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首页> 外文期刊>Stem cells translational medicine. >Proceedings: Human Leukocyte Antigen Haplo-Homozygous Induced Pluripotent Stem Cell Haplobank Modeled After the California Population: Evaluating Matching in a Multiethnic and Admixed Population
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Proceedings: Human Leukocyte Antigen Haplo-Homozygous Induced Pluripotent Stem Cell Haplobank Modeled After the California Population: Evaluating Matching in a Multiethnic and Admixed Population

机译:程序:人类白细胞抗原单倍型纯合诱导的多能干细胞单倍型在加州人口之后建模:评价在多种族和混合人口中的匹配。

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The development of a California-based induced pluripotent stem cell (iPSC) bank based on human leukocyte antigen (HLA) haplotype matching represents a significant challenge and a valuable opportunity for the advancement of regenerative medicine. However, previously published models of iPSC banks have neither addressed the admixed nature of populations like that of California nor evaluated the benefit to the population as a whole. We developed a new model for evaluating an iPSC haplobank based on demographic and immunogenetic characteristics reflecting California. The model evaluates haplolines or cell lines from donors homozygous for a single HLA-A, HLA-B, HLA-DRB1 haplotype. We generated estimates of the percentage of the population matched under various combinations of haplolines derived from six ancestries (black/African American, American Indian, Asian/Pacific Islander, Hispanic, and whiteot Hispanic) and data available from the U.S. Census Bureau, the California Institute for Regenerative Medicine, and the National Marrow Donor Program. The model included both cis (haplotype-level) and trans (genotype-level) matching between a modeled iPSC haplobank and the recipient population following resampling simulations. We showed that serving a majority (>50%) of a simulated California population through cis matching would require the creation, redundant storage, and maintenance of almost 207 different haplolines representing the top 60 most frequent haplotypes from each ancestry group. Allowances for trans matching reduced the haplobank to fewer than 141 haplolines found among the top 40 most frequent haplotypes. Finally, we showed that a model optimized, custom haplobank was able to serve a majority of the California population with fewer than 80 haplolines.
机译:基于人白细胞抗原(HLA)单倍型匹配的基于加利福尼亚的诱导性多能干细胞(iPSC)库的发展代表了再生医学发展的重大挑战和宝贵机会。但是,以前发布的iPSC银行模型既未解决像加利福尼亚州那样的人口混杂特征,也未评估对整体人口的利益。我们根据反映加州的人口统计学和免疫遗传学特征,开发了一种评估iPSC单倍型库的新模型。该模型评估单个HLA-A,HLA-B,HLA-DRB1单倍型纯合子的单倍体或细胞系。我们估算了根据六种祖先(黑人/非裔美国人,美洲印第安人,亚洲/太平洋岛民,西班牙裔和白人/非西班牙裔)的单倍型组合所匹配的人口百分比,以及美国人口普查局提供的数据,加州再生医学研究所和国家骨髓捐赠者计划。该模型在重采样模拟后,在建模的iPSC单倍库和受体群体之间包括顺式(单倍型水平)和反式(基因型水平)匹配。我们表明,通过顺式匹配为大多数模拟加利福尼亚人口提供服务(> 50%),将需要创建,冗余存储和维护代表每个祖先组中最频繁的60个单倍型的近207个不同单倍型。反式匹配的允许将单倍型库减少到在前40个最常见单倍型中发现的少于141个单倍型。最后,我们表明,经过优化的模型,自定义单元库可以为少于80个单元的加利福尼亚大部分人口提供服务。

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