干细胞之家 - 中国干细胞行业门户第一站

 

 

搜索
干细胞之家 - 中国干细胞行业门户第一站 干细胞之家论坛 细胞与微环境 沙龙区 缺氧导致表观遗传畸变是癌细胞生存的根源,不关基因突变 ...
朗日生物

免疫细胞治疗专区

欢迎关注干细胞微信公众号

  
查看: 21259|回复: 0
go

缺氧导致表观遗传畸变是癌细胞生存的根源,不关基因突变(附原文) [复制链接]

Rank: 7Rank: 7Rank: 7

积分
13286 
威望
13286  
包包
34831  

论坛元老 精华勋章 金话筒 专家 优秀会员 优秀版主

楼主
发表于 2016-8-18 16:16 |只看该作者 |倒序浏览 |打印
本帖最后由 细胞海洋 于 2016-8-22 22:32 编辑
$ q/ F' Z% m, m7 l. I; p( P+ _1 P& E: h5 E, M
人们通常认为致癌因素导致单个细胞的DNA变异,基因突变干扰了正常的细胞功能,从而造出细胞的疯狂增殖。本研究发现缺氧导致表观遗传畸变才是癌细胞生存和发展的根源, 与基因突变没有必然联系。& Y4 m/ W" w+ R6 k, F

: f5 N/ U, Z+ e8 x1 Q+ \8 I
  c9 C( r# R: }1 Y1 p  O& eThe lack of oxygen in tumor cells changes the cells' gene expression, thereby contributing to the growth of cancer. This is the main conclusion of a research project led by professor Diether Lambrechts and Dr. Bernard Thienpont (VIB-KU Leuven), which was published in the renowned scientific journal Nature. The findings are far-reaching, as the study also proved that maintaining a proper oxygen supply in tumors inhibits these so-called 'epigenetic aberrations'. The paper's insights could eventually lead to new anti-cancer drugs that target blood vessels or the epigenetic aberrations.
1 Y7 U4 E0 ~* b3 f- kCancer onset is generally well-understood: due to chance or carcinogenic factors, a single cell's DNA mutates, followed by the rapid expansion of the abnormal cell. These genetic mutations disturb normal cell function, but are beneficial for the growth and survival of cancer cells. But apart from these genetic changes, tumors cells also differ epigenetically, which has to do with how genes are expressed rather than the genes themselves.
- X7 u$ y$ {2 g% M- P' w& UPertinent to a wide range of cancers9 {2 P4 Q3 {& ^5 ?6 {
Although epigenetic changes don't affect the genetic code, they can strongly disturb gene function in a similar way, to the benefit of cancer cells. But until now, the origins of these epigenetic changes mostly remained a mystery. Scientists from the lab of professor Lambrechts investigated one frequent epigenetic alteration: hypermethylation, or the excessive addition of methyl groups to DNA. Hypermethylation silences the expression of tumor suppressing genes, thereby enabling the aberrant behavior of cells and the excessive growth of tumors.3 b# _8 X4 Y+ f% _8 h1 W/ x
Diether Lambrechts (VIB-KU Leuven): "Our study shows that these epigenetic alterations are caused by the environment of the tumor, and more specifically by oxygen shortage - which we call 'hypoxia'. Oxygen is required by the enzymes that normally remove the methyl groups from the DNA. When there is oxygen shortage, too much methylation is retained, causing hypermethylation. Even more, hypoxia explains up to half of the hypermethylation in tumors. While we dedicated much of our efforts to breast tumors, we also demonstrated that this mechanism has a similarly broad impact in bladder, colorectal, head and neck, kidney, lung and uterine tumors."0 S/ K3 q, F% {
Diagnostic and therapeutic uses0 M* l, M' ~) K2 r
Uncovering the link between oxygen shortage and tumor growth was the result of the analysis of over 3,000 patient tumors. As a next step, the researchers verified another assumption: would interfering with tumor oxygen supply strike a blow against the progression of cancer? They were pleased to see this hypothesis confirmed: using mice, they proved that normalizing the blood supply is sufficient to stop the epigenetic alterations from occurring.
( N- y  B4 `- i0 GBernard Thienpont (VIB-KU Leuven): "Our new insights can have a potentially huge impact on cancer management. First of all, we could use epigenetic aberrations to monitor the oxygen supply to a tumor, allowing us to better predict tumor behavior and make more informed treatment decisions. Secondly, it sheds new light on existing blood vessel targeting therapies. They don't only help deliver chemotherapy to the tumor, but also inhibit new epigenetic aberrations. This could in turn help make relapses less aggressive, and thus prove to be therapeutically beneficial."
: |9 Q, t* \# e+ ]& _$ n# |; @Next steps
$ m8 n' `5 ?3 X: V! C8 j& }- RThe first ambition is already in full swing: the VIB lab is now testing whether analyzing tumor DNA can be used to predict tumor oxygenation. The scientists are also engaged in new research that focuses on blood vessel normalizing therapies. "We want to know whether it's not just possible to inhibit, but maybe even to reverse some of these epigenetic aberrations. Following through on these and other new research avenues gives us great faith in the future of cancer research," concludes prof. Lambrechts., z) c4 k4 L, F$ n6 D/ H7 b* Q
Explore further: Review article provides new insights on how tumors metastasize
- s) }/ G' X4 M! R8 z$ QMore information: Tumour hypoxia causes DNA hypermethylation by reducing TET activity. Nature, 2016. " B2 P/ f" y( Y) K0 K+ {- K; K1 [0 ^
http://medicalxpress.com/news/20 ... -factor-cancer.html
1 u0 ~! v' Q9 j/ k
附件: 你需要登录才可以下载或查看附件。没有帐号?注册
已有 1 人评分威望 包包 收起 理由
细胞海洋 + 5 + 20 极好资料

总评分: 威望 + 5  包包 + 20   查看全部评分

‹ 上一主题|下一主题
你需要登录后才可以回帖 登录 | 注册
验证问答 换一个

Archiver|干细胞之家 ( 吉ICP备2021004615号-3 )

GMT+8, 2025-6-20 12:15

Powered by Discuz! X1.5

© 2001-2010 Comsenz Inc.