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来源于帕金森病患者的冻存人多能干细胞系
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来源于帕金森病患者的冻存人多能干细胞系
来源于帕金森病患者的冻存人多能干细胞系
使用高质量的患者来源的人诱导多能干细胞 (hiPSC) 系 SCTi010-A,推进您的神经退行性疾病研究。该细胞系源自一位 38 岁男性供体的外周血单个核细胞 (PBMCs),该供体在 34 岁时被临床诊断为早发性帕金森病(Mehanna R et al.,Mov Disord Clin Pract,2022)。该细胞系提供了一个与人体相关的模型,用于研究帕金森病的发展。该疾病相关模型提供了一个基因明确的模型,可用于研究帕金森病的分子机制,并支持机制研究、药物发现以及针对家族性和散发性帕金森病的候选治疗药物评估。SCTi009-A 采用非整合性方法进行重编程以保持遗传完整性。本产品采用严格的质量控制程序,在 mTeSR™ Plus(产品号 #100-0276)和ReLeSR™(产品号 #100-0483)的培养体系中生产,从而确保最佳性能和批次间一致性。SCTi010-A 可维持核型稳定性及三谱系分化潜能,并已在 hPSCreg® 注册,符合伦理规范和国际标准的合规性。
本产品仅供研究使用,已获得机构审查委员会批准,可用于学术和商业研究。STEMCELL可根据要求提供全外显子组和全基因组测序数据文件。请联系我们获取报价。
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分类
冻存
细胞类型
多能干细胞、患者来源的多能干细胞
物种
人
细胞与组织来源
多能干细胞
应用方向
细胞培养、分化、功能学检测、基因组编辑、细胞毒性检测
研究领域
细胞系制备、疾病建模、药物发现和毒性检测、神经科学、干细胞生物学
Table 1. Human iPSC Line SCTi010-A Is Derived from a Male Donor with Early-Onset Parkinson’s Disease

Early-Onset Parkinson’s Disease Human iPSC Line, SCTi010-A, was derived from PBMCs of a 38-year-old male donor clinically diagnosed with Parkinson’s disease. Demographic, health, and genetic characteristics of the SCTi010-A donor are compiled based on self-reported information, clinical documentation and whole-exome sequencing. Sex was determined by karyotype. Ancestry and HLA haplotype were calculated from combined whole-genome and whole-exome sequencing data. Blood type (ABO/Rh blood group) was determined by next-generation sequencing. Height, weight, and BMI were calculated at the donation facility. iPSC = induced pluripotent stem cell; PBMC = peripheral blood mononuclear cell

Figure 1. Cells from Human iPSC Line SCTi010-A Exhibit High-Quality Morphology in Routine Culture
Cryopreserved cells from the Early-Onset Parkinson’s Disease Human iPSC Line, SCTi010-A, were thawed and maintained in mTeSR™ Plus on Corning® Matrigel® Matrix. Cells were cultured at 37°C and subsequently analyzed on Day 7 by brightfield microscopy. (A) The resulting iPSC colonies have densely packed cells and show multi-layering when ready to be passaged. (B,C) Cells retain prominent nucleoli and high nuclear-to-cytoplasmic ratios. iPSC = induced pluripotent stem cell

Figure 2. Human iPSC Line SCTi010-A Maintains a Normal Karyotype
(A) G-T-L banding for thawed cells from SCTi010-A at p27 (n = 20) shows a normal karyotype with no evidence of clonal abnormalities at a band resolution of 425 - 500 G-bands per haploid genome. (B) Fluorescent in situ hybridization in a representative p27 iPSC using probes for 20p11.21 (green) and 20q11.21 (red). 92% of cells examined displayed two sets of two probe signals, indicating no aneusomy of chromosome 20 (n = 200). iPSC = induced pluripotent stem cell
Table 2. Single Nucleotide Polymorphism Microarray Analysis Characterizes SCTi010-A Copy Number Variants

DNA was extracted from a vial of SCTi010-A iPSCs from the Commercial Cell Bank and subject to SNP microarray analysis to identify large-scale copy number variants (CNVs). The cells display one reportable CNVs, defined as those greater than 400kb in size, on chromosome 14 (row highlighted in bold font). Array design, genomics position, genes, and chromosome banding are based on genome build GRCh37/hg19. chr = chromosome; bp = base pairs; SNP = single nucleotide polymorphism

Figure 3. Cells from Human iPSC Line SCTi010-A Express Undifferentiated Cell Markers
Cell line SCTi0010-A was characterized using flow cytometry for undifferentiated cell markers OCT3/4 and TRA-1-60. (A) Percentage marker expression was quantified 3 passages after thawing from the analyses of two biological replicates. Representative flow cytometry plots are displayed for (B) OCT3/4 and (C) TRA-1-60. iPSC = induced pluripotent stem cell

Figure 4. Cells from Human iPSC Line SCTi010-A Demonstrate a High Trilineage Differentiation Capacity
Cells from SCTi010-A were split into 3 groups, differentiated using STEMdiff™ Trilineage Differentiation Kit (Catalog #05230), and then subjected to flow cytometry analysis. Two markers for each embryonic germ layer were assessed, and bars present mean marker expression for each group of cells (n = 2 biological replicates). PAX6 and Nestin confirm differentiation to the ectoderm lineage, NCAM and Brachyury (T) to the mesoderm lineage, and CXCR4 and SOX17 to the endoderm lineage.
Table 3. Comprehensive Risk Variant Profile for the SCTi010-A iPSC Line

The table presents risk variants identified for the SCTi010-A iPSC line. DNA was purified from the working cell bank, and whole-genome sequencing was performed to capture the entire genomic landscape. Sequencing was conducted on the NovaSeq X Plus System, achieving a 50X coverage. Coverage of coding regions and adjacent splice junction sites was enhanced for 20,000 genes using the SureSelect Human All Exon V6 Kit (Agilent Technologies). Variants were called and analyzed following GATK4 best practices, incorporating a Convolutional Neural Network to score each variant. High-confidence variants were annotated with predicted functional consequences and ClinVar IDs. ClinVar entries required two or more supporting ALT reads and an assertion criteria of one gold star or more in ClinVar to be considered. This comprehensive profile assists in understanding the genetic landscape and potential health impacts associated with the SCTi010-A iPSC line.
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Legal Statement:
These hiPSCs and their modifications (including but not limited to derivatives or differentiated progeny) shall not be used or administered in (1) human subjects for human clinical use; (2) animals for veterinary use for therapeutic, diagnostic, or prophylactic purposes; or (3) any subject in relation to clinical applications, cell therapy, transplantation, and/or regenerative medicines, without limiting the generality of the foregoing. These hiPSCs and their modifications (including but not limited to derivatives or differentiated progeny) may only be used for research related to neurological or neuromuscular conditions, for example Parkinson’s and Alzheimer’s diseases and muscular dystrophies.These hiPSCs and their modifications (including but not limited to derivatives or differentiated progeny) may not be used for monetization or commercialization purposes, including without limitation, used to, or with the goal to, perform services or supply products or rights, including in the manufacture of cellular therapies or other therapeutics, for monetary gain or the generation of royalties, revenues, sales, or other valuable consideration. For clarity, these hiPSCs and their modifications (including but not limited to derivatives or differentiated progeny) may not be used for screening compounds, antibodies, proteins, or peptides, except for the purposes of target discovery, target validation, or assay development, provided such activities and the results of such activities are not further used for monetization or commercialization purposes.It may be possible to obtain a further license for the prohibited uses referred to in this Limited Use License. Please contact iPSCrequests@stemcell.com for more details.
质量声明:
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