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- Meanwhile, we constructed human 4-1BB transgenic cell line (L929-4-1BB) and explored its role and underlying mechanism on 4-1BBL reverse signal transduction. Part I. 此外,成功构建了人4-1BB分子的转基因细胞,并通过此细胞对4-1BBL分子介导的反向信号传导亦做了初步的探讨,以期为4-1BBL和4-1BB分子在自身免疫和移植免疫中的作用提供理论依据。
- It was proved that a CHL 3A4 transgenic cell line was established, which could lead metabolic activation for aflatoxin B1 (AFB1), sterigmatocystin (STC) and cyclophosphamide (CPA). 建立了CHL?3A4转基因细胞系,双核细胞微核试验证明该细胞系能代谢活化黄曲霉毒素B1(AFB1)、杂色霉菌毒素(STC)、环磷酰胺(CPA)。
- transgeneic cell line 转基因细胞系
- Establishment of Transgenic Cell Line CHL 3A4 and Its Metabolic Activation 转基因细胞系CHL-3A4的建立及其代谢活化作用
- Maintain the cell line equipments. 负责尚能电池线设备维护。
- We have obtained a stable UT-A2-FRT cell line. 经BSD筛选21 d后得到稳定表达UT-A2的细胞株;
- Materials1) Bel7402 cell line and COS? 肝癌Bel7402细胞系和COS7细胞系
- HL60/DNR is a model cell line of MDR1. HL60/DNR为典型的表达MDR1的细胞株
- Construction of FL Gene Transgenic Cell Line and Analysis of Its Biologic Functions 分泌人可溶性FL基因转染细胞及其生物学活性分析
- Nifedipine induced reversal of multidrug resistance can be deteriorated by S9 mix prepared from the transgenic cell line CHL-3A4 转基因细胞系CHL-3A4可使硝苯吡啶的多药耐药逆转作用丧失
- Objective To study the effect of SKI-2053R on SGC-7901 cell line. 目的 :研究SKI 2 0 5 3R对胃癌细胞株SGC 790 1的作用及其机制。
- We obtained the similar results both on BMDC and DC2.4 cell line. 在树突状细胞株DC2.;4细胞表面也得到相似的结果。
- Transfection, make stable C/EBP p expression cell line. 质粒转染,制备稳定表达C尼BPp的细胞系。
- Results A fusion cell line,FLB2C,was obtained through screening. 结果经筛选获得一株融合细胞FLB2C。
- The whole FHIT gene was found deleted in an EC cell line, EC8733. 在食管癌细胞系EC8733中发现了FHIT全基因的丢失。
- Cultured TE671 cell line and neurons of SD rats and Kunming mouse . 体外培养SD大鼠与昆明种小白鼠神经元及TE671细胞株。
- There are two types of cell lines. 有两种类型的细胞系。
- OPG was expressed in BMA-1 cell lines. MBA- 1细胞表达OPG ;
- Vero/Slam cell line is sensitive,it can be used in isolation of measles virus. Vero/Slam细胞对麻疹病毒敏感,可在麻疹病毒分离中选用。
- INFLUENCE THE FACTORS FOR LDL?ACM COMPLEX TAKE IN LEUKEMIA CELL LINE K??562? 影响白血病细胞株 K_(562) 对 LDL-ACM 复合物摄取因素的研究