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DEVICE TALKS
DEVICE TALKS BOSTON 2018: BIGGER AND BETTER THAN EVER! Join us Oct. 8-10 for the 7th annual DeviceTalks Boston, back in the city where it [...]
6th Annual HealthIMPACT Midwest
2018-10-10    
All Day
REV1 VENTURES COLUMBUS, OH The Provider-Patient Experience Summit - Disrupting Delivery without Disrupting Care HealthIMPACT Midwest is focused on technologies impacting clinician satisfaction and performance. [...]
15 Oct
2018-10-15 - 2018-10-16    
All Day
Conference Series Ltd invites all the participants from all over the world to attend “3rd International Conference on Environmental Health” during October 15-16, 2018 in Warsaw, Poland which includes prompt keynote [...]
17 Oct
2018-10-17 - 2018-10-19    
7:00 am - 6:00 pm
BALANCING TECHNOLOGY AND THE HUMAN ELEMENT In an era when digital technologies enable individuals to track health statistics such as daily activity and vital signs, [...]
Epigenetics Congress 2018
2018-10-25 - 2018-10-26    
All Day
Conference: 5th World Congress on Epigenetics and Chromosome Date: October 25-26, 2018 Place: Istanbul, Turkey Email: epigeneticscongress@gmail.com About Conference: Epigenetics congress 2018 invites all the [...]
Events on 2018-10-08
DEVICE TALKS
8 Oct 18
425 Summer Street
Events on 2018-10-10
Events on 2018-10-17
17 Oct
Events on 2018-10-25
Epigenetics Congress 2018
25 Oct 18
Istanbul
Latest News

Taking uncertainty out of cancer prognosis

cancer prognosis

A cancer diagnosis tells you that you have cancer, but how that cancer will progress is a terrifying uncertainty for most patients. Researchers at Cold Spring Harbor Laboratory (CSHL) have now identified a specific class of biomarkers that can tell a lot about how aggressive a patient’s cancer will be.

An analysis of nearly 20,000 cancer patient histories and genetic data has revealed that knowing the genetic cause of a cancer does not help predict how deadly the disease will be. Instead, researchers from CSHL have discovered that copy number variations in specific gene sites are far more informative, providing new opportunities to improve prognosis.

“There are undoubtedly dozens or hundreds of mutations that cause cancer, and that can be found in almost any tumor,” said CSHL Fellow Jason Sheltzer. “That’s why it was surprising to discover that these mutations are pretty evenly distributed in early-stage benign cancer as well as in the really aggressive, highly-malignant cancers.”

In other words, the mutations that cause cancer don’t actually tell you all that much about who will end up surviving and who will end up dying from cancer.

That’s why Sheltzer set out to find other easily identifiable factors that can determine a cancer patient’s prognosis. With the aid of software engineer Joan Smith, Sheltzer collected and analyzed the comprehensive history of nearly 20,000 cancer patients.

According to a paper recently published in the journal eLife, his team not only traced each patient’s outcome—whether it be recovery or tragedy—but also took a closer look at genetic sites commonly associated with cancer causing mutations.

“While there wasn’t very much of a difference in the types of mutations that benign and aggressive tumors had,” said Sheltzer, “when we looked at copy number changes in these same genes, we found a very significant difference.”

Normally, the genetic information in a human cell comes in two copies distributed among 23 pairs of chromosomes. However, cancer cells often gain or lose chromosomes.

“A lot of cancers instead of having two copies of a gene, will have three copies, four copies, five copies, or only one copy of a gene instead,” explained Sheltzer. “We looked at the relationship between these copy number alterations and what happens to cancer patients and found a strong relationship.”

Sheltzer now hopes to launch a prospective analysis, closely studying new cancer patients for years after diagnosis. This could highlight which kinds of copy number changes are associated with which outcomes.

“That would be one of the first steps towards taking what we’ve learned and translating it into a clinically useful tool that could also provide patients with peace of mind,” said Sheltzer.

About Cold Spring Harbor Laboratory

Founded in 1890, Cold Spring Harbor Laboratory has shaped contemporary biomedical research and education with programs in cancer, neuroscience, plant biology and quantitative biology. Home to eight Nobel Prize winners, the private, not-for-profit Laboratory employs 1,100 people including 600 scientists, students and technicians. The Meetings & Courses Program annually hosts more than 12,000 scientists. The Laboratory’s education arm also includes an academic publishing house, a graduate school and the DNA Learning Center with programs for middle and high school students and teachers. For more information, visit www.cshl.edu.

SOURCE Cold Spring Harbor Laboratory

Related Links
http://www.cshl.edu