韩国三级视频-日韩操-视频一二区-久草欧美-五月天婷婷丁香花-动漫美女靠逼-韩国一区二区三区视频-美女扒开内裤让男人桶-亚洲AV无码精品一区二区三区-无码内射中文字幕岛国片-亚洲成色网

Human blood cells converted to functional neurons in three weeks

Source: Xinhua| 2018-06-05 06:54:11|Editor: Liu
Video PlayerClose

WASHINGTON, June 4 (Xinhua) -- Researchers at the Stanford University School of Medicine converted human immune cells in blood directly into functional neurons in the laboratory in about three weeks.

The dramatic transformation does not require the cells to first enter a state called pluripotency but instead occurs through a more direct process called transdifferentiation, according to a study published on Monday in the Proceedings of the National Academy of Sciences.

The conversion occurred with relatively high efficiency, generating as many as 50,000 neurons from 1 milliliter of blood, and it could be achieved with fresh or previously frozen and stored blood samples.

"Blood is one of the easiest biological samples to obtain," said Marius Wernig, associate professor of pathology and a member of Stanford University's Institute for Stem Cell Biology and Regenerative Medicine.

"This technique is a breakthrough that opens the possibility to learn about complex disease processes by studying large numbers of patients," said Wernig, the paper's senior author.

For those with autism or schizophrenia, many hundreds of individual, patient-specific samples are needed in order to suss out the relative contributions of dozens or more disease-associated mutations.

"Generating induced pluripotent stem (iPS) cells from large numbers of patients is expensive and laborious," Wernig said. "The prospect of generating iPS cells from hundreds of patients is daunting and would require automation of the complex reprogramming process."

The transdifferentiation technique was first developed in Wernig's laboratory in 2010 when he and his colleagues showed that they could convert mouse skin cells into mouse neurons without first inducing the cells to become pluripotent, a developmentally flexible stage from which the cells can become nearly any type of tissue.

They went on to show the technique could also be used on human skin and liver cells.

Although it's possible to directly convert skin cells to neurons, the biopsied skin cells first have to be grown in the laboratory for a period of time until their numbers increase, a process likely to introduce genetic mutations not found in the person from whom the cells were obtained.

In the new study, Wernig and his colleague focused on highly specialized immune cells called T cells that circulate in the blood.

T cells protect us from disease by recognizing and killing infected or cancerous cells. In contrast, neurons are long and skinny cells capable of conducting electrical impulses along their length and passing them from cell to cell.

But despite the cells' vastly different shapes, locations and biological missions, the researchers found it unexpectedly easy to complete their quest.

"It's kind of shocking how simple it is to convert T cells into functional neurons in just a few days," Wernig said.

According to the study, the resulting human neurons aren't perfect, lacking the ability to form mature synapses, or connections, with one another, but they are able to carry out the main fundamental functions of neurons.

Wernig and his colleague are hopeful they will be able to further optimize the technique in the future. In the meantime, they've started to collect blood samples from children with autism.

TOP STORIES
EDITOR’S CHOICE
MOST VIEWED
EXPLORE XINHUANET
010020070750000000000000011100851372302481
主站蜘蛛池模板: 西充县| 罗定市| 错那县| 镇康县| 河北区| 铜梁县| 河池市| 杭锦旗| 漠河县| 商丘市| 樟树市| 利川市| 图片| 缙云县| 大荔县| 临清市| 如皋市| 西乡县| 盐津县| 牡丹江市| 太白县| 玉门市| 讷河市| 石泉县| 华容县| 湖南省| 织金县| 子洲县| 河北省| 白水县| 罗源县| 同德县| 克什克腾旗| 湘潭市| 晋州市| 武夷山市| 新密市| 乡城县| 抚宁县| 黔西| 浑源县|