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Normal Goat Serum (C-0005)  
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產(chǎn)品編號(hào) C-0005
英文名稱 Normal Goat Serum
中文名稱 封閉用正常山羊血清(原液)
別    名 NORMAL GOAT SERUM (NGS); Goat Serum; blocking serum;   山羊血清; 山羊血清封閉液; 正常山羊血清; 正常血清; 動(dòng)物非免疫血清(羊);
Specific References  (40)     |     C-0005 has been referenced in 40 publications.
[IF=11.205] Yingchun Luo. et al. Akkermansia muciniphila prevents cold-related atrial fibrillation in rats by modulation of TMAO induced cardiac pyroptosis. EBIOMEDICINE. 2022 Aug;82:104087  
[IF=9.236] Wei, Yuchun. et al. [18F]AlF-NOTA-FAPI-04: FAP-targeting specificity, biodistribution, and PET/CT imaging of various cancers. Eur J Nucl Med Mol I. 2022 Mar;:1-13  Other ;  Other.  
[IF=8.579] Zhang J et al. Dual inhibition of PFKFB3 and VEGF normalizes tumor vasculature, reduces lactate production, and improves chemotherapy in glioblastoma: insights from protein expression profiling and MRI. Theranostics . 2020 Jun 5;10(16):7245-7259.  IHC-P&IHF ;  
[IF=7.717] Liu, Li. et al. OTUB2 Regulates YAP1/TAZ to Promotes the Progression of Esophageal Squamous Cell Carcinoma. BIOL PROCED ONLINE. 2022 Dec;24(1):1-14  
[IF=6.217] Zhu H et al. ALKBH5 inhibited autophagy of epithelial ovarian cancer through miR-7 and BCL-2. J Exp Clin Cancer Res. 2019 Apr 15;38(1):163.  IHC ;  
[IF=6.17] Xiaoping Liu. et al. BRG1 protects the heart from acute myocardial infarction by reducing oxidative damage through the activation of the NRF2/HO1 signaling pathway. Free Radical Bio Med. 2020 Nov;160:820  
[IF=6.058] He Bing-Qiang. et al. Heat shock factor 1 promotes neurite outgrowth and suppresses inflammation in the severed spinal cord of geckos. NEURAL REGEN RES. 2023 Jan;:  IF ;  Gecko.  
[IF=5.793] Chunyue Wang. et al. Neuroprotective effects of verbascoside against Alzheimer’s disease via the relief of endoplasmic reticulum stress in Aβ-exposed U251 cells and APP/PS1 mice. J Neuroinflamm. 2020 Dec;17(1):1-16  IHC ;  Mouse.  
[IF=5.714] Tengyun Yang. et al. MicroRNA-146a-5p alleviates the pathogenesis of osteoarthritis by inhibiting SDF-1/CXCR4-induced chondrocyte autophagy. INT IMMUNOPHARMACOL. 2023 Apr;117:109938  
[IF=5.606] Luo Ping. et al. IL-37 inhibits M1-like macrophage activation to ameliorate temporomandibular joint inflammation through the NLRP3 pathway. Rheumatology. 2020 Oct;59(10):3070-3080  IF ;  Human.  
[IF=4.996] Li, Meng. et al. Dynamic expression of Mage-D1 in rat dental germs and potential role in mineralization of ectomesenchymal stem cells. SCI REP-UK. 2022 Dec;12(1):1-13  
[IF=4.799] Ranran Zhang. et al. The Role of SREC-Ⅰ in Innate Immunity to Aspergillus fumigatus Keratitis. Invest Ophth Vis Sci. 2021 Jul;62(9):12-12  IF ;  Mouse.  
[IF=4.49] Gan M. et al. miR-222 is involved in the regulation of genistein on skeletal muscle fiber type. The Journal of Nutritional Biochemistry(2019).  ICF ;  
[IF=4.362] JunXia Gao. et al. GLT-1 Knockdown Inhibits Ceftriaxone-Mediated Improvements on Cognitive Deficits, and GLT-1 and xCT Expression and Activity in APP/PS1 AD Mice. Front Aging Neurosci. 2020; 12: 580772  
[IF=3.461] Wang H et al. α-PD-L1 mAb enhances the abscopal effect of hypo-fractionated radiation by attenuating PD-L1 expression and inducing CD8+ T-cell infiltration.(2018) Immunotherapy  IHC-P ;  
[IF=3.417] Shuchong Mei. et al. Expression and role of fibroblast activation protein α in acute myeloid leukemia. Oncol Rep. 2021 Feb;45(2):641-651  other ;  
[IF=3.249] Xue C et al. The Down-Regulation of SUZ12 Accelerates the Migration and Invasion of Liver Cancer Cells via Activating ERK1/2 Pathway.J Cancer. 2019 Feb 23;10(6):1375-1384.  IHC-P ;  
[IF=3.231] Qian Chen. et al. Transcriptomic Analysis Reveals mRNA and Alternative Splicing Events in Ovine Skeletal Muscle Satellite Cells during Proliferation and Differentiation. ANIMALS. 2023 Jan;13(6):1076  
[IF=3.171] Jian-Zhu Bo. et al. D-serine reduces memory impairment and neuronal damage induced by chronic lead exposure. Neural Regen Res. 2021 May;16(5):836  
[IF=3.038] Fan Zhang et al. Early Intervention of Gastrodin Improved Motor Learning in Diabetic Rats Through Ameliorating Vascular Dysfunction. Neurochem Res. 2020 Aug;45(8):1769-1780.  IF ;  Rat.  
[IF=2.985] Anxiong Liu. et al. Mild hypothermia pretreatment extenuates liver ischemia-reperfusion injury through Rab7-mediated autophagosomes-lysosomes fusion. Biochem Bioph Res Co. 2021 Apr;550:15  IF ;  
[IF=2.98] Fu, Zhenzhen. et al. Using whole exome sequencing to identify susceptibility genes associated with nonsyndromic cleft lip with or without cleft palate. MOL GENET GENOMICS. 2022 Nov;:1-12  
[IF=2.795] Chao Ma. et al. CXCL1 stimulates decidual angiogenesis via the VEGF-A pathway during the first trimester of pregnancy. 2021 Mar 26  IHC ;  
[IF=2.784] Ma C et al.Isolation and biological characteristic evaluation of a novel type of cartilage stem/progenitor cell derived from Small?tailed Han sheep embryos.Int J Mol Med. 2018 Jul;42(1):525-533.  ICF ;  
[IF=2.682] Chen Zhiping. et al. Mitofusin-2 Restrains Hepatic Stellate Cells’ Proliferation via PI3K/Akt Signaling Pathway and Inhibits Liver Fibrosis in Rats. J Healthc Eng. 2022;2022:6731335  Other ;  Other.  
[IF=2.564] Wang JJ et al. Seasonal expressions of androgen receptor, P450arom and estrogen receptors in the epididymis of the wild ground squirrel (Citellus dauricus Brandt). General and Comparative Endocrinology, 2019 270, 131–138.  IHC-P ;  
[IF=2.445] Yuan Z et al. Seasonal expressions of oxytocin and oxytocin receptor in the epididymides in the wild ground squirrels (Citellus Dauricus Brandt). Gen Comp Endocrinol. 2020 Apr 1;289:113391.  IHC-P ;  
[IF=2.311] Wang Q et al. Clinical and prognostic association of oncogene cadherin 11 in gastric cancer. Oncol Lett . 2020 Jun;19(6):4011-4023.  IHC ;  human.  
[IF=2.276] Tan Ya. et al. Downregulated miR-204 Promotes Skeletal Muscle Regeneration. Biomed Res Int. 2020;2020:3183296  IHC ;  
[IF=2.172] Yuchen Yao. et al. Seasonal expressions of VEGF and its receptors VEGFR1 and VEGFR2 in the prostate of the wild ground squirrels (Spermophilus dauricus). Eur J Histochem. 2021 Mar 24; 65(2): 3219  IHC ;  squirrel.  
克 隆 號(hào)
CAS
理論分子量 kDa
檢測(cè)分子量
保存條件 Store at -20℃.
注意事項(xiàng) This product as supplied is intended for research use only, not for use in human, therapeutic or diagnostic applications.
產(chǎn)品介紹 Goat Serum blocking reagent or NGS can be used as a blocking agent to treat plastic surfaces, membrane or tissue after they have been sensitized with primary antibody or antigen. It provides an alternative to bovine serum albumin (BSA) and non-fat dry milk. It is effective in reducing nonspecific binding of proteins to reaction surfaces, thereby maximizing signal-to-noise ratio. This blocking agent is recommended for use in immunoassays where the primary antibody was produced in goat, as a source of non-specific serum protein or on tissue for immunohistochemical applications.
Application: Goat Serum blocking reagent or NGS is ideal for blocking procedures such as Western Blotting, ELISA and immunochemistry to prevent nonspecific binding.



封閉血清適用于免疫組化或者免疫熒光實(shí)驗(yàn)中樣本的封閉。可以封閉待檢樣本中與蛋白質(zhì)非特異性結(jié)合的位點(diǎn),另外還可以封閉樣品中內(nèi)源性的 Fc 片段結(jié)合位點(diǎn),阻斷抗體與樣品中的 Fc 受體結(jié)合,從而降低背景,減少假陽性。在選擇封閉血清時(shí),要注意封閉用血清中不能含有目標(biāo)蛋白,且與一抗來源不同,可用與二抗相同來源的封閉血清。正常山羊血清被廣泛應(yīng)用于組織和細(xì)胞染色中非特異性抗體結(jié)合的阻斷,以及抗體的其他應(yīng)用。血清可直接用于阻斷,或作為阻斷緩沖液的成分。

使用方法:

免疫組化:用5-10%正常山羊血清封閉(1:10-1:20倍稀釋),室溫孵育5-10分鐘。清除血清,勿洗,滴加適當(dāng)比例稀釋的一抗或一抗工作液,37℃或室溫孵育4℃過夜。

細(xì)胞涂片:用5-10%正常山羊血清封閉(1:10-1:20倍稀釋),使用 PBS 稀釋( 0.01mol/L pH7.4),少量點(diǎn)滴:漠過細(xì)胞涂片即可.

ELISA:1:100倍稀釋 使用 PBS 稀釋( 0.01mol/L pH7.4)37℃一小時(shí)。
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