此结果进一步支持了晶状体中央区可能存在晶状体干细胞这一推论。
These results provide further support to the conclusion that the central lens epithelium contains lens stem cells.
那篇文章特别指出存在一个独特的阶段,胎儿肝脏细胞表现出早期前体干细胞的特征。
So what that paper especially demonstrates is that there is a unique stage that fetal liver cells exhibit, which identifies them at an early stem progenitor condition.
我们以前的研究表明在兔晶状体中央区上皮细胞中可能存在晶状体干细胞,故本研究目的之一是进一步证实我们之前的结论。
Our previous studies suggest the existence of lens stems cell in the central epithelium of rabbit lens. One of the purposes of the present study is to confirm our previous conclusion.
它具体包括肌干细胞的分离培养和组织工程海绵体的构建。
It specifically includes the isolation culture of muscle stem cells and the construction of tissue engineered corpus spongiosum.
那样狨猴就能享用它们的血源供应, 也就允许他们能够相互转换干细胞, 进而演化成为其新生体中更加特别的细胞种类.
They thusshare their embryonic blood supplies. That allows them to exchange stem cells,which then develop into more specialised sorts of cell in their new bodies.
下一步就是使得到的干细胞不再有多出来的那条来自卵细胞的染色体。
The next step is to try to create stem cells without the leftover chromosomes from the egg.
然后在凝胶上培育人体间质干细胞——骨骼、肌肉和其他组织类型的前体。
Then they grew human mesenchymal stem cells - the precursors of bone, muscle and many other tissue types - on the gels.
Kosak下一步目标是研究人干细胞变成有功能组织时的染色体拓扑学。
Kosak next plans to study chromosome topography in human stem cells as they become functional tissue.
他们将分化上晚于干细胞的原代细胞注射到能保持牙体结构的胶原架中。
They used primitive cells, not quite as early as stem cells, and injected them into a framework of collagen, the material that holds the body together.
但是,他们可以产生“单系”胚胎干细胞系,带有母系的两组染色体的单系胚胎被称为单性生殖。
They can, however, generate "uniparental" embryonic stem cell lines. Uniparental embryos with two maternal sets of chromosomes are known as parthenogenetic.
目的评价自体外周血造血干细胞移植(PBSCT)治疗无染色体异常的急性白血病(AL)的疗效。
Objective To evaluate the effect of auto-peripheral blood stem cells transplantation (PBSCT) for acute leukemia (AL) without abnormal chromosome.
这个日本的研究小组使用了老鼠的干细胞——有能力转变为多种体组织的未成熟的细胞。
The Japanese team used mouse stem cells - immature cells that have the ability to turn into many types of body tissue.
结果:试验结果证实了以前体外的和在体的研究观察结果-PRC能促进人间充质干细胞的增殖。
Results: The results obtained confirm previous in vitro and in vivo observations demonstrating that PRC enhances hMSC proliferation.
并在这基础上,把骨髓基质干细胞与生物支架材料复合培养,在体外构建工程软骨和软骨下骨修复体。
Then, on this basis, the bone marrow stromal cells were cultured with the scaffold biomaterials, and the engineering cartilage and subchondral bone restorations were constructed in vitro.
之后,DrNoggle和DrEgli就能从这个小胚胎细胞得到多能干细胞-但这一细胞即拥有卵细胞又拥有表皮细胞的染色体,所以还不能用于医疗用途。
Dr Noggle and Dr Egli were then able to create pluripotent stem cells from their tiny embryo-but these had chromosomes both from the egg and the skin cell, making them useless for therapy.
该所的科学范围涉及细胞周期,细胞分化,肿瘤形成,染色体生物学,神经元引导,和干细胞生物学等多个领域。
Its scope of the science spans such diverse areas as cell cycle progression, cell differentiation, oncogenesis, chromosome biology, neuronal guidance and stem cell biology.
目的探讨四倍体胚胎发育阶段对胚胎干细胞(ES)嵌合体小鼠制备的影响。
Objective To investigate the effects of developmental stages of tetraploid embryos on mouse chimeras from embryonic stem cells (ES).
方法采用酶直接消化法从胎盘组织中提取间充质干细胞,并利用流式细胞术及染色体核型分析技术鉴定其干细胞特性。
Methods the enzyme directory digestion method was used to isolate Mesenchymal stem cells from Human Placenta and flow cytometry and karyotyping were used to evaluated the character of stem cells.
牙髓干细胞的研究对牙髓再生、牙体修复等牙组织工程将产生重要的意义。
The study of DPSCs presents important significance in dental tissue engineering, such as dental restoration and dental pulp regeneration.
共培养的施万细胞和神经干细胞可以 3种方式接触生长 :1 胞体与胞体接触 ;
Co cultured Schwann cells and neural stem cells have grown to touch together in following manner:1. Body touch body;
我们发现,随着衰老,干细胞错误取向的中心体聚集,这些细胞的细胞周期停滞。
We found that GSCs containing misoriented centrosomes accumulate with age and that these GSCs are arrested or delayed in the cell cycle.
我们发现,随着衰老,干细胞错误取向的中心体聚集,这些细胞的细胞周期停滞。
We found that GSCs containing misoriented centrosomes accumulate with age and that these GSCs are arrested or delayed in the cell cycle.
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