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中文名稱:猴子瘦素(LEP)酶聯免疫試劑盒
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貨號:CSB-E14936Mk
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規格:96T/48T
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價格:¥4200/¥3000
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其他:
產品詳情
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產品描述:猴子瘦素(LEP)酶聯免疫試劑盒(CSB-E14936Mk)為競爭法ELISA試劑盒,定量檢測血清、血漿、組織勻漿樣本中的LEP含量。LEP即瘦素,是脂肪組織分泌的蛋白類激素。它能作用于下丘腦的特異性受體,調節能量代謝和食欲,維持能量平衡。目前,圍繞LEP在肥胖、糖尿病等代謝疾病中的作用機制展開大量研究,為相關疾病治療提供潛在靶點。試劑盒檢測范圍為3.125 ng/mL- 50 ng/mL,可廣泛應用于靈長類動物模型中瘦素相關的基礎研究,例如探究能量代謝調控機制、評估營養干預對脂肪因子表達的影響,或解析肥胖相關疾病的分子通路。本品僅用于科研,不用于臨床診斷,產品具體參數及操作步驟詳見產品說明書。
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別名:LEP ELISA Kit; OB ELISA Kit; Leptin ELISA Kit; Obesity factor ELISA Kit
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縮寫:
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Uniprot No.:
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種屬:Monkey
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樣本類型:serum, plasma, tissue homogenates
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檢測范圍:3.125 ng/mL- 50 ng/mL
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靈敏度:3.125 ng/mL
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反應時間:1-5h
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樣本體積:50-100ul
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檢測波長:450 nm
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研究領域:Metabolism
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測定原理:quantitative
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測定方法:Competitive
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精密度:
Intra-assay Precision (Precision within an assay): CV%<15% Three samples of known concentration were tested twenty times on one plate to assess. Inter-assay Precision (Precision between assays): CV%<15% Three samples of known concentration were tested in twenty assays to assess. -
標準曲線:
These standard curves are provided for demonstration only. A standard curve should be generated for each set of samples assayed. ng/ml OD1 OD2 Average 50 0.155 0.151 0.153 25 0.316 0.309 0.313 12.5 0.491 0.502 0.497 6.25 0.964 0.912 0.938 3.125 1.807 1.711 1.759 -
數據處理:
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貨期:3-5 working days
引用文獻
- Lipocalin-2 is an anorexigenic signal in primates PI Petropoulou,/,2020
- Glucocorticoid treatment facilitates development of a metabolic syndrome in ovariectomized Macaca Mulatta fed a high fat diet. Li L.et al,Steroids,2017
相關產品
靶點詳情
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功能:Key player in the regulation of energy balance and body weight control. Once released into the circulation, has central and peripheral effects by binding LEPR, found in many tissues, which results in the activation of several major signaling pathways. In the hypothalamus, acts as an appetite-regulating factor that induces a decrease in food intake and an increase in energy consumption by inducing anorexinogenic factors and suppressing orexigenic neuropeptides, also regulates bone mass and secretion of hypothalamo-pituitary-adrenal hormones. In the periphery, increases basal metabolism, influences reproductive function, regulates pancreatic beta-cell function and insulin secretion, is pro-angiogenic for endothelial cell and affects innate and adaptive immunity. In the arcuate nucleus of the hypothalamus, activates by depolarization POMC neurons inducing FOS and SOCS3 expression to release anorexigenic peptides and inhibits by hyperpolarization NPY neurons inducing SOCS3 with a consequent reduction on release of orexigenic peptides. In addition to its known satiety inducing effect, has a modulatory role in nutrient absorption. In the intestine, reduces glucose absorption by enterocytes by activating PKC and leading to a sequential activation of p38, PI3K and ERK signaling pathways which exerts an inhibitory effect on glucose absorption. Acts as a growth factor on certain tissues, through the activation of different signaling pathways increases expression of genes involved in cell cycle regulation such as CCND1, via JAK2-STAT3 pathway, or VEGFA, via MAPK1/3 and PI3K-AKT1 pathways. May also play an apoptotic role via JAK2-STAT3 pathway and up-regulation of BIRC5 expression. Pro-angiogenic, has mitogenic activity on vascular endothelial cells and plays a role in matrix remodeling by regulating the expression of matrix metalloproteinases (MMPs) and tissue inhibitors of metalloproteinases (TIMPs). In innate immunity, modulates the activity and function of neutrophils by increasing chemotaxis and the secretion of oxygen radicals. Increases phagocytosis by macrophages and enhances secretion of pro-inflammatory mediators. Increases cytotoxic ability of NK cells. Plays a pro-inflammatory role, in synergy with IL1B, by inducing NOS2 wich promotes the production of IL6, IL8 and Prostaglandin E2, through a signaling pathway that involves JAK2, PI3K, MAP2K1/MEK1 and MAPK14/p38. In adaptive immunity, promotes the switch of memory T-cells towards T helper-1 cell immune responses. Increases CD4(+)CD25(-) T-cell proliferation and reduces autophagy during TCR (T-cell receptor) stimulation, through MTOR signaling pathway activation and BCL2 up-regulation.
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基因功能參考文獻:
- results do not support a role for reduced leptin secretion in anovulation induced by dietary restriction PMID: 17106186
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亞細胞定位:Secreted.
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蛋白家族:Leptin family
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數據庫鏈接:
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