造血是指尚未发育成熟的细胞,是所有造血细胞和免疫细胞的起源,它不仅可以分化为红细胞、白细胞和血小板,还可跨系统分化为各种组织器官的细胞,具有自我更新、多向分化和归巢(即定向迁移至造血组织器官)潜能。
Erythropoietin(EPO),a 34.4 kD glycoprotein hormone, is an important hematopoiesis factor.
促红细胞生成素(EPO)是分子量为34.4kD的糖蛋白,也是机体重要的造血生长因子。
参考来源 - 三株抗人促红细胞生成素单克隆抗体的获得及其生物学特性的研究Our research mainly study the two-way mediated mechanism of APS that promote haematopoiesis、Inhibite leukemia cell、proliferate and induce cell differentiation. This finding will provide theoretical and experimental evidence for exploiting and utilizing Angelica.
本课题旨在从信号传导角度探讨APS即能促进正常造血又能抑制白血病细胞增殖并诱导分化的双向调控机制,并为进一步开发和利用当归多糖提供实验依据。
参考来源 - 当归多糖调控造血细胞和K562白血病细胞增殖分化信号传导机制的研究Objective:Allogeneic hematopoietic stem cells transplantation( allo-HSCT) can rebuild haematogenesis and immune function, which makes it one of the most effective methods to cure malignant hematological diseasees.
目的异基因造血干细胞移植(allo-HSCT)是目前治愈恶性血液系统疾病最有效的手段之一。
参考来源 - 第三者骨髓间充质干细胞对MHC不相合造血干细胞移植后移植物抗肿瘤作用影响的实验研究These results suggest that EDAG is a key regulator in the hematopoiesis.
该结果表明EDAG是造血调控过程中的关键调节分子。
参考来源 - 一种新型造血相关转录调节因子EDAG的功能及作用机制研究·2,447,543篇论文数据,部分数据来源于NoteExpress
该综述关注的是参与造血干细胞动员和生成巨核细胞的几种重要细胞因子。
This review focused on several important cytokines participating in hematopoietic stem cell mobilization and megakaryocytopoiesis.
它是一种叫造血素的促血因子。
身体生产血液的过程叫做造血作用.
The process by which the body produces blood is called hematopoiesis.
In fact, of all the systems of cellular differentiation that are known in our bodies, probably hematopoiesis is the best known.
事实上,我们体内已知的,所有由细胞分化成的系统中,造血系统也许是最为人所熟知的
Let me make this a little bit more explicit by talking about the process of hematopoiesis.
我们来说一下造血的过程,来把表达差异解释得更清楚一些
It was the first place where the concept of stem cells was developed, in that if one looks carefully one can find immature cells in the bone marrow.
这是干细胞概念的发祥地,如果仔细观察造血系统,就能找到骨髓中的未成熟细胞
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