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鼠幼年长骨成骨祖细胞的分离与鉴定。

Isolation and characterization of murine young-adult long bone skeletal progenitors.

机构信息

Laboratory of Clinical and Experimental Endocrinology, Department of Chronic Diseases and Metabolism, Katholieke Universiteit (KU) Leuven, Leuven, Belgium.

出版信息

Front Endocrinol (Lausanne). 2022 Aug 1;13:930358. doi: 10.3389/fendo.2022.930358. eCollection 2022.

Abstract

Skeletal stem and progenitor cells (SSPCs) constitute a reservoir of bone-forming cells necessary for bone development, modeling and remodeling, as well as for fracture healing. Recent advances in tools to identify and isolate SSPCs have revealed that cells with multipotent properties are present not only in neonatal bone, but also in adult bone marrow and periosteum. The long bone metaphysis and endosteum have been proposed as an additional SSPC niche, although approaches to study their cellular and molecular characteristics are still limited. Here, we describe a comprehensive procedure to isolate and culture SSPCs derived from the metaphysis and endosteum of young-adult mice. Based on flow cytometry analysis of known SSPC markers, we found the presence of putative multipotent SSPCs, similar to neonatal bone tissue. , metaphyseal/endosteal SSPCs possess self-renewing capacity, and their multipotency is underscored by the ability to differentiate into the osteogenic and adipogenic lineage, while chondrogenic potential is limited. Expansion of metaphyseal/endosteal SSPCs under low oxygen conditions increases their proliferation capacity, while progenitor properties are maintained, likely reflecting their hypoxic niche . Collectively, we propose a validated isolation and culture protocol to study metaphyseal/endosteal SSPC biology .

摘要

骨骼干细胞和祖细胞 (SSPCs) 构成了骨形成细胞的储备库,对于骨发育、建模和重塑以及骨折愈合是必需的。用于鉴定和分离 SSPCs 的工具的最新进展表明,具有多能性的细胞不仅存在于新生儿骨骼中,而且存在于成人骨髓和骨膜中。长骨骨干和骨内膜被提议作为另一个 SSPC 龛位,尽管研究其细胞和分子特征的方法仍然有限。在这里,我们描述了一种从年轻成年小鼠骨干和骨内膜中分离和培养 SSPCs 的综合方法。基于对已知 SSPC 标志物的流式细胞术分析,我们发现存在类似于新生儿骨骼组织的假定多能性 SSPCs。 ,骺板/骨内膜 SSPCs 具有自我更新能力,其多能性由向成骨和成脂谱系分化的能力来强调,而软骨形成潜力有限。在低氧条件下扩增骺板/骨内膜 SSPCs 会增加其增殖能力,同时保持祖细胞特性,这可能反映了它们的低氧龛位 。总的来说,我们提出了一种经过验证的分离和培养方案,用于研究骺板/骨内膜 SSPC 生物学 。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b6c/9376626/c2f7d43cfdc0/fendo-13-930358-g001.jpg

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