Possible New Approach To Treating Deadly Leukemia In Babies

Main Category: Lymphoma / Leukemia / Myeloma
Also Included In: Pediatrics / Children's Health
Article Date: 13 Apr 2011 - 7:00 PDT

Current ratings for:
'Possible New Approach To Treating Deadly Leukemia In Babies'

Patient / Public:4 stars

4 (1 votes)

Healthcare Prof:not yet rated


A Loyola University Health System study points to a promising new approach to treating an aggressive and usually fatal leukemia in babies.

The study involved a type of leukemia called mixed lineage leukemia, or MLL leukemia. Only 25 to 50 percent of babies diagnosed with MLL leukemia survive the disease.

The study demonstrated how it may be possible to kill cancerous MLL cells by targeting a protein called DOT1. Researchers showed that, without the DOT1 protein, cancerous MLL cells died, said Charles Hemenway, MD, PhD, senior author of the study.

"We are focusing on the unique biology of MLL leukemia," Hemenway said.

The study was presented at the 2011 meeting of the American Association for Cancer Research in Orlando, Fla.

Between 5 and 10 percent of all leukemias are MLL positive. In children older than 1 who have MLL leukemia, the survival rate is about 75 percent. By comparison, the survival rate for most other childhood leukemias is about 90 percent. Adults who have MLL leukemia also have lower survival rates than those with other types of leukemia.

MLL is a subtype of leukemia caused by a mutation in a gene called MLL. The mutated gene codes for an abnormal MLL protein, which turns a blood cell into a cancer cell. For reasons researchers don't understand, MLL leukemia is more resistant to chemotherapy than other forms of leukemia.

In previous studies, Loyola researchers developed a small molecule, called PFWT, which binds to the MLL protein. This binding effectively disables the MLL protein, leading to the death of the cancer cell. Later this year Hemenway plans to begin testing PFWT molecules on mice that have MLL leukemia.

The new study points to a second possible way to attack MLL cells, by targeting the DOT1 protein. DOT1 works in conjunction with the MLL protein. The study demonstrated that DOT1 is critical for keeping MLL cancer cells alive.

Researchers cultured MLL cells from mice. From these cells, researchers removed the gene that codes for the DOT1 protein. Without the gene, the cell no longer produced the DOT1 protein, and without the DOT1 protein, the cancerous cells died.

Loyola researchers are collaborating with researchers from Nemours/Alfred I. duPont Hospital for Children in Wilmington, Del., to identify molecules that could disable DOT1.

Hemenway said a double-barrel approach - targeting both the DOT1 and MLL proteins - potentially could be a more effective treatment than current chemotherapy, with fewer side effects. But it will take years of additional research and testing before such a treatment would be available for patients.

Hemenway said several other Loyola researchers are studying MLL leukemia. "There are a lot of opportunities for collaboration," he said.

Hemenway is the Ronald McDonald House Charities Endowed Professor in Pediatric Oncology and division director of Pediatric Hematology/Oncology at Loyola University Chicago Stritch School of Medicine. Other co-authors are first author Ming-Jin Chang, a visiting doctoral student at Stritch and Jeffrey Lynn, PhD, a postdoctoral researcher at Cleveland Clinic who previously studied in Hemenway's lab.

The study was supported by the Leukemia & Lymphoma Society.

Source:
Jim Ritter
Loyola University Health System

Article adapted by Medical News Today from original press release.
Visit our lymphoma / leukemia / myeloma section for the latest news on this subject.
There are no references listed for this article.
Please use one of the following formats to cite this article in your essay, paper or report:

MLA
Jim Ritter. "Possible New Approach To Treating Deadly Leukemia In Babies." Medical News Today. MediLexicon, Intl., 13 Apr. 2011. Web.
26 May. 2012. <http://www.medicalnewstoday.com/releases/222258.php>

APA
Jim Ritter. (2011, April 13). "Possible New Approach To Treating Deadly Leukemia In Babies." Medical News Today. Retrieved from
http://www.medicalnewstoday.com/releases/222258.php.

Please note: If no author information is provided, the source is cited instead.



Add Your Opinion On This Article

'Possible New Approach To Treating Deadly Leukemia In Babies'

Please note that we publish your name, but we do not publish your email address. It is only used to let you know when your message is published. We do not use it for any other purpose. Please see our privacy policy for more information.

If you write about specific medications or operations, please do not name health care professionals by name.

All opinions are moderated before being included (to stop spam)

Your Name:*
E-mail Address:*
Your Opinion Title:*
Opinion:*
This is to help prevent SPAM submissions. Please enter the words exactly as they appear, including capital letters and punctuation.*

* Fields marked with a * need to be filled in before you hit the submit button.

Contact Our News Editors

For any corrections of factual information, or to contact the editors please use our feedback form.

Please send any medical news or health news press releases to:

Note: Any medical information published on this website is not intended as a substitute for informed medical advice and you should not take any action before consulting with a health care professional. For more information, please read our terms and conditions.


Lymphoma / Leukemia / Myeloma

What Is Lymphoma?

Lymphoma is a type of cancer that begins in immune system cells called lymphocytes. Like other cancers, lymphoma occurs when lymphocytes are in a state of uncontrolled cell growth and multiplication. Read more...

Most Popular Articles



Follow Our Lymphoma News On Twitter

Follow Us On Twitter
Get the latest news for this category delivered straight to your Twitter account. Simply visit our Lymphoma / Leukemia / Myeloma Twitter account and select the 'follow' option.



View list of all 'What Is...' articles »