Researchers find a better way to track stem cells

The study, carried out by the Departments of Radiology at the University of California and the Technical University of Munich, is freely available on-line at http://www.ingentaconnect.com/content/cog/ct ).

“We found that hESC-CMs labeled with ICG show a significant fluorescence up to 48 hours and can be visualized with optical imaging,” said study lead author Dr. Sophie E. Boddington of the UCSF Department of Radiology. “Once more, the labeling procedure did not impair the viability or functional integrity of the cells.”

According to the researchers, finding an efficient stem cell delivery technique has been a challenge. Too often, stem cells aimed at myocardial regeneration are “washed away” into noncardiac tissues or they soon die. A 10 percent survival rate for hESC-CMs has been common. Researchers knew that a better way to visualize the transplanted stem cells was needed to help direct and order stem cell delivery, and they also knew that materials used to label the cells had to be maximally fluorescent but not detrimental to the viability of the cells.

“We found the ICG-labeling technique advantageous because it is cost effective, straightforward and rapid,” concluded Dr. Boddington. “Its most noticeable advantage is that it can be used with iron oxide-based nanoparticles for use with MRIs, as it increases single cell sensitivity. This is important because of the unpredictable migrational dynamics of the cells.”

The researchers added that although PET techniques are more single cell sensitive than MRI, PET introduces radiation exposure and associated risks. In addition to not involving ionized radiation, optical imaging, using the MRI is quicker, less expensive, easier to perform, and noninvasive. Once more, ICG marking is already FDA-approved and accessible.

An added benefit, said Dr. Boddington, is that ICG is rapidly excreted, which suggests safe elimination.

While the ability of hESCs to regenerate into cells of almost all human tissues has been documented, and this provides a promising therapeutic source for myocardial regeneration after cardiac ischema, few studies have actually demonstrated this potential. Visualizing transplanted stem cells could, however, benefit cell retention and improve cell functional outcomes.

“Our data suggests that hESCs labeled with ICG may be useful in assessing delivery routes to improve the engraftment of transplanted hESC-CMs or other stem cell progenitors,” concluded Dr. Boddington.

The study has significance, said Dr. Dwaine Emerich, section editor for Cell Transplantation.

“These studies are an important step forward in the quest for techniques to label and visualize stem cells in vivo,” said Dr. Emerich. “The ICG-labeling technique described by Boddington and colleagues provides several advantages including its straight forward simplicity, reliability, and the fact that the technique can be easily combined with other developing imaging technologies.”

Contact: Dr. Sophie E. Boddington, Department of Radiology, University of California, San Francisco, 185 Berry St. Suite 350, San Francisco, California 94107-0946. Tel. 415-353-4854 Fax 415-353-9425 Email: Sophie.Boddington@radiology.ucsf.edu

The editorial offices for CELL TRANSPLANTATION are at the Center of Excellence for Aging and Brain Repair, College of Medicine, the University of South Florida and the Diabetes Research Institute, University of Miami Miller School of Medicine. Contact, David Eve, PhD. at celltransplantation@gmail.com or Camillo Ricordi, MD at ricordi@miami.edu

News Release by Randolph Fillmore, ScienceScribe.Net

Media Contact

David Eve EurekAlert!

More Information:

http://www.ucsf.edu

All latest news from the category: Life Sciences and Chemistry

Articles and reports from the Life Sciences and chemistry area deal with applied and basic research into modern biology, chemistry and human medicine.

Valuable information can be found on a range of life sciences fields including bacteriology, biochemistry, bionics, bioinformatics, biophysics, biotechnology, genetics, geobotany, human biology, marine biology, microbiology, molecular biology, cellular biology, zoology, bioinorganic chemistry, microchemistry and environmental chemistry.

Back to home

Comments (0)

Write a comment

Newest articles

Bringing bio-inspired robots to life

Nebraska researcher Eric Markvicka gets NSF CAREER Award to pursue manufacture of novel materials for soft robotics and stretchable electronics. Engineers are increasingly eager to develop robots that mimic the…

Bella moths use poison to attract mates

Scientists are closer to finding out how. Pyrrolizidine alkaloids are as bitter and toxic as they are hard to pronounce. They’re produced by several different types of plants and are…

AI tool creates ‘synthetic’ images of cells

…for enhanced microscopy analysis. Observing individual cells through microscopes can reveal a range of important cell biological phenomena that frequently play a role in human diseases, but the process of…

Partners & Sponsors