FABP4 Recombinant Rabbit Monoclonal Antibody [JM10-99]
Overview
Product Name
FABP4 Recombinant Rabbit Monoclonal Antibody [JM10-99]
Antibody Type
Recombinant Rabbit monoclonal Antibody
Immunogen
Synthetic peptide within human FABP4 aa 60-100.
Species Reactivity
Human, Mouse, Rat
Validated Applications
WB, IF-Cell, IHC-Fr
Molecular Weight
Predicted band size: 15 kDa
Positive Control
Mouse white adipose tissue lysate, Mouse brown adipose tissue lysate, Mouse kidney tissue lysate, Rat white adipose tissue lysate, Rat brown adipose tissue lysate, Rat kidney tissue lysate, HAEC.
Conjugation
unconjugated
Clone Number
JM10-99
RRID
Product Features
Form
Liquid
Concentration
Storage Instructions
Shipped at 4℃. Store at +4℃ short term (1-2 weeks). It is recommended to aliquot into single-use upon delivery. Store at -20℃ long term.
Storage Buffer
1*TBS (pH7.4), 0.05% BSA, 40% Glycerol. Preservative: 0.05% Sodium Azide.
Isotype
IgG
Purification Method
Protein A affinity purified.
Application Dilution
-
WB
-
1:5,000
-
IF-Cell
-
1:100-1:500
-
IHC-Fr
-
1:100
Target
Function
Fatty acid-binding proteins, designated FABPs, are a family of homologous, cytoplasmic proteins that are expressed in a highly tissue-specific manner and play an integral role in the balance between lipid and carbohydrate metabolism. FABPs mediate fatty acid (FA) and/or hydrophobic ligand uptake, transport, and targeting within their respective tissues. The mechanisms underlying these actions can give rise to both passive diffusional uptake and protein-mediated transmembrane transport of FAs. FABPs are expressed in adipocytes (A-FABP), brain (B-FABP), epidermis (E-FABP, also designated psoriasis-associated FABP or PA-FABP), muscle and heart (H-FABP, also designated mammary-derived growth inhibitor or MDGI), intestine (I-FABP), liver (L-FABP), myelin (M-FABP) and testis (T-FABP). The human A-FABP gene is organized into 4 exons, maps to chromosome 8q21, and encodes a 132-amino acid protein. A-FABP protein comprises approximately 1% of the total cytosolic protein in human adipose tissue.
Background References
1. Roberts JN et al. Dynamic Surfaces for the Study of Mesenchymal Stem Cell Growth through Adhesion Regulation. ACS Nano 10:6667-79 (2016).
2. Ohyama Y et al. Differential expression of fatty acid-binding proteins and pathological implications in the progression of tongue carcinoma. Mol Clin Oncol 2:19-25 (2014).
Sequence Similarity
Belongs to the calycin superfamily. Fatty-acid binding protein (FABP) family.
Subcellular Location
Nucleus. Cytoplasm.
Synonyms
3T3-L1 lipid-binding protein antibody
422/aP2 antibody
A-FABP antibody
adipocyte antibody
Adipocyte lipid binding protein antibody
Adipocyte lipid-binding protein antibody
Adipocyte protein AP2 antibody
Adipocyte-type fatty acid-binding protein antibody
AFABP antibody
ALBP antibody
Expand3T3-L1 lipid-binding protein antibody
422/aP2 antibody
A-FABP antibody
adipocyte antibody
Adipocyte lipid binding protein antibody
Adipocyte lipid-binding protein antibody
Adipocyte protein AP2 antibody
Adipocyte-type fatty acid-binding protein antibody
AFABP antibody
ALBP antibody
ALBP/Ap2 antibody
aP2 antibody
Epididymis secretory protein Li 104 antibody
FABP antibody
FABP4 antibody
FABP4_HUMAN antibody
Fatty acid binding protein 4 adipocyte antibody
Fatty acid binding protein 4 antibody
Fatty acid binding protein adipocyte antibody
Fatty acid-binding protein 4 antibody
Fatty acid-binding protein antibody
HEL S 104 antibody
Lbpl antibody
Myelin P2 protein homolog antibody
P15 antibody
P2 adipocyte protein antibody
Protein 422 antibody
CollapseImages
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☑ Relative expression (RE)
Western blot analysis of FABP4 on different lysates with Rabbit anti-FABP4 antibody (ET1703-98) at 1/5,000 dilution and competitor's antibody at 1/5,000 dilution.
Lane 1: Mouse white adipose tissue lysate
Lane 2: Mouse brown adipose tissue lysate
Lane 3: Mouse kidney tissue lysate (negative)
Lane 4: Rat white adipose tissue lysate
Lane 5: Rat brown adipose tissue lysate
Lane 6: Rat kidney tissue lysate (negative)
Lysates/proteins at 10 µg/Lane.
Predicted band size: 15 kDa
Observed band size: 15 kDa
Exposure time: 3 minutes 10 seconds; ECL: K1801;
4-20% SDS-PAGE gel.
Proteins were transferred to a PVDF membrane and blocked with 5% NFDM/TBST for 1 hour at room temperature. The primary antibody (ET1703-98) at 1/5,000 dilution and competitor's antibody at 1/5,000 dilution were used in 5% NFDM/TBST at 4℃ overnight. Goat Anti-Rabbit IgG - HRP Secondary Antibody (HA1001) at 1/50,000 dilution was used for 1 hour at room temperature. -
Immunocytochemistry analysis of HAEC cells labeling FABP4 with Rabbit anti-FABP4 antibody (ET1703-98) at 1/500 dilution.
Cells were fixed in 4% paraformaldehyde for 20 minutes at room temperature, permeabilized with 0.1% Triton X-100 in PBS for 5 minutes at room temperature, then blocked with 1% BSA in 10% negative goat serum for 1 hour at room temperature. Cells were then incubated with Rabbit anti-FABP4 antibody (ET1703-98) at 1/500 dilution in 1% BSA in PBST overnight at 4 ℃. Goat Anti-Rabbit IgG H&L (iFluor™ 488, HA1121) was used as the secondary antibody at 1/1,000 dilution. PBS instead of the primary antibody was used as the secondary antibody only control. Nuclear DNA was labelled in blue with DAPI.
Beta tubulin (HA601187, red) was stained at 1/100 dilution overnight at +4℃. Goat Anti-Mouse IgG H&L (iFluor™ 594, HA1126) was used as the secondary antibody at 1/1,000 dilution.n. -
Immunofluorescence analysis of frozen mouse adipose tissue labeling FABP4 with Rabbit anti-FABP4 antibody (ET1703-98).
The tissues were blocked in 3% BSA for 30 minutes at room temperature, washed with PBS, and then probed with the primary antibody (ET1703-98, green) at 1/100 dilution overnight at 4℃, washed with PBS. Goat Anti-Rabbit IgG H&L (Alexa Fluor® 488) was used as the secondary antibody at 1/200 dilution. Nuclei were counterstained with DAPI (blue). Image acquisition was performed with KFBIO KF-FL-400 Scanner.
Please note: All products are "FOR RESEARCH USE ONLY AND ARE NOT INTENDED FOR DIAGNOSTIC OR THERAPEUTIC USE"
Citation
-
Zhaqu compound improves glucose and lipid metabolism in T2DM with MASLD by modulating gut microbiota and PPARγ
Journal: Frontiers in Nutrition
DOI: 10.3389/fnut.2026.1775686
IF: 5.1
Application: WB
Reactivity: Human
Publish date: 2026 Mar
-
Molecular Dynamics of Immortalized Chicken Fibroblasts from Adherent Cultivation to Carrier-Free Suspension Culture
Journal: Food Bioscience
DOI: 10.1016/j.fbio.2025.107716
IF: 5.9
Application: WB
Reactivity: Chicken
Publish date: 2025 Oct
-
Single-nucleus transcriptomics reveal the cytological mechanism of conjugated linoleic acids in regulating intramuscular fat deposition
Journal: eLife
DOI: 10.7554/eLife.99790
IF: 6.4
Application: WB
Reactivity: Pig
Publish date: 2025 Mar
-
Ganoderma lucidum Polysaccharides Alleviate High-Fat Diet-Induced Obesity by Promoting Lipolysis and Inhibiting Inflammation through Lactobacillus johnsonii–Butyrate Axis
Journal: Journal Of Agricultural And Food Chemistry
DOI: 10.1021/acs.jafc.5c12282
IF: 6.2
Application: WB
Reactivity: Mouse
Publish date: 2025 Dec
-
Porcine jejunal-derived extracellular vesicles participate in the regulation of lipid metabolism
Journal: Journal of Animal Science and Biotechnology
DOI: 10.1186/s40104-025-01185-x
IF: 6.3
Application: WB
Reactivity: Pig
Publish date: 2025 Apr
-
snRNA-seq of adipose tissues reveals the potential cellular and molecular mechanisms of cold and disease resistance in Mongolian cattle
Journal: BMC Genomics
DOI:
IF: 3.5
Application: IHC-P
Reactivity: Cow
Publish date: 2024 Oct
-
Bisphenol A and its metabolites promote white adipogenesis and impair brown adipogenesis in vitro
Journal: Toxicology
DOI:
IF: 4.8
Application: WB
Reactivity: Mouse
Publish date: 2024 Nov
-
Jintiange capsule ameliorates glucocorticoid-induced osteonecrosis of the femoral head in rats by regulating the activity and differentiation of BMSCs
Journal: Journal Of Traditional And Complementary Medicine
DOI:
IF: 4.5
Application: WB
Reactivity: Rat
Publish date: 2024 Mar
-
GADD45A regulates subcutaneous fat deposition and lipid metabolism by interacting with Stat1
Journal: BMC Biology
DOI:
IF: 5.4
Application: WB
Reactivity: Mouse
Publish date: 2023 Oct
-
Activation of the PERK-CHOP signaling pathway during endoplasmic reticulum stress contributes to olanzapine-induced dyslipidemia
Journal: Acta Pharmacologica Sinica
DOI:
IF: 8.2
Application: WB
Reactivity: Mouse
Publish date: 2023 Oct
-
Cold exposure alters lipid metabolism of skeletal muscle through HIF-1α-induced mitophagy
Journal: BMC Biology
DOI:
IF: 7.364
Application: WB
Reactivity: Mouse
Publish date: 2023 Feb
-
Conjugated linoleic acids inhibit lipid deposition in subcutaneous adipose tissue and alter lipid profiles in serum of pigs
Journal: Journal Of Animal Science
DOI:
IF: 3.3
Application: WB
Reactivity: Pig
Publish date: 2023 Aug
-
Knockdown of circHIPK3 promotes the osteogenic differentiation of human bone marrow mesenchymal stem cells through activating the autophagy flux
Journal: FASEB Journal
DOI: 10.1096/fj.202200832R
IF: 5.834
Application: WB
Reactivity: Human
Publish date: 2022 Oct
-
CLA improves the lipo-nutritional quality of pork and regulates the gut microbiota in Heigai pigs
Journal: Food & Function
DOI: 10.1039/D2FO02549C
IF: 6.317
Application: WB
Reactivity: Pig
Publish date: 2022 Nov
-
Isotretinoin Impairs the Secretory Function of Meibomian Gland Via the PPARγ Signaling Pathway
Journal: Investigative Ophthalmology & Visual Science
DOI:
IF: 4.799
Application: WB
Reactivity: Rat
Publish date: 2022 Mar
-
Natural Flavonoid Pectolinarigenin Alleviated Hyperuricemic Nephropathy via Suppressing TGFβ/SMAD3 and JAK2/STAT3 Signaling Pathways
Journal: Frontiers In Pharmacology
DOI:
IF: 5.810
Application: WB,IHC-P
Reactivity: Mouse
Publish date: 2022 Jan
-
Genetic and pharmacological inhibition of fatty acid-binding protein 4 alleviated inflammation and early fibrosis after toxin induced kidney injury. International immunopharmacology, 96, 107760. Advance online publication.
Journal: International Immunopharmacology
DOI:
IF: 3.942
Application: WB
Reactivity: Mouse
Publish date: 2021 Jul
-
DNA demethylase ALKBH1 promotes adipogenic differentiation via regulation of HIF-1 signaling
Journal: Journal Of Biological Chemistry
DOI:
IF: 5.154
Application: WB
Reactivity: Human
Publish date: 2021 Jan
-
Genetic inhibition of FABP4 attenuated endoplasmic reticulum stress and mitochondrial dysfunction in rhabdomyolysis-induced acute kidney injury
Journal: Life Sciences
DOI: 10.1016/j.lfs.2021.119023
IF: 5.037
Application: WB
Reactivity: Mouse
Publish date: 2021 Jan
-
Inhibition of Fatty Acid–Binding Protein 4 Attenuated Kidney Fibrosis by Mediating Macrophage-to-Myofibroblast Transition
Journal: Frontiers In Immunology
DOI:
IF: 5.085
Application: WB,IHC-P
Reactivity: Human,Mouse
Publish date: 2020 Sep
-
GADD45α drives brown adipose tissue formation through upregulating PPARγ in mice
Journal: Cell Death & Disease
DOI:
IF: 6.304
Application: WB
Reactivity: Mouse
Publish date: 2020 Jul
-
LKB1 Differently Regulates Adipogenesis in Intramuscular and Subcutaneous Adipocytes through Metabolic and Cytokine-Related Signaling Pathways
Journal: Cells
DOI:
IF: 4.37
Application: WB
Reactivity: Mouse
Publish date: 2020 Dec
-
Pharmacological and genetic inhibition of fatty acid‐binding protein 4 alleviated cisplatin‐induced acute kidney injury
Journal: Journal Of Cellular And Molecular Medicine
DOI:
IF: 4.658
Application: WB
Reactivity: Mouse
Publish date: 2019 Sep
Products with the same target and pathway
FABP4 Recombinant Rabbit Monoclonal Antibody [JM10-99] - BSA and Azide free
Application: WB,IF-Cell,IHC-Fr
Reactivity: Human,Mouse,Rat
Conjugate: unconjugated