New investigational treatment for bladder cancer

March 12, 2009

A team of researchers, led by Columbia University Medical Center faculty, has identified a new investigational therapy for the treatment of bladder cancer. The discovery was made using a new research model, using mice, which replicates many aspects of human bladder cancer. The model also enabled the researchers to demonstrate that two major tumor suppressor genes, p53 and PTEN, are inactivated in invasive bladder cancer. The findings and this new model are described in a paper in the March 15, 2009 issue of Genes & Development.

The new model disrupts a , known as mTOR, which blocks tumor growth. Inhibiting mTOR with a drug called rapamycin was found to significantly slow the progression of bladder tumors in mice.

The research was led by Drs. Cory Abate-Shen and Carlos Cordon-Cardo, both professors in the Departments of Urology and Pathology & Cell Biology and associate directors in the Herbert Irving Comprehensive Cancer Center of Columbia University Medical Center and NewYork-Presbyterian Hospital.

"We believe that this new of human will be invaluable to the field of bladder cancer research. Already it has provided a relevant preclinical model for therapeutic investigations and a strong rationale for targeting the mTOR signaling pathway in patients with ," said Dr. Abate-Shen.

"Importantly, the new insights that this model has provided about the role of the inactivation of both and PTEN in invasive bladder cancer may enable oncologists to more quickly identify patients with invasive disease, who may need aggressive treatment to slow the progression of their bladder cancer," said Dr. Cordon-Cardo, who is associate director for research infrastructure at the Herbert Irving Comprehensive Cancer Center and vice-chair of pathology at Columbia University Medical Center.

Bladder cancer is a serious health problem worldwide; it is the fifth most common malignancy and a major cause of cancer morbidity and mortality. Until now, there have been few mouse models that properly replicate the invasive capabilities of this disease, leaving researchers with few tools to help them develop new therapeutic approaches for combating it.

"This new mouse model is enormously important for the study of bladder cancer," said Daniel P. Petrylak, M.D., associate professor of medicine at Columbia University College of Physicians & Surgeons and Director of the Genitourinary Oncology Program at New York-Presbyterian Hospital/Columbia.

"Based on the initial findings about the efficacy of inhibiting the mTOR signaling pathway with rapamycin in the mouse model, I am excited to be collaborating with Dr. Abate-Shen to further investigate the implications of this research," said James McKiernan, M.D., the John and Irene Given Associate Professor and director of urologic oncology at the Herbert Irving Comprehensive Cancer Center, who was not involved in the study.

Role of p53 and PTEN in Bladder and Other Cancers

P53 and PTEN have been found to be mutated in a significant number of advanced cancers, in bladder cancer representing approximately 41 percent of the invasive tumors and previously published research has demonstrated that their combined inactivation has profound consequences for tumor growth in many contexts, including lymphoma, prostate cancer and brain tumors. In 1997, Ramon Parsons, M.D., Ph.D., at Columbia University College of Physicians and Surgeons, led one of two teams that independently identified PTEN and discovered that knocking out PTEN sends a strong pro-growth signal on tumor cells.

Source: Columbia University Medical Center (news : web)


print this article email this article download pdf blog this article bookmark this article     Stumble it Digg this share on Facebook retweet share on Reddit add to delicious
Rate this story - not rated yet


March 12, 2009 all stories

Comments: 0

not rated yet
  • Stumble this up

  • Digg this

  • share this

  • hide
  • Related Stories




  • hide
  • Relevant PhysicsForums posts

  • Improving the brain through chemistry
    created Nov 07, 2009
  • Sleep / REM Sleep and homeostasis
    created Nov 07, 2009
  • The Biceps Reflex
    created Nov 05, 2009
  • Consequenses of striking a Vein and an artery?
    created Nov 05, 2009
  • More from Physics Forums - Medical Sciences

Other News

Young tennis players who play only 1 sport are more prone to injuries

Young tennis players who play only one sport are more prone to injuries

Medicine & Health / Health

created 50 minutes ago | popularity not rated yet | comments 0

Gifted young athletes are under increasing pressure to play only one sport year round.


Scientists uncover new key to the puzzle of hormone therapy and breast cancer

Scientists uncover new key to the puzzle of hormone therapy and breast cancer

Medicine & Health / Cancer

created 50 minutes ago | popularity 5 / 5 (1) | comments 0

The use of postmenopausal hormone therapy has decreased over time in the United States, which researchers suggest may play a key role in the declining rate of atypical ductal hyperplasia, a known risk factor ...


Breast density associated with increased risk of cancer recurrence

Medicine & Health / Cancer

created 57 seconds ago | popularity not rated yet | comments 0

A new study finds that women treated for breast cancer are at higher risk of cancer recurrence if they have dense breasts. Published in the December 15, 2009 issue of Cancer, a peer-reviewed journal of the American Cancer ...


Lawmaker wants probe of E. coli and school lunches

Medicine & Health / Diseases

created 1hour ago | popularity not rated yet | comments 0

(AP) -- The chairman of the House Education and Labor Committee wants an investigation into the risk of deadly E. coli getting into school lunches.


Developmental delay could stem from nicotinic receptor deletion

Medicine & Health / Genetics

created 16 hours ago | popularity 4.5 / 5 (2) | comments 0

The loss of a gene through deletion of genetic material on chromosome 15 is associated with significant abnormalities in learning and behavior, said a consortium of researchers led by Baylor College of Medicine in a report ...