LSBio
CD68 Antibody (clone KP1, FITC)

Human peripheral blood granulocytes stained with Mouse anti-Human CD68:FITC This image was taken for the unconjugated form of this product. Other forms have not been tested.

CD68 Antibody (clone KP1, FITC)

Primary AntibodyLSBio Guarantee
Antibody:Mouse Monoclonal
Applications:Flow Cytometry, Immunofluorescence, Immunohistochemistry (general)
Reactivity:Human
Format:Liquid
See all Human CD68 antibodies →
$335.00each
Catalog Number: LS-C187543-0.1

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Overview

Description
CD68 antibody LS-C187543 is an FITC-conjugated mouse monoclonal antibody to human CD68. Validated for Flow and IF. Cited in 2 publications.
Application
FC, IF, IHC
Reactivity
Hu
Intended Use
Research Use Only
Guarantees
This antibody carries the LSBio 100% Guarantee.
Category
Antibodies > Primary Antibodies > Monoclonal Antibodies
Alternative Names
CD68 antigen | gp110 | SCARD1 | CD68 | CD68 molecule | LAMP4 | Macrophage antigen CD68 | Macrosialin
UniProt Number
P34810
SwissProt
P34810

Target

Target
Human CD68
Antigen Species
Human
Epitope
Recognizes the human CD68 cell surface antigen, a 110kD glycoprotein primarily expressed by macrophages and monocytes.
Gene Name
CD68

Antibody

Host Species
Mouse
Clonality
Monoclonal
Clone
KP1
Isotype
IgG1

Immunogen

Immunogen
Subcellular fraction of human alveolar macrophages.
Immunogen Type
Tissue Extract

Format

Conjugate/Label
Fluorescein Isothiocyanate
Format
Liquid
Formulation
PBS, 0.09% Sodium Azide, 1% BSA
Concentration
0.1 mg/mL
Preservative
Yes
Purification Method
Protein G Affinity

Storage & Handling

Storage Conditions
Store at 4°C or at -20°C. Store undiluted. Avoid freeze-thaw cycles. Protect from light. Microcentrifugation recommended if solution contains precipitate.
Recommended Storage Buffer
PBS

Reduced patency in left-sided arteriovenous grafts in a porcine model. Shirley Liu, Tun Wang, Juan Wang, Toshihiko Isaji, Shun Ono, Arash Fereydooni, Ryosuke Taniguchi, Yutaka Matsubara, Laura E Niklason, Alan Dardik. Journal of vascular surgery. 2020 July;72:305-317.e6.

PubMed: 31699515 · PMC: PMC7196525


An ex vivo physiologic and hyperplastic vessel culture model to study intra-arterial stent therapies. Juan Wang, Mehmet H Kural, Jonathan Wu, Katherine L Leiby, Vinayak Mishra, Taras Lysyy, Guangxin Li, Jiesi Luo, Allison Greaney, George Tellides, Yibing Qyang, Nan Huang, Laura E Niklason. Biomaterials. 2021 August;275:120911.

PubMed: 34087584 · PMC: PMC9195126

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