间充质用英语怎么说,间充质的英文翻译


词语导航

基本信息

词语:间充质

繁体:間充質

拼音:jiān chōng zhì

英语翻译

【医】 mesenchymal tissue

相关词条

1.mesenchyme  

分词翻译

间的英语翻译:

among; between; separate; sow discord; space
【化】 meta-
【医】 dia-; inter-; meta-

充的英语翻译:

full; sufficient

质的英语翻译:

character; matter; nature; pawn; pledge; quality; question; simple
【医】 mass; massa; quality; substance; substantia
【经】 guilder

翻译例句

1. 很容易从人脐带中的华通氏胶中获得干细胞。

MSCs were easily obtained from Wharton"s jelly of human umbilical cord.

2. 少量组织形成的混合物。

Small amount of mixture of mesenchymal tissue.

3. 我们有一种间充质干细胞。

We have what are called mesenchymal stem cells.

4. 从而建立了永生化的人骨髓间充质干细胞。

Thereby establishing the immortalization of human mesenchymal stem cells.

5. 目的分离培养并鉴定人胚胎骨髓间充质干细胞。

Objective To culture and identify mesenchymal stem cells (MSCs) derived from human fetal bone marrow.

6. 对干细胞多向分化的能力进行初步鉴定。

To primarily identify the multiple differentiation potential of mesenchymal stem cells.

7. 方法:1。 人骨髓间充干细胞的分离与培养。

Method: 1. The isolation and culture of hBMSCs.

8. 间充质干细胞通过更新受损细胞,修复受损的组织和器官。

Mesenchymal stem cells help repair damaged tissue and organs by renewing injured cells.

9. 目的:探讨体外培养人羊膜间充质细胞的神经生物学特征。

Objective: To evaluate the neurobiological features of human amnion mesenchymal cells in vitro.

10. 目的研究葡萄糖对骨髓间充质干细胞的影响并探讨其机制。

Objective To investigate effects of glucose on mesenchymal stem cells proliferation and the possible mechanism.

11. 目的建立一种从小鼠骨髓中分离培养间充质干细胞的高效方法。

Objective To establish an efficient method for isolation and culture of mesenchymal stem cells from mouse bone marrow.

12. 目的探讨体外培养的骨源性间充质干细胞向神经元样细胞的分化。

Objective to explore to differentiation of mesenchymal stem cells (MSCs) derived from bone into neuron-like cells.

13. 目的:观察不同浓度地塞米松对骨髓间充质细胞成脂分化的影响。

OBJECTIVE: To investigate effects of various concentrations of dexamethasone on adipogenic differentiation of bone marrow mesenchymal cells.

14. 使用免疫细胞化学法分析骨髓干细胞是否表达淀粉酶抗体。

Since the acinar cell was the only cell which had the function of secreting amylase, the transdifferentiation of bone marrow cell was identified by immunocytochemical analysis with amylase.

15. 材料:5月龄新西兰大白耳兔用于骨髓间充质干细胞的分离培养。

MATERIALS: New Zealand big-eared rabbits aged 5 months were used for isolation and culture of BMSCs.

16. 间充质干细胞是免疫调节剂,意味着它们不会引起患者的免疫系统排异。

Mesenchymal stem cells are immune-modulators, which means that they will not be rejected by the patient"s immune system.

17. 结论骨髓干细胞可有效分离,体外培养表现出旺盛的增殖能力。

Conclusion Human bone marrow mesenchymal cells were successfully isolated, and they showed active proliferation capacity in vitro.

18. 吸脂法也可以用于分离干细胞,间充质干细胞保存于液氮中备用。

Liposuction could also be used to isolate mesenchymal stem cells can also be gathered and isolated through liposuction, and the cells frozen in liquid nitrogen for future therapeutic use.

19. 骨诱导活性是指移植组织通过诱导受体组织的间充质细胞向成骨细胞分化。

The latter is a process whereby the transplanted tissue induces mesenchymal cells of the recipient to differentiate into osteoblastic cells.

20. 目的探讨骨髓间充质干细胞复合骨生物衍生材料异位成骨的可行性和成骨能力。wwW.wEntiyI.COM

Objective to investigate the ectopic osteogenesis potential of human natural bone derived material combined with human Mesenchymal Stem Cells.

21. 它们可以起源于软骨内骨、或者脑内的间充质细胞、脑膜、膜内成骨或者软组织。

They can also arise in endochondral bone; or primitive mesenchymal cells in the brain, meninges, membranous bone, or soft tissue.

22. 结果经菟丝子总多糖诱导的骨髓间充质干细胞形态发生改变,部分细胞长出轴突。

Results: the shape of the mesenchyma stem cells change after the inducement of TPCD and a part of them even have the axon.

23. 普通的间充质干细胞有多种来源(包括骨髓),但产量原没有脂肪组织中得到的多。

Normal mesenchymal cells can be isolated from various sources, including bone marrow, but the yield is not nearly as great as what the researchers derived from fat tissue.

24. 这篇文章——纳米级表面使骨髓间充细胞长时保持显型和多能——发表在“自然-材料”期刊。

The paper, Nanoscale surfaces for the long-term maintenance of mesenchymalstem cell phenotype and multipotency, was published in the journal Nature Materials

25. 这篇文章——纳米级表面使骨髓间充细胞长时保持显型和多能——发表在“自然-材料”期刊。

The paper, Nanoscale surfaces for the long-term maintenance of mesenchymalstem cell phenotype and multipotency, was published in the journal Nature Materials

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