Showing posts with label Nucleostemin Antibody. Show all posts
Showing posts with label Nucleostemin Antibody. Show all posts

Friday, May 29, 2015

Neuromics' Stem Cell Markers

Potent, Proven and Published

We have a growing parade of Publications referencing use of our Stem Cell Markers. They have proven to be excellent for assays using our hNP1™ Human Neural Progenitor Kits and Human Mesenchymal Stem Cells (hMSCs),

Here's a recent reference highlighting use of our Nucleostemin Antibody: Zhe Ding and He Huang. Mesenchymal stem cells in rabbit meniscus and bone marrow exhibit a similar feature but a heterogeneous multi-differentiation potential: superiority of meniscus as a cell source for meniscus repair. BMC Musculoskeletal Disorders (2015) 16:65 DOI 10.1186/s12891-015-0511-8. ...After removing the medium, the cells were washed with PBS once. MMSCs and BMSCs were fixed with 4% paraformaldehyde in PBS for 30 min at room temperature and treated with 0.1% Triton X-100 for 30 min for Nanog and nucleostemin staining. After washing the cells with PBS, either mouse anti-Nanog (1:350, Santa Cruz Biotechnology, Inc., cat. # SC-33759, Santa Cruz, CA) or goat antinucleostemin (1:400, Neuromics, Cat. # GT15050, Edina, MN)...

Figure: Expression of Nucleostemin for BMSCs (E) and MMSCs (F).
I will continue to post Stem Cell Marker success stories here.

Monday, August 27, 2012

Nucleostemin and Liver Regeneration

Our Nucleostemin Stem Cell/Cell Regeneration Marker is widely used and published. I have multiple posting highlighting results of the marker in action. This includes use for staining Tendon Progenitors/Stem Cells (TSCs).

Here researchers use the antibody as a marker for injury induced liver regeneration: Haruhiko Shugo, Takako Ooshio, Masako Naito, Kazuhito Naka, Takayuki Hoshii, Yuko Tadokoro, Teruyuki Muraguchi, Akira Tamase, Noriyuki Uema, Taro Yamashita, Yasunari Nakamoto, Toshio Suda, Shuichi Kaneko, and Atsushi Hirao.Nucleostemin in Injury-Induced Liver Regeneration. Stem Cells and Development. -Not available-, ahead of print. doi:10.1089/scd.2011.0725...Membranes were then incubated with a goat anti-NS antibody (1:1,000; Neuromics, Edina, MN)...

Abstract: The high regenerative capacity of liver contributes to the maintenance of its size and function when injury occurs. Partial hepatectomy induces division of mature hepatocytes to maintain liver function, whereas severe injury stimulates expansion of undifferentiated hepatic precursor cells, which supply mature cells. Although several factors reportedly function in liver regeneration, the precise mechanisms underlying regeneration remain unclear. In this study, we analyzed expression of nucleostemin (NS) during development and in injured liver by using transgenic green fluorescent protein reporter (NS-GFP Tg) mice. In neonatal liver, the hepatic precursor cells that give rise to mature hepatocytes were enriched in a cell population expressing high levels of NS. In adult liver, NS was abundantly expressed in mature hepatocytes and rapidly upregulated by partial hepatectomy. Severe liver injury promoted by a diet containing 3,5-diethoxycarbonyl-1,4-dihydrocollidine induced the emergence of NS-expressing ductal epithelial cells as hepatic precursor cells. NS knockdown inhibited both hepatic colony formation in vitro and proliferation of hepatocytes in vivo. These data strongly suggest that NS plays a critical role in regeneration of both hepatic precursor cells and hepatocytes in response to liver injury.

Check out Neuromics' Stem Cell Research Reagents.

Saturday, July 23, 2011

Differential healing properties of human ACL and MCL Stem Cells

Autologous Stem Cell therapies for human injury and disease are gaining momentum. Understanding the properties of Stem Cell Colonies that have potential for these therapies is key to optimizing treatments. This study provides knowledge on the properties and their impact on future therapies for anterior cruciate ligament (hACL) and medial collateral ligament (hMCL) of the knee joint.
Jianying Zhang, Tiffany Pan, Hee-Jeong Im, Freddie H Fu and James HC Wang. Differential properties of human ACL and MCL stem cells may be responsible for their differential healing capacity. Differential properties of human ACL and MCL stem cells may be responsible for their differential healing capacity. BMC Medicine 2011, 9:68doi:10.1186/1741-7015-9-68.

Background: The (hACL) and medial collateral ligament (hMCL) of the knee joint are frequently injured, especially in athletic settings. It has been known that, while injuries to the MCL typically heal with conservative treatment, ACL injuries usually do not heal. As adult stem cells repair injured tissues through proliferation and differentiation, we hypothesized that the hACL and hMCL contain stem cells exhibiting unique properties that could be responsible for the differential healing capacity of the two ligaments.

Methods: To test the above hypothesis, we derived ligament stem cells from normal hACL and hMCL samples from the same adult donors using tissue culture techniques and characterized their properties using immunocytochemistry, RT-PCR, and flow cytometry.

Images:The expression of stem cell markers in hACL-SCs and hMCL-SCs. At passage 5, hACL-SCs had already become highly elongated in confluent culture, a typical fibroblast phenotype (A). In contrast, even at passage 13, confluent hMCL-SCs remained cobblestone-like (B). Moreover, hACL-SCs no longer expressed nucleostemin (C) or SSEA-4 (E) at passages > 5, whereas hMCL-SCs expressed both stem cell markers at passage 13 (D, F). Note, however, that hMCL-SCs at this high passage exhibited a lesser degree of nucleostemin expression compared to the cells at passage 1 (see Figure 3). The results shown here were obtained from a male donor of 27 years oldTo test the above hypothesis, we derived ligament stem cells from normal hACL and hMCL samples from the same adult donors using tissue culture techniques and characterized their properties using immunocytochemistry, RT-PCR, and flow cytometry.

Results: We found that both hACL stem cells (hACL-SCs) and hMCL stem cells (hMCL-SCs) formed colonies in culture and expressed stem cell markers nucleostemin and stage-specific embryonic antigen-4 (SSEA-4). Moreover, both hACL-SCs and hMCL-SCs expressed CD surface markers for mesenchymal stem cells, including CD44 and CD90, but not those markers for vascular cells, CD31, CD34, CD45, and CD146. However, hACL-SCs differed from hMCL-SCs in that the size and number of hACL-SC colonies in culture were much smaller and grew more slowly than hMCL-SC colonies. Moreover, fewer hACL-SCs in cell colonies expressed stem cell markers STRO-1 and octamer-binding transcription factor-4 (Oct-4) than hMCL-SCs. Finally, hACL-SCs had less multi-differentiation potential than hMCL-SCs, evidenced by differing extents of adipogenesis, chondrogenesis, and osteogenesis in the respective induction media.
Conclusions: This study shows for the first time that hACL-SCs are intrinsically different from hMCL-SCs. We suggest that the differences in their properties contribute to the known disparity in healing capabilities between the two ligaments.
I will be posting more on autologous stem cell therapies research.

Wednesday, January 27, 2010

Nucleostemin-Stem Cell Marker

Our Nucleostemin Antibody has proven a versatile Stem Cell Marker.

Researchers have referenced use of this antibody as a marker for Neural Progenitors and Muscle-Derived Stem Cells. In the most recent of our Nucleostemin Publications, Dr James Wang (University of Pittsburgh) references using the antibody for staining Tendon Progenitors/Stem Cells (TSCs):

Jianying Zhang and James H-C. Wang. Characterization of differential properties of rabbit tendon stem cells and tenocytes. BMC Musculoskeletal Disorders. 2010, 11:10doi:10.1186/1471-2474-11-10.
...The staining protocol used goat anti-human Nucleostemin Antibody (1:300; Neuromics, Cat. No. GT15050) and Cy3-conjugated donkey anti-goat IgG secondary antibody...

Image: Achilles Tendon Stem Cells (ATSCs) expressed nucleostemin. Insets show enlarged view of expressed nucleostemin in pink (bar: 50 μm).

Related Reagents:
Stem Cell Markers
All Stem Cell Research Reagents
Primary Neurons and Astrocytes-Primary human, rat and mouse neurons and astrocytes