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- microbial cell disruption 微生物细胞分裂
- Research Progress in Fluidized BedReactor for Immobilized Microbial Cell. 固定化微生物流化床反应器的研究进展。
- The research work was done by combining nanometer-crushing machine with the traditional cell disruption method. 摘要采用纳米对撞机与细胞的传统破碎方法相结合,对啤酒酵母进行破壁处理,并对所制取的抽提物进行了研究。
- A new technology was studied on extraction of trehalose from yeast by microwave cell disruption. 尝试了微波强化活性干酵母中提取海藻糖的新工艺。
- Applications including enzyme catalysis in SCF fermentation in SCF, SCF sterilization and cell disruption were reviewed. 已在生物工程领域应用的超临界流体技术有超临界流体酶催化、超临界流体发酵、超临界流体灭菌和细胞破碎技术等。
- Microbial cell is an imbalanced open system far from a balance state, is a cell economy system which come into being on the basis of natural selection. 代谢途径和输送系统在代谢物分子水准上整合、在辅因数(辅酶)水准上协调,形成横跨微生物细胞内外的代谢网路。
- Aldehyde dehydrogenase is a kind of endoenzyme,and cell disruption is the major step in its extraction from Saccharomyces ceravisia. 乙醛脱氢酶(ALDH)是一种胞内酶,在从酵母中分离提取ALDH的过程中,破碎细胞是其中的关键步骤之一。
- Entrapping methods with agar, gelatine, calcium alginate, polyviayl alcohol and acrylamide gels as entrapping agents for immobilizing microbial cell were studied. 以琼脂、明胶、海藻酸钙、聚乙烯醇和丙烯酰铵凝胶为固定化细胞的包埋固定载体,对其主要包埋条件和性能进行了初步的研究比较。
- Dynamic changes of organic acids in and out of cell of brewer's yeast were determined under anaerobic fermentation by microwave cell disruption and HPLC technology. 以微波破壁和高效液相色谱法,对通风发酵过程中的啤酒酵母细胞胞外、胞内六种有机酸含量的动态变化进行了跟踪检测。
- The applications of microbial cell immobilization, enzymatic catalysis in nonaqueous solvents and mixed culture in pharmaceutical industry were highlighted. 同时也介绍了固定化微生物细胞、非水溶液中酶催化反应及混合发酵等微生物转化技术在制药工业中的应用。
- Using acetone sonic treatment, CoQ10 was extracted from microbial cell and TLC-UV spectrophotometry method was then used for quantitative analysis of CoQ10. 该方法分为两个步骤:第一步是离心收集菌体和结合使用超声波处理的辅酶Q10丙酮抽提;
- Experiment results showed that, PVA is a good kind of entrapping agent in the diffusion and it can protect the activity of microbial cell from the toxic. 经固定化颗粒传质试验与固定化细胞耐毒性试验,说明聚乙烯醇是一种对基质传质效果好,且能保护细胞活性免受水中毒性物质毒害的良好的包埋固定化材料。
- Many biotech products are the material inside the cells and cell disruption is an important technology of extracting them. 不少生物技术产品均为细胞内物质,细胞破碎是提取细胞内产物的关键技术。
- The process included the cell disruption of Haematococcus pluvialis, the extraction of crude astaxanthin, the hydrolysis of astaxanthin esters and the purification of free astaxanthin. 该工艺包括雨生红球藻细胞破壁,虾青素的提取,虾青素酯的水解和游离虾青素的纯化分离。
- Biooxidation is carried out by dispersed microbial flocs with relatively good settling properties and which can,in many respects,be regarded as pellets of naturally immobilized microbial cell. “可生物降解的污染物在曝气池中的生物氧化,澄清池中生物量和其他固体(污泥)的沉降,将澄清池浓缩的污泥循环进入曝气池以提高这一过程的强度。”
- Microbial cells can synthesize complex molecules that require multiple reaction steps at low temperatures and in aqueous media. 微生物细胞可以在低温或是液态培养基中合成需要许多反印步骤的化合物。。(改造过的科学怪人细胞可以作到的事情,原本在试管里就可以作到了。
- Of course, there are 10 times as many microbial cells as human cells in and on any of us, and none of that DNA seems to get mixed up with Goldblum. 我们任何一个人身上和体内都附着或寄生着十倍于人体构成细胞的微生物细胞,然而无论哪个微生物的DNA看起来都不像能和杰夫掺一腿的。
- Biocatalysis, represented by microbial cells and isolated enzymes, is becoming accepted as an indispensable tool in the modern synthetic chemistry. 以微生物细胞和酶为代表的生物催化剂,已成为现代化学合成中不可或缺的有利工具,并日益广泛地应用于化工产品的生产中。
- Based on non-equilibrium thermodynamics, the dynamic behaviour of microbial cells trying to achieve maximal growth rate was studied. 摘要从非平衡态热力学出发,探讨了微生物细胞在追求最高生长速率的优化模式下的动力学行为。
- Yeast Cell Disruption by Nanometer Ram Machine 采用纳米对撞机破碎酵母细胞的技术研究