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1.
葡萄糖的添加对昆虫细胞Sf21悬浮生长的影响   总被引:2,自引:0,他引:2  
添加葡萄糖对昆虫细胞Sf21(Spodoptera frugiperda)悬浮生长的影响,发现补加糖量在lg/L时·能明显提高细胞生长的速度和最高密度,细胞最高密度由2.5×104/ml增加到4.9×106/ml; 朴加糖量在2g/L时,则有显著的抑制作用,即使增加接种密度.细胞生长的最高密度也只有2.1×106/ml。当采取流加葡萄糖方法来培养细胞时,则其生长的最大密度可提高到5.2×106/ml。  相似文献   

2.
微载体高密度培养Vero细胞的研究   总被引:10,自引:0,他引:10  
微载体是动物细胞高密度培养的有效手段。首先在硅化的方瓶中对Cytodex 1、Cy-todex 3、Biosilon、Bellco Glass Microcarrier、CT-1、CT-3、MC-1、CT-28种国产和进口微载体进行了比较和筛选。确定以Biosilon作为Vero细胞高密度培养的首选微载体。用500mlWheaton搅拌瓶探索影响Vero细胞高密度培养的条件,表明50~60mg/ml的微载体浓度、1~2×106/ml的细胞接种密度、适当的通气(95%O_2+5%CO2)对该细胞的高密度培养具有重要意义。在200ml培养体积的Wheaton搅拌瓶中,微载体浓度为50~60mg/ml,细胞接种密度为9.24×105/ml,搅拌速度为65~85r/min,经25d培养,Vero细胞密度可达2.34×107/ml,表明50~60mg/ml的微载体浓度对培养细胞没有毒性。接着在1.5L CelliGen生物反应器中进行培养,细胞接种密度为4.98×105/ml,培养体积为1.2L,日灌流量从0.20L逐渐加大到3.65L,经22d连接灌流培养,最终细胞密度可达2.05×107/ml。  相似文献   

3.
人参培养细胞的单细胞克隆   总被引:2,自引:2,他引:2  
培养基组成成分能影响人参培养细胞单细胞克隆的植板率。Ms培养基中2,4-D和KT需要一个适合的浓度比才能有效地促进细胞克隆的形成,其最佳浓度组合是2,4-D1.5mg/L和KT O.5mg/L。适合人参细胞克隆形成的NH4N03浓度是400mg/L,CaCl2.2H2O浓度是750mg/L。向培养基中补加适量的琥珀酸、精氨酸和维生素等都能明显提高植板率。通过优化培养基的组成成分,细胞克隆的植板率可增加到2.34倍。悬浮培养两周左右的细胞平板培养最有利克隆形成,当细胞植板密度低于4×103个细胞/ml时,几乎没有克隆形成。  相似文献   

4.
搅拌式生物反应器中造血细胞的灌注培养   总被引:4,自引:0,他引:4  
为了消除造血细胞静态培养中存在的浓度梯度和搅拌悬浮培养时换液引起的波动,为造血细胞体外扩增提供更理想的培养环境和操作方式,利用自主开发的造血细胞重力沉降截留系统结合有溶氧和pH控制的生物反应器进行了脐血造血细胞的灌注培养。两次灌注培养中总细胞分别扩增11.5和18.6倍,扩增倍数最大时,CFU-Mix分别扩增23.2倍和20.4倍、 CFU-GM扩增13.9倍和21.5倍、BFU-E 扩增8.0倍和6.9倍、CD34+细胞扩增17.1倍和15.4倍。培养到12d时,第一次实验由267×106单个核细胞扩增得到1082×106个总细胞,6.31×106个CFU-GM,6.2×106个CFU-Mix和23×106个CD34+细胞;第二次实验由180×106单个核细胞扩增得到1.080×106个总细胞,4.65×106个CFU-GM,11.0×106个CFU-Mix和25.0×106个CD34+细胞,这达到了临床规模,由于控制了较低的溶氧和稳定的培养环境,细胞中干/祖细胞含量显著高于方瓶。但灌注培养到后期细胞密度达到较高后,细胞生长受到抑制,这应该是由细胞密度过高本身所引起。搅拌式反应器中进行灌注培养有利于造血干/祖细胞的进一步扩增,培养得到的细胞中干/祖细胞含量较高,培养规模达到了临床要求,但过高的细胞密度将对造血细胞的生长产生抑制。  相似文献   

5.
一鼠杂交瘤细胞DA4—4(Atcc,HB57)分泌抗人IgM的单克隆抗体IgGl,该细胞被培养在1.5L celliGen一中空纤维柱连续灌注系统中,ceuiGen细胞培养器显示很低的机械剪切力,提高搅拌速度到150rpm增加了氧的传递,但不对杂交瘤细胞造成损害。在连续培养对,DA4·4细胞密度可达20×106/mI以上,单克隆抗体浓度高达4.75mg/mI,该培养系统每日可收获抗体1.Og左右。  相似文献   

6.
微囊化杂交瘤细胞培养的基础应用研究   总被引:1,自引:0,他引:1  
本文探讨了海藻酸钠的结构组分对微囊强度的重要作用。提出了微囊化批量生产中估算活细胞的方法以及影响满囊比的主要因素等a制备微囊的成功率达到95%以上,满载率可达95%。微囊化杂交瘤细胞在静态培养6—10天后,细胞浓度为8.8×106~2.1×107ceIl/ml微囊。单抗浓度为379μg/m1微囊。微囊化产物经SDS电泳呈现一条或两条蛋白带,表明单抗纯度较高。  相似文献   

7.
用1640SFM无血清培养基在VF-2中空纤维细胞培养系统内培养7E8杂交瘤细胞,最大活细胞密度为2.34×106/ml,该活细胞密度分别是转瓶培养和静态瓶培养结果的3.7倍和2.2倍。培养42天共收获7E8细胞培养液10000ml,其单克隆抗体(简称单抗)的ELIsA效价为1:20000左右,该效价是转瓶培养和静态瓶培养结果的25倍。ID。0mI培养液经50%饱和硫酸铵盐析和sephadex G-200柱层析提纯,获纯化单抗IgG 51.82mg。该系统平均每天生产单抗12.3mg。研究结果表明;在中空纤维培养系统内用无血清培养基培养杂交瘤细胞的方法可望用于体外大规模生产单抗。  相似文献   

8.
基于Sf21昆虫细胞在悬浮培养过程中所表现出的生长代谢特征,提出以培养液中残糖浓度作为控制参数,并利用限制性基质(葡萄糖和蛋白水解物)的间歇补加技术调控细胞生长的方案。实际控制表明:与批培养相比,Sf21细胞在两种具代表性的昆虫细胞培养基(IPL-41和TC-100)中的生长期和稳定期都得到了有效的延长。TC-100培养液中最高细胞培养密度由3.0×106 cells/mL提高到6.5×106 cells/mL;IPL41培养液中最高细胞培养密度则由7.05×106 cells/mL提高到9.0×106cells/mL。由于限制性基质的间歇补加技术是利用较确定的营养成分来代替复杂昂贵的补料培养基,因此更适合于昆虫细胞的大规模高密度培养。  相似文献   

9.
诸葛菜叶柄原生质体培养再生植株   总被引:2,自引:0,他引:2  
罗科  罗鹏 《生物工程学报》1992,8(2):174-177
本文首次报道用诸葛菜(Orychophragmus violaceus)试管苗叶牺为材料分离原生质体,经培养再生了植株。用于原生质体培养的基本培养基为Nitsch培养基,附加1OOmg/L丝氨酸,800mg/L谷氨酰胺和13%的蔗糖,激素成分为0.5mg/L BA,0.5mg/L NAA和lmg/L2,4一D(或0.5mg/L BA和2mg/L 2,4-D)。原生质体的培养密度为2×105/ml。培葬7天的原生质体分裂频率约为40%。在附加O.05mg/L NAA和3mg/L BA的MS分化培养基上,愈伤组织可分化出大量的芽和苗,分化频率为100%。  相似文献   

10.
厚叶景天组织传感器的研究   总被引:1,自引:1,他引:0  
利用厚叶景天的叶和茎组织作为生物催化材料,分别同二氧化碳气敏电极和氨气敏电极组合,研制了L-精氨酸传感器及,L-赖氨酸传感器。两种传感器的线性范围分别为1.0×10-4 1.O×10-3mol/L和8.0×10-5—3.0×10-3mol/L.检测下限分别为3.2×10-5mol/L和2.2×10-5mol/L,响应斜率分别为42.2mV/dec和41.4mv/dec。考察了两种传感器的回收率.结果表明,L-精氨酸传感器和L-赖氨酸传感器的回收率平均值分别为98.6%和101.6%,标准偏差分别为4.6%和4.0%。  相似文献   

11.
Embryo rescue in twoVicia faba L. cultivars (‘Polycarpe’ and ‘A-107’) and oneV. narbonensis L. population (A-202) was studied under a 22 ± 2°C/ 16 ± 1° day/night temperature regime. Very young ovules (1.0–1.8 mm long) cultured, in-ovule, on five liquid media remained green for a longer period of time on modified B5, modified Murashige and Skoog and modified Beasley and Ting media than on modified Phillips and Collins and modified Bourgin and Nitsch media. However, no embryo growth or embryo germination was observed. In-ovule culture of older ovules, 6 and 8 days forV. narbonensis and 10 and 14 days forV. faba, on modified B5 liquid medium allowed 6-day-oldV. narbonensis and 14-day-oldV. faba embryos to be rescued. Finally, culture of whole pods of the two species resulted in the rescue of even younger embryos. Thus, plantlets were obtained from as young as 4-day-oldV. narbonensis pods and 11-day-oldV. faba pods.  相似文献   

12.
回顾了上一世纪我国植物组织培养的发展.1934年以来,我国的植物组织培养研究一直与国际发展同步进行.我国学者在离体器官发生、茎尖培养、花药培养、子房培养、胚乳培养、原生质体培养和细胞大量培养等分支领域都取得重要进展.本文在引证我国研究者发表的植物组织培养论文的基础上,着重评述了那些被国际同行公认的研究成果.此外,还介绍了植物组织培养在我国农业和工业上应用的情况.  相似文献   

13.
二十世纪我国植物学家对植物组织培养的贡献   总被引:7,自引:0,他引:7  
回顾了上一世纪我国植物组织培养的发展。 1934年以来 ,我国的植物组织培养研究一直与国际发展同步进行。我国学者在离体器官发生、茎尖培养、花药培养、子房培养、胚乳培养、原生质体培养和细胞大量培养等分支领域都取得重要进展。本文在引证我国研究者发表的植物组织培养论文的基础上 ,着重评述了那些被国际同行公认的研究成果。此外 ,还介绍了植物组织培养在我国农业和工业上应用的情况  相似文献   

14.
邢晓科  郭顺星 《菌物学报》2003,22(4):653-660
本文对猪苓、伴生菌及蜜环菌两两共培养及三者共培养进行了宏观形态观察及细胞学水平上的研究。结果表明,猪苓与伴生菌共培养时,在二者之间形成一致密拮抗线,猪苓菌落表面菌丝分化产生大量菌丝束;猪苓与蜜环菌共培养时,猪苓能阻止蜜环菌菌索对其自身的进一步侵袭,互作区中的双方菌丝及菌索均停止生长;蜜环菌与伴生菌共培养时,蜜环菌能穿透整个伴生菌菌落,在伴生菌菌落下方产生大量分枝;三者共培养后,猪苓对蜜环菌的防御能力有所下降,伴生菌对蜜环菌的耐受力有所提高,蜜环菌产生的新分枝均向伴生菌一侧生长,猪苓与伴生菌之间并不形成致密拮抗线,只可见双方菌丝的白色交融区。 猪苓与伴生菌均能在蜜环菌菌索皮层上形成侵入位点。  相似文献   

15.
Summary A new culture vessel was designed for cell suspension culture. A silicone-convered magnet bar fixed by one end to the side wall of the bottle was held horizontally a short distance from the bottom. A standard type magnetic stirrer was used. In contrast to the conventional horizontal movement of “stirring” in cultures the bar moves vertically with a “tapping” motion. This improvement resulted in less cell injury, higher rate of cell proliferation and formation of fewer bubbles than in the conventional type. Nine cell types were simultaneously cultivated in tapping, stirring and stationary culture. All cell types proliferated more luxuriously in tapping cultures than in stirring cultures. Serial cultivation of cells in tapping cultures was also successful. This work was supported in part by the grants for Cancer Research from the Ministry of Education, Science and Culture, Japan.  相似文献   

16.
荔枝生物技术研究进展(综述)   总被引:6,自引:1,他引:5  
从荔枝的组织培养、花药培养和原生质体培养方面综述荔枝生物技术的研究概况,并提出该领域存在问题及发展方向。  相似文献   

17.
Although the potential of photosyntheticmicroorganisms for production of various metabolitesand in environmental bioremediation is recognized,their practical application has been limited by thedifficulty in supplying light efficiently tophotobioreactors. Various types of photobioreactorwith high illumination to volume ratios have beenproposed, but most are limited by cost, mass transfer,contamination, scale-up or a combination of these.The problem of light supply to photobioreactorscan be solved by developing photosynthetic cellcultivation systems where light is either substitutedor supplemented. Many strains of photosynthetic cellsare capable of heterotrophic growth under darkconditions and their heterotrophic culture can be usedfor efficient production of biomass and somemetabolites. However, light is absolutely required forefficient production of some metabolites. In suchcases, there is a need to supplement the heterotrophicwith photoautotrophic metabolism. Inphotoheterotrophic (mixotrophic) culture, thephotoautotrophic and heterotrophic metabolisms can beexploited for efficient production of usefulmetabolites but it has many problems such as processoptimization in terms of making a balance between thephotoautotrophic and heterotrophic metabolism. Another promising system is the sequentialheterotrophic/ photoautotrophic cultivation system,where the cells are cultivated heterotrophically tohigh concentrations and then passed through aphotobioreactor for accumulation of the desiredmetabolite(s). Furthermore, cyclicphotoautotrophic/heterotrophic cultivation system canbe used to achieve continuous cell growth underday/night cycles. This involves cultivating thecells photoautotrophically using solar light duringthe day and then adding controlled amount of organiccarbon source during the night for heterotrophicgrowth. In this review, these various systems arediscussed with some specific examples.  相似文献   

18.
A culture system for performing cell cycle analyses on cells in undisturbed steady-state populations was designed and tested. In this system, newborn cells are shed continuously from an immobilized, perfused culture rotating about the horizontal axis. As a result of this arrangement, the number of newborn cells released into the effluent medium each generation is identical to the number of cells residing in the immobilized population, indicating that one of the two new daughter cells is shed at each cell division. Thus, the immobilized cells constitute a continuous, steady-state culture because the concentrations, locations and microenvironments of the cells in the culture vessel do not vary with time. In tests with mouse L1210 lymphocytic leukemia cells, about 108 newborn cells were produced per day. This new culture system enables a multiplicity of cell cycle analyses on large numbers of cells assured to be from populations in steady-state growth.
Valerie S. LeBleuEmail: Phone: +617-667-0427Fax: +617-667-2562
  相似文献   

19.
Summary The design and use of a unit for planting uniform inocula for replicate cultures are described. Its design permits continuous gassing of suspensions of mammalian cells with humidified CO2, thus stabilizing the pH (±<0.05 pH unit) of culture media buffered with sodium bicarbonate. The unit can be readily modified to deliver different volumes; identical samples can be dispensed simply and rapidly, with minimal cell damage and chance of microbial contamination. Quantitative data regarding sample uniformity and growth subsequent to planting with this unit are presented.  相似文献   

20.
Summary The design and use of a unit for planting uniform inocula for replicate cultures are described. Its design permits continuous gassing of suspensions of mammalian cells with humidified CO2, thus stabilizing the pH (±<0.05 pH unit) of culture media buffered with sodium bicarbonate. The unit can be readily modified to deliver different volumes; identical samples can be dispensed simply and rapidly, with minimal cell damage and chance of microbial contamination. Quantitative data regarding sample uniformity and growth subsequent to planting with this unit are presented.  相似文献   

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