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1.
本研究旨在用壳聚糖-聚丙烯酸纳米磁性微球纯化血红细胞超氧化物歧化酶。采用了接枝共聚法,以K2S2O8为引发剂,使壳聚糖(CTS)与聚丙烯酸(PAA)进行自由接枝共聚合成含有两性基团(-NH3,-COOH)的壳聚糖-聚丙烯酸纳米微球。化学共沉淀法制备Fe3O4磁流体,以戊二醛为交联剂,制备壳聚糖-聚丙烯酸纳米磁性微球。用傅里叶变换红外光谱仪对磁性微球结构进行检测。JEM-4000EX电镜技术对微球粒径,形貌进行表征。SOD试剂盒测定各步骤Cu-ZnSOD酶活性。结果表明,壳聚糖-聚丙烯酸纳米磁性微球有较好的粒径分布、磁响应性及蛋白吸附特性。纯化后酶比活性达6 727 U/mg,产品得率21.1%,活性回收85.7%。壳聚糖-聚丙烯酸纳米磁性微球经血液纯化血红细胞SOD具有可再生性、易操作性,其纯化效果取决于金属Cu2+的螯合程度。  相似文献   

2.
用壳聚糖亲和磁性微球纯化血浆凝血酶的研究   总被引:1,自引:0,他引:1  
通过化学共沉淀法合成纳米粒子Fe3O4磁核,以壳聚糖为包裹材料包被自制的磁核,采用乳化交联法制备了具有核-壳结构的磁性高分子微球-壳聚糖磁性微球,并偶联肝素配基得到了一种新型亲和磁性微球,应用SEM、FT-IR、XRD等对微球的粒径、形貌、结构和磁响应性进行了表征.考察了该亲和磁性微球对凝血酶的分离纯化性能,并与传统的DEAE离子交换色谱法进行了比较.结果表明,所得亲和磁性微球具有较窄的粒径分布、形状规整,粒径在50nm左右.对凝血酶一步吸附纯化获得了比活为1879.71U/mg的酶,得率85%,纯化倍数11.057,而传统柱层析法得率为72%,纯化倍数仅为5.33.制备了壳聚糖亲和磁性微球,并将磁分离技术应用于凝血酶的分离纯化,得到了较好的效果,这将对于凝血酶的纯化及生产具有一定参考价值.  相似文献   

3.
磁性复合微球作为一种优良的载体,广泛应用于生物医学和技术上,如蛋白纯化、药物绑定、酶固定化等.磁性复合微球制备过程包括纳米磁性粒子合成、磁性复合微球制备,将酶与经表面戎基、氛基、环氧基等功能基团修饰或直接与磁性微球共价结合,或者与表面经金属离子鳌合的磁性微球吸附从而实现酶固定化.本文介绍了磁性复合微球的制备过程及其在固定化酶方面的研究进展.  相似文献   

4.
磁性微球的制备及在生物分离应用中的研究进展   总被引:11,自引:0,他引:11  
磁性微球是一类新型的功能材料,雀生物医学工程、细胞生物学和环境工程具有广泛的应用。本文从磁性微球的结构、特性和制备方法进行了探讨,并详细介绍了磁性微球在细胞分离、蛋白质以及核酸的制备纯化领域中的应用。  相似文献   

5.
磁性微球是一类新型的功能材料,在生物医学工程、细胞生物学和环境工程具有广泛的应用。本文从磁性微球的结构、特性和制备方法进行了探讨,并详细介绍了磁性微球在细胞分离、蛋白质以及核酸的制备纯化领域中的应用。  相似文献   

6.
目的:改进传统的溶胶-凝胶方法而制备得表面包裹SiOZ的核-壳型磁性纳米微球,然后将表面连有链霉亲和素的磁性纳米微球应用于生物样品中核酸的分离.方法:用透射电子显微镜(TEM)、红外光谱(FTIR),X射线衍射仪(XRD)和磁强计(VSM)对得到的纳米微球进行表征,最后用电泳验证核酸.结果:表明制备得到的磁性纳米微球表面包裹Si02,粒径均匀,分散性良好,并且具有超顺磁性和较大的比饱和磁化强度.电泳结果表明磁性微球可以很好地从细胞悬液、组织、血液等样品中分离得到高质量的核酸.结论:该方法简便快速有效,其过程不需要使用任何有毒溶剂,操作简单.  相似文献   

7.
采用硅烷化试剂Si(OC2H5)3C3H6NH2(APTES)对纳米Fe3O4颗粒表面进行氨基化改性后, 考察了不同浓度偶联剂戊二醛对于颗粒表面固定牛血清白蛋白(BSA)量的影响。此超顺磁性免疫铁颗粒(SPIO)加入兔抗BSA血清中特异性结合BSA抗体后, 用Gly-HCl缓冲液洗脱得到IgG。结果表明当戊二醛浓度大于10%时, 单位颗粒固定蛋白的量达到最大值约140 mg/mg, 10 min, 15 mg的SPIO即可将1 mL抗血清完全分离, 经过两次快速洗脱, 颗粒表面吸附的抗体即可得到纯化; 琼脂扩散实验表明分离后的抗体仍保持较高活性, SDS-PAGE电泳结果表明用此方法纯化后的兔抗BSA IgG纯度大于99%, 比传统的(NH4)2SO4法有了较大提高, 但纯化量并没有减少; SPIO在经过五次重复利用后仍能保持78%以上的分离效果。  相似文献   

8.
特定细菌的磁性凝集分离法   总被引:5,自引:0,他引:5       下载免费PDF全文
解宇 《微生物学报》2004,44(1):119-121
介绍一种对细菌进行直接分离的新模式,以大肠杆菌的分离为例,使用从磁性细菌体内提取的纳米磁珠,在纳米磁珠表面联上大肠杆菌抗体后制成磁性大肠杆菌抗体,以此来结合、凝集并分离细菌混合液中的大肠杆菌。结果表明标本溶液中添加80μg的磁性大肠杆菌抗体,可对105个大肠杆菌进行凝集和分离,处理后标本溶液中其他细菌的浓度无变化。利用此项技术可以快速凝集和分离细菌混合液中的特定细菌。  相似文献   

9.
纳米磁性液体是一种新型的功能材料,其在蛋白质、核酸分离纯化、微生物检测、基因治疗等方面有着广泛的应用前景。磁性纳米材料现已广泛应用于我们生产生活中的各个领域,其应用可谓包罗万象,它在旋转轴动态密封、扬声器制作、阻尼器件制造、选矿分离、治疗癌症、精密研磨和抛光等方面具有极大的价值。本文对纳米磁性液体的性质和制备进行了简介,并详细介绍了其功能及其在蛋白质、核酸分离纯化和在细胞分离、微生物检测、基因治疗方面的应用。并对其发展前景进行了展望。  相似文献   

10.
蛋白A(Staphylococcal Protein A,简称蛋白A或SPA)是对IgG有特异性吸附能力的生物配基,将其偶联到葡聚糖修饰的Fe3O4纳米磁珠上,研究SPA纳米磁珠对IgG的纯化能力。采用高温多元醇法合成不同粒径的纳米磁珠,研究磁珠粒径对IgG吸附量的影响,并对磁珠静态载量、吸附时间、可重复性进行研究,为工业化应用提供理论依据。通过控制反应体系中NaOH的浓度成功地合成了平均粒径从30 nm到200 nm的Fe3O4纳米磁珠,通过吸附量试验证明了磁珠粒径对IgG吸附量有较大影响,当磁珠平均粒径在101.5 nm时对IgG的吸附量最大,静态吸附载量为84.85 mg/mL,亲和常数为3.48×106 M-1。对磁珠进行5次循环再生试验后,磁珠的吸附性能没有明显的降低。利用磁珠能高效快速地从人血清中纯化到IgG,纯度达到93.5%(SDS-PAGE),回收率为88.7%。因此,这种磁性分离基质在IgG纯化中有较大的应用潜力,  相似文献   

11.
Staphylococcal protein A (SPA) is one of the first discovered immunoglobulin binding molecules and has been extensively studied during the past decades. Due to its affinity to immunoglobulins, SPA has found widespread use as a tool in the detection and purification of antibodies and the molecule has been further developed to one of the most employed affinity purification systems. Interestingly, a minimized SPA derivative has been constructed and a domain originating from SPA has been improved to withstand the harsh environment employed in industrial purifications. This review will focus on the development of different affinity molecules and matrices for usage in antibody purification.  相似文献   

12.
A novel magnetic support was prepared by an oxidization-precipitation method with poly(vinyl alcohol) (PVA) as the entrapment material. Transmission electron microscopy indicated that the magnetic particles had a core-shell structure, containing many nanometer-sized magnetic cores stabilized by the cross-linked PVA. The particles showed a high magnetic responsiveness in magnetic field, and no aggregation of the particles was observed after the particles had been treated in the magnetic field. These facts indicated that the particles were superparamagnetic. Cibacron blue 3GA (CB) was coupled to the particles to prepare a magnetic affinity support (MAS) for protein adsorption. Lysozyme was used as a model protein to test the adsorption properties of the MAS. The adsorption equilibrium of lysozyme to the MAS was described by the Langmuir-type isotherm. The capacity for lysozyme adsorption was more than 70 mg/g MAS (wet weight) at a relatively low CB coupling density (3-5 micromol/g). In addition, 1.0 M NaCl solution could be used to dissociate the adsorbed lysozyme. Finally, the MAS was recycled for the purification of alcohol dehydrogenase (ADH) from clarified yeast homogenates. Under proper conditions, the magnetic separation yielded over 5-fold purification of the enzyme with 60% recovery of the enzyme activity.  相似文献   

13.
用活化的壳聚糖为载体,鸡卵粘蛋白(CHOM)为配基,制备了胰蛋白酶的亲和吸附剂。采用该吸附剂亲和层析胰酶,所得产物经SDS-PAGE电泳检测,带中只有一条带颜色较深,且与标准胰蛋白酶带位置几乎相同。实验结果表明1 g壳聚糖可以固定60 mg鸡卵粘蛋白,制成的亲和吸附剂可吸附胰蛋白酶的最大量为118 U/g。以壳聚糖为载体的亲和吸附剂制备过程简单、安全。  相似文献   

14.
为了优化将抗体偶联在二氧化硅试管表面上以便进行丙型肝炎抗原检测的分析系统,本研究通过氨基硅烷的活化作用,在玻璃表面形成活化的氨基,以戊二醛作为化学交联试剂,在已硅化的玻璃表面固定丙肝单克隆抗体,并进行丙肝抗原(HCAg)的测定。结果显示,通过条件优化实验,发现以10%(V/V)的氨基硅烷水溶液处理玻璃试管3h后,再用3%(V/V)的戊二醛水溶液交联丙肝单克隆抗体2h,可以得到固定效果较好,非特异性较低的玻璃载体,对HCAg可测至1μg/L。可见,用该方法制备的玻璃载体可为进一步建立新的HCAg磁性免疫检测系统提供理论和实验依据。  相似文献   

15.
葡萄球菌蛋白A(staphylococcus protein A,SPA)是金黄色葡萄球菌(Staphylococcus aureus)细胞壁上的一种黏连蛋白.经过几十年的研究,由于其对免疫球蛋白IgG的亲和特性,SPA已作为一种工具在抗体的检测、纯化以及疾病诊断中得到了广泛应用.SPA衍生物的构建适应了现代生产的需要,改造后的SPA可以与多种报告分子相偶联,使得免疫诊断更加快速准确.本文综述了SPA基于其免疫学特性,在抗体纯化和现代免疫分析应用中的发展状况及前景.  相似文献   

16.
A DNA aptamer specific for Thermus aquaticus DNA polymerase (Taq-polymerase) was immobilized on magnetic beads, which were prepared in the presented study. The effect of various parameters including pH, temperaturem and aptamer concentration on the immobilization of 5'-thiol labeled DNA-aptamer onto glutaric dialdhyde activated magnetic beads was evaluated. The binding conditions of Taq-polymerase on the aptamer immobilized magnetic beads were studied using commercial Taq-polymerase to characterize the surface complexation reaction. Efficiency of affinity magnetic beads in the purification of recombinant Taq-polymerase from crude extracts was also evaluated. For this case, the enzyme "recombinant Taq-DNA polymerase" was cloned and expressed using an Amersham E. coli GST-Gene Fusion Expression system. Crude extracts were in contact with affinity magnetic beads for 30 min and were collected by magnetic field application. The purity of the eluted Tag-polymerase from the affinity beads, as determined by HPLC, was 93% with a recovery of 89% in a one-step purification protocol. Apparently, the system was found highly effective as one step for the low-cost purification of Taq-polymerase in bacterial crude extract.  相似文献   

17.
Blocking protein C binding to the endothelial cell protein C receptor (EPCR) on the endothelium is known to reduce protein C activation rates. Now we isolate human EPCR and thrombomodulin (TM) and reconstitute them into phosphatidylcholine vesicles. The EPCR increases protein C activation rates in a concentration-dependent fashion that does not saturate at 14 EPCR molecules/TM. Without EPCR, the protein C concentration dependence fits a single class of sites (Km = 2.17 +/- 0.13 microM). With EPCR, two classes of sites are apparent (Km = 20 +/- 15 nM and Km = 3.2 +/- 1.7 microM). Increasing the EPCR concentration at a constant TM concentration increases the percentage of high affinity sites. Holding the TM:EPCR ratio constant while decreasing the density of these proteins results in a decrease in the EPCR enhancement of protein C activation, suggesting that there is little affinity of the EPCR for TM. Negatively charged phospholipids also enhance protein C activation. EPCR acceleration of protein C activation is blocked by anti-EPCR antibodies, but not by annexin V, whereas the reverse is true with negatively charged phospholipids. Human umbilical cord endothelium expresses approximately 7 times more EPCR than TM. Anti-EPCR antibody reduces protein C activation rates 7-fold over these cells, whereas annexin V is ineffective, indicating that EPCR rather than negatively charged phospholipid provide the surface for protein C activation. EPCR expression varies dramatically among vascular beds. The present results indicate that the EPCR concentration will determine the effectiveness of the protein C activation complex.  相似文献   

18.
N‐type metal oxides such as hematite (α‐Fe2O3) and bismuth vanadate (BiVO4) are promising candidate materials for efficient photoelectrochemical water splitting; however, their short minority carrier diffusion length and restricted carrier lifetime result in undesired rapid charge recombination. Herein, a 2D arranged globular Au nanosphere (NS) monolayer array with a highly ordered hexagonal hole pattern (hereafter, Au array) is introduced onto the surface of photoanodes comprised of metal oxide films via a facile drying and transfer‐printing process. Through plasmon‐induced resonance energy transfer, the Au array provides a strong electromagnetic field in the near‐surface area of the metal oxide film. The near‐field coupling interaction and amplification of the electromagnetic field suppress the charge recombination with long‐lived photogenerated holes and simultaneously enhance the light harvesting and charge transfer efficiencies. Consequently, an over 3.3‐fold higher photocurrent density at 1.23 V versus reversible hydrogen electrode (RHE) is achieved for the Au array/α‐Fe2O3. Furthermore, the high versatility of this transfer printing of Au arrays is demonstrated by introducing it on the molybdenum‐doped BiVO4 film, resulting in 1.5‐fold higher photocurrent density at 1.23 V versus RHE. The tailored metal film design can provide a potential strategy for the versatile application in various light‐mediated energy conversion and optoelectronic devices.  相似文献   

19.
The growing importance of mass spectrometry for the identification and characterization of bacterial protein toxins is a consequence of the improved sensitivity and specificity of mass spectrometry-based techniques, especially when these techniques are combined with affinity methods. Here we describe a novel method based on the use of immunoaffinity capture and matrix-assisted laser desorption ionization-time of flight mass spectrometry for selective purification and detection of staphylococcal enterotoxin B (SEB). SEB is a potent bacterial protein toxin responsible for food poisoning, as well as a potential biological warfare agent. Unambiguous detection of SEB at low-nanogram levels in complex matrices is thus an important objective. In this work, an affinity molecular probe was prepared by immobilizing anti-SEB antibody on the surface of para-toluene-sulfonyl-functionalized monodisperse magnetic particles and used to selectively isolate SEB. Immobilization and affinity capture procedures were optimized to maximize the density of anti-SEB immunoglobulin G and the amount of captured SEB, respectively, on the surface of magnetic beads. SEB could be detected directly "on beads" by placing the molecular probe on the matrix-assisted laser desorption ionization target plate or, alternatively, "off beads" after its acidic elution. Application of this method to complex biological matrices was demonstrated by selective detection of SEB present in different matrices, such as cultivation media of Staphylococcus aureus strains and raw milk samples.  相似文献   

20.
We introduce a robust and scale-flexible approach to macromolecule purification employing tailor-made magnetic adsorbents and high-gradient magnetic separation technology adapted from the mineral processing industries. Detailed procedures for the synthesis of large quantities of low-cost defined submicron-sized magnetic supports are presented. These support materials exhibit unique features, which facilitate their large-scale processing using high magnetic field gradients, namely sufficiently high magnetization, a relatively narrow particle size distribution and ideal superparamagnetism. Following systematic optimization with respect to activation chemistry, spacer length and ligand density, conditions for preparation of effective high capacity (Q(max) = 120 mg g(-1)) strongly interacting (Kd < 0.3 microm) trypsin-binding adsorbents based on immobilized benzamidine were established. In small-scale studies approximately 95% of the endogenous trypsin present in a crude porcine pancreatin feedstock was recovered with a purification factor of approximately 4.1 at the expense of only a 4% loss in alpha-amylase activity. Efficient recovery of trypsin from the same feedstock was demonstrated at a vastly increased scale using a high-gradient magnetic separation system to capture loaded benzamidine-linked adsorbents following batch adsorption. With the aid of a simple recycle loop over 80% of the initially adsorbed trypsin was recovered in-line with an overall purification factor of approximately 3.5.  相似文献   

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