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Home >Products> Reagents >Antibody> CCL2/MCP-1 Recombinant Rabbit mAb (SDT-1737-66)
CCL2/MCP-1 Recombinant Rabbit mAb (SDT-1737-66)
CCL2/MCP-1 Recombinant Rabbit mAb (SDT-1737-66)
Origin of place Singapore
Model S0B3361-1mg
Supplier ANT BIO PTE.LTD.
Price 950
Hits 3
Updated 8/25/2025
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Product Specification


HostRabbit
AntigenCCL2/MCP-1
SynonymsC-C motif chemokine 2; HC11; Monocyte chemoattractant protein 1; Monocyte chemotactic and activating factor (MCAF); Monocyte chemotactic protein 1 (MCP-1); Monocyte secretory protein JE; Small-inducible cytokine A2
ImmunogenRecombinant Protein
AccessionP13500
Clone NumberSDT-1737-66
Antibody TypeRecombinant mAb
IsotypeIgG
ApplicationSandwich ELISA
ReactivityHu
Cross Reactivity

No cross reactivity with GRO alpha/CXCL1, GRO beta/CXCL2, IL-8

PurificationProtein A
Concentration2 mg/ml
Purity>95% by HPLC
ConjugationUnconjugated
Physical AppearanceLiquid
Storage Buffer

PBS pH7.4, 0.03% Proclin 300

Stability & Storage

12 months from date of receipt, 2 to 8 掳C as supplied

Background

CCL2, also known as monocyte chemoattractant protein-1 (MCP-1), is a small cytokine belonging to the CC chemokine family. It is primarily secreted by monocytes, macrophages, and dendritic cells, and plays a crucial role in recruiting monocytes, memory T cells, and dendritic cells to sites of inflammation or tissue injury. CCL2 exerts its effects by binding to its receptor, CCR2, and is involved in various biological processes, including leukocyte chemotaxis, regulation of apoptosis, and modulation of immune responses. This chemokine is also implicated in several diseases, such as atherosclerosis, rheumatoid arthritis, cancers and neurodegenerative disorders, due to its role in promoting inflammation and immune cell infiltration. In conclusion, CCL2 is a multifunctional chemokine with significant roles in inflammation, fibrosis, and cancer. Its expression is tightly regulated and serves as a critical mediator of immune cell recruitment and activation. The diagnostic and therapeutic potential of CCL2 makes it a promising target for addressing a wide range of diseases. Further research into the mechanisms of CCL2 regulation and its interactions with the tumor microenvironment will likely yield new insights and therapeutic strategies.

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