| 查看: 957 | 回复: 11 | |||
| 当前只显示满足指定条件的回帖,点击这里查看本话题的所有回帖 | |||
[交流]
研究者发现可以延缓成体干细胞衰老的机制
|
|||
|
Scientists Turn Back the Clock On Adult Stem Cells Aging http://www.sciencedaily.com/releases/2011/09/110920163215.htm ScienceDaily (Sep. 20, 2011) — Researchers have shown they can reverse the aging process for human adult stem cells, which are responsible for helping old or damaged tissues regenerate. The findings could lead to medical treatments that may repair a host of ailments that occur because of tissue damage as people age. A research group led by the Buck Institute for Research on Aging and the Georgia Institute of Technology conducted the study in cell culture, which appears in the September 1, 2011 edition of the journal Cell Cycle. The regenerative power of tissues and organs declines as we age. The modern day stem cell hypothesis of aging suggests that living organisms are as old as are its tissue specific or adult stem cells. Therefore, an understanding of the molecules and processes that enable human adult stem cells to initiate self-renewal and to divide, proliferate and then differentiate in order to rejuvenate damaged tissue might be the key to regenerative medicine and an eventual cure for many age-related diseases. A research group led by the Buck Institute for Research on Aging in collaboration with the Georgia Institute of Technology, conducted the study that pinpoints what is going wrong with the biological clock underlying the limited division of human adult stem cells as they age. "We demonstrated that we were able to reverse the process of aging for human adult stem cells by intervening with the activity of non-protein coding RNAs originated from genomic regions once dismissed as non-functional 'genomic junk'," said Victoria Lunyak, associate professor at the Buck Institute for Research on Aging. Adult stem cells are important because they help keep human tissues healthy by replacing cells that have gotten old or damaged. They're also multipotent, which means that an adult stem cell can grow and replace any number of body cells in the tissue or organ they belong to. However, just as the cells in the liver, or any other organ, can get damaged over time, adult stem cells undergo age-related damage. And when this happens, the body can't replace damaged tissue as well as it once could, leading to a host of diseases and conditions. But if scientists can find a way to keep these adult stem cells young, they could possibly use these cells to repair damaged heart tissue after a heart attack; heal wounds; correct metabolic syndromes; produce insulin for patients with type 1 diabetes; cure arthritis and osteoporosis and regenerate bone. The team began by hypothesizing that DNA damage in the genome of adult stem cells would look very different from age-related damage occurring in regular body cells. They thought so because body cells are known to experience a shortening of the caps found at the ends of chromosomes, known as telomeres. But adult stem cells are known to maintain their telomeres. Much of the damage in aging is widely thought to be a result of losing telomeres. So there must be different mechanisms at play that are key to explaining how aging occurs in these adult stem cells, they thought. Researchers used adult stem cells from humans and combined experimental techniques with computational approaches to study the changes in the genome associated with aging. They compared freshly isolated human adult stem cells from young individuals, which can self-renew, to cells from the same individuals that were subjected to prolonged passaging in culture. This accelerated model of adult stem cell aging exhausts the regenerative capacity of the adult stem cells. Researchers looked at the changes in genomic sites that accumulate DNA damage in both groups. "We found the majority of DNA damage and associated chromatin changes that occurred with adult stem cell aging were due to parts of the genome known as retrotransposons," said King Jordan, associate professor in the School of Biology at Georgia Tech. "Retroransposons were previously thought to be non-functional and were even labeled as 'junk DNA', but accumulating evidence indicates these elements play an important role in genome regulation," he added. While the young adult stem cells were able to suppress transcriptional activity of these genomic elements and deal with the damage to the DNA, older adult stem cells were not able to scavenge this transcription. New discovery suggests that this event is deleterious for the regenerative ability of stem cells and triggers a process known as cellular senescence. "By suppressing the accumulation of toxic transcripts from retrotransposons, we were able to reverse the process of human adult stem cell aging in culture," said Lunyak. "Furthermore, by rewinding the cellular clock in this way, we were not only able to rejuvenate 'aged' human stem cells, but to our surprise we were able to reset them to an earlier developmental stage, by up-regulating the "pluripotency factors" -- the proteins that are critically involved in the self-renewal of undifferentiated embryonic stem cells." she said. Next the team plans to use further analysis to validate the extent to which the rejuvenated stem cells may be suitable for clinical tissue regenerative applications. The study was conducted by a team with members from the Buck Institute for Research on Aging, the Georgia Institute of Technology, the University of California, San Diego, Howard Hughes Medical Institute, Memorial Sloan-Kettering Cancer Center, International Computer Science Institute, Applied Biosystems and Tel-Aviv University. [ 来自科研家族 生物材料 ] |
» 本帖已获得的红花(最新10朵)
» 猜你喜欢
药物递送/纳米药物/生物材料/组织工程 | 招聘24年攻博生
已经有2人回复
求购elsevier 版面费优惠码
已经有12人回复
微生物学论文润色/翻译怎么收费?
已经有165人回复
生物信息学或者生物相关专业 (学硕)
已经有0人回复
求一些蛋白保护性上调,最后随着疾病发展又下降的文献!
已经有0人回复
药物递送/纳米药物/生物医用高分子材料/免疫治疗 | 北欧招聘博士生
已经有1人回复
» 本主题相关商家推荐: (我也要在这里推广)
» 本主题相关价值贴推荐,对您同样有帮助:
高聚物聚合单体怎样分析呢?
已经有11人回复
《biomaterials》上最新一篇关于成体干细胞组织工程血管的综述
已经有49人回复
北科大毛卫民老师的著作合集
已经有202人回复
【求助】A-Fe晶体中加H无法弛豫
已经有4人回复
【求助】关于自微乳的体外溶出度测定
已经有5人回复
» 抢金币啦!回帖就可以得到:
双面压敏硅胶胶带
+2/92
陕西师范大学应用表面与胶体化学教育部重点实验室刘静教授课题组招收硕/博士生
+2/90
中国科学技术大学 精准智能化学重点实验室 武建昌课题组招聘博士后
+1/80
华东师范大学 程义云 课题组招2026年博士研究生 - 有机化学、材料化学、高分子合成等
+1/79
中国科学院赣江创新研究院特别研究助理/博士后招聘(1-2名)
+1/78
招贤纳博(已结束)
+1/74
因为雪而勾起的一些往事
+1/72
南昌大学药学博士招生
+1/40
国家青年人才叶立群教授课题组招收2026级博士研究生
+1/34
国家青年人才叶立群教授课题组招收2026级博士研究生
+1/34
华北电力大学(北京)(第一性原理计算)博士招生——学博,专博各1人
+2/20
中山大学院士团队王来源教授课题组招聘博士后
+2/12
南京大学能源与资源学院蔡亮课题组诚招2026年申请-考核制博士生2-3名
+1/10
【陕西师范大学】催化化学课题组2026年招收博士后/讲师/副高
+1/9
澳大利亚南昆士兰大学(UniSQ)量子点课题组 招收CSC全奖博士生
+1/7
欢迎报考中山大学课题组,确保2025-2026级硕士研究生名额
+1/5
诚招博士后及研究人员
+1/5
长江大学武汉校区诚招工程热物理、油气、电气等新能源博士-2025
+1/4
三峡集团科研院海上风电研究项目实习生招聘公告
+1/2
北京理工大学珠海校区徐先臣课题组招聘博士后/硕博士
+1/2
10楼2012-03-18 16:30:16
7楼2011-09-23 16:42:02
★
aegeansyang(金币+1): 谢谢参与
aegeansyang(金币+1): 谢谢参与
|
本帖内容被屏蔽 |
11楼2012-03-18 17:41:19













回复此楼
pwp823
