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1)  magnet stirred culture system
磁力搅拌悬浮培养
1.
The aim of this study was to expand hematopoietic progenitor cells at large scale by magnet stirred culture system.
为了利用磁力搅拌悬浮培养装置大规模体外扩增脐血造血祖细胞,从脐血分离单个核细胞,以无血清培养基stem span添加干细胞因子、FLT-3配基及血小板生成素为培养体系进行培养。
2)  Electromagnetic Suspension Casting
电磁搅拌-悬浮铸造
3)  suspension agitation
悬浮液搅拌
4)  magnetic stirring
磁力搅拌
1.
Preliminary statistical analysis,based AFM images of reduced graphene oxide nanosheets,was performed for investigating the effects of standing-treatment,magnetic stirring,centrifugation,ultrasonication and their sequences to their lateral-dimensions distribution.
利用化学还原法制备了还原氧化石墨烯,基于还原氧化石墨烯的AFM观测结果,初步统计分析了静置、磁力搅拌、离心和超声处理及它们的次序对还原氧化石墨烯横向尺寸分布的影响,结果表明后述3个步骤及次序是影响斑点状(横向尺寸<100nm×100nm)和树叶状(横向尺寸>500nm×500nm)还原氧化石墨烯横向尺寸分布的主要因素。
2.
To select suitable dispersion equipment,magnetic stirring dispersion,ultrasonic dispersion and ball milling dispersion were experimental researched with w(nano-carbon-black)=0.
为了选择合适的分散设备,通过磁力搅拌分散、超声波分散、球磨分散等方式分别对质量分数为0。
5)  suspension culture
悬浮培养
1.
Study on theanine biosynthesis in tea cell suspension culture;
大规模茶叶细胞悬浮培养茶氨酸合成工艺优化研究
2.
Isolation and purification of breast cancer stem cells by suspension culture combined with chemotherapeutic agents;
悬浮培养联合化疗药物筛选乳腺癌干细胞
3.
Optimization of cell suspension cultures in hypocotyls of Camptotheca acuminata and camptothecin accumulation;
喜树胚轴细胞悬浮培养的优化和喜树碱的积累
6)  suspension cultures
悬浮培养
1.
Biotransformation of furannoligularenone by cell suspension cultures of Nicotiana tabacum;
烟草悬浮培养细胞对呋喃橐吾酮的生物转化研究
2.
The effects of the cultivation media, plant growth regulators and inoculum size on the cell growth and 20-hydroxyecdysone production in suspension cultures of Vitex glabrata R.
悬浮培养细胞的生长情况以及对20-羟基蜕皮激素形成的作用。
3.
Syringin production and related secondary metabolism enzyme activities in suspension cultures of saussurea medusa treated with yeast extract were investigated.
研究了酵母提取物诱导的水母雪莲悬浮培养时紫丁香苷生产和相关次级代谢酶的活性。
补充资料:悬浮培养
分子式:
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性质:非贴壁依赖性细胞的一种培养方式。细胞悬浮于培养基中生长或维持。某些贴壁依赖性细胞经过适应和选择也可用此方法培养。增加悬浮培养规模相对比较简单,只要增加体积就可以子。深度超过5mm,需要搅动培养基,超过10cm,还需要深层通入CO2和空气,以保证足够的气体交换。  

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