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Standardizing Umbilical Cord Mesenchymal Stromal Cells for Translation to Clinical Use: Selection of GMP-Compliant Medium and a Simplified Isolation Method

机译:标准化脐带间充质基质细胞转化为临床用途:符合GMP标准介质的选择和简化的隔离方法

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摘要

Umbilical cord derived mesenchymal stromal cells (UC-MSCs) are a focus for clinical translation but standardized methods for isolation and expansion are lacking. Previously we published isolation and expansion methods for UC-MSCs which presented challenges when considering good manufacturing practices (GMP) for clinical translation. Here, a new and more standardized method for isolation and expansion of UC-MSCs is described. The new method eliminates dissection of blood vessels and uses a closed-vessel dissociation following enzymatic digestion which reduces contamination risk and manipulation time. The new method produced >10 times more cells per cm of UC than our previous method. When biographical variables were compared, more UC-MSCs per gram were isolated after vaginal birth compared to Caesarian-section births, an unexpected result. UC-MSCs were expanded in medium enriched with 2%, 5%, or 10% pooled human platelet lysate (HPL) eliminating the xenogeneic serum components. When the HPL concentrations were compared, media supplemented with 10% HPL had the highest growth rate, smallest cells, and the most viable cells at passage. UC-MSCs grown in 10% HPL had surface marker expression typical of MSCs, high colony forming efficiency, and could undergo trilineage differentiation. The new protocol standardizes manufacturing of UC-MSCs and enables clinical translation.
机译:脐带衍生的间充质基质细胞(UC-MSCs)是临床翻译的重点,但缺乏标准化的分离和膨胀方法。以前我们在考虑良好的制造实践(GMP)进行临床翻译时,我们发布了UC-MSC的隔离和扩展方法。这里,描述了用于隔离和扩展UC-MSC的新的和更标准化的方法。新方法消除了血管的解剖,并在酶消化后使用封闭的容器解离,从而降低污染风险和操纵时间。新方法生产的>每厘米UC的细胞比我们之前的方法更多。比较传记变量时,与剖腹产分娩相比,阴道出生后,阴道出生后,将每克再分离每克更多的UC-MSCs。在富含2%,5%或10%合并的人血小板裂解物(HPL)的培养基中膨胀了UC-MSCs,消除了异种血清组分。比较HPL浓度时,补充有10%HPL的培养基具有最高的生长速率,最小细胞和最活跃的细胞。在10%HPL中生长的UC-MSCs具有典型的MSCs,高菌落成型效率的表面标记表达,并且可以进行三叶油分化。新协议标准化UC-MSC的制造,并实现临床翻译。

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  • 来源
    《Stem cells international》 |2016年第5期|共14页
  • 作者单位

    Kansas State Univ Midwest Inst Comparat Stem Cell Biotechnol Dept Anat &

    Physiol Manhattan KS;

    Kansas State Univ Midwest Inst Comparat Stem Cell Biotechnol Dept Anat &

    Physiol Manhattan KS;

    Kansas State Univ Midwest Inst Comparat Stem Cell Biotechnol Dept Anat &

    Physiol Manhattan KS;

    Kansas State Univ Midwest Inst Comparat Stem Cell Biotechnol Dept Anat &

    Physiol Manhattan KS;

    Kansas State Univ Midwest Inst Comparat Stem Cell Biotechnol Dept Anat &

    Physiol Manhattan KS;

    Kansas State Univ Midwest Inst Comparat Stem Cell Biotechnol Dept Anat &

    Physiol Manhattan KS;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物工程学(生物技术);
  • 关键词

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