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1)  E1 transformed cell line
E1转化细胞系
2)  MC3T3-E1 cells
MC3T3-E1细胞
1.
Methods The proliferation of MC3T3-E1 cells exposed to 10-9 -10-3 mol/L NaF alone, 50 μmol/L NaF and 5 μmol/L AlCl3 alone and in combination ,was measured by CCK-8, and the change of cell cycle was measured by flow cytometry after treatment with various concentrations of fluoride and aluminum.
方法以10-9~10-3mol/LNaF染毒MC3T3-E1细胞,同时以50μmol/LNaF及5μmol/LAlCl3单独或者联合染毒MC3T3-E1细胞,培养72h。
2.
Objective Mouse MC3T3-E1 cells growing and differentiating in a self-assembling peptide hydrogel were investigated in order to testify that peptide hydrogel was characterized as the top scaffold for bone tissue engineering.
目的研究MC3T3-E1细胞在自组装多肽水凝胶支架上的生长和成骨分化。
3)  Transformed cell line
转化细胞系
1.
The results showed that the growth of transformed cell line was obviously accelerated, DNA,RAN and protein were synthesized more rapidly than those in control cell line.
以苜蓿转化细胞系和对照细胞系为材料 ,利用同位素标志方法研究了 3种大分子物质——DNA、RNA和蛋白质的合成动态。
4)  SHEEC cell line
恶性转化细胞系
5)  Cell transformation
细胞转化
1.
Study on protein expression and cell transformation of novel cadmium related gene TIF3;
镉相关新基因TIF3的蛋白表达与细胞转化功能研究
2.
This paper studies the carcinogenicity of five kinds of diesel exhaust particulates(DEPs),by using SHE cell transformation assay and Unscheduled DNA Synthesis Test(UDS Test).
采用SHE细胞恶性转化实验和程序外DNA合成实验(UDS)对五种不同型号柴油机颗粒物的提取物的致突变性及潜在致癌性进行了研究,结果表明,所选五种型号柴油机颗粒提取物均存在DNA损伤作用及细胞转化作用,并存在轻型车高于中、重型车的趋势。
3.
MATERIAL AND METHODS: We used the improved BALB/c-3T3 cell transformation assay to observe the transformation of cells treated by: GEN, B[a]P(10μmol/L) + GEN and MCA(0.
背景与目的:研究三羟异黄酮(GEN,Genistein)在体外细胞转化中的作用。
6)  transformed cells
转化细胞
1.
Results One line of nickel sulfide transformed cells and the related tumor cell were found to contain a mutation in exon 8 in P53 gene.
方法 三种镍化合物转化细胞接种BALB/c裸鼠 ,应用PCR SSCP法进行肿瘤细胞和转化细胞P5 3基因第 5~ 8外显子检测。
补充资料:转化细胞
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性质:有些正常细胞经过转化后,获得了无限增殖的能力,成为转化细胞,也称“连续细胞系”。在这期间,细胞通过了一个转化的过程,丧失了对许多与生长控制有关的刺激的敏感性。典型的表现是失去了对贴壁的严格依赖和细胞密度的抑制。转化时伴随着染色体的变化,二倍体常变为异倍体。转化细胞并不一定是恶性的。细胞转化可以在培养过程中自发发生。某些病毒、化学品和致癌因子处理细胞,可增加转化的频率。转化细胞在培养中更容易生长,可无限传代,有的已被用于生产人用疫苗和药物蛋白,但严格检测和控制这些细胞本身或携带的致瘤因子,仍受到人们的极大关心。

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