New device fuses cells for stem cell research

By IANS,

Washington : Engineers have developed a highly efficient new way to fuse a pair of cells to create a hybrid version.


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The new technique that fuses an adult and embryonic stem cell allows researchers to study the genetic reprogramming that occurs in such hybrids.

The researchers were led by collaboration between Joel Voldman, associate professor of electrical engineering at the Massachusetts Institute of Technology (MIT) and Rudolf Jaenisch, professor of biology and a member of the Whitehead Institute.

The team’s simple but ingenious sorting method increases the rate of successful cell fusion from around 10 percent to about 50 percent, and allows thousands of cell pairings at once.

Though cell fusion techniques have been around for a long time, there are many technical limitations, said Voldman.

Getting the right cells to pair up before fusing them is one major obstacle. If scientists are working with a mixture of two cell types, for example A and B, they end up with many AA and BB pairings, as well as the desired AB match.

Researchers had previously trapped cells in tiny cups as they flow across a chip. Each cup can hold only two cells, but there is no way to control whether the cups capture an A and a B, two As or two Bs, said an MIT release.

Conversely, the cell-trapping cups on Voldman and Jaenisch’s new sorting device are arranged strategically to capture and pair up cells of different types.

First, type A cells are flowed across the chip in one direction and caught in traps that are large enough to hold only one cell. Once the cells are trapped, liquid is flowed across the chip in the opposite direction, pushing the cells out of the small cups and into larger cups across from the small ones.

Once one A cell is in each large cup, type B cells are flowed into the large cups. Each cup can only hold two cells, so each ends up with one A and one B. After the cells are paired in the traps, they can be joined together by an electric pulse that fuses the cell membranes.

In addition to helping with studies of stem cell reprogramming, this technique could be used to study interactions between any types of cells. “It’s a very general type of device,” said Voldman.

The work was spearheaded by two postdoctoral associates, Alison Skelley, who worked in Voldman’s lab, and Oktay Kirak, who works with Jaenisch.

These findings were reported in Sunday’s online edition of Nature Methods.

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