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AB23680

Anti-CD36 抗体 [JC63.1]

Anti-CD36 antibody [JC63.1]

4

(1 Review)

|

(45 Publications)

Anti-CD36 antibody [JC63.1] (ab23680) is a mouse monoclonal antibody detecting CD36 in Flow Cytometry. Suitable for Mouse.

- Over 40 publications
- Trusted since 2005

查看别名

CD36, Platelet glycoprotein 4, Glycoprotein IIIb, PAS IV, PAS-4, Platelet glycoprotein IV, GPIIIB, GPIV, Cd36

1 Images
Flow Cytometry - Anti-CD36 antibody [JC63.1] (AB23680)
  • Flow Cyt

Supplier Data

Flow Cytometry - Anti-CD36 antibody [JC63.1] (AB23680)

ab23680 staining the CD36 in RAW 264.7 cells by Flow Cytometry.

关键信息

宿主种属

Mouse

克隆

Monoclonal

克隆号

JC63.1

亚型

IgA

不含载体蛋白

No

反应种属

Mouse

应用

Flow Cyt

applications

免疫原

Recombinant Full Length Protein corresponding to Mouse Cd36.

Q08857

反应性数据

{ "title": "Reactivity Data", "filters": { "stats": ["", "Species", "Dilution Info", "Notes"], "tabs": { "all-applications": {"fullname" : "All Applications", "shortname": "All Applications"}, "FlowCyt" : {"fullname" : "Flow Cytometry", "shortname":"Flow Cyt"} }, "product-promise": { "all": "all", "testedAndGuaranteed": "tested", "guaranteed": "expected", "predicted": "predicted", "notRecommended": "not-recommended" } }, "values": { "Mouse": { "FlowCyt-species-checked": "testedAndGuaranteed", "FlowCyt-species-dilution-info": "0.5 µg/mL", "FlowCyt-species-notes": "<p><a href='/products/primary-antibodies/mouse-iga-kappa-s107-isotype-control-ab37322'>ab37322</a> - Mouse monoclonal IgA, is suitable for use as an isotype control with this antibody.</p>" } } }

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为什么推荐这个?

我们推荐这个产品,因为它经常被用于相同的实验或相关的研究。

我们建议您务必查阅产品说明书,以确认其是否符合您的实验需求;若有疑问,也可联系我们的技术团队获取协助。

产品详情

What is this antibody validated in?
Anti-CD36 antibody [JC63.1] (ab23680) is a mouse monoclonal antibody and is validated for use in Flow Cytometry (Flow Cyt) in Mouse samples.

Trusted by the scientific community
Anti-CD36 [JC63.1] (ab23680) was first used in a scientific publication in 2005 and has been cited over 40 times in peer-reviewed journals.

性能和储存信息

形式
Liquid
纯化工艺
Affinity purification Protein L
存储溶液
pH: 7.2 Preservative: 0.02% Sodium azide Constituents: PBS, 50% Glycerol (glycerin, glycerine)
运输条件
Blue Ice
推荐的短期储存条件
+4°C
推荐的长期储存条件
-20°C
分装信息
Upon delivery aliquot
储存信息
Avoid freeze / thaw cycle

产品实验方案

For this product, it's our understanding that no specific protocols are required. You can visit:

靶点信息

Multifunctional glycoprotein that acts as a receptor for a broad range of ligands. Ligands can be of proteinaceous nature like thrombospondin, fibronectin, collagen or amyloid-beta as well as of lipidic nature such as oxidized low-density lipoprotein (oxLDL), anionic phospholipids, long-chain fatty acids and bacterial diacylated lipopeptides (PubMed : 7685021). They are generally multivalent and can therefore engage multiple receptors simultaneously, the resulting formation of CD36 clusters initiates signal transduction and internalization of receptor-ligand complexes. The dependency on coreceptor signaling is strongly ligand specific. Cellular responses to these ligands are involved in angiogenesis, inflammatory response, fatty acid metabolism, taste and dietary fat processing in the intestine (Probable) (PubMed : 19847289, PubMed : 20037584, PubMed : 23395392). Binds long-chain fatty acids and facilitates their transport into cells, thus participating in muscle lipid utilization, adipose energy storage, and gut fat absorption (PubMed : 30605677). Mechanistically, binding of fatty acids activates downstream kinase LYN, which phosphorylates the palmitoyltransferase ZDHHC5 and inactivates it, resulting in the subsequent depalmitoylation of CD36 and caveolar endocytosis (By similarity). In the small intestine, plays a role in proximal absorption of dietary fatty acid and cholesterol for optimal chylomicron formation, possibly through the activation of MAPK1/3 (ERK1/2) signaling pathway (By similarity) (PubMed : 17507371, PubMed : 18753675, PubMed : 21610069). Involved in oral fat perception and preferences (PubMed : 16276419). Detection into the tongue of long-chain fatty acids leads to a rapid and sustained rise in flux and protein content of pancreatobiliary secretions (By similarity) (PubMed : 16276419). In taste receptor cells, mediates the induction of an increase in intracellular calcium levels by long-chain fatty acids, leading to the activation of the gustatory neurons in the nucleus of the solitary tract (PubMed : 18162488). Important factor in both ventromedial hypothalamus neuronal sensing of long-chain fatty acid and the regulation of energy and glucose homeostasis (By similarity) (PubMed : 23557700). Receptor for thrombospondins, THBS1 and THBS2, mediating their antiangiogenic effects (PubMed : 15748999). Involved in inducing apoptosis in podocytes in response to elevated free fatty acids, acting together with THBS1 (PubMed : 25835637). As a coreceptor for TLR4 : TLR6 heterodimer, promotes inflammation in monocytes/macrophages. Upon ligand binding, such as oxLDL or amyloid-beta 42, interacts with the heterodimer TLR4 : TLR6, the complex is internalized and triggers inflammatory response, leading to NF-kappa-B-dependent production of CXCL1, CXCL2 and CCL9 cytokines, via MYD88 signaling pathway, and CCL5 cytokine, via TICAM1 signaling pathway, as well as IL1B secretion, through the priming and activation of the NLRP3 inflammasome (PubMed : 20037584, PubMed : 23812099). Selective and nonredundant sensor of microbial diacylated lipopeptide that signal via TLR2 : TLR6 heterodimer, this cluster triggers signaling from the cell surface, leading to the NF-kappa-B-dependent production of TNF, via MYD88 signaling pathway and subsequently is targeted to the Golgi in a lipid-raft dependent pathway (By similarity) (PubMed : 15690042, PubMed : 19847289).. (Microbial infection) Acts as an accessory receptor for M.tuberculosis lipoprotein LprA, in conjunction with coreceptors TLR2 and TLR1; the lipoprotein acts as an agonist to modulate antigen presenting cell functions in response to the pathogen (PubMed : 19362712). Directly mediates cytoadherence of Plasmodium falciparum parasitized erythrocytes and the internalization of particles independently of TLR signaling (PubMed : 19864601, PubMed : 23395392). Mediates uptake of E.coli and S.aureus but has no effect on uptake of M.fortuitum (PubMed : 16020694).
See full target information Cd36

文献 (45)

Recent publications for all applications. Explore the full list and refine your search

iScience 26:107477 PubMed37599821

2023

Targeting CD36 determines nicotine derivative NNK-induced lung adenocarcinoma carcinogenesis.

Applications

Unspecified application

Species

Unspecified reactive species

Ming-Yue Li,Menghuan Wang,Ming Dong,Zangshu Wu,Rui Zhang,Bowen Wang,Yuxi Huang,Xiaoyang Zhang,Jiaying Zhou,Junbo Yi,George Gong Chen,Li-Zhong Liu

The Journal of clinical investigation 133: PubMed37317973

2023

Complement C3aR depletion reverses HIF-1α-induced metabolic impairment and enhances microglial response to Aβ pathology.

Applications

Unspecified application

Species

Unspecified reactive species

Manasee Gedam,Michele M Comerota,Nicholas E Propson,Tao Chen,Feng Jin,Meng C Wang,Hui Zheng

Journal of advanced research 44:185-199 PubMed36725189

2023

Soluble Trem2 is a negative regulator of erythrophagocytosis after intracerebral hemorrhage in a CD36 receptor recycling manner.

Applications

Unspecified application

Species

Unspecified reactive species

Hang Zhou,Jianru Li,Libin Hu,Jiahui Yu,Xiongjie Fu,Feng Liang,Feng Yan,Gao Chen

Acta pharmaceutica Sinica. B 12:2043-2056 PubMed35847504

2022

The effect of drug loading and multiple administration on the protein corona formation and brain delivery property of PEG-PLA nanoparticles.

Applications

Unspecified application

Species

Unspecified reactive species

Yuyun Tang,Jinchao Gao,Tao Wang,Qian Zhang,Antian Wang,Meng Huang,Renhe Yu,Hongzhuan Chen,Xiaoling Gao

Nature communications 12:7213 PubMed34893641

2021

The methyltransferase METTL3 negatively regulates nonalcoholic steatohepatitis (NASH) progression.

Applications

Unspecified application

Species

Unspecified reactive species

Xinzhi Li,Bingchuan Yuan,Min Lu,Yuqin Wang,Na Ding,Chunhong Liu,Ming Gao,Zhicheng Yao,Shiyan Zhang,Yujun Zhao,Liwei Xie,Zheng Chen

Cell metabolism 33:1701-1715.e5 PubMed34118189

2021

Peroxidation of n-3 and n-6 polyunsaturated fatty acids in the acidic tumor environment leads to ferroptosis-mediated anticancer effects.

Applications

Unspecified application

Species

Unspecified reactive species

Emeline Dierge,Elena Debock,Céline Guilbaud,Cyril Corbet,Eric Mignolet,Louise Mignard,Estelle Bastien,Chantal Dessy,Yvan Larondelle,Olivier Feron

Redox biology 43:101981 PubMed33940547

2021

Hypochlorous acid-modified human serum albumin suppresses MHC class II - dependent antigen presentation in pro-inflammatory macrophages.

Applications

Unspecified application

Species

Unspecified reactive species

Agnes Ulfig,Verian Bader,Marharyta Varatnitskaya,Natalie Lupilov,Konstanze F Winklhofer,Lars I Leichert

Brain, behavior, and immunity 94:437-457 PubMed33588074

2021

Microglia-derived interleukin-10 accelerates post-intracerebral hemorrhage hematoma clearance by regulating CD36.

Applications

Unspecified application

Species

Unspecified reactive species

Qian Li,Xi Lan,Xiaoning Han,Frederick Durham,Jieru Wan,Abigail Weiland,Raymond C Koehler,Jian Wang

International journal of molecular sciences 21: PubMed33291667

2020

AGE-RAGE Axis Stimulates Oxidized LDL Uptake into Macrophages through Cyclin-Dependent Kinase 5-CD36 Pathway via Oxidative Stress Generation.

Applications

Unspecified application

Species

Unspecified reactive species

Hironori Yashima,Michishige Terasaki,Ami Sotokawauchi,Takanori Matsui,Yusaku Mori,Tomomi Saito,Naoya Osaka,Hideki Kushima,Munenori Hiromura,Makoto Ohara,Tomoyasu Fukui,Sho-Ichi Yamagishi

Nature communications 11:4765 PubMed32958780

2020

CD36 facilitates fatty acid uptake by dynamic palmitoylation-regulated endocytosis.

Applications

Unspecified application

Species

Unspecified reactive species

Jian-Wei Hao,Juan Wang,Huiling Guo,Yin-Yue Zhao,Hui-Hui Sun,Yi-Fan Li,Xiao-Ying Lai,Ning Zhao,Xu Wang,Changchuan Xie,Lixin Hong,Xi Huang,Hong-Rui Wang,Cheng-Bin Li,Bin Liang,Shuai Chen,Tong-Jin Zhao
View all publications

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