微载体,microcarrier
1)microcarrier微载体
1.Optimization of Attachment Conditions for Rabbit Mesenchymal Stem Cells in Cytodex 3 Microcarrier Culture Systems;兔骨髓间充质干细胞在Cytodex 3微载体悬浮培养系统中的贴附条件优化
2.Preparation of Sustained-release Gelatin Microspheres as the Cell Microcarrier;作为细胞微载体的明胶基缓释微球的制备
3.In vitro chondrogenesis of human adipose derived stem cells with microcarrier in RCSS;人脂肪干细胞结合微载体在生物反应器中向软骨细胞分化
英文短句/例句

1.Studies on the Attachment of Marine Sponge Cells on Microcarriers;海绵细胞在微载体表面贴附特征与规律的研究
2.Preparation of Rabies Vaccine by Perfusion Culture of Vero Cells on Microcarriers;微载体灌流培养制备Vero细胞狂犬病疫苗
3.CX-2 Microcarrier Preparation and the Characteristics in Cell Culture;羧甲基壳多糖微载体CX-2研制及细胞培养研究
4.The Preparation of Microporous Polyethylene Using Hollow Glass Beads as Gas Carriers;以空心玻璃微珠为气体载体制备微孔聚乙烯
5.Freezing of Microquantities of Sperm in Microcarriers without Croypretectants;微型载体无保护剂冷冻微量精子的初步研究
6.The laccase was immobilized on the magnetic chitosan microspheres.以磁性壳聚糖微球为载体固定漆酶。
7.Study on Structure and Efficiency of Anaerobic Microbe Carrier;厌氧微生物空间载体结构及性能研究
8.Experimental Study on Immediately Loaded Micro-implant;微型支抗种植体即刻负载的实验研究
9.Studies on Microemulsion-based Gels and Their Applications as Drug Delivery Systems;微乳液凝胶及其作为药物载体的研究
10.DNA Genetyping of the Trace Bloodstains on the Adsorbent Object;吸附性载体上微量血痕的DNA分型
11.Design on The Loads and The Structure of The Microwave Power Calorimeter微波功率量热计负载及整体结构设计
12.Research Progress on PLGA Nanoparticles/Microspheres as DNA CarriersPLGA纳米/微球作为核酸载体的研究进展
13.Application of Candida Albicans Immunological Magnetic Microspheres Carriers白色念珠菌免疫磁性微球载体的应用
14.Preparation and Evaluation in Vitro of PLGA Loaded 5-FU Wafer and Study of PLA Loaded 5-FU Microspheres in Vivo Anti-Gastric Tumor;PLGA载药膜片制备、体外评价及抗胃癌PLA载药微球体内研究
15.Research on the Microparticles Composed of Chitosan and Liposomes for Drug Carriers壳聚糖脂质体复合微粒作为药物载体的研究
16.Histological research of different period of the microscrew implant-bone interface after immediately loading正畸微植体支抗即刻负载后微植体-骨界面的组织形态学变化
17.Studies on the Syntheses and Surface Properties of a New Starch Microspheres-Drug Carrier System药物载体淀粉微球的合成与表面性质研究
18.Structure-Property Relationships of PLA Microspheres Controlled Delivery and Modeling;聚乳酸微球载体的结构与控释性能关系及模型
相关短句/例句

Microcarriers微载体
1.Studies on the preparation of chitosan microcarriers cross-linked by oxidized lactose and culture of primary hepatocytes;开环乳糖交联壳聚糖微载体的制备及肝细胞亲和性研究
2.Preparation of inactivated hepatitis A vaccine with MEK and Vero cells cultured on microcarriers;微载体培养MEK和Vero细胞试制甲肝灭活疫苗
3.Microcarriers used in the present study was modified by lactose.液体石蜡作分散介质,戊二醛作交联剂,通过反相悬浮聚合制备了微米级的壳聚糖微载体
3)micro-carrier微载体
1.Based on the characteristics of micro/nano-fabrication technology a sort of implantable controlled drug release micro-carrier which might be biodegradable was designed, and the fabrication procedure by UV-LIGA technique was introduced.基于微纳米加工技术,设计一种可降解的植入式药物控释微载体,介绍利用紫外光刻(UV-LIGA)技术制备该类微载体的工艺。
2.In this paper,a refined cell monocolonization protocol is explored,together with methods of obtaining the cell shape and proliferation,and the method of isolation of nucleic acids from cells on micro-carriers.探讨基于微载体技术的改良细胞单克隆化方法,及直接研究微载体上细胞形态、细胞增殖、核酸提取的方法。
3.Then, I adopted Vero cells to serum-free medium and inoculated influenza virus H3N2 both steadily and dynamicly on the micro-carrier.然后对Vero细胞进行无血清培养,并用100ml搅拌瓶进行微载体培养并接种流感病毒H3N2型Vero细胞适应株。
4)ultra-micro carrier超微载体
1.Various ultra-micro carriers used in cosmetics that provide excellent performances for the cosmetics were summerized.综述了应用于化妆品生产中,赋予化妆品优异性能的各种超微载体技术;主要介绍了微乳液、微胶囊、脂质体、纳能托、传递体、葡糖微球、球型液晶等7种超微载体的组成、结构、性能及其在化妆品中的应用;讨论了各种超微载体对化妆品中活性物的装载、保存和运输作用;提出了一些超微载体目前存在的问题、发展方向和应用前景等。
5)microbubble carrier微泡载体
1.The new microbubble carrier technique can be used to bioconjugate a gene or drug in- to microbubble by a variety of different methods.微泡载体技术是应用一定的技术手段将微泡与基因或药物结合在一起的一种新方法。
6)Micro-Linear vector微链载体
延伸阅读

微载体分子式:CAS号:性质:带电荷的在显微镜下可见的颗粒(载体直径60~250μm,平均约200μm),起着让细胞附着和增殖的基质的作用。细胞接种到含有微载体的生长培养基内,经过一段时间(几十分钟到几小时)的贴壁,再用轻度的搅拌可使其保持在悬浮状态。微载体的特性要求有颗粒分布窄、表面光滑、生物相容性好、密度为1.03~1.05g/cm3、表面带弱的正电荷、亲水性;同时,最好具有良好的光学透明性、材料非刚性、可高压灭菌的特性。微载体培养方法具有培养条件均一、提供很大的供细胞贴附的表面积、易于过程放大等优点。中国及国外已经有很多微载体商品可用。主要的基本材料是葡聚糖、塑料、明胶和玻璃等。载体表面常进行处理,如涂层或交联等。