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驱动脊柱转移的椎体骨骼干细胞的发现。

Discovery of a Vertebral Skeletal Stem Cell Driving Spinal Metastases.

作者信息

Sun Jun, Hu Lingling, Bok Seoyeon, Yallowitz Alisha R, Cung Michelle, McCormick Jason, Zheng Ling J, Debnath Shawon, Niu Yuzhe, Tan Adrian Y, Lalani Sarfaraz, Morse Kyle W, Shinn Daniel, Pajak Anthony, Li Zan, Li Na, Xu Ren, Iyer Sravisht, Greenblatt Matthew B

机构信息

Department of Pathology and Laboratory Medicine, Weill Cornell Medicine, New York, NY, USA.

Department of Spine Surgery, Hospital for Special Surgery, New York, NY, USA.

出版信息

Res Sq. 2023 Jan 25:rs.3.rs-2106142. doi: 10.21203/rs.3.rs-2106142/v1.

Abstract

Vertebral bone is subject to a distinct set of disease processes from those of long bones, notably including a much higher rate of solid tumor metastases that cannot be explained by passive blood flow distribution alone. The basis for this distinct biology of vertebral bone has remained elusive. Here we identify a vertebral skeletal stem cell (vSSC), co-expressing the transcription factors ZIC1 and PAX1 together with additional cell surface markers, whose expression profile and function are markedly distinct from those of long bone skeletal stem cells (lbSSCs). vSSCs display formal evidence of stemness, including self-renewal, label retention and sitting at the apex of their differentiation hierarchy. Lineage tracing of vSSCs confirms that they make a persistent contribution to multiple mature cell lineages in the native vertebrae. vSSCs are physiologic mediators of spine mineralization, as genetic blockade of the ability of vSSCs to generate osteoblasts results in defects in the vertebral neural arch and body. Human counterparts of vSSCs can be identified in vertebral endplate specimens and display a conserved differentiation hierarchy and stemness. Multiple lines of evidence indicate that vSSCs contribute to the high rates of vertebral metastatic tropism observed clinically in breast cancer. Specifically, when an organoid system is used to place both vSSCs and lbSSCs in an identical anatomic context, vSSC-lineage cells are more efficient than lbSSC-lineage cells at recruiting metastases, a phenotype that is due in part to increased secretion of the novel metastatic trophic factor MFGE8. Similarly, genetically targeting loss-of-function to the vSSC lineage results in reduced metastasis rates in the native vertebral environment. Taken together, vSSCs are distinct from other skeletal stem cells and mediate the unique physiology and pathology of vertebrae, including contributing to the high rate of metastatic seeding of the vertebrae.

摘要

与长骨相比,椎骨会经历一系列独特的疾病过程,尤其是实体瘤转移率要高得多,这无法仅通过被动血流分布来解释。椎骨这种独特生物学特性的基础一直难以捉摸。在这里,我们鉴定出一种椎骨骨骼干细胞(vSSC),它共同表达转录因子ZIC1和PAX1以及其他细胞表面标志物,其表达谱和功能与长骨骨骼干细胞(lbSSC)明显不同。vSSC显示出干性的正式证据,包括自我更新、标记保留以及处于其分化层次结构的顶端。vSSC的谱系追踪证实,它们对天然椎骨中的多个成熟细胞谱系有持续贡献。vSSC是脊柱矿化的生理介质,因为vSSC产生成骨细胞能力的基因阻断会导致椎弓和椎体出现缺陷。在椎骨终板标本中可以鉴定出vSSC的人类对应物,它们表现出保守的分化层次结构和干性。多条证据表明,vSSC促成了临床上在乳腺癌中观察到的高椎体转移趋向性。具体而言,当使用类器官系统将vSSC和lbSSC置于相同的解剖环境中时,vSSC谱系细胞在募集转移瘤方面比lbSSC谱系细胞更有效,这种表型部分归因于新型转移营养因子MFGE8分泌增加。同样,对vSSC谱系进行基因靶向功能缺失会导致天然椎骨环境中的转移率降低。综上所述,vSSC与其他骨骼干细胞不同,介导了椎骨独特的生理和病理过程,包括促成椎骨的高转移播种率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b81e/9901027/230099cb962d/nihpp-rs2106142v1-f0006.jpg

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