结论:旋转式细胞培养系统是体外快速构建组织工程化骨的理想方法。
Conclusion: RCCS may be an ideal method for rapid construction of tissue engineered bone in vitro.
目的探讨用旋转细胞培养系统(RCCS)进行大动物软骨细胞扩增的可行性。
Objective To investigate the feasibility of amplifying big animal chondrocytes in vitro by using rotary cell culture system (RCCS).
探讨来自不同动物、不同纯化方法的卵囊在牛输卵管上皮细胞培养系统的感染情况。
The infectivity of the oocysts obtained from the same origin but different animals and different purification methods in a bovine fallopian tube epithelial cell culture system was studied.
建立一个理想的人胚胎干细胞培养系统是研究和利用这种具有巨大潜力细胞的首要条件。
To investigate and utilize human embryonic stem cell, establishment of a perfect culture system is crucial.
目的:探讨利用旋转式细胞培养系统(RCCS)在体外快速构建组织工程骨的可行性。
Objective: To explore the possibility of rapid construction of tissue engineered bone in vitro by RCCS.
方法:将创伤小鼠的巨噬细胞,加入至正常小鼠T细胞培养系统中,测定T细胞功能及细胞内信使分子。
Methods: Macrophages from traumatized mice were added into the culture system of normal t cells and then t cell functions and intracellular messenger molecules were determined.
华盛顿大学医学院Nelson Fausto首次在实验室利用人类胎儿肝细胞培养系统突破这些障碍。
Nelson Fausto of the University of Washington School of Medicine has crossed this hurdle using a human fetal hepatocyte culture system that was previously developed in his lab.
该网站是比伯·拉赫专业高效的哺乳动物细胞培养系统的收益率远高于行业标准的组成部分动物自由的媒体。
The Biberach site is specialized in highly efficient mammalian cell culture systems with yields well above industry standard in animal component free media.
结论此简易的细胞培养系统可使细胞于空间搭载条件下长期存活,有利于研究空间辐射对增殖期哺乳动物细胞的诱变效应。
ConclusionA hypothermia cell culture facility was successfully established, which ensure technically mammalian cells to be carried by space craft and further research on space radiation.
然后,科学家们将这些物质加入人类细胞培养皿中,发现这些细胞的一氧化氮含量增长了240%,而一氧化氮可以迅速启动人类的免疫系统。
They then applied the substances to a culture of human cells. And the cells experienced a 240 percent increase in the production of nitric oxide, which is known to jump start the immune system.
结果确定了生物反应器的内腔结构,生物反应器由控制系统和细胞培养室两部分构成,能置于培养箱中对软骨细胞材料复合物进行动态培养。
Results We optimized the bioreactor configuration and bioreactor compose of control system and culture chamber. Bioreactor can be put into incubator and culture cartilage by dynamic state.
结果确定了,生物反应器的内腔结构。生物反应器由控制系统和细胞培养室两部分构成,能置于培养箱中对软骨细胞材料复合物进行动态培养。
Results We optimized the bioreactor configuration and bioreactor compose of control system and culture chamber. Bioreactor can be put into incubator and culture cartilage by dynamic stale.
同时对基因重组技术、细胞培养技术在白藜芦醇制备方面的应用作了系统阐述,并对其应用前景进行了评价。
Meanwhile, the applications of gene recombination technology and cell culture technology in preparation of resveratrol were explained systematically, and its application prospect was also viewed.
体外肝细胞培养是生物制药和人工肝支持系统的技术基础。
Cultured cells are the basic element of biologic pharmacy and artificial liver system.
利用生物素-亲和素生物放大系统的原理,建立了新的检测细胞培养的甲型肝炎病毒抗原的方法。
A new technique used to detect HAAg in human diploid embryonic lung fibroblast ( HDLF ) cell culture was developed.
微芯片是实现单细胞分析检测的理想平台。研究团队致力于研发用于单细胞培养的微芯片系统。
For single cell analysis, the microchip platform is the best solution. We are developing the microchip single cell culture system.
作者参考MCDB 153培养基配方,以DMEM培养系统作为对照,开展了人表皮细胞低钙培养基的配制和对人表皮细胞培养的研究。
A low calcium medium developed for epidermal keratinocytes were prepared according to the MCDB 153 modified formula and used in human epidermal keratinocyte culture compared with DMEM culture system.
瓦克斯说,由于病毒颗粒是由更稳定的昆虫细胞培养出来,产量要高出鸡胚培养系统7 -10倍。
Because the particles are produced in more stable insect-cell cultures, yields are seven to 10 times higher than egg-based manufacturing, Novavax said.
在细胞单层培养系统的基础上,将瘢痕组织来源的成纤维细胞培养在胶原凝胶中,形成了瘢痕成纤维细胞的三维培养系统。
Based on the monolayer cell culture system, we resuspended the scar-derived fibroblasts in a solution of polymerizing collagen to develop a "three-dimensional" cell culture system.
在细胞单层培养系统的基础上,将瘢痕组织来源的成纤维细胞培养在胶原凝胶中,形成了瘢痕成纤维细胞的三维培养系统。
Based on the monolayer cell culture system, we resuspended the scar-derived fibroblasts in a solution of polymerizing collagen to develop a "three-dimensional" cell culture system.
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