Stem Cells Spiked to Generate Myelin

SourceUC Davis

Sacramento, Calif.- Stem cell technology has long offered the hope of regenerating tissue to repair broken or damaged neural tissue. Findings from a team of UC Davis investigators have brought this dream a step closer by developing a method to generate functioning brain cells that produce myelin – a fatty, insulating sheath essential to normal neural conduction. 

"Our findings represent an important conceptual advance in stem cell research," said Wenbin Deng, principal investigator of the study and associate professor at the UC Davis Department of Biochemistry and Molecular Medicine. "We have bioengineered the first generation of myelin-producing cells with superior regenerative capacity."

The brain is made up predominantly of two cell types: neurons and glial cells. Neurons are regarded as responsible for thought and sensation. Glial cells surround, support and communicate with neurons, helping neurons process and transmit information using electrical and chemical signals. One type of glial cell – the oligodendrocyte – produces a sheath called myelin that provides support and insulation to neurons. Myelin, which has been compared to insulation around electrical wires that helps to prevent short circuits, is essential for normal neural conduction and brain function; well-recognized conditions involving defective myelin development or myelin loss include multiple sclerosis and leukodystrophies.

In this study, the UC Davis team first developed a novel protocol to efficiently induce embryonic stem cells (ESCs) to differentiate into oligodendroglial progenitor cells (OPCs), early cells that normally develop into oligodendrocytes. Although this has been successfully done by other researchers, the UC Davis method results in a purer population of OPCs, according to Deng, with fewer other cell types arising from their technique.

They next compared electrophysiological properties of the derived OPCs to naturally occurring OPCs. They found that unlike natural OPCs, the ESC-derived OPCs lacked sodium ion channels in their cell membranes, making them unable to generate spikes when electrically stimulated. Using a technique called viral transduction, they then introduced DNA that codes for sodium channels into the ESC-derived OPCs. These OPCs then expressed ion channels in their cells and developed the ability to generate spikes.

According to Deng, this is the first time that scientists have successfully generated OPCs with so-called spiking properties. This achievement allowed them to compare the capabilities of spiking cells to non-spiking cells.

In cell culture, they found that only spiking OPCs received electrical input from neurons, and they showed superior capability to mature into oligodendrocytes.

They also transplanted spiking and non-spiking OPCs into the spinal cord and brains of mice that are genetically unable to produce myelin. Both types of OPCs had the capability to mature into oligo-dendrocytes and produce myelin, but those from spiking OPCs produced longer and thicker myelin sheaths around axons.

"We actually developed 'super cells' with an even greater capacity to spike than natural cells," Deng said. "This appears to give them an edge for maturing into oligodendrocytes and producing better myelin."

It is well known that adult human neural tissue has a poor capacity to regenerate naturally. Although early cells such as OPCs are present, they do not regenerate tissue very effectively when disease or injury strikes.

Deng believes that replacing glial cells with the enhanced spiking OPCs to treat neural injuries and diseases has the potential to be a better strategy than replacing neurons, which tend to be more problematic to work with. Providing the proper structure and environment for neurons to live may be the best approach to regenerate healthy neural tissue. He also notes that many diverse conditions that have not traditionally been considered to be myelin-related diseases — including schizophrenia, epilepsy and amyotrophic lateral sclerosis (ALS) — actually are now recognized to involve defective myelin.

The article, titled "Generation and characterization of spiking and non-spiking oligodendroglial progenitor cells from embryonic stem cells," is available online at http://www.ncbi.nlm.nih.gov/pubmed/23940003 in the journal Stem Cells.

Other study authors affiliated with the UC Davis Department of Biochemistry and Molecular Medicine and/or the Institute for Pediatric Regenerative Medicine, Shriners Hospitals for Children are Peng Jiang, Chen Chen, Vimal Selvaraj, Wei Lu, Daniel Feldman and David Pleasure. The team also included Xiao-Bo Liu of the UC Davis Center for Neuroscience, and Ronald Li, who was at UC Davis at the time of the research, and now at the University of Hong Kong, China, and Ying Liu, now with the University of Texas Health Science Center at Houston.

This research was supported by grants from the National Institutes of Health (R01NS061983 and R01ES015988, the National Multiple Sclerosis Society, ShrinersHospitals for Children and the California Institute for Regenerative Medicine.


Become a Sustaining Patron

100% voluntary • Cancel anytime • No paywall



Roseville Today remains free for everyone.
Your voluntary monthly support helps us continue serving the community.

Hope Valley

Local Impact

Local Insights

Trending

Woodcreek High School in Roseville Seeks Dress Donations for Formal Wear Event

Woodcreek High School's Wellness Center is seeking formal dress donations for its second annual Formal Wear Event, helping students find outfits for Homecoming regardless of income.

Ain't Necessarily Dead Fest in Auburn: Placer County's Most Colorful & FREE Event this Saturday

Ain't Necessarily Dead Festival returns to Auburn at Regional Park on September 12, 2026 for another legendary day of music, dancing and a cosmically good time in the time-honored tradition of any Deadhead gathering.

Roseville Polish Festival: Annual Celebration Returns September 12, 2026

Roseville, Calif.- The public is invited to attend the Annual Polish Festival in Roseville, California on Saturday, September 12, 2026.

Rattlesnakes in Roseville: Tips to Protect Against Bites as Activity Increases

Roseville, Lincoln, and Rocklin along with all of South Placer is rattlesnake country. They thrive in our warm and wild open spaces as well as taking up residence in neighborhood

Riego Creek Elementary in Roseville

Riego Creek Elementary 3255 Pruett DriveRoseville, Calif. 95747(916) 771-1900Elementary Schoolshttps://riegocreek.rcsdk8.org/ Map...

Royal Oaks Mobile Park in Rocklin

Royal Oaks Mobile Park 4695 Pacific StRocklin, Calif. 95677(916) 624-2127Mobile Home...

Dutch Bros. Coffee on Sunset Blvd in Rocklin

Dutch Bros. Coffee 3450 Sunset Blvd.Rocklin, Calif. 95765Drive thru - Coffee...

5 Star Fingerprinting in Rocklin

Livescan Fingerprinting and Notary Services

The Grand Indian Cuisine in Roseville

The Grand Indian Cuisine is an authentic Indian restaurant located in Roseville, California

Anytime Fitness in Roseville

Visit your 24/7 gym in Roseville, CA 95661. Enjoy a variety of equipment, personalized plans, and supportive community to reach your fitness goals. Join today

Related Articles

Sponsored Local Spotlight

Mobley Pest Services in Roseville serving the community and region for over 20 years

Roseville, Calif.- Fully licensed and bonded, Mobley Pest Services in Roseville has been providing reliable pest control services for well over 20 years. Serving residents and businesses in the greater Placer and Sacramento region, Mobley Pest Services is locally owned and operated in Roseville.

Paul Black's Window Cleaning serving Roseville and South Placer County for over 30 years

Paul Black’s Window Cleaning Inc. has been serving Placer County’s commercial and residential window cleaning needs since 1990.

Paul Black's Solar Panel Cleaning in Roseville serving the region for over 30 years

Roseville, Calif. - Money-saving solar panels in Roseville, Rocklin and throughout South Placer County have become ubiquitous From new residential solar communities continue to big business and after market installation, solar seems to be a smart choice to shred those high monthly electric costs.