共查询到17条相似文献,搜索用时 62 毫秒
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离子交换色谱法对大肠杆菌表达的人重组骨形态发生蛋白-7的纯化 总被引:1,自引:0,他引:1
重组大肠杆菌高量表达重组人骨形态发生蛋白-7(rhBMP-7),每升培养液约得到湿菌体3g,其中目的蛋白约占菌体总蛋白量的40%。裂解离心,用低浓度变性剂洗涤初步纯化包涵体,上清中无目的蛋白损失;将包涵体溶解于高浓度变性剂溶液中,目的蛋白纯度提高到60%;然后在不同条件下用离子交换色谱法对变性状态下的蛋白质进行纯化,绝大部分杂蛋白被除去,目的蛋白纯度达95%以上;改变条件,可以减少rhBMP-7损失;用Western blot对目的蛋白进行特异性鉴定。 相似文献
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骨形态发生蛋白-7的研究进展 总被引:1,自引:0,他引:1
骨形态发生蛋白是近来研究较多的一种生物因子,属于TGF—β超家族的一员。最初发现的作用是异位诱导成骨,并根据这一特点应用于临床一些难治性骨缺损疾病的治疗。其成员BMP—7作为一种细胞因子,在与体内其他因子作用的基础上,对其他多种组织的发育及功能均有重要作用。 相似文献
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骨形态发生蛋白-7(BMP-7)是具有强诱骨活性的蛋白质因子,已通过基因工程技术在体外得到表达,较长时间以来不断被应用于骨损伤疾病的研究,得到了确切的治疗效果。通过载体将BMP-7基因转入真核细胞,与生物聚合载体复合后植入体内,能表达并分泌活性的BMP-7,诱导骨细胞的生成,促进骨组织的修复,成为一种新的有效的治疗手段。 相似文献
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将人BMP-2的编码区cDNA克隆至穿梭载体pShuttle,以PI-SceI和I-CeuI切下含BMP-2编码区cDNA的片断,在体外与PI-SceI/I-CeuI切开的腺病毒DNA连接,构建重组有BMP-2全长编码区基因的腺病毒DNA,PCR鉴定正确后,经PacI酶切线性化,在脂质体介导下转染HEK293细胞,反复冻融制备重组腺病毒,空斑形成试验测定病毒滴度约为7.5×106~1.5×107pfu/ml。以BMP-2重组腺病毒感染体外培养的小鼠成肌细胞C2C12,Westernblot检测证实有BMP-2表达。 相似文献
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目的:采用基于attLXattR的入噬茵体位点特异性重组系统的Gateway^TM技术构建人骨形态发生蛋白-2基因重组腺病毒载体(Ad—hBMP-2)。方法:从pcDNA3.1质粒中获取目的基因hBMP-2片段,连入带attL1、attL2位点的入门载体pENTRTM11中,形成入门克隆,将入门克隆与带attR1、attR2位点的目的载体Ad/CMV/V5-DEST在高效重组酶作用下发生体外重组形成表达克隆ad—BMP-2,经鉴定将ad—BMP-2线性化后转入293A细胞包装,通过细胞裂解法获得人骨形态发生蛋白-2的基因重组腺病毒珠Ad-hBMP-2,将其扩增,采用western blotting技术分析目的蛋白表达。结果:经酶切及测序证实目的基因BMP-2片段按正确方向重组入目的载体中,带BMP-2的目的载体在293A细胞中包装成功,获得成熟的病毒颗粒,测得病毒滴度为2.5×10^9pfu/ml,western blotting结果证实Ad—hBMP-2在293A细胞中高效表达hBMP-2蛋白。结论:本实验首次利用基于入噬菌体的位点特异性重组系统的Gateway^TM技术成功构建了Ad—hBMP-2,该技术与传统构建方法比较具有高效性和灵活性,为进一步研究BMP-2的生理功能和利用BMP-2进行骨基因治疗奠定了实验基础。 相似文献
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Ehsan Saburi Hadi Atabati Ladan Kabiri Asma Behdari Mina Azizi Abdolreza Ardeshirylajimi Seyed Ehsan Enderami Sayyed Mohammad-Hossein Ghaderian Mohsen Nafar Mahmoud Parvin Mir Davood Omrani 《Journal of cellular biochemistry》2019,120(6):9859-9868
Renal failures treatment has been faced with several problems during the last decades. Kidney tissue engineering has been created many hopes to improve treatment procedures with scaffold fabrication that can modulate kidney cells/stem cells migration to the lesion site and increase the survival of these cells at that site with imitating the role of the kidney extracellular matrix. In this study, bone morphogenetic protein-7 (BMP7) as a vital factor for kidney development and regeneration was incorporated in the polycaprolactone (PCL) nanofibers and after morphological, mechanical, and biocompatible characterization, proliferation, and survival of the human embryonic kidney cells (HEK) were investigated using 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT), flow cytometry, and gene expression while cultured on scaffolds. Mechanical properties of the PCL nanofibers modulated after combining with BMP7 and hydration degree, protein adsorption and cell adhesion were enhanced in PCL-BMP7 compared to the pure PCL. Proliferation rate and growth increased significantly in HEK cells cultured on PCL-BMP7 when compared with that of PCL and tissue culture plate, whereas these data were also confirmed via significant decrease in apoptotic genes expression level in HEK cell cultured on PCL-BMP7. According to the results, PCL-BMP7 demonstrated positive effects on the survival and proliferation rate of the kidney cells and showed has also a great potential to use as a bioimplant for kidney tissue engineering applications. 相似文献
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Bone morphogenetic protein-7 (BMP-7) is a multifunctional cytokine of the transforming growth factor β superfamily, which induces bone formation and plays an important role during bone tissue repair and embryonic development. In this study, human BMP-7 (hBMP-7) cDNA was cloned and expressed in Escherichia coli, and its yield was approximately 30% of the total bacterial protein. After the bacteria were lysed by ultrasonication and repeated washing, inclusion bodies were extracted and dissolved using a high-strength denaturant. The monomer of rhBMP-7 was purified by ion-exchange chromatography, and the purity coefficient was approximately 96%. The protein was renatured with refolding buffers at different pH values. The renatured rhBMP-7 dimer protein in this study increased the alkaline phosphatase activity of NIH3T3 cells. This study may be helpful for the in vitro production and biomedical application of rhBMP-7 protein expressed in an E. coli expression system. 相似文献
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溶氧反馈分批补料高密度培养人骨形成蛋白-2工程菌 总被引:2,自引:0,他引:2
对表达人骨形成蛋白-2成熟肽的基因工程大肠杆菌E.coli DH5α/pDH-B2m在500mL摇瓶中进行了培养条件的摸索实验,并在此基础上扩大至NBS Bioflo IV20L发酵罐,利用溶氧反馈-分批补料培养技术:在培养过程中保持适当的溶解氧(40%),以溶氧值在线反馈控制搅拌速度及流加补料培养基,使细菌保持适当的比生长率,成功地进行了工程菌的高密度培养,最终菌体密度达OD600=57,每升干菌量22.8g,目的蛋白的表达量占细菌总蛋白的30%,人骨形成蛋白-2成熟肽的理论产率达到3.59g/L。 相似文献
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Jingchao H Rong S Zhongchen S Lan C 《Biochemical and biophysical research communications》2011,(3):437-441
Extracts of enamel matrix proteins are used to regenerate periodontal tissues. Amelogenin, the most abundant enamel protein, plays an important role in the regeneration of these tissues. However, the molecular mechanisms by which amelogenin contributes to periodontal regeneration remain unknown. Using primary human bone marrow stroma cells (hBMSCs) transduced with lentivirus encoding human amelogenin (hAm), we performed genome-wide expression profiling to analyze the effects of hAm transduction on the regulation of genes involved in osteogenic differentiation. Our results revealed that BMP-2, BMP-6, OPN and VEGFC were up-regulated. These results suggest that hAm may be a key element in regulating hBMSCs osteogenic differentiation. 相似文献
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Bojiang Shen Aiqun Wei Shane Whittaker Lisa A. Williams Helen Tao David D.F. Ma Ashish D. Diwan 《Journal of cellular biochemistry》2010,109(2):406-416
This study addresses the role of bone morphogenetic protein‐7 (BMP‐7) in chondrogenic and osteogenic differentiation of human bone marrow multipotent mesenchymal stromal cells (BM MSCs) in vitro. BM MSCs were expanded and differentiated in the presence or absence of BMP‐7 in monolayer and three‐dimensional cultures. After 3 days of stimulation, BMP‐7 significantly inhibited MSC growth in expansion cultures. When supplemented in commonly used induction media for 7–21 days, BMP‐7 facilitated both chondrogenic and osteogenic differentiation of MSCs. This was evident by specific gene and protein expression analyses using real‐time PCR, Western blot, histological, and immunohistochemical staining. BMP‐7 supplementation appeared to enhance upregulation of lineage‐specific markers, such as type II and type IX collagens (COL2A1, COL9A1) in chondrogenic and secreted phosphoprotein 1 (SPP1), osteocalcin (BGLAP), and osterix (SP7) in osteogenic differentiation. BMP‐7 in the presence of TGF‐β3 induced superior chondrocytic proteoglycan accumulation, type II collagen, and SOX9 protein expression in alginate and pellet cultures compared to either factor alone. BMP‐7 increased alkaline phosphatase activity and dose‐dependently accelerated calcium mineralization of osteogenic differentiated MSCs. The potential of BMP‐7 to promote adipogenesis of MSCs was restricted under osteogenic conditions, despite upregulation of adipocyte gene expression. These data suggest that BMP‐7 is not a singular lineage determinant, rather it promotes both chondrogenic and osteogenic differentiation of MSCs by co‐ordinating with initial lineage‐specific signals to accelerate cell fate determination. BMP‐7 may be a useful enhancer of in vitro differentiation of BM MSCs for cell‐based tissue repair. J. Cell. Biochem. 109: 406–416, 2010. © 2009 Wiley‐Liss, Inc. 相似文献