Most differentiation protocols are initiated from colonies of pluripotent cells complicating their adaption due to insufficiently defined starting conditions. The protocol described here was initiated from a defined cell number of dispersed single cells and tested on three different human embryonic stem cell lines and one human induced pluripotent stem cell line. Combined activation of ActivinA/Nodal signaling and GSK3 inhibition for the first 24 h,followed by ActivinA/Nodal signaling efficiently induced the DE state. Activation of ActivinA/Nodal signaling alone was not effective. Efficient GSK3 inhibition allowed the reduction of the ActivinA concentration during the entire protocol. A feeder-independent cultivation of pluripotent cells was preferred to achieve the high efficiency and robustness since feeder cells hindered the differentiation process. Additionally,inhibition of the phosphatidylinositol 3-kinase (PI3K) signaling pathway was not required,nonetheless yielding high cell numbers efficiently committed toward the DE. Finally,the endoderm generated could be differentiated further into PDX1-positive pan-pancreatic cells and NGN3-positive endocrine progenitors. Thus,this efficient and robust DE differentiation protocol is a step forward toward better reproducibility due to the well-defined conditions based on dispersed single cells from feeder-free-cultivated human pluripotent cells. View Publication -
Wen Z et al. (NOV 2014) Nature 515 7527 414--418Synaptic dysregulation in a human iPS cell model of mental disorders
Dysregulated neurodevelopment with altered structural and functional connectivity is believed to underlie many neuropsychiatric disorders,and /`a disease of synapses/' is the major hypothesis for the biological basis of schizophrenia. Although this hypothesis has gained indirect support from human post-mortem brain analyses and genetic studies,little is known about the pathophysiology of synapses in patient neurons and how susceptibility genes for mental disorders could lead to synaptic deficits in humans. Genetics of most psychiatric disorders are extremely complex due to multiple susceptibility variants with low penetrance and variable phenotypes. Rare,multiply affected,large families in which a single genetic locus is probably responsible for conferring susceptibility have proven invaluable for the study of complex disorders. Here we generated induced pluripotent stem (iPS) cells from four members of a family in which a frameshift mutation of disrupted in schizophrenia 1 (DISC1) co-segregated with major psychiatric disorders and we further produced different isogenic iPS cell lines via gene editing. We showed that mutant DISC1 causes synaptic vesicle release deficits in iPS-cell-derived forebrain neurons. Mutant DISC1 depletes wild-type DISC1 protein and,furthermore,dysregulates expression of many genes related to synapses and psychiatric disorders in human forebrain neurons. Our study reveals that a psychiatric disorder relevant mutation causes synapse deficits and transcriptional dysregulation in human neurons and our findings provide new insight into the molecular and synaptic etiopathology of psychiatric disorders. View Publication -
Hawksworth OA et al. (DEC 2014) Stem Cells 32 12 3278--3284Brief report: Complement C5a promotes human embryonic stem cell pluripotency in the absence of FGF2
The complement activation product,C5a,is a pivotal member of the innate immune response; however,a diverse number of nonimmune functions are now being ascribed to C5a signaling,including roles during embryonic development. Here,we identify the expression of the C5a precursor protein,C5,as well as the C5a receptors,C5aR and C5L2,in both human embryonic stem cells and human-induced pluripotent stem cells. We show that administration of a physiologically relevant dose of purified human C5a (1 nM) stimulates activation of ERK1/2 and AKT signaling pathways,and is able to promote maintenance of the pluripotent state in the absence of FGF2. C5a also reduced cell loss following dissociation of human pluripotent stem cells. Our results reveal that complement C5a signaling supports human stem cell pluripotency and survival,and thus may play a key role in shaping early human embryonic development. Stem Cells 2014;32:3278-3284. View Publication
过滤器
筛选结果
产品类型
- 仪器及软件
Show More
Show Less
研究领域
- HIV 70 项目
- HLA 52 项目
- 上皮细胞生物学 269 项目
- 免疫 1012 项目
- 内皮细胞研究 1 项目
- 呼吸系统研究 48 项目
- 嵌合体 25 项目
- 干细胞生物学 2827 项目
- 感染性疾病(传染病) 7 项目
- 抗体制备 7 项目
- 新陈代谢 7 项目
- 杂交瘤制备 2 项目
- 疾病建模 248 项目
- 癌症 6 项目
- 神经科学 650 项目
- 移植研究 100 项目
- 类器官 178 项目
- 细胞外囊泡研究 10 项目
- 细胞治疗开发 18 项目
- 细胞疗法开发 113 项目
- 细胞系制备 191 项目
- 脐带血库 64 项目
- 血管生成细胞研究 1 项目
- 传染病 64 项目
- 内皮细胞生物学 7 项目
- 杂交瘤生成 14 项目
- 癌症研究 724 项目
- 血管生成细胞研究 51 项目
Show More
Show Less
产品系列
- ALDECOUNT 14 项目
- CellPore 11 项目
- CellShield 1 项目
- CellSTACK 1 项目
- DermaCult 1 项目
- EasyPick 1 项目
- ELISA 3 项目
- ES-Cult 78 项目
- Falcon 1 项目
- GloCell 1 项目
- GyneCult 1 项目
- HetaSep 1 项目
- Maestro 2 项目
- Matrigel 2 项目
- MegaCult 37 项目
- STEMprep 11 项目
- ALDEFLUOR 237 项目
- AggreWell 82 项目
- ArciTect 38 项目
- BloodStor 2 项目
- BrainPhys 84 项目
- CellAdhere 3 项目
- ClonaCell 107 项目
- CloneR 9 项目
- CryoStor 75 项目
- EC-Cult 1 项目
- EasySep 963 项目
- EpiCult 15 项目
- HemaTox 4 项目
- HepatiCult 32 项目
- Hypothermosol 1 项目
- ImmunoCult 39 项目
- IntestiCult 213 项目
- Lymphoprep 12 项目
- MammoCult 45 项目
- MesenCult 164 项目
- MethoCult 499 项目
- MyeloCult 65 项目
- MyoCult 10 项目
- NaïveCult 1 项目
- NeuroCult 373 项目
- NeuroFluor 3 项目
- PBS-MINI 8 项目
- PancreaCult 11 项目
- PneumaCult 119 项目
- RSeT 13 项目
- ReLeSR 10 项目
- RoboSep 43 项目
- RosetteSep 268 项目
- STEMdiff 193 项目
- STEMscript 1 项目
- STEMvision 7 项目
- SepMate 38 项目
- SmartDish 1 项目
- StemSpan 251 项目
- TeSR 1545 项目
- ThawSTAR 5 项目
- mFreSR 9 项目
- Highway1 7 项目
Show More
Show Less
细胞类型
- B 细胞 229 项目
- CD4+ 46 项目
- CD8+ 29 项目
- CHO细胞 15 项目
- HEK-293细胞(人胚肾293细胞) 2 项目
- NK 细胞 162 项目
- PSC衍生 37 项目
- T 细胞 441 项目
- 上皮细胞 143 项目
- 中胚层 5 项目
- 乳腺细胞 95 项目
- 先天性淋巴细胞 32 项目
- 全血 10 项目
- 其他子集 1 项目
- 其他细胞系 10 项目
- 内皮细胞 11 项目
- 内胚层 4 项目
- 前列腺细胞 18 项目
- 单个核细胞 93 项目
- 单核细胞 178 项目
- 多能干细胞 1986 项目
- 小胶质细胞 13 项目
- 巨噬细胞 42 项目
- 巨核细胞 10 项目
- 心肌细胞 21 项目
- 成骨细胞 10 项目
- 星形胶质细胞 14 项目
- 杂交瘤细胞 92 项目
- 树突状细胞(DCs) 118 项目
- 气道细胞 4 项目
- 淋巴细胞 73 项目
- 癌细胞及细胞系 149 项目
- 癌细胞和细胞系 1 项目
- 白细胞 24 项目
- 白细胞单采样本 13 项目
- 白血病/淋巴瘤细胞 14 项目
- 监管 1 项目
- 真皮细胞 3 项目
- 神经元 1 项目
- 神经干/祖细胞 465 项目
- 神经细胞 12 项目
- 粒细胞及其亚群 96 项目
- 红系细胞 12 项目
- 红细胞 13 项目
- 肌源干/祖细胞 11 项目
- 肝细胞 40 项目
- 肠道细胞 103 项目
- 肾细胞 4 项目
- 肿瘤细胞 27 项目
- 胰腺细胞 17 项目
- 脂肪细胞 6 项目
- 脑肿瘤干细胞 103 项目
- 血小板 4 项目
- 血浆 3 项目
- 血管生成细胞 1 项目
- 角质形成细胞 1 项目
- 调节性细胞 10 项目
- 软骨细胞 9 项目
- 造血干/祖细胞 968 项目
- 造血干祖细胞 6 项目
- 造血细胞 4 项目
- 间充质基质细胞 25 项目
- 间充质干/祖细胞 188 项目
- 间充质干祖细胞 1 项目
- 间充质细胞 3 项目
- 骨髓基质细胞 1 项目
- 骨髓间质细胞 2 项目
- 髓系细胞 135 项目
- 肾脏细胞 8 项目
- CD4+T细胞 100 项目
- CD8+T细胞 86 项目
- PSC衍生上皮细胞 39 项目
- PSC衍生中胚层 25 项目
- PSC衍生内皮细胞 20 项目
- PSC衍生内胚层 28 项目
- PSC衍生心肌细胞 26 项目
- PSC衍生神经细胞 130 项目
- PSC衍生肝细胞 18 项目
- PSC衍生造血干细胞 39 项目
- PSC衍生间充质细胞 27 项目
- 其他T细胞亚型 31 项目
- 呼吸道细胞 96 项目
- 多巴胺能神经元 6 项目
- 小鼠胚胎成纤维细胞 1 项目
- 浆细胞 17 项目
- 神经元 201 项目
- 调节性T细胞 59 项目
- 骨髓瘤 5 项目
Show More
Show Less

EasySep™小鼠TIL(CD45)正选试剂盒



沪公网安备31010102008431号