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在工程化和完全人源化的 3D 龛中培养患者来源的恶性造血干细胞。

Culturing patient-derived malignant hematopoietic stem cells in engineered and fully humanized 3D niches.

机构信息

Tissue Engineering, Department of Biomedicine, University Hospital Basel, University of Basel, 4031 Basel, Switzerland;

Tissue Engineering, Department of Biomedicine, University Hospital Basel, University of Basel, 4031 Basel, Switzerland.

出版信息

Proc Natl Acad Sci U S A. 2021 Oct 5;118(40). doi: 10.1073/pnas.2114227118.

Abstract

Human malignant hematopoietic stem and progenitor cells (HSPCs) reside in bone marrow (BM) niches, which remain challenging to explore due to limited in vivo accessibility and constraints with humanized animal models. Several in vitro systems have been established to culture patient-derived HSPCs in specific microenvironments, but they do not fully recapitulate the complex features of native bone marrow. Our group previously reported that human osteoblastic BM niches (O-N), engineered by culturing mesenchymal stromal cells within three-dimensional (3D) porous scaffolds under perfusion flow in a bioreactor system, are capable of maintaining, expanding, and functionally regulating healthy human cord blood-derived HSPCs. Here, we first demonstrate that this 3D O-N can sustain malignant CD34 cells from acute myeloid leukemia (AML) and myeloproliferative neoplasm patients for up to 3 wk. Human malignant cells distributed in the bioreactor system mimicking the spatial distribution found in native BM tissue, where most HSPCs remain linked to the niches and mature cells are released to the circulation. Using human adipose tissue-derived stromal vascular fraction cells, we then generated a stromal-vascular niche and demonstrated that O-N and stromal-vascular niche differentially regulate leukemic UCSD-AML1 cell expansion, immunophenotype, and response to chemotherapy. The developed system offers a unique platform to investigate human leukemogenesis and response to drugs in customized environments, mimicking defined features of native hematopoietic niches and compatible with the establishment of personalized settings.

摘要

人类恶性造血干祖细胞(HSPCs)存在于骨髓(BM)龛中,由于体内可及性有限以及人源化动物模型的限制,这些龛仍然难以探索。已经建立了几种体外系统来在特定的微环境中培养患者来源的 HSPCs,但它们不能完全再现天然骨髓的复杂特征。我们的小组之前报道过,通过在生物反应器系统中在三维(3D)多孔支架内培养间充质基质细胞并在灌注流下培养,构建的人成骨细胞 BM 龛(O-N)能够维持、扩增和功能调节健康的人脐带血来源的 HSPCs。在这里,我们首先证明这种 3D O-N 可以维持来自急性髓系白血病(AML)和骨髓增殖性肿瘤患者的恶性 CD34 细胞长达 3 周。在生物反应器系统中分布的人类恶性细胞模拟了在天然 BM 组织中发现的空间分布,其中大多数 HSPCs仍然与龛相连,成熟细胞释放到循环中。使用人脂肪组织来源的基质血管部分细胞,我们随后生成了一个基质血管龛,并证明 O-N 和基质血管龛可差异调节白血病 UCSD-AML1 细胞的扩增、免疫表型和对化疗的反应。所开发的系统提供了一个独特的平台,可在定制环境中研究人类白血病发生和对药物的反应,模拟天然造血龛的明确特征,并与个性化设置的建立兼容。

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