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植物Actin小鼠单克隆抗体(3T3)

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  • ¥498 - 3998
  • 亚科因(Abbkine)已认证
  • 湖北武汉
  • ABL1050
  • 2025年11月18日
  • WB
  • 小鼠
  • 拟南芥#玉米#油菜
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  • 企业认证

    • 详细信息
    • 文献和实验
    • 技术资料
    • 免疫原

      重组蛋白

    • 亚型

      小鼠IgG1

    • 形态

      液体形式

    • 保存条件

      自发货之日起,-20°C可稳定保存1年。为最大限度的避免损失,请在打开管盖之前融化抗体并离心。我们建议使用前分装以避免反复冻融。

    • 克隆性

      单克隆

    • 标记物

      Null

    • 适应物种

      拟南芥#玉米#油菜

    • 保质期

      Null

    • 抗原来源

      小鼠

    • 目录编号

      Null

    • 级别

      Null

    • 库存

      现货

    • 供应商

      武汉亚科因(Abbkine)

    • 宿主

      小鼠

    • 应用范围

      WB

    • 浓度

      Null

    • 靶点

      Anti-Plant Actin Mouse Monoclonal Antibody (3T3)

    • 抗体英文名

      Anti-Plant Actin Mouse Monoclonal Antibody (3T3)

    • 抗体名

      植物Actin小鼠单克隆抗体(3T3)

    • 规格

      50 μL/200 μL/200 μL×5

    规格:50 μL产品价格:¥498.0
    规格:200 μL产品价格:¥898.0
    规格:200 μL×5产品价格:¥3998.0

    关键词:植物Actin小鼠单克隆抗体(3T3)

    中文名称:植物Actin小鼠单克隆抗体(3T3)/Anti-Plant Actin Mouse Monoclonal Antibody (3T3)

    英文名称:Anti-Plant Actin Mouse Monoclonal Antibody (3T3)

    产品说明书:/resources/uploads/2024-03-07/83461c03-fe33-4ff9-8e0d-0e3ac71a9ecc.pdf

    产品描述:Null

     

    Abbkine

     

    Actin is a highly conserved protein and an essential component of cell cytoskeleton and plays an important role in cytoplasmic streaming, cell shape determination, cell division, organelle movement and extension growth. Preferentially expressed in young and expanding tissues, floral organ primordia, developing seeds and emerging inflorescence. Arabidopsis has a complex actin gene family that encodes six protein subclasses. One of the classes is represented by the proteins ACT2 and ACT8, which are similar proteins, but have different flanking sequences, introns and silent nucleotide positions in codons. ACT8 is expressed in root, stems, leaves, flowers, pollen and siliques.

    Abbkine致力于细胞科研检测及细胞治疗领域关键试剂的研发、生产和销售,成为全球细胞制药领域创新的关键推动者。公司主营业务包括细胞培养、扩增及储存试剂,细胞代谢、检测及分选试剂盒,细胞治疗用原料及细胞因子等产品及定制化服务。围绕生物试剂研发,亚科因生物已建立了稳定完善的两大关键技术平台:生化试剂配方和重组蛋白表达进化平台,为细胞科研检测及细胞治疗核心试剂的高通量、高效率研发生产提供保障。

    Null

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    图标文献和实验
    该产品被引用文献

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    相关实验
    • 单克隆抗体制备

      1975年Kohler和Milstein发现将小鼠骨髓瘤细胞与和绵羊红细胞免疫的小鼠脾细胞进行融合,形成的杂交瘤细胞既可产生抗体,又可无性繁殖,从而创立了单克隆抗体杂交瘤技术。这一技术上的突破使血清学的研究进入了一个高度精确的新纪元。 免疫细胞化学的 技术关键之一是制备特异性强、亲合力大、滴度高的特异性抗体,由于每种抗原都有几个抗原决定簇,用它免疫动物将产生对各个决定簇的抗体,即多克隆抗体。单克隆抗体则是由一个产生抗体的细胞与一个骨髓瘤细胞融合而形成的杂交廇细胞经无性繁殖而来

    • 单克隆抗体为基础的免疫治疗

      单克隆抗体为基础的免疫治疗       第1代单抗诞生于1975年,来源于小鼠的B细胞杂交瘤,称为鼠源单抗。但人的免疫系统会识针对此类识别单抗产生人抗鼠抗体,将其清除出体外而限制了它的应用。随后研制了人源化单抗,并于1988年进行了第1次商业性的临床试验。人源化单抗与鼠源单抗相比,具有以下的优点:特异性较强;不易发生过敏反应及免疫复合性疾病;在人体内维持的时间较长;可制备用于人的抗独特型抗体。制备人源化单抗可以采用人―鼠杂交瘤技术、人―人杂交瘤技术、EB病毒转化技术、EB病毒转化

    • 细胞杂交

      的有萝卜+甘蓝、粉蓝烟草+郎氏烟草、番茄+马铃薯等等。 单克隆抗体技术是细胞杂交技术的成功应用(图2-27),正常淋巴细胞(如小鼠脾细胞)具有分泌抗体的能力,但不能在体外长期培养,瘤细胞(如骨髓瘤)可以在体外长期培养,但不分泌抗体。于是英国人Kohler和Milstein 1975将两种细胞杂交而创立了单克隆抗体技术,获1984年诺贝尔奖 。

    图标技术资料

    暂无技术资料 索取技术资料

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    文献支持
    植物Actin小鼠单克隆抗体(3T3)
    ¥498 - 3998