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SIGMA A1933-1G 牛血清白蛋白 9048-46-

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  • ¥279
  • Sigma-Aldrich
  • 进口
  • A1933-1G
  • 2026年01月20日
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    • 详细信息
    • 文献和实验
    • 技术资料
    • 保存条件

      2-8°C

    • 保质期

      根据瓶身LOT号查询

    • 英文名

      Bovine Serum Albumin

    • 库存

      有现货

    • 供应商

      浙江羽翔生物科技有限公司

    • CAS号

      9048-46-8

    • 规格

      1G

    属性

    产品名称

    牛血清白蛋白 来源于牛血清, chromatographically purified, New Zealand origin, low endotoxin, suitable for cell culture, pH 7, ≥98%

    biological source

    bovine

    product line

    BioReagent

    assay

    ≥98%

    form

    lyophilized powder

    mol wt

    ~66 kDa

    purified by

    chromatography

    packaging

    poly bottle of

    origin

    New Zealand origin

    technique(s)

    cell culture | mammalian: suitable

    impurities

    ≤1 EU/mg endotoxin

    pH

    7

    solubility

    water: soluble (40 mg/ml)

    UniProt accession no.

    P02769

    storage temp.

    2-8°C

    Quality Level

    200

    Gene Information

    bovine ... ALB(280717)

    Application

    牛血清白蛋白已用作:
    • 酵母细胞bradford蛋白评估方法的标准品
    • 血细胞的酶联免疫斑点测定
    • 移植免疫组化研究中的阻断剂
    • 蛋白印迹法检测人胃癌细胞株的封闭剂

    Biochem/physiol Actions

    BSA的某些构象和初级序列表位是人类对牛肉和牛奶过敏中的可疑过敏原。

    Features and Benefits

    • 经试验,可用于细胞培养
    • 低内毒素

    General description

    牛血清白蛋白(BSA)是66 kDa的球形蛋白,对从血液中运输脂肪酸、药物和激素等分子至关重要。BSA是生物活性化合物的药物载体,临床应用广泛。BSA在细胞培养、分子生物学、蛋白质生物化学和检测技术等生物学研究中具有广泛应用。由于易于生产和相互作用的灵活性,制药应用广泛。

    Preparation Note

    血清白蛋白可能也会被称为Fraction V。该命名惯例取自使用冷乙醇沉淀对血清蛋白进行分级的原始Cohn法。 血清白蛋白可在采用Cohn′法的第五乙醇分级中发现。 从此,有些人便开始使用“Fraction V”这一术语来描述血清白蛋白,无论使用的是什么制备方法。 也有人在使用该术语来描述通过乙醇分级方法而纯化得到血清白蛋白,而这种方法是相对于原始的Cohn法一直在得到高度的改良。Sigma-Aldrich生产和分销从各种主要方法纯化得到的血清白蛋白,包括真正的Cohn分级法、改良的乙醇分级方法、热休克和色谱法。 更多的纯化步骤包括结晶或木炭过滤。
    采用盐析法、离子交换法和凝胶过滤层析法制备。

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    图标文献和实验
    该产品被引用文献

    Discovery of high affinity, pan-allelic, and pan-mammalian reactive antibodies against the myeloid checkpoint receptor SIRPα.

    mAbs (2019-07-02)
    Janet Sim, Jonathan T Sockolosky, Emma Sangalang, Shelley Izquierdo, Darlene Pedersen, William Harriman, Ardian S Wibowo, Josh Carter, Anup Madan, Laura Doyle, Ons Harrabi, Steven E Kauder, Amy Chen, Tracy C Kuo, Hong Wan, Jaume Pons
    PMID31257988
    摘要

    Targeting the CD47-signal-regulatory protein α (SIRPα) pathway represents a novel therapeutic approach to enhance anti-cancer immunity by promoting both innate and adaptive immune responses. Unlike CD47, which is expressed ubiquitously, SIRPα expression is mainly restricted to myeloid cells and neurons. Therefore, compared to CD47-targeted therapies, targeting SIRPα may result in differential safety and efficacy profiles, potentially enabling lower effective doses and improved pharmacokinetics and pharmacodynamics. The development of effective SIRPα antagonists is restricted by polymorphisms within the CD47-binding domain of SIRPα, necessitating pan-allele reactive anti-SIRPα antibodies for therapeutic intervention in diverse patient populations. We immunized wild-type and human antibody transgenic chickens with a multi-allele and multi-species SIRPα regimen in order to discover pan-allelic and pan-mammalian reactive anti-SIRPα antibodies suitable for clinical translation. A total of 200 antibodies were isolated and screened for SIRPα reactivity from which approximately 70 antibodies with diverse SIRPα binding profiles, sequence families, and epitopes were selected for further characterization. A subset of anti-SIRPα antibodies bound to both human SIRPα v1 and v2 alleles with high affinity ranging from low nanomolar to picomolar, potently antagonized the CD47/SIRPα interaction, and potentiated macrophage-mediated antibody-dependent cellular phagocytosis in vitro. X-ray crystal structures of five anti-SIRPα antigen-binding fragments, each with unique epitopes, in complex with SIRPα (PDB codes 6NMV, 6NMU, 6NMT, 6NMS, and 6NMR) are reported. Furthermore, some of the anti-SIRPα antibodies cross-react with cynomolgus SIRPα and various mouse SIRPα alleles (BALB/c, NOD, BL/6), which can facilitate preclinical to clinical development. These properties provide an attractive rationale to advance the development of these anti-SIRPα antibodies as a novel therapy for advanced malignancies. Abbreviations: ADCC: antibody-dependent cellular cytotoxicity; ADCP: antibody-dependent cellular phagocytosis; CFSE: carboxyfluorescein succinimidyl ester; Fab: fragment antigen binding; Fc: fragment crystallizable; FcγR: Fcγ receptor; Ig: immunoglobulin; IND: investigational new drug; MDM⊘: monocyte-derived macrophage; NOD: non-obese diabetic; scFv: single chain fragment variable; SCID: severe combined immunodeficiency; SIRP: signal-regulatory protein.

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    文献支持
    SIGMA A1933-1G 牛血清白蛋白 9048-46-8
    ¥279