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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Establishing human leukemia xenograft mouse models by implanting human bone marrow-like scaffold-based niches
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Establishing human leukemia xenograft mouse models by implanting human bone marrow-like scaffold-based niches

机译:通过植入基于人骨髓样支架的壁ni建立人白血病异种移植小鼠模型

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摘要

To begin to understand the mechanisms that regulate self-renewal, differentiation, and transformation of human hematopoietic stem cells or to evaluate the efficacy of novel treatment modalities, stem cells need to be studied in their own species-specific microenvironment. By implanting ceramic scaffolds coated with human mesenchymal stromal cells into immune-deficient mice, we were able to mimic the human bone marrow niche. Thus, we have established a human leukemia xenograft mouse model in which a large cohort of patient samples successfully engrafted, which covered all of the important genetic and risk subgroups. We found that by providing a humanized environment, stem cell self-renewal properties were better maintained as determined by serial transplantation assays and genome-wide transcriptome studies, and less clonal drift was observed as determined by exome sequencing. The human leukemia xenograft mouse models that we have established here will serve as an excellent resource for future studies aimed at exploring novel therapeutic approaches.
机译:为了开始理解调节人类造血干细胞自我更新,分化和转化的机制或评估新型治疗方式的功效,需要在其自身的物种特异性微环境中研究干细胞。通过将涂有人间充质基质细胞的陶瓷支架植入免疫缺陷小鼠中,我们能够模拟人的骨髓生境。因此,我们建立了一个人类白血病异种移植小鼠模型,其中成功移植了一大批患者样品,其中涵盖了所有重要的遗传和风险亚组。我们发现,通过提供人性化的环境,可通过串行移植测定和全基因组转录组研究确定更好地保持干细胞的自我更新特性,而通过外显子组测序确定的克隆漂移较少。我们在这里建立的人类白血病异种移植小鼠模型将为以后的研究探索新的治疗方法提供极好的资源。

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