• 结论:丝状噬菌体随机成功构建

    Conclusion: The random peptide library has been successfully constructed.

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  • 通过噬菌体肽库技术分析抗体所识别的抗原表位。

    The mAb epitope was also analyzed using peptide phage display technology.

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  • 目的噬菌体筛选日本血吸虫抗原模拟抗原表位。

    Objective To screen the mimic antigen epitopes of Schistosoma japonicum from phage display peptide library.

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  • 制备优点之一保持坚实支持

    One of the advantages of peptide libraries prepared by solid phase is that the peptides can remain on solid support.

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  • 目的筛选技术寻找胰岛素受体结合胰岛素位点。

    Objective to find the site of the insulin binding with the insulin receptor via biopanning of disulfide constrained phage display heptapeptides library.

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  • 目的噬菌体呈现1 2中筛选蛋白受体结合

    AIM: To select the peptide binding to human transferring receptor (hTfR) from phage display 12 peptides library.

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  • 并以此筛选配基,对噬菌体表面展示的随机15进行亲和筛选。

    These Abs were used for biopanning of a phage-displayed random15- peptide library.

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  • 目的构建肺癌噬菌体展示,筛选出肺癌早期检测分子标志群。

    Objective: to establish a lung cancer phage-peptide library and to screen for biomarkers for early detection of lung cancer.

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  • 目的应用噬菌体随机筛选CD 137特异结合序列。

    Objective to screen polypeptides binding to human CD137 by biopanning phage display random heptapeptide library.

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  • 目的利用噬菌体展示技术筛选鸡传染性支气管炎病毒模拟抗原表位。

    Objective:To obtain the mimotope of avian infectious bronchitis virus by phage display peptide library.

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  • 目的噬菌体呈现12中筛选流感病毒神经氨酸酶特异性结合的

    Objective: to select the peptide binding to influenza virus neuraminidase from phage display 12 peptide library.

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  • 目的建立、改进并完善细菌表面展示随机进行抗原表位筛选鉴定方法。

    To establish an improved procedure for isolation and identification of epitopes from a random peptide library displayed on the bacterial surface.

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  • 采用技术噬菌体筛选抗体模拟全新导向治疗思路

    Screening mimic peptide of antibody from polypeptides library is a wholly new thought of targeted therapy, which has shown an obvious technics superiority.

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  • 以此纯化蛋白采用固体包被噬菌体展示随机十二肽库及环七肽库进行亲和筛选。

    The purified protein coated on polystyrene plate was used as the target to carry out four rounds of bio-panning.

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  • 选择适宜蛋白骨架展示筛选方法构建基于合理蛋白骨架结构的优化限制性随机

    By selecting suitable protein scaffold, display and screening methods, the rational and constrained random peptide library (RPL) can be constructed.

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  • 研究使用纯化的鸡传染性支气管炎病毒(IBV),12噬菌体展示随机筛选特异性结合多

    This study utilized purified IBV H52 strain to screen specific virus-binding peptides from Ph. D. -12TM phage display peptide library.

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  • 方法甲三型流感病毒裂解疫苗原液分子经过3生物淘选,噬菌体随机中筛选结合的噬菌体。

    Methods: Using the influenza A3 split vaccine as the target molecule, peptides that could bind with target molecule were selected from the phage display 12 peptide library by 3 rounds of biopaning.

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  • 同时,本研究所采用的方法也为使用噬菌体随机进行甾体类激素特异性受体(配体)的筛选提供了可靠实验依据。

    The results also show that phage display peptide library is an effective, simple and efficient method to select specific steroid receptors.

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  • 方法表达人CD59的中国仓鼠卵巢细胞CHO细胞,采用竞争结合试验噬菌体随机12进行5亲和筛选。

    METHODS: Using CHO cells which high express human CD59 as target cells, the phage 12 peptide library was screened for 5 rounds by competitive binding test.

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  • 目的方法噬菌体随机7神经胶质瘤细胞(SWO - 38)进行细胞筛选,并通过竞争结合实验检验所筛选出的克隆的结合特异性。

    AIM and METHODS: The Ph. D. -7 phage display library was used to isolate peptides specific for glioma SWO-38 cell by whole cell screening.

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  • 这一足以大多数蛋白质降解成氨基酸

    The enzyme armoury is sufficient to degrade most proteins to small peptides and amino acids.

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  • 该单克隆抗体合成乙酰化赖氨酸底物免疫动物制备。

    Monoclonal antibody is produced by immunizing animals with a synthetic acetyl-lysine peptide library.

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  • 该单克隆抗体合成含乙酰化赖氨酸免疫动物制备。

    Monoclonal antibody is produced by immunizing animals with a synthetic acetylated lysine-containing peptide.

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  • 了解不良反应发生情况,临床合理用药提供参考通过检索全义数据,对近几年文献报道的抑酶引起的不良反应报道进行归纳分析

    To get the message of ADRs caused by aprotinin, and to provide reference for clinical medication, ADRs caused by aprotinin which were reported recently were summarized and analysized.

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  • 了解不良反应发生情况,临床合理用药提供参考通过检索全义数据,对近几年文献报道的抑酶引起的不良反应报道进行归纳分析

    To get the message of ADRs caused by aprotinin, and to provide reference for clinical medication, ADRs caused by aprotinin which were reported recently were summarized and analysized.

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