Boffins 'reprogram' adult mouse fat cells into stem cells
Washington, July 27 (ANI): Scientists at the Monash Institute of Medical Research, Australia, have successfully "reprogrammed" adult mouse fat cells and neural cells into clinically useful stem cells that can differentiate into a variety of different cells (pluripotency).
The cells, called "induced pluripotent stem cells" (iPS), are nearly identical to the naturally occurring pluripotent stems cells, such as embryonic stem cells, which are highly pluripotent, in short supply and their access restricted in the U.S.
The research appears in the journal Cell Transplantation.
The study's lead author, Dr. Paul J. Verma, said: "Induced pluripotent stem cells have revolutionized cell reprogramming. One challenge is to find the most appropriate cell for reprogramming. Our study demonstrated that both neural stem cells (NSCs) and adipose tissue-derived cells (ADCs) from adult mice expressed genetic pluripotency and could differentiate into the three germ layers, endoderm, mesoderm and ectoderm. The ADCs were the most amenable to reprogramming."
According to Dr. Verma, iPS cells have been shown to have many of the hallmarks of embryonic stem cells. Choosing which cells were best for reprogramming required looking at the ease of access and ease of derivation and growth of the cells in vitro. They concluded that it was likely that certain iPS cell lines will have a "higher propensity to differentiate into certain lineages (cell types)."
"This variation may be related to different levels of programming achieved. Many different cell types need to be investigated to generate many iPS lines for specific differentiation and different research purposes," added Dr. Verma.
The research team concluded that ADCs represent a more clinically relevant cell type and that fat tissue can be easily accessed and grown easily and rapidly in cultures. Fat tissue cells, when reprogrammed, can also be prolific. The authors cited a study previously published in Cell Transplantation suggesting that 100 ml of human fat tissue could yield one million clinically useful stem cells.
Their work takes the development of iPS cells a step closer toward their eventual clinical use in treating human diseases.
"There is considerable potential in the generation of iPS cells for the treatment of a number of disorders. Finding the optimal source of cells to start with, is of paramount importance and this study provides reassuring data on a highly favourable source," said Dr. Paul Sanberg, coeditor-in-chief and Director of the Center Of Excellence for Aging and Brain Repair at the University of South Florida. (ANI)
-
Gold Rate Today 29 March 2026: Latest IBJA Rates With Tanishq, Kalyan, Malabar, Joyalukkas Prices -
Gold Rate Today 28 March 2026: Latest IBJA Rates With Tanishq, Kalyan, Malabar, Joyalukkas Prices -
Kerala 2026 Elections: Opinion Poll Shows LDF-UDF Neck-and-Neck Race; NDA Emerges as Decisive Factor -
Bengali Actor Rahul Arunoday Banerjee Dies At 43 After Reported Drowning In Digha -
Gold Silver Rate Today, 28 March 2026: City-Wise Prices Rise Slightly, MCX Gold Rebounds Above Recent Lows -
Who Is Rajat Dalal’s Wife? Bigg Boss 18 Fame Star Announces Wedding, Shares Dreamy Photos -
Tamil Nadu Elections 2026: TVK Announces Candidate List; Vijay To Contest From Perambur And Trichy East -
Hyderabad Gold Silver Rate Today, 29 March 2026: Gold And Silver Continue Upward Trend After Recent Dip -
Hyderabad Weather Alert: Intense Thunderstorms, Hail And Lightning Likely On March 30-31 -
Bihar Board 10th Result 2026: Where and How to Check BSEB Matric Scorecard -
Khushbu's Husband Sundar C To Contest Tamil Nadu Polls From Madurai -
Pakistan Mediation Advances In US Iran Talks And Regional Diplomacy












Click it and Unblock the Notifications