Finda1platesizeofthisproducthere.Enquireaboutbulkdiscountsfortenormoreplates,atsales@Biosensis.comDescription | ThehumanTransforminggrowthfactorbeta-1(TGFb1)KitisasandwichELISA.ThecaptureantibodyisamonoclonalTGFb1antibodypre-coatedontothe96-wellstripplatesprovidedinthekit.HumantestsamplesandstandardsofknownTGFb1concentrationareaddedtothesewellsandallowedtocomplexwiththeboundTGFb1antibody.AbiotinylatedTGFb1polyclonalantibodyisthenadded.Thisdetectionantibodybindstotheantigenthuscompletingthesandwich.Afterwashing,anenzymeAvidin-Biotin-Peroxidasecomplex(ABC)isaddedwhichbindstothesecondantibody.TheperoxidasesubstrateTMBisaddedtoinduceacolouredreactionproduct.TheintensityofthiscolouredproductisdirectlyproportionaltotheconcentrationofTGFb1presentinthesamples.Thereiscross-reactivateswithTGFbeta2,TGFbeta3,TGFbeta5<1%. The purpose of this kit is the in-vitro quantitative determination of human TGFb1 in cell culture supernatants, serum, plasma (EDTA treated only) and urine samples. Pretreatment of samples with acid precipitation and neutralization step is required for optimal activity. Note: TGFbeta 1 is naturally very liable once released from its natural binding complex. This kit has been configured for research use only and is not to be used in diagnostic or clinical procedures. This kit has been configured for research use only and is not to be used in diagnostic or clinical procedures. | BatchNo. | Seeproductlabels | OtherNames | TGFB1;TGFB;TGF-beta-1; | Accession | P01137TGFB1_HUMAN; | Specificity | TGFBeta1.ThekitwillreactwithHuman,MouseandRat. | Cross-reactivity | CrossreactivitywithTGFBeta2,TGFBeta3,andTGFBeta5islessthan1%. | Storage | Storeat4°C | Kitcomponents | TheELISAkitboxcontains2x96pre-coatedstripplates,proteinstandards,detectionreagents,substratebufferandpreciseinstructions. | Range | 15.6pg/ml-1,000pg/ml | Sensitivity | < 1 pg/ml | Kitprotocol | BEK-2093-2P_as_at_Jun2017_protocol.pdf | 品牌介绍
Biosensis专注于神经科学领域的抗体和试剂的开发,特别是神经营养因子和神经营养因子受体。 近30年来,Biosensis一直是该领域的全球领航者和OEM供应商。除神经营养因子,我们的神经科学产品组合还被广泛用于神经退行性疾病、神经发育和神经代谢的研究。重点研究领域包括阿尔茨海默氏症(AD)、帕金森氏症(PD)和肌萎缩侧索硬化(ALS)疾病,以及自噬和代谢应激障碍,包括肥胖、代谢综合征的研究、神经免疫学和炎症。
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