Goat Anti-Guinea pig IgG H&L (FITC) (ab6904)
Key features and details
- Goat Anti-Guinea pig IgG H&L (FITC)
- Conjugation: FITC. Ex: 493nm, Em: 528nm
- Host species: Goat
- Suitable for: ICC/IF, IHC-P, IHC-Fr, Immunomicroscopy, Flow Cyt, ELISA
製品の概要
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製品名
Goat Anti-Guinea pig IgG H&L (FITC)
IgG 二次抗体 製品一覧 -
由来種
Goat -
ターゲット生物種
Guinea pig -
アプリケーション
適用あり: ICC/IF, IHC-P, IHC-Fr, Immunomicroscopy, Flow Cyt, ELISAmore details -
免疫原
Full length native Guinea Pig IgG (purified).
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標識
FITC. Ex: 493nm, Em: 528nm
製品の特性
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製品の状態
Liquid -
保存方法
Shipped at 4°C. Store at +4°C. -
バッファー
pH: 6.50
Preservative: 0.01% Sodium azide
Constituents: 0.42% Tripotassium orthophosphate, 0.87% Sodium chloride, 1% BSA -
Concentration information loading...
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精製度
Affinity purified -
特記事項(精製)
This product was prepared from monospecific antiserum by immunoaffinity chromatography using Guinea Pig IgG coupled to agarose beads. -
特記事項(標識)
Diaminotriazinylaminofluorescein (DTAF) (Molecular Weight 530 daltons) Absorption Wavelength: 495 nm Emission Wavelength: 528 nm Fluorochrome/Protein Ratio: 2.3 moles DTAF per mole of Rabbit IgG -
ポリ/モノ
ポリクローナル -
研究分野
アプリケーション
The Abpromise guarantee
Abpromise保証は、 次のテスト済みアプリケーションにおけるab6904の使用に適用されます
アプリケーションノートには、推奨の開始希釈率がありますが、適切な希釈率につきましてはご検討ください。
アプリケーション | Abreviews | 特記事項 |
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ICC/IF |
1/1000 - 1/5000.
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IHC-P |
Use at an assay dependent dilution.
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|
IHC-Fr |
Use at an assay dependent dilution.
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Immunomicroscopy |
Use at an assay dependent dilution.
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Flow Cyt |
Use at an assay dependent dilution.
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|
ELISA |
1/10000 - 1/50000.
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特記事項 |
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ICC/IF
1/1000 - 1/5000. |
IHC-P
Use at an assay dependent dilution. |
IHC-Fr
Use at an assay dependent dilution. |
Immunomicroscopy
Use at an assay dependent dilution. |
Flow Cyt
Use at an assay dependent dilution. |
ELISA
1/10000 - 1/50000. |
プロトコール
To our knowledge, customised protocols are not required for this product. Please try the standard protocols listed below and let us know how you get on.
データシートおよび資料
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SDS download
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Datasheet download
参考文献 (9)
ab6904 は 9 報の論文で使用されています。
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- Komuro H et al. Engineering Extracellular Vesicles to Target Pancreatic Tissue In Vivo. Nanotheranostics 5:378-390 (2021). PubMed: 33912378
- Kiyokawa Y et al. Drug-Induced Naïve iPS Cells Exhibit Better Performance than Primed iPS Cells with Respect to the Ability to Differentiate into Pancreatic ß-Cell Lineage. J Clin Med 9:N/A (2020). PubMed: 32887316
- Farack L et al. Transcriptional Heterogeneity of Beta Cells in the Intact Pancreas. Dev Cell 48:115-125.e4 (2019). PubMed: 30503750
- Long CM et al. Comparative virulence of diverse Coxiella burnetii strains. Virulence 10:133-150 (2019). PubMed: 30782062
- Morton KA et al. Tissue-specific expression and circulating concentrations of nesfatin-1 in domestic animals. Domest Anim Endocrinol 65:56-66 (2018). PubMed: 29909240
- Muhammad AB et al. Menin and PRMT5 suppress GLP1 receptor transcript and PKA-mediated phosphorylation of FOXO1 and CREB. Am J Physiol Endocrinol Metab 313:E148-E166 (2017). PubMed: 28270438
- Gurung B et al. Menin epigenetically represses Hedgehog signaling in MEN1 tumor syndrome. Cancer Res 73:2650-8 (2013). PubMed: 23580576
- Gonzalez R et al. Pancreatic beta cells colocalize insulin and pronesfatin immunoreactivity in rodents. Biochem Biophys Res Commun 381:643-8 (2009). IHC-P . PubMed: 19248766