Genetic markings could spot cancer before it develops

Source: www.thealmagest.com Author: press release Unique DNA markings on certain genes may “predict” the risk of developing head and neck cancer, according to new research led by Queen Mary University of London. The findings, published in the journal Cancer, raise the potential for the development of non-invasive tests which could pick up these tell-tale signs of early cancer initiation. Head and neck cancers are cancers that develop anywhere in the head and neck, including mouth cancer and throat cancer. About 16,000 people in the UK are diagnosed with head and neck cancer every year*. In this study scientists analysed clinical specimens of malignant tissue from 93 cancer patients from Norway and the UK. These were compared with either tissue donated by healthy individuals undergoing wisdom tooth extractions, or with non-cancerous tissue from the same patients. They were trying to identify whether there were any epigenetic changes in the cancerous cells which were not seen in the healthy cells. Epigenetics is the study of changes in gene expression caused by mechanisms other than changes in the underlying DNA sequence. Not all genes are active all the time and there are many ways that gene expression is controlled. DNA methylation marks act as ‘switches’, either turning genes on or off. Abnormal DNA methylation is known to precede cancer initiation. Lead researcher Dr Muy Teck-Teh, from the Institute of Dentistry at Queen Mary, said: “In this study we have identified four genes which were either over or under-expressed in head and neck cancer. [...]

2013-12-09T07:49:48-07:00December, 2013|Oral Cancer News|

Genetic Changes Outside Nuclear DNA suspected to trigger more than half of all cancers

Source: www.newswise.com Author: staff A buildup of chemical bonds on certain cancer-promoting genes, a process known as hypermethylation, is widely known to render cells cancerous by disrupting biological brakes on runaway growth. Now, Johns Hopkins scientists say the reverse process — demethylation — which wipes off those chemical bonds may also trigger more than half of all cancers. One potential consequence of the new research is that demethylating drugs now used to treat some cancers may actually cause new cancers as a side effect. “It’s much too early to say for certain, but some patients could be at risk for additional primary tumors, and we may find that they need a molecular profile of their cancer before starting demethylating therapy,” says Joseph Califano, M.D., professor of otolaryngology–head and neck surgery and oncology at Johns Hopkins. The findings, based on studies of normal and cancer cells from human mouth, nose and throat tissue, provide more evidence that important regulators of gene activity occur outside as well as inside DNA in a cell’s nucleus. “While cancer-causing and other mutations alter vital protein-making pathways by rewriting the gene’s DNA code, epigenetic changes affect genes without changing the code itself. The new studies tell us that such changes occur not only when methyl groups bond to a gene’s on-off switch, but also when they come unglued,” says Califano. Califano says sporadic reports of demethylation as a tool in activating cancer-promoting genes led his team to develop a systematic way to discover these epigenetic changes [...]

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