产品: HAMP 抗体
货号: DF6492
描述: Rabbit polyclonal antibody to HAMP
应用: WB IHC
文献验证: WB
反应: Human, Mouse, Rat
预测: Dog
蛋白号: P81172
RRID: AB_2838454

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 50ul RMB¥ 1250 现货
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 200ul RMB¥ 3000 现货

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产品描述

来源:
Rabbit
应用:
WB 1:500-1:2000, IHC 1:50-1:200
*The optimal dilutions should be determined by the end user. For optimal experimental results, antibody reuse is not recommended.
*Tips:

WB: 适用于变性蛋白样本的免疫印迹检测. IHC: 适用于组织样本的石蜡(IHC-p)或冰冻(IHC-f)切片样本的免疫组化/荧光检测. IF/ICC: 适用于细胞样本的荧光检测. ELISA(peptide): 适用于抗原肽的ELISA检测.

反应:
Human, Mouse, Rat
克隆:
Polyclonal
特异性:
HAMP Antibody detects endogenous levels of total HAMP.
RRID:
AB_2838454
引用格式: Affinity Biosciences Cat# DF6492, RRID:AB_2838454.
偶联:
Unconjugated.
纯化:
The antiserum was purified by peptide affinity chromatography using SulfoLink™ Coupling Resin (Thermo Fisher Scientific).
保存:
Rabbit IgG in phosphate buffered saline , pH 7.4, 150mM NaCl, 0.02% sodium azide and 50% glycerol. Store at -20 °C. Stable for 12 months from date of receipt.
别名:

展开/折叠

Hamp; HEPC; HEPC_HUMAN; Hepc20; Hepc25; Hepcidin-20; HFE2B; LEAP-1; LEAP1; Liver-expressed antimicrobial peptide 1; PLTR; Putative liver tumor regressor;

抗原和靶标

免疫原:

A synthesized peptide derived from human HAMP, corresponding to a region within the internal amino acids.

基因/基因ID:
描述:
The product encoded by this gene is involved in the maintenance of iron homeostasis, and it is necessary for the regulation of iron storage in macrophages, and for intestinal iron absorption. The preproprotein is post-translationally cleaved into mature peptides of 20, 22 and 25 amino acids, and these active peptides are rich in cysteines, which form intramolecular bonds that stabilize their beta-sheet structures. These peptides exhibit antimicrobial activity. Mutations in this gene cause hemochromatosis type 2B, also known as juvenile hemochromatosis, a disease caused by severe iron overload that results in cardiomyopathy, cirrhosis, and endocrine failure. [provided by RefSeq, Jul 2008]

文献引用

1). Liraglutide and GLP-1(9-37) alleviated hepatic ischemia-reperfusion injury by inhibiting ferroptosis via GSK3β/Nrf2 pathway and SMAD159/Hepcidin/FTH pathway. Redox biology, 2024 (PubMed: 39693850) [IF=11.4]

2). Quercetin alleviates LPS/iE-DAP-induced liver injury by suppressing ferroptosis via regulating ferritinophagy and intracellular iron efflux. Redox biology, 2025 (PubMed: 39986118) [IF=10.7]

Application: WB    Species: Mouse    Sample:

Fig. 7. Iron efflux blockade contributed to LPS/iE-DAP-induced ferroptotic cell death. (A) Gene expression of HAMP and (B–C) protein expression of DMT1, TFR, FPN, and hepcidin in hepatocytes treated with or without LPS/iE-DAP; n = 6 per group. (D) Cellular Fe2+ content. (E–F) Protein expression of FPN, hepcidin, ACSL4, ALOX15, and GPX4 in indicated groups; n = 3 per group. (G–I) Fluorescence images of lipid ROS observed by confocal microscope (Scale bar = 100 μm) and proportion of lipid ROS positive cells analyzed by flow cytometer; n = 3 per group. (J) Cell viability, (K) MDA content, and (L) GSH content in different groups; n = 4–6 per group. (M) Coimmunoprecipitation and ubiquitination analysis of FPN in hepatocytes; n = 3 per group. Data are presented as mean ± SEM.

3). OTUB1-SLC7A11 Axis Mediates 4-Octyl Itaconate Protection Against Acetaminophen-Induced Ferroptotic Liver Injury. Antioxidants (Basel, Switzerland), 2025 (PubMed: 40563331) [IF=7.0]

4). Huperzine A-Liposomes Efficiently Improve Neural Injury in the Hippocampus of Mice with Chronic Intermittent Hypoxia. International journal of nanomedicine, 2023 (PubMed: 36824413) [IF=6.6]

Application: IF/ICC    Species: Mouse    Sample: hippocampus

Figure 5 Iron levels in the hippocampus of CIH mice. (A) Perls’ staining in the hippocampus (Scale bar = 25 µm). (B) The mean density of Fe content as shown in panel A (n = 3). (C) The total iron content in the hippocampus tissue measured by ICP‒MS (n = 3). (D) The λ absorption of HuA with Fe2+ and Fe3+, respectively. (E) The expression of hepcidin mRNA (n = 5). (F) The sections were labelled for DAPI (blue), GFAP (green), and hepcidin (red) (scale bar = 25 μm, n = 3). (G) The expression of TfR1 proteins measured by Western blot (n = 6). (H) The FTL proteins measured by Western blot (n = 6). (I) The sections were labelled for DAPI (blue), NeuN (green), and FTL (red) (scale bar = 25 μm, n = 3). The results are presented as the mean ± SEM. Normal control group (Con), Chronic intermittent hypoxia group (CIH), Huperzine A-Liposomes group (HuA-LIP), Huperzine A group (HuA). *p < 0.05, **p < 0.01 vs Con group. #p < 0.05, ##p < 0.01 vs CIH group. $p < 0.05 vs HuA-LIP group.

5). Cardiomyocyte-specific overexpression of FPN1 diminishes cardiac hypertrophy induced by chronic intermittent hypoxia. Journal of cellular and molecular medicine, 2024 (PubMed: 39054575) [IF=5.3]

Application: IF/ICC    Species: Mouse    Sample: heart tissue

FIGURE 7 Hepcidin-FPN1 involved in the iron deposition during CIH. (A) The hepcidin mRNA levels in heart tissue (n = 6). (B) The immunohistochemical staining of hepcidin protein (scale bar = 75 μm, n = 3). (C) The mean density of hepcidin content is shown in panel B (n = 3). (D) The immunofluorescence double label staining of FPN1 and hepcidin in heart tissue (scale bar = 25 μm, n = 3). The results are presented as the mean ± SEM. **p 

6). Banxia-Houpu decoction inhibits iron overload and chronic intermittent hypoxia-induced neuroinflammation in mice. Journal of ethnopharmacology, 2024 (PubMed: 37625604) [IF=4.8]

7). High Hepcidin Levels Promote Abnormal Iron Metabolism and Ferroptosis in Chronic Atrophic Gastritis. Biomedicines, 2023 (PubMed: 37760781) [IF=4.7]

Application: IF/ICC    Species: Human    Sample:

Figure 4 Hepcidin levels were elevated in CAG gastric tissue. (A) Hepcidin immunofluorescence staining in the gastric tissue of patients (Scale bar = 100 or 50 μm, n = 3). The bottom images were the larger images of the frame in the top images, and the arrows indicate the location of hepcidin-positive cells. (B) The mean density of hepcidin-positive cells in Panel (A). (C) Double immunofluorescence labeling of H+-K+-ATPase (green color) and hepcidin (red color) in the gastric tissue of CAG rats (Scale bar = 500 or 50 μm, n = 3). The right images (marked 1, 2) were the larger images of the frame in the Merge images. The data are presented as the mean ± SEM. ** p < 0.01 vs. NAG or Con groups. NAG: non-atrophic gastritis patients; CAG: chronic atrophic gastritis patients or rats; Con: the control group of rats.

8). Ferroptosis is involved in focal segmental glomerulosclerosis in rats. Scientific reports, 2023 (PubMed: 38097813) [IF=3.8]

Application: WB    Species: Rat    Sample:

Figure 4 FSGS rats showed iron metabolism disorder. (A) Prussian blue staining (scale bar: 100 μm). (B) Fe2+ results. (C) Western blot analysis of hepcidin, ferroportin and TFR. (D) Relative expression of hepcidin. (E) Relative expression of ferroportin. (F) Relative expression of TFR. *P 

9). Short-term effects of Subacute ruminal acidosis on ferroptosis and iron metabolism in the livers of lactating sheep fed a high-grain diet. Journal of dairy science, 2025 (PubMed: 39890062) [IF=3.7]

Application: WB    Species: sheep    Sample:

Figure 5. Expression of iron transport-related gene and proteins. (A) Western blot analysis and quantitative analysis of (B) DMT1, (C) TFR, (D) Nu-SMAD1/5/8, (E) FPN, and (F) Hepcidin. (G) The mRNA relative expression of HAMP. (H) Iron deposits were assessed by Prussian blue staining; red arrows indicate iron deposits. Scale, 200 μm. LG = low-grain; HG = high-grain; DMT1 = divalent metal transporter; FPN = ferroportin; HAMP = hepcidin antimicrobial peptide; Nu-SMAD1/5/8 = nucleus-mothers against decapentaplegic homolog 1/5/8; TFRC = transferrin receptor. Values shown are mean ± SEM. Dots and squares represent the value of each sample. *P < 0.05, and **P < 0.01; ns = not significant.

10). Loss of Lipocalin2 confers cisplatin vulnerability through modulating NF-ĸB mediated ferroptosis via ferroportin. American journal of cancer research, 2024 (PubMed: 38859845) [IF=3.6]

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