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Merck
CN

SCR067

Human Mesenchymal Stem Cell Characterization Kit

The Human Mesenchymal Stem Cell Characterization Kit contains a panel of positive & negative selection markers for the characterization of the mesenchymal stem cell population in human samples.

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关于此项目

UNSPSC Code:
12161503
NACRES:
NA.75
eCl@ss:
32161000
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产品名称

Human Mesenchymal Stem Cell Characterization Kit, The Human Mesenchymal Stem Cell Characterization Kit contains a panel of positive & negative selection markers for the characterization of the mesenchymal stem cell population in human samples.

species reactivity

human

manufacturer/tradename

Chemicon®

technique(s)

cell culture | stem cell: suitable
immunocytochemistry: suitable

input

sample type mesenchymal stem cell(s)

shipped in

dry ice

Quality Level

General description

The Human Mesenchymal Stem Cell Characterization Kit (Catalog Number SCR067) contains a panel of positive and negative selection markers for the characterization of the mesenchymal stem cell population in human samples Positive cell markers include antibodies directed against cell-surface molecules present on mesenchymal stem cells: CD44, CD90, STRO-1, and CD146. In addition, two specific hematopoeitic cell surface markers are provided whose expressions should not be present on mesenchymal stem cells: CD14 (present on leukocytes) and CD19 (present on B-lymphocytes).

Other Notes

Mouse anti-HCAM

Mouse anti-THY-1 (CD90)

Mouse anti-STRO-1

Mouse anti-MCAM (CD146)

Mouse anti-CD19

Mouse anti-CD14

Preparation Note

When stored at the recommended storage conditions (refer to Kit Components), components are stable up to the expiration date. Do not expose to elevated temperatures. Discard any remaining reagents after the expiration date.

Legal Information

CHEMICON is a registered trademark of Merck KGaA, Darmstadt, Germany

存储类别

10 - Combustible liquids


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Khondoker M Akram et al.
Respiratory research, 14, 9-9 (2013-01-29)
Mesenchymal stem cells (MSC) are in clinical trials for widespread indications including musculoskeletal, neurological, cardiac and haematological disorders. Furthermore, MSC can ameliorate pulmonary fibrosis in animal models although mechanisms of action remain unclear. One emerging concept is that MSCs may
Isolation and characterization of human periodontal ligament (PDL) stem cells (PDLSCs) from the inflamed PDL tissue: in vitro and in vivo evaluations.
Jung-Chul Park,Jeong-Min Kim,Im-Hee Jung,Jane C Kim,Seong-Ho Choi,Kyoo-Sung Cho,Chang-Sung Kim
Journal of Clinical Periodontology null
Acquisition of human alveolar bone-derived stromal cells using minimally irrigated implant osteotomy: in vitro and in vivo evaluations.
Jung-Chul Park,Jane C Kim,Yong-Tae Kim,Seong-Ho Choi,Kyoo-Sung Cho,Gun-Il Im et al.
Journal of Clinical Periodontology null
The dynamic healing profile of human periodontal ligament stem cells: histological and immunohistochemical analysis using an ectopic transplantation model.
Y-T Kim,J-C Park,S-H Choi,K-S Cho,G-I Im,B-S Kim,C-S Kim
Journal of Periodontal Research null
Anna Badner et al.
Journal of neuroinflammation, 15(1), 219-219 (2018-08-05)
The spleen plays an important role in erythrocyte turnover, adaptive immunity, antibody production, and the mobilization of monocytes/macrophages (Mφ) following tissue injury. In response to trauma, the spleen initiates production of inflammatory cytokines, which in turn recruit immune cells to

商品

Highly characterized human mesenchymal stem cell lines from bone-marrow, adipose and umbilical cord along with serum-free MSC expansion and differentiation media.

相关内容

As the focus of stem cell research undergoes a transition from animal to human models, researchers are in critical need of validated products to support the isolation, maintenance, differentiation, and characterization of human stem cells. While many reagents designed for rodent systems can be applied to human stem cell studies, they are not truly optimized for robust human stem cell culture or analysis. This is why human stem cell researchers have always trusted EMD Millipore, the first provider of commercially available human embryonic stem cells and human neural stem cell lines, to accelerate their research. All of our human stem cell systems are extensively tested in defined media culture, and differentiated progeny are comprehensively characterized with highly validated antibodies and detection reagents.

We have collaborated with Plasticell Ltd. to develop OsteoMAX-XF™, a novel, serum-free, xeno-free, differentiation medium for the generation of osteoblasts from human MSCs. This medium may be particularly suitable for drug discovery and clinical development. By screening roughly 3,500 combinations of serum and xeno-free media, we discovered a remarkably efficient, fully defined, reproducible medium to promote the differentiation of hMSCs into osteoblasts, offering an excellent, cost effective method to produce large amounts of human bone cells for multiple applications.

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