Anti-Laminin α-4 antibody

宿主:
Rabbit
已测试的应用:
ELISA,ICC/IF
物种反应性:
Human,Mouse,Rat
货号:TS902407

产品信息

抗体类型 Primary Antibodies
免疫原 Polypeptide
克隆性 Polyclonal
同种型 IgG
宿主 Rabbit
来源 Rabbit
已测试的应用 ELISAICC/IF
物种反应性 HumanMouseRat
浓度 1mg/ml
纯化 Protein A
基因名称 LAMA4
基因别名 CMD1JJ; LAMA3; LAMA4*-1; RGD1560062
基因全称 laminin subunit alpha 4
基因简介 Laminins, a family of extracellular matrix glycoproteins, are the major noncollagenous constituent of basement membranes. They have been implicated in a wide variety of biological processes including cell adhesion, differentiation, migration, signaling, neurite outgrowth and metastasis. Laminins are composed of 3 non identical chains: laminin alpha, beta and gamma (formerly A, B1, and B2, respectively) and they form a cruciform structure consisting of 3 short arms, each formed by a different chain, and a long arm composed of all 3 chains. Each laminin chain is a multidomain protein encoded by a distinct gene. Several isoforms of each chain have been described. Different alpha, beta and gamma chain isomers combine to give rise to different heterotrimeric laminin isoforms which are designated by Arabic numerals in the order of their discovery, i.e. alpha1beta1gamma1 heterotrimer is laminin 1. The biological functions of the different chains and trimer molecules are largely unknown, but some of the chains have been shown to differ with respect to their tissue distribution, presumably reflecting diverse functions in vivo. This gene encodes the alpha chain isoform laminin, alpha 4. The domain structure of alpha 4 is similar to that of alpha 3, both of which resemble truncated versions of alpha 1 and alpha 2, in that approximately 1,200 residues at the N-terminus (domains IV, V and VI) have been lost. Laminin, alpha 4 contains the C-terminal G domain which distinguishes all alpha chains from the beta and gamma chains. The RNA analysis from adult and fetal tissues revealed developmental regulation of expression, however, the exact function of laminin, alpha 4 is not known. Tissue-specific utilization of alternative polyA-signal has been described in literature. Alternative splicing results in multiple transcript variants encoding distinct isoforms. [provided by RefSeq, Aug 2011]
蛋白别名 alternatively spliced isoform involved in pulmonary hamartoma HMGI(Y) fusion transcript; basement membrane protein; LAMA4; laminin [a]4; laminin alpha 4 chain; laminin, alpha 4; laminin-14 subunit alpha; laminin-8 subunit alpha; laminin-9 subunit alpha
分子量 203kDa
Uniprot ID Q16363
应用稀释比 ICC/IF:1:100-1:500
修饰 Unmodification
标记 Unconjugated
亚细胞定位 Secreted,Basement membrane
产品形态 Liquid
缓冲液 Purified antibody in PBS with 0.05% PC300.
保存条件 Shipped at 4°C. Store at +4°C short term (1-2 weeks). Store at -20°C long term. Avoid freeze / thaw cycle.
ICC/IF
ICC/IF
Immunofluorescence analysis of T24 cells using Laminin α-4 antibody (green). Blue: DAPI fluorescent DNA dye. Red: Actin filaments have been labeled with TSZ® 594-Phalloidin. Cells are fixed in 4% paraformaldehyde at room temperature for 15 minutes. Then, they are permeabilized with a PBS solution containing 0. 1% Triton X-100 at room temperature for 15 minutes. Subsequently, the cells are blocked with 10% non - immune goat serum at room temperature for 1 hour. The cells are incubated overnight at 4°C with the primary antibody diluted 1:100 in PBS. The secondary antibody, TSZ® 488 Goat Ant-Rabbit IgG(H&L) (Green) is diluted at a ratio of 1:400 and incubated with the cells for 1 hour. Nuclear DNA is labeled with DAPI (Blue). F-actin is stained with TSZ® 594-Phalloidin (Red), diluted 1:100 for 30 minutes.
ELISA
ELISA
Coat the plate with immunizing antigen. Blue line:Immune serum; Orange line: Pre-immune serum.
质量 (mg) = 浓度 (mM) x 体积 (mL) x 分子摩尔量 (g/mol)
Mass (g) = Concentration (mol/L) × Volume (L) × Molecular Weight (g/mol)
起始浓度(M)× 起始体积(L)= 最终浓度(M)× 最终体积(L)
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)
This equation is commonly abbreviated as: C1V1 = C2V2
分子量计算器
Enter the chemical formula of the compound to calculate its molar mass and elemental composition
g/mol
动物实验计算换算器

请在以下方框中输入您的动物实验信息后点击计算,可以得到母液配置方法和体内配方的制备方法:

比如您的给药剂量是10 mg/kg,每只动物体重20 g,给药体积100 μL, 一共给药动物10只,您使用的配方为 10% DMSO + 40% PEG300 + 5% Tween 80 + 45% Saline / PBS / ddH2O, 那么您的工作液浓度为2 mg/mL

母液配置方法:2 mg 药物溶于 100 μL DMSO ( 母液浓度为 20 mg/mL ), 如您需要配置的浓度超过该产品的溶解度,请先与我们联系。

体内配方的制备方法: 取 100 μL DMSO 母液, 添加 400 μL PEG300 混匀澄清, 再加 50 μL Tween 80, 混匀澄清, 再加 450 μL Saline / PBS / ddH2O 混匀澄清

以上为“体内实验配液计算器”的使用方法举例,并不是具体某个化合物的推荐配制方式,请根据您的实验动物和给药方式选择适当的溶解方案。

方案所需的各类助溶剂如: DMSO, PEG300, PEG400, Tween 80, SBE-β-CD, 玉米油等, 均可在诺渊网站点击购买。

第一步:请输入基本实验信息(考虑到实验过程中的损耗,建议多配一只动物的药量)
第二步:请输入动物体内配方组成(配方适用于不溶于水的药物;不同批次药物配方比例不同,请联系客服为您提供正确的澄清溶液配方)
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+
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计算结果:

工作液浓度 mg/ml;

DMSO母液配制方法 mg 药物溶于 μL DMSO溶液(母液浓度 mg/mL,

体内配方配制方法μL DMSO母液,加入 μL PEG300,混匀澄清后加入μL Tween 80,混匀澄清后加入 μL Saline/PBS/ddH2O,混匀澄清。

1. 首先保证母液是澄清的;
           2. 一定要按照顺序依次将溶剂加入,进行下一步操作之前必须保证上一步操作得到的是澄清的溶液,可采用涡旋、超声或水浴加热等物理方法助溶。

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