高靈敏ELISA試劑盒,4小時(shí)內(nèi)可得結(jié)果,最低可檢測34.2 pg/ml的IGF-1
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胰島素樣生長因子-1(IGF-1)是一種多肽激素,在結(jié)構(gòu)上與胰島素相似。它參與調(diào)節(jié)中樞和周圍神經(jīng)系統(tǒng)的神經(jīng)元生長和發(fā)育。IGF-1是一種有效的神經(jīng)元凋亡抑制劑,并通過IGF-1R和胰島素受體激活A(yù)kt信號(hào)通路。IGF-1R作為IGF-1和相關(guān)的IGF-2的受體,在多個(gè)酪氨酸殘基上進(jìn)行自磷酸化,調(diào)節(jié)受體的激活和信號(hào)轉(zhuǎn)導(dǎo)復(fù)合物的組裝。
Enzo Life Sciences的IGF-1(Human) ELISA試劑盒是一種比色法免疫檢測試劑盒,可在4小時(shí)內(nèi)得出實(shí)驗(yàn)結(jié)果,在450nm處讀取OD值。該試劑盒提供超靈敏的胰島素樣生長因子-1含量檢測,靈敏度低至34.2 pg/ml。欣博盛生物作為Enzo Life Sciences授權(quán)中國一級(jí)代理,可提供該產(chǎn)品,歡迎咨詢。
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產(chǎn)品特點(diǎn)
◆?高靈敏,可檢測低至34.2 pg/ml的IGF-1
◆?廣泛的動(dòng)態(tài)范圍,適用于多種類型樣品
◆ 高通量,只需4小時(shí)就能得到40份樣品(含復(fù)孔)的結(jié)果
◆ 完全定量的結(jié)果,優(yōu)于半定量的Western blot分析
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產(chǎn)品信息
產(chǎn)品貨號(hào) | ADI-900-150 |
產(chǎn)品名稱 | IGF-1 (human), ELISA kit(人胰島素樣生長因子-1 ELISA試劑盒) |
規(guī)格 | 96 wells |
靈敏度 | 34.2 pg/ml |
檢測范圍 | 187 - 6,000 pg/ml |
其他名稱 | Insulin-like growth factor 1 |
應(yīng)用 | ELISA, Colorimetric detection |
檢測時(shí)間 | 4 hours |
檢測波長 | 450 nm |
適用樣本類型 | For the quantitative determination of human IGF-1 in plasma and serum.? Cited sample types include culture supernatants and milk. |
適用種屬 | Human |
交叉反應(yīng) | Human IGF-1 (100%), human IGF-2 (0.11%) and <0.1%: IGFBP-2, IGFBP-3,? IGFBP-4, mouse IGF-1, mouse IGF-2, HGH, HGF, PDGF-BB, human insulin |
運(yùn)輸溫度 | Blue Ice Not Frozen |
長期保存溫度 | +4°C |
試劑盒組分 | Microtiter plate, Conjugate, Antibody, Assay buffer 10 concentrate, Standard,? Wash buffer concentrate, TMB substrate, Stop solution 2, Neutralizing reagent 2, 2N HCl |
標(biāo)準(zhǔn)曲線示例
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部分產(chǎn)品引用文獻(xiàn)
Dietary lysine affects amino acid metabolism and growth performance, which may not involve the GH/IGF-1 axis, in young growing pigs: M. Shamimul Hasan, et al.; J. Anim. Sci. 98, skaa004 (2020)
Predicting the vulnerability of birds to trophic threat posed by phenological mismatch based on nutritional and physiological status of nestlings: S. Zhang, et al.; Conserv. Physiol. 7, coz096 (2019)
3D patterned stem cell differentiation using thermo-responsive methylcellulose hydrogel molds: W. Lee, et al.; Sci. Rep. 6, 29408 (2016)
Daily overfeeding from protein and/or carbohydrate supplementation for eight weeks in conjunction with resistance training does not improve body composition and muscle strength or increase markers indicative of muscle protein synthesis and myogenesis in resistance-trained males: M. Spillane, et al.; J. Sports Sci. Med. 15, 17 (2016)
Human Cortical Neural Stem Cells Expressing Insulin-Like Growth Factor-I: A Novel Cellular Therapy for Alzheimer's Disease: L.M. McGinley, et al.; Stem Cells Transl. Med. 5, 379 (2016)
Influence of Porcine Plasma Supplementation on Gestating Sow Serum IGF-1 Concentration and Litter Weights: M. Vaughn, et al.; PAWJ 4, 6 (2016)
Normalization of patient-identified plasma biomarkers in SMNΔ7 mice following postnatal SMN restoration: W.D. Arnold, et al.; PLoS One 11, e0167077 (2016)
The growth endocrine axis and inflammatory responses after laparoscopic cholecystectomy: T. Floros, et al.; Hormones 15, 73 (2016)
Changes in maternal body composition and metabolism of dairy goats during pregnancy: D. S. Castagnino, et al.; R. Bras. Zootec. 44, 92 (2015)
Contents of Breast Milk Obtained from Mothers of Preterm and Term Newborn Infants: D. Terek, et al.; JPR 2, 183 (2015)
Residual feed intake and blood variables in young Nellore cattle: C.F. Nascimento, et al.; J. Anim. Sci. 93, 1318 (2015)
Association Between Omentin, Visfatin and Insulin-Like Growth Factor-1 in Women With Metabolic Syndrome: M.T. Goodarzi, et al.; Avicenna J. Med. Biochem. 2, e25184 (2014)
Directed axonal outgrowth using a propagating gradient of IGF‐1: W. Lee, et al.; Adv. Mater. 26, 4936 (2014)
Electrochemical immunosensor for the determination of insulin-like growth factor-1 using electrodes modified with carbon nanotubes–poly(pyrrole propionic acid) hybrids: V. Serafín, et al.; Biosens. Bioelectron. 52, 98 (2014)
Heavy resistance training and peri-exercise ingestion of a multi-ingredient ergogenic nutritional supplement in males: effects on body composition, muscle performance and markers of muscle protein synthesis: M. Spillane, et al.; J. Sports. Sci. Med. 13, 894 (2014)
The effect of bovine colostrum supplementation in older adults during resistance training: W.R. Duff, et al.; Int. J. Sport Nutr. Exerc. Metab. 24, 276 (2014)
Effects of velvet antler with blood on bone in ovariectomized rats: S.H. Tseng, et al.; Molecules 17, 10574 (2012)
Effects of 28 days of resistance exercise while consuming commercially available pre- and post-workout supplements, NO-Shotgun and NO-Synthesize: M. Spillane, et al.; Nutr. Metab. (Lond.) 8, 78 (2011)
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