Antibody data
- Antibody Data
- Antigen structure
- References [35]
- Comments [0]
- Validations
- Western blot [1]
- Immunocytochemistry [1]
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Validation data
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- Product number
- 20710-1-AP - Provider product page

- Provider
- Proteintech Group
- Proper citation
- Proteintech Cat#20710-1-AP, RRID:AB_10697670
- Product name
- ACSL3 antibody
- Antibody type
- Polyclonal
- Description
- KD/KO validated ACSL3 antibody (Cat. #20710-1-AP) is a rabbit polyclonal antibody that shows reactivity with human, mouse and has been validated for the following applications: IF, WB, ELISA.
- Reactivity
- Human, Mouse
- Host
- Rabbit
- Conjugate
- Unconjugated
- Isotype
- IgG
- Vial size
- 20ul, 150ul
Submitted references Vitamin A and its analogues modulate MUFAs metabolism to improve ferroptosis and aging by direct targeting of ACSL3.
Methotrexate-triggered ferroptosis suppresses oral cancer progression by phosphorylated KEAP1-mediated NRF2 degradation to inhibit SLC7A11/GPX4 signaling pathway.
The UFL1-AKT positive feedback loop promotes breast cancer progression by enhancing lipid synthesis.
NT5DC2 inhibits ferroptosis by stabilizing ACSL3 in bladder cancer.
Multidimensional analysis reveals the potential of ACSL3 as a cancer biomarker: from pan-cancer exploration to functional validation in hepatocellular carcinoma.
Co-administration of berberine and evodiamine: Mitigating evodiamine-induced hepatotoxicity and potentiating colitis treatment.
Integration of transcriptomics and metabolomics to reveal crizotinib-induced liver injury in mice.
Sec14L6 is a phosphoinositide transporter that regulates phosphoinositide homeostasis and biogenesis of lipid droplets.
Targeting YBX1-m5C mediates RNF115 mRNA circularisation and translation to enhance vulnerability of ferroptosis in hepatocellular carcinoma.
Methyltransferase-like 7B participates in bladder cancer via ACSL3 m(6)A modification in a ferroptosis manner.
Attenuated growth factor signaling during cell death initiation sensitizes membranes towards peroxidation.
Endosomal trafficking participates in lipid droplet catabolism to maintain lipid homeostasis.
TMEM120A maintains adipose tissue lipid homeostasis through ER CoA channeling.
A novel SOX6 + melanoma cell subtype promotes early microsatellite invasion in Asian acral melanoma through fatty acid transport disorder.
Resveratrol induces ferroptosis in triple-negative breast cancer through NEDD4L-mediated GPX4 ubiquitination and degradation.
Role of ferroptosis mediated by abnormal membrane structure in DEHP-induced reproductive injury.
ACSL3 is a promising therapeutic target for alleviating anxiety and depression in Alzheimer's disease.
p38 mediated ACSL4 phosphorylation drives stress-induced esophageal squamous cell carcinoma growth through Src myristoylation.
Exploring the ATG9A interactome uncovers interaction with VPS13A.
Crizotinib and its enantiomer suppress ferroptosis by decreasing PE-O-PUFA content.
Integrative analysis of network pharmacology and proteomics reveal the protective effect of Xiaoqinglong Decotion on neutrophilic asthma.
Anti-apoptotic MCL-1 promotes long-chain fatty acid oxidation through interaction with ACSL1.
Blockage of EGFR/AKT and mevalonate pathways synergize the antitumor effect of temozolomide by reprogramming energy metabolism in glioblastoma.
One amino acid drives the lipid droplet targeting sequence of a new noncoding RNA-encoded protein to mitochondrion.
Construction and validation of a novel ferroptosis-related prognostic signature for lung adenocarcinoma.
ACSL3 is a potential prognostic biomarker for immune infiltration in clear cell renal cell carcinoma.
NAT10: An RNA cytidine transferase regulates fatty acid metabolism in cancer cells.
Inhibition of Fatty Acid Translocase (FAT/CD36) Palmitoylation Enhances Hepatic Fatty Acid β-Oxidation by Increasing Its Localization to Mitochondria and Interaction with Long-Chain Acyl-CoA Synthetase 1.
Ionic Liquid-Based Extraction System for In-Depth Analysis of Membrane Protein Complexes.
N(6)-methyladenosine (m(6)A) in 18S rRNA promotes fatty acid metabolism and oncogenic transformation.
Changes of lipid profiles in human umbilical vein endothelial cells exposed to zirconia nanoparticles with or without the presence of free fatty acids.
Rab18 binds PLIN2 and ACSL3 to mediate lipid droplet dynamics.
Transcriptomic analysis suggested the involvement of impaired lipid droplet biogenesis in graphene oxide-induced cytotoxicity in human umbilical vein endothelial cells.
Integrated Metabolomics and Lipidomics Analyses Reveal Metabolic Reprogramming in Human Glioma with IDH1 Mutation.
Morphologically and Functionally Distinct Lipid Droplet Subpopulations.
Luo N, Xiao Y, Zhai Y, Li J, Lv L, Yin H, Lin F, Wan B, Zhang K, Hu J, Liu J, Dang Y, He Y, Zhao Y, Zhang Z, Nie S, Yuan HX
Acta pharmaceutica Sinica. B 2026 Mar;16(3):1510-1529
Acta pharmaceutica Sinica. B 2026 Mar;16(3):1510-1529
Methotrexate-triggered ferroptosis suppresses oral cancer progression by phosphorylated KEAP1-mediated NRF2 degradation to inhibit SLC7A11/GPX4 signaling pathway.
Yu C, Zhang T, Yuan J, Su Y, Zhang H, Xu L, Li X, Cui J, Xu R, Zhou Y, Huang H, Zhou X, Zhou Y, Zhang E
Cancer cell international 2026 Jan 6;26(1):64
Cancer cell international 2026 Jan 6;26(1):64
The UFL1-AKT positive feedback loop promotes breast cancer progression by enhancing lipid synthesis.
Meng F, Du Y, Liang J, Li H, Wang J, Tang K, Kong R, Sun H, Yin T, Qin J, Yang X, Shan C, Liu M, Yang G, Zhang J, Wang Y, Zhou J, Chen Y
Nature communications 2026 Jan 20;17(1):614
Nature communications 2026 Jan 20;17(1):614
NT5DC2 inhibits ferroptosis by stabilizing ACSL3 in bladder cancer.
Niu S, Yang P, Yao Y, Tang X, Yang J, Zhang F, Chen K, Jiang C, Zhou Y, Bai W, Li L, Zhou Y, Lv XB
Cell death discovery 2026 Apr 14;12(1)
Cell death discovery 2026 Apr 14;12(1)
Multidimensional analysis reveals the potential of ACSL3 as a cancer biomarker: from pan-cancer exploration to functional validation in hepatocellular carcinoma.
Niu Q, Mou Y, Yao Y, Dong H, Wang K, Zeng Z, Tao Y, Gong X, Li H
Clinical and experimental medicine 2025 Oct 31;25(1):351
Clinical and experimental medicine 2025 Oct 31;25(1):351
Co-administration of berberine and evodiamine: Mitigating evodiamine-induced hepatotoxicity and potentiating colitis treatment.
Tao X, Gao Y, Jin Z, Lu S, Li Z, Guo S, Fan Q, Li J, Qiao C, Lei H, Zhang Z, Zhao C, Wu J
Phytomedicine : international journal of phytotherapy and phytopharmacology 2025 Nov;147:157185
Phytomedicine : international journal of phytotherapy and phytopharmacology 2025 Nov;147:157185
Integration of transcriptomics and metabolomics to reveal crizotinib-induced liver injury in mice.
Chen H, Liu H, Wei J, Liu R, Tian X
European journal of pharmacology 2025 Nov 5;1006:178096
European journal of pharmacology 2025 Nov 5;1006:178096
Sec14L6 is a phosphoinositide transporter that regulates phosphoinositide homeostasis and biogenesis of lipid droplets.
Zhou T, Xiong J, Hu X, Du Y, Shi A, Chang W, Qin J, Deng L, Ji WK
Nature communications 2025 Nov 26;16(1):10518
Nature communications 2025 Nov 26;16(1):10518
Targeting YBX1-m5C mediates RNF115 mRNA circularisation and translation to enhance vulnerability of ferroptosis in hepatocellular carcinoma.
Li O, An K, Wang H, Li X, Wang Y, Huang L, Du Y, Qin N, Dong J, Wei J, Sun R, Shi Y, Guo Y, Sun X, Yang Y, Yang YG, Kan Q, Tian X
Clinical and translational medicine 2025 Mar;15(3):e70270
Clinical and translational medicine 2025 Mar;15(3):e70270
Methyltransferase-like 7B participates in bladder cancer via ACSL3 m(6)A modification in a ferroptosis manner.
He J, Dong C, Song X, Qiu Z, Zhang H, Jiang Y, Liu T, Man X
Biology direct 2025 Jan 20;20(1):9
Biology direct 2025 Jan 20;20(1):9
Attenuated growth factor signaling during cell death initiation sensitizes membranes towards peroxidation.
Gollowitzer A, Pein H, Rao Z, Waltl L, Bereuter L, Loeser K, Meyer T, Jafari V, Witt F, Winkler R, Su F, Große S, Thürmer M, Grander J, Hotze M, Harder S, Espada L, Magnutzki A, Gstir R, Weinigel C, Rummler S, Bonn G, Pachmayr J, Ermolaeva M, Harayama T, Schlüter H, Kosan C, Heller R, Thedieck K, Schmitt M, Shimizu T, Popp J, Shindou H, Kwiatkowski M, Koeberle A
Nature communications 2025 Feb 25;16(1):1774
Nature communications 2025 Feb 25;16(1):1774
Endosomal trafficking participates in lipid droplet catabolism to maintain lipid homeostasis.
Peng W, Chen S, Ma J, Wei W, Lin N, Xing J, Guo W, Li H, Zhang L, Chan K, Yen A, Zhu G, Yue J
Nature communications 2025 Feb 24;16(1):1917
Nature communications 2025 Feb 24;16(1):1917
TMEM120A maintains adipose tissue lipid homeostasis through ER CoA channeling.
Cho YK, Lee J, Jeong YL, Shim M, Mai XL, Seomoon C, Jung CW, Choi YH, Namgoong S, Jung YS, Kwon SW, Lee J, Seong JK, Park S, Mottillo EP, Granneman JG, Lee DK, Kim JK, Lee YH
Nature communications 2025 Dec 21;17(1):1113
Nature communications 2025 Dec 21;17(1):1113
A novel SOX6 + melanoma cell subtype promotes early microsatellite invasion in Asian acral melanoma through fatty acid transport disorder.
Lv C, Chen K, Wang T, Jiang J, Hu G, Gu J, Liu T, Wang S, Dai H, Wang Y
Journal of experimental & clinical cancer research : CR 2025 Aug 27;44(1):254
Journal of experimental & clinical cancer research : CR 2025 Aug 27;44(1):254
Resveratrol induces ferroptosis in triple-negative breast cancer through NEDD4L-mediated GPX4 ubiquitination and degradation.
Zhang E, Wang Y, Zhang H, Li X, Su Y, Cui J, Xu R, Mao X, Sang M, Lin Z, Zhou X
Free radical biology & medicine 2025 Aug 1;235:231-247
Free radical biology & medicine 2025 Aug 1;235:231-247
Role of ferroptosis mediated by abnormal membrane structure in DEHP-induced reproductive injury.
Deng W, Zhao J, Wang X, Li D, Wang M, Zheng X, Wang R, Guo Q, Zhao P, Yan H, Shen L, Long C, Wei G, Wu S
Free radical biology & medicine 2025 Aug 1;235:150-161
Free radical biology & medicine 2025 Aug 1;235:150-161
ACSL3 is a promising therapeutic target for alleviating anxiety and depression in Alzheimer's disease.
Wu CY, Zhang Y, Howard P, Huang F, Lee RH
GeroScience 2025 Apr;47(2):2383-2397
GeroScience 2025 Apr;47(2):2383-2397
p38 mediated ACSL4 phosphorylation drives stress-induced esophageal squamous cell carcinoma growth through Src myristoylation.
Yuan Q, Shi Y, Wang J, Xie Y, Li X, Zhao J, Jiang Y, Qiao Y, Guo Y, Zhang C, Lu J, Zhao T, Dong Z, Li P, Dong Z, Liu K
Nature communications 2025 Apr 7;16(1):3319
Nature communications 2025 Apr 7;16(1):3319
Exploring the ATG9A interactome uncovers interaction with VPS13A.
van Vliet AR, Jefferies HBJ, Faull PA, Chadwick J, Ibrahim F, Skehel MJ, Tooze SA
Journal of cell science 2024 Feb 15;137(4)
Journal of cell science 2024 Feb 15;137(4)
Crizotinib and its enantiomer suppress ferroptosis by decreasing PE-O-PUFA content.
Cen SY, Lin F, Li X, Hu Y, Liu JP, Xue Z, Gao Y, Sun YP, Zhu S, Dang Y, Zhao Y, Yuan HX
Cell death discovery 2024 Aug 12;10(1):360
Cell death discovery 2024 Aug 12;10(1):360
Integrative analysis of network pharmacology and proteomics reveal the protective effect of Xiaoqinglong Decotion on neutrophilic asthma.
Liao G, Yan Q, Zhang M, Zhang X, Yang J, Huang H, Liu X, Jiang Y, Gong J, Zhan S, Li D, Huang X
Journal of ethnopharmacology 2024 Aug 10;330:118102
Journal of ethnopharmacology 2024 Aug 10;330:118102
Anti-apoptotic MCL-1 promotes long-chain fatty acid oxidation through interaction with ACSL1.
Wright T, Turnis ME, Grace CR, Li X, Brakefield LA, Wang YD, Xu H, Kaminska E, Climer LK, Mukiza TO, Chang CL, Moldoveanu T, Opferman JT
Molecular cell 2024 Apr 4;84(7):1338-1353.e8
Molecular cell 2024 Apr 4;84(7):1338-1353.e8
Blockage of EGFR/AKT and mevalonate pathways synergize the antitumor effect of temozolomide by reprogramming energy metabolism in glioblastoma.
Cui X, Zhao J, Li G, Yang C, Yang S, Zhan Q, Zhou J, Wang Y, Xiao M, Hong B, Yi K, Tong F, Tan Y, Wang H, Wang Q, Jiang T, Fang C, Kang C
Cancer communications (London, England) 2023 Dec;43(12):1326-1353
Cancer communications (London, England) 2023 Dec;43(12):1326-1353
One amino acid drives the lipid droplet targeting sequence of a new noncoding RNA-encoded protein to mitochondrion.
Yuan Q, Zheng K, Huang T, Zhi Z, Xu Y, Cui L, Liu P, Zhang S
Proteomics 2023 Aug;23(15):e2200301
Proteomics 2023 Aug;23(15):e2200301
Construction and validation of a novel ferroptosis-related prognostic signature for lung adenocarcinoma.
Yang L, Fan X, Zhou C, Wang Z, Cui Z, Wu X, Xu Z, Yang J, Zhang X
Translational lung cancer research 2023 Aug 30;12(8):1766-1781
Translational lung cancer research 2023 Aug 30;12(8):1766-1781
ACSL3 is a potential prognostic biomarker for immune infiltration in clear cell renal cell carcinoma.
Zhang C, Hu H, Huang R, Huang G, Xi X
Frontiers in surgery 2022;9:909854
Frontiers in surgery 2022;9:909854
NAT10: An RNA cytidine transferase regulates fatty acid metabolism in cancer cells.
Dalhat MH, Mohammed MRS, Alkhatabi HA, Rehan M, Ahmad A, Choudhry H, Khan MI
Clinical and translational medicine 2022 Sep;12(9):e1045
Clinical and translational medicine 2022 Sep;12(9):e1045
Inhibition of Fatty Acid Translocase (FAT/CD36) Palmitoylation Enhances Hepatic Fatty Acid β-Oxidation by Increasing Its Localization to Mitochondria and Interaction with Long-Chain Acyl-CoA Synthetase 1.
Zeng S, Wu F, Chen M, Li Y, You M, Zhang Y, Yang P, Wei L, Ruan XZ, Zhao L, Chen Y
Antioxidants & redox signaling 2022 Jun;36(16-18):1081-1100
Antioxidants & redox signaling 2022 Jun;36(16-18):1081-1100
Ionic Liquid-Based Extraction System for In-Depth Analysis of Membrane Protein Complexes.
Chu H, Zhao Q, Liu J, Yang K, Wang Y, Liu J, Zhang K, Zhao B, He H, Zheng Y, Zhong S, Liang Z, Zhang L, Zhang Y
Analytical chemistry 2022 Jan 18;94(2):758-767
Analytical chemistry 2022 Jan 18;94(2):758-767
N(6)-methyladenosine (m(6)A) in 18S rRNA promotes fatty acid metabolism and oncogenic transformation.
Peng H, Chen B, Wei W, Guo S, Han H, Yang C, Ma J, Wang L, Peng S, Kuang M, Lin S
Nature metabolism 2022 Aug;4(8):1041-1054
Nature metabolism 2022 Aug;4(8):1041-1054
Changes of lipid profiles in human umbilical vein endothelial cells exposed to zirconia nanoparticles with or without the presence of free fatty acids.
Cheng X, Guo H, Xian Y, Xie X
Journal of applied toxicology : JAT 2021 May;41(5):765-774
Journal of applied toxicology : JAT 2021 May;41(5):765-774
Rab18 binds PLIN2 and ACSL3 to mediate lipid droplet dynamics.
Deng Y, Zhou C, Mirza AH, Bamigbade AT, Zhang S, Xu S, Liu P
Biochimica et biophysica acta. Molecular and cell biology of lipids 2021 Jul;1866(7):158923
Biochimica et biophysica acta. Molecular and cell biology of lipids 2021 Jul;1866(7):158923
Transcriptomic analysis suggested the involvement of impaired lipid droplet biogenesis in graphene oxide-induced cytotoxicity in human umbilical vein endothelial cells.
Luo Y, Wang X, Cao Y
Chemico-biological interactions 2021 Jan 5;333:109325
Chemico-biological interactions 2021 Jan 5;333:109325
Integrated Metabolomics and Lipidomics Analyses Reveal Metabolic Reprogramming in Human Glioma with IDH1 Mutation.
Zhou L, Wang Z, Hu C, Zhang C, Kovatcheva-Datchary P, Yu D, Liu S, Ren F, Wang X, Li Y, Hou X, Piao H, Lu X, Zhang Y, Xu G
Journal of proteome research 2019 Mar 1;18(3):960-969
Journal of proteome research 2019 Mar 1;18(3):960-969
Morphologically and Functionally Distinct Lipid Droplet Subpopulations.
Zhang S, Wang Y, Cui L, Deng Y, Xu S, Yu J, Cichello S, Serrero G, Ying Y, Liu P
Scientific reports 2016 Jul 8;6:29539
Scientific reports 2016 Jul 8;6:29539
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Supportive validation
- Submitted by
- Proteintech Group (provider)
- Main image

- Experimental details
- mouse kidney tissue were subjected to SDS PAGE followed by western blot with 20710-1-AP(ACSL3 antibody) at dilution of 1:300
- Sample type
- tissue
Supportive validation
- Submitted by
- Proteintech Group (provider)
- Main image

- Experimental details
- Immunofluorescent analysis of HepG2 cells, using ACSL3 antibody 20710-1-AP at 1:25 dilution and Rhodamine-labeled goat anti-rabbit IgG (red).
- Sample type
- cell line