Anti-Macrosialin CD68 Monoclonal Antibody

CD68/SR-D1 antibody

Boster Bio Anti-Macrosialin CD68 Monoclonal Antibody catalog # M00602-2. Tested in IF, IHC-P applications. This antibody reacts with Human, Mouse, Rat. Cited in 20 publication(s).

Product Info Summary

SKU: M00602-2
Size: 100ul
Reactive Species: Human, Mouse, Rat
Host: Mouse
Application: IF, IHC-P

Product Name

Anti-Macrosialin CD68 Monoclonal Antibody

View all CD68/SR-D1 Antibodies

SKU/Catalog Number

M00602-2

Size

100ul

Form

Liquid

Description

Boster Bio Anti-Macrosialin CD68 Monoclonal Antibody catalog # M00602-2. Tested in IF, IHC-P applications. This antibody reacts with Human, Mouse, Rat.

Storage & Handling

Store at -20°C for one year. For short term storage and frequent use, store at 4°C for up to one month. Avoid repeated freeze-thaw cycles.

Cite This Product

Anti-Macrosialin CD68 Monoclonal Antibody (Boster Biological Technology, Pleasanton CA, USA, Catalog # M00602-2)

Host

Mouse

Contents

PBS, pH 7.4, containing 0.5% BSA, 0.02% sodium azide and 50% Glycerol.

Clonality

Monoclonal

Clone Number

6F3

Isotype

IgG

Immunogen

Synthetic Peptide

*Blocking peptide can be purchased. Costs vary based on immunogen length. Contact us for pricing.

Reactive Species

M00602-2 is reactive to CD68 in Human, Mouse, Rat

Applications

M00602-2 is guaranteed for IF, IHC-P Boster Guarantee

Observed Molecular Weight

Calculated molecular weight

37.408kDa

Background of CD68/SR-D1

CD68, cluster of differentiation, is a 110-kD transmembrane glycoprotein that is highly expressed by human monocytes and tissue macrophages. CD68 is a member of a family of hematopoietic mucin-like molecules that includes leukosialin/CD43 and stem cell antigen CD34. The CD68 gene is mapped to 17p13.1. Immunohistochemistry can be used to identify the presence of CD68, which is found in the cytoplasmic granules of a range of different blood cells. It is particularly useful as a marker for the various cells of the macrophage lineage, including monocytes, histiocytes, giant cells, Kupffer cells, and osteoclasts. This allows it to be used to distinguish diseases of otherwise similar appearance, such as the monocyte/macrophage and lymphoid forms of leukaemia (the latter being CD68 negative). Its presence in macrophages also makes it useful in diagnosing conditions related to proliferation or abnormality of these cells, such as malignant histiocytosis, histiocytic lymphoma, and Gaucher's disease.

Antibody Validation

Boster validates all antibodies on WB, IHC, ICC, Immunofluorescence, and ELISA with known positive control and negative samples to ensure specificity and high affinity, including thorough antibody incubations.

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Assay Dilutions Recommendation

The recommendations below provide a starting point for assay optimization. The actual working concentration varies and should be decided by the user.

IHC 1:200
IF 1:50-200

Validation Images & Assay Conditions

Gene/Protein Information For CD68 (Source: Uniprot.org, NCBI)

Gene Name

CD68

Full Name

Macrosialin

Weight

37.408kDa

Superfamily

LAMP family

Alternative Names

CD68 antigenmacrophage antigen CD68; CD68 molecule; CD68; DKFZp686M18236; gp110; Macrosialin; SCARD1; scavenger receptor class D, member 1; SRD1; SR-D1 CD68 GP110, LAMP4, SCARD1 CD68 molecule macrosialin|CD68 antigen|macrophage antigen CD68|scavenger receptor class D, member 1

*If product is indicated to react with multiple species, protein info is based on the gene entry specified above in "Species".

For more info on CD68, check out the CD68 Infographic

CD68 infographic

We have 30,000+ of these available, one for each gene! Check them out.

In this infographic, you will see the following information for CD68: database IDs, superfamily, protein function, synonyms, molecular weight, chromosomal locations, tissues of expression, subcellular locations, post-translational modifications, and related diseases, research areas & pathways. If you want to see more information included, or would like to contribute to it and be acknowledged, please contact [email protected].

Hello CJ!

M00602-2 has been cited in 20 publications:

*The publications in this section are manually curated by our staff scientists. They may differ from Bioz's machine gathered results. Both are accurate. If you find a publication citing this product but is missing from this list, please let us know we will issue you a thank-you coupon.

Myeloid-derived growth factor inhibits inflammation and alleviates endothelial injury and atherosclerosis in mice

Authors: Meng B,Li Y,Ding Y,Xu X,Wang L,Guo B,Zhu B,Zhang J,Xiang L,Dong J,Liu M,Xiang L,Xiang G.


Species: Mouse
M00602-2 usage in article: APP:IHC, SAMPLE:AORTIC TISSUE, DILUTION:1:200

Tauroursodeoxycholic Acid Alleviates Secondary Injury in Spinal Cord Injury Mice Through Reducing Oxidative Stress

Authors:Yonghui Hou,Jiyao Luan,Tiancheng Deng et al.


Species: Mouse
M00602-2 usage in article: APP:IF, SAMPLE:CORTICAL NEURONS, DILUTION:1:300

Schistosoma japonicum-derived peptide SJMHE1 promotes peripheral nerve repair through a macrophage-dependent mechanism

Authors:Ma Y,Wei C,Qi X,Pu Y,Dong L,Xu L,Zhou S,Zhu J,Chen X,Wang X,Su C

This study investigated whether helminths or helminth-derived molecules might have the potential to improve peripheral nerve repair. It was demonstrated that schistosome-derived SJMHE1 promoted peripheral myelin growth and functional regeneration via a macrophage-dependent mechanism and simultaneously increased the induction of M2 macrophages. The CD68 antibody from Bosterbio was used as the macrophage marker for this study. The findings indicated that schistosome-derived SJMHE1 enhances damaged peripheral nerve repair in a macrophage-dependent manner and concomitantly increases M2 macrophage polarization, highlighting the therapeutic potential of SJMHE1 for promoting peripheral nerve repair.


Species: Mouse,Rat
M00602-2 usage in article: APP:IF, SAMPLE:NERVE CONDUITS, DILUTION:1:200

Gao Y,Xu Y,Zhao S,Qian L,Song T,Zheng J,Zhang J,Chen B. Growth differentiation factor-15 promotes immune escape of ovarian cancer via targeting CD44 in dendritic cells. Exp Cell Res.2021 Mar 23:112522.doi:10.1016/j.yexcr.2021.112522.Epub ahead of print.PMID:33771482.https://pubmed.ncbi.nlm.nih.gov/33771 4 82/
Species: BA1105;APP:IF;SAMPLE:OVARIAN TISSUE;DILUTION:NA| BA1001;APP:IF;SAMPLE:OVARIAN TISSUE;DILUTION:NA|AR1176 AR1177;APP:IF;SAMPLE:OVARIAN TISSUE;DILUTION:NA|M00602-2;APP:CONFOCAL MICROSCOPY;SAMPLE:DCS;DILUTION:1:20|BA1142;APP: CONFOCAL MICROSCOPY;SAMPLE:DCS;DILUTION:NA|BA1001;APP:CONFOCAL MICROSCOPY;SAMPLE:DCS;DILUTION:NA|AR0107;APP:CO-IP;SAMPLE:DCS;DILUTION:NA|AR0105-100;APP:WB;SAMPLE:DCS; DILUTION:NA|BA1054;APP:WB;SAMPLE:DCS;DILUTION:NA

Shi D,Wu J,Wu Y,Lin X,Xu C,Lian X. High-Fat Diet-Related Obesity Promotes Urethane-Induced Lung Tumorigenesis in C57BL/6J Mice. Front Oncol.2021 Feb 23;11:620993.doi:10.3389/fonc.2021. 620993.PMID:33708630;PMCID:PMC7942226.
Species: Human,Mouse
M00602-2 usage in article: APP:IHC, SAMPLE:TRACHEA, DILUTION:1:100

High-Fat Diet-Related Obesity Promotes Urethane-Induced Lung Tumorigenesis in C57BL/6J Mice.

Authors: Shi D,Wu J,Wu Y,Lin X,Xu C,Lian X.

The study aimed to investigate whether high-fat diet (HFD)-induced obesity influences the susceptibility to chemical-induced lung tumorigenesis, a HFD feeding condition was combined with a multi-dose urethane-induced lung tumorigenesis model using C57BL/6J mice. Lung tissue slices were incubated with antibodies against CD68 from Bosterbio for the IHC assay. The findings showed that the role of HFD-induced obesity on lung tumorigenesis was elucidated both in vivo and in vitro in this study, and highly expressed leptin mediated the activation of STAT3 pathway was likely involved in the mechanism.


Species: Human,Mouse
M00602-2 usage in article: APP:IHC, SAMPLE:TRACHEA, DILUTION:1:100

Yanmin Cui,Yang Lin,Xianjun Meng,Jingxuan Ma,Haotian Deng,Xia Liu,Xinyuan He,Jin Zhao,Cyanidin-3-galactoside from Aronia melanocarpa ameliorates PM10 induced pulmonary injury by modulating M1/M2 macrophage polarization and NRF2/Sirt1 MAPK signaling,Journa
Species: Mouse
M00602-2 usage in article: APP:IHC, SAMPLE:LUNG TISSUE, DILUTION:NA

Jian Pang,Li Zhou,Liqiu Liao et al.Correlation of sTILs Infiltration and UBR5 Expression on the Efficacy of Neoadjuvant Chemotherapy Efficacy and Prognosis in Early Triple Negative Breast Cancer, 13 January 2021, PREPRINT (Version 1) available at Research
Species: Human
M00602-2 usage in article: APP:IHC, SAMPLE:BREAST TISSUE, DILUTION:NA

Fan Guo,Wei na Kong,Gang Zhao et al.The Correlation Between Tumor-associated Macrophage Infiltration and Progression in Cervical Carcinoma, 01 December 2020, PREPRINT (Version 1) available at Research Square[+https://doi.org/10.21203/rs.3.rs-115339/v1+]
Species: Human
M00602-2 usage in article: APP:IHC, SAMPLE:CERVICAL TISSUE, DILUTION:1:50

Wang,Xiaoyu & Wang,Linlin & Qi,Lili & Bian,Huimiao & Yan,Xing & Wang,Yan & Li,Xiaodong & Cho,Kenka & Wu,Guojiang & Jiang,Baohong.(2020).Protective Effects of Ginsenoside Rg1 on Acute Myocardial Infarction. Journal of Pharmacy and Pharmacology Research.04.
Species: Rat
M00602-2 usage in article: APP:IHC, SAMPLE:HEART TISSUE, DILUTION:1:100

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1 Customer Q&As for Anti-Macrosialin CD68 Monoclonal Antibody

Question

What Are CD68 Macrophages?

Verified customer

Asked: 2021-10-20

Answer

CD68 is a protein highly expressed by cells in the monocyte lineage by circulating macrophages, and by tissue macrophages such as Kupffer cells, microglia.

Boster Scientific Support

Answered: 2021-10-20

Order DetailsPrice
M00602-2-100ul

100ul

$380

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$380.00

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