What is the translation of " IPSCS " in Chinese?

ips细胞

Examples of using Ipscs in English and their translations into Chinese

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Unfortunately, these iPSCs also have the potential to become cancer.
不幸的是,这些iPSC也有可能发育成癌细胞。
They applied their technique to produce human neurons by using iPSCs.
他们运用他们的技术,通过使用iPSCs产生人类神经元。
The iPSCs cells then generated fully active, cancer-specific T lymphocytes.
这些iPS细胞然后发生了完全活性、专门治疗癌症的T淋巴细胞。
But the Japanese teamsaid theirs was the first study to use iPSCs to fix heart damage.
但是日本研究人员说,他们的研究是首次利用iPSCs修复心脏损伤。
These hypoimmunogenic iPSCs retain their pluripotent stem cell potential and differentiation capacity.
这些低免疫原性iPSC保留其多能干细胞潜能和分化能力。
The procedure is themost recent attempt by clinicians to test whether iPSCs can treat disease.
这项手术是临床医生们检测iPSC能否用于治疗疾病的最新尝试。
The researchers then expanded these iPSCs and later coaxed them to redifferentiate back into T cells.
随后研究人员扩增这些iPSCs,之后诱导它们再分化为T细胞。
The iPSCs were evaluated for genetic stability, rate of pluripotency and several other scientific criteria.
研究人员对iPSCs进行了遗传稳定性、多能性和其他科学标准的评估。
The final step for the researchers was to then guide the iPSCs to become fibroblasts again using other reprogramming factors.
研究人员的最后一步是利用其他重编程因子引导ipscs再次成为成纤维细胞。
We don't make iPSCs in an organism, we make them in a petri dish in the absence of immune surveillance.
我们不是在有机体中制造iPSCs,而是在没有免疫监视的情况下,在培养皿中制造它们。
This is one of the firststudies to detail the use of CRISPR in human iPSCs, showcasing its potential in these cells.".
这是第一项研究详细记述了CRISPR在人类iPSCs中的应用,展示了它在这些细胞中的潜能。
These hypoimmunogenic iPSCs retain their pluripotent stem cell potential and differentiation capacity.
这种无免疫原性的ipsCs可以维持它们的多功能干细胞的潜能以及分化的能力。
With the right cocktail of molecules and growth factors,the researchers specifically coaxed iPSCs into becoming retinal cells.
通过正确的分子和生长因子混合物,研究人员特别诱导iPSCs成为视网膜细胞。
When iPSCs were discovered in 2007, there was a lot of hype that we could easily turn them into therapies.
iPSCs在2007年被发现的时候,有很多宣传说我们可以很容易地将其转化为治疗方法。
Compared with non-human primate cells, human iPSCs expressed higher levels of these restrictors, called APOBEC3B and PIWIL2.
与非人类灵长类细胞相比,人类iPSCs表达了更高水平的这些限制性因子,即APOBEC3B和PIWIL2。
The iPSCs extracted from traditional cells are highly purified and provide the best stem cells for the isolation of various functional cells.
而从普通细胞中提炼iPS细胞,纯度很高,为分离出各种功能性细胞提供了最好的干细胞。
His lab was also the first to generate patient-specific iPSCs and use them to produce the cell type that degenerated in that individual.
通过不懈的努力,他的研究组首次生成了患者特异性iPSCs,并使用它们来生成该个体退化的细胞类型。
Gan uses iPSCs to produce brain cells, such as neurons or glial cells, because they are relevant to neurodegenerative disease.
Gan使用iPSCs生产了脑细胞,如神经元或胶质细胞,因为它们与神经退行性疾病相关。
But scientists quickly discovered that the DNA-cutting machinery of the CRISPR system, an enzyme known as Cas9,didn't mix well with iPSCs.
但科学家们很快发现,CRISPR系统的DNA切割机制,一种叫做Cas9的酶,与iPSCs混合不好。
Like embryonic stem calls, iPSCs are capable of dividing indefinitely and becoming any cell type present in our body.
与胚胎干细胞一样,iPSCs能够无限分裂,并分化为我们身体中的任何细胞类型。
The team will develop a way to obtain stage-and subtype-specific heart muscle cells from human iPSCs, which facilitates disease modeling and drug discovery.
该团队将开发一条途径,以便从人类iPSC中获得分期和亚型特异性心肌细胞,这将简化疾病建模和药物发现。
These induced pluripotent stem cells(iPSCs) were named the Breakthrough of the Year by the journal Science back in 2008.
这种诱导性多能干细胞(iPSC)在2008年被《科学》杂志评为“年度突破”。
For Gabriella, iPSCs are a shoot she can nudge in whatever direction she likes, nurturing and shaping to create any type of cell.
对加布里埃拉,iPS细胞是拍摄她可以在她喜欢的任何方向,培育和塑造创建任何类型的细胞的微调。
Building on this work, Ding and others previously created iPSCs not with transcription factors, but by adding a cocktail of chemicals to the cells.
在这项工作的基础上,丁和其他人以前创建的iPSCs不与转录因子,而是通过添加化学品的鸡尾酒的细胞。
We discuss how iPSCs are being exploited to illuminate disease pathophysiology, identify novel drug targets, and enhance the probability of clinical success of new drugs.
我们将讨论如何被剥削魔鬼照亮疾病病理生理学、识别新型药物靶标和加强新药的临床成功的概率。
Although both CRISPR-Cas9 and human iPSCs have become commonplace in the lab, it's not necessarily easy to unite the two.
虽然CRISPR-Cas9和人类iPSC在实验室中已经相当普及了,但二者相结合并没有想象中那么容易。
Like all stem cells, iPSCs can both self-renew, making more iPSCs, and differentiate into a specialized cell type.
与所有干细胞一样,iPSC既可以自我更新,也可以产生更多的iPSC,并可以分化为特殊的细胞类型。
Now scientists regularly use iPSCs to model diseases using cells that would be otherwise difficult to obtain from a living person or animal.
现在科学家们常常会利用iPSCs生成很难从活体人类或动物处获得的细胞来构建疾病模型。
Now scientists regularly use iPSCs to model diseases using cells that would be otherwise difficult to obtain from a living person or animal.
现在,科学家们经常使用iPSCs来用细胞来模拟疾病,否则很难从活人或动物身上获得这些细胞。
Neural differentiation: iPSCs were differentiated into neurons, expressing βIII-tubulin, tyrosine hydroxylase, AADC, DAT, ChAT, LMX1B, and MAP2.
神经分化:iPS细胞分化成神经元,后者表达出βIII-tubulin、tyrosinehydroxylase、AADC、DAT、ChAT、LMX1B和MAP2。
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