Showing posts with label Osteocytes. Show all posts
Showing posts with label Osteocytes. Show all posts

Thursday, July 05, 2012

eSC Derived human Mesenchymal Progenitor Pubs

We have added hMProTM Mesenchymal Progenitors to our Stem Cell Research Reagents category. These progenitors coupled with our UBC derived Human Mesenchymal Stem Cells give more options to basic and drug discovery researchers. Since they serve as potent research tools, it is a strategy of ours to continue to broaden our offerings in this products category.

Publications matter when assessing the capabilities of bio-reagents. I would like to share several that prove the utility of these cells:  David L. Simpson, Nolan L. Boyd, Sunjay Kaushal, Steve L. Stice, Samuel C. Dudley Jr. Use of human embryonic stem cell derived-mesenchymal cells for cardiac repair. Biotechnology and Bioengineering Volume 109, Issue 1, pages 274–283, January 2012. DOI: 10.1002/bit.23301

Nolan L. Boyd, Ph.D., Kelly R. Robbins, Ph.D., Sujoy K. Dhara, D.V.M., Ph.D., Franklin D. West, Ph.D., and Steven L. Stice, Ph.D. Human Embryonic Stem Cell–Derived Mesoderm-like Epithelium Transitions to Mesenchymal Progenitor Cells. Tissue Eng Part A. 2009 August; 15(8): 1897–1907. Published online 2009 January 15. doi: 10.1089/ten.tea.2008.0351.

Images: (A) Phase contrast image of hMPro™ mesenchymal progenitor cells in culture. (B) Confocal image of hMPro™ cells stained for the early smooth muscle marker (αSMA;green), F-actin (red) and nuclei (blue). Exposure to 10ng/mL of transforming growth factor beta 1 (TGF-β1) for 12 days induces expression of alpha smooth muscle actin (αSMA) in WA09-derived mesenchymal progenitor cells, suggesting their ability to differentiate along the smooth muscle lineage.

These cells have the ability to:
•Form adherent monolayers – ideal for 96- and 384-well formats for high throughput and high content cell-based assays.
•Differentiate into a wide variety of mesenchymal subtypes, including osteogenic and chondrogenic lineages (but not adipogenic)– ideal for drug discovery for a wide variety of biological targets and basic research in bone, cartilage, metabolic and immunological diseases.
•Passage up to 10X.

I will keep you posted on new applications.

Tuesday, May 15, 2012

Mesechymal Stem Cell DifferentiationPathways

As a provider of Human Mesenchymal Stem Cells (hMSCs), MSCGro™ Mesenchymal Stem Cell Media and Stem Cell Markers, I receive questions related to differentiation. Specifically, researchers desire to drive these cells to specific progenitor and cell phenotypes like Osteocytes, Adipocytes and Chondroytes.

I would like to share a pathway map that gives a snapshot of these pathways:
Regenerative Biology of the Spine and Spinal Cord. Edited by: Rahul Jandial, Mike Y. Chen, Bihong T. Chen and Joseph Ciacci. ISBN: 978-1-4614-4089-5. Publication date: May 25, 2012. Series: Special Books

I will continue to post information that will enable the researchers to harness the power of Mesenchymal Stem Cells.

Friday, April 13, 2012

Potent Mesenchymal Stem Cells and Media

Researchers require a dependable and cost-effective source for Mesenchymal Stem Cells (hMSCs). These cells can be differentiated into cartilage, bone, fat, muscle and even neural cells using our MSCGro™ Media for growth and differentiation. Better cells and media means satisfaction with your Cell Based Assays
This makes them an ideal solution for research studies that include developmental biology, regenerative medicine, cell therapy, and tissue engineering.

These cells have the capabilities of passaging a minimum of 10-fold.

Cells and Media
Images: MSCs (Catalog #: SC00A1) Growth in MSCGroTM, Low Serum Medium (Catalog#: SC00B1). Inset: MSCs differentiatiated using MSCGro Differentiation Media.

I will continue to update you on customer data and pubs using these cells and media. I wish you exciting and rewarding discoveries.