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Showing posts with label Glioblastoma. Show all posts
Showing posts with label Glioblastoma. Show all posts

Wednesday, June 19, 2013

No Benefit Offered By Bevacizumab For Newly Diagnosed Glioblastoma

Main Category: Cancer / Oncology
Also Included In: Neurology / Neuroscience
Article Date: 04 Jun 2013 - 0:00 PDT Current ratings for:
No Benefit Offered By Bevacizumab For Newly Diagnosed Glioblastoma
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The angiogenesis inhibitor bevacizumab (Avastin) failed to increase overall survival (OS) or statistically significant progression-free survival (PFS) for glioblastoma patients in the frontline setting, according to research led by researchers at The University of Texas MD Anderson Cancer Center.

The study was presented at the American Society of Clinical Oncology 2013 Annual Meeting by Mark Gilbert, M.D., professor in MD Anderson's Department of Neuro-Oncology.

Glioblastoma is both the most common and lethal form of brain cancer. More than 12,000 people will be diagnosed with the disease in 2013, with an average survival rate of less than 18 months, said Gilbert.

Bevacizumab works as a monoclonal antibody against VEGF-A, which is produced by glioblastoma to stimulate blood vessel growth. The angiogenesis inhibitor first showed promise in glioblastoma as clinicians reported positive results treating the disease under approved compassionate use. Numerous institutional studies then found similar results: a 35-40 percent objective response rate, or tumor shrinkage, of more than 50 percent, and a six-month PFS rate in the mid-30 percent, said Gilbert. With those findings, in May, 2009, the FDA granted an accelerated registration of bevacizumab in the second line setting.

However, before this trial, no randomized, double-blind studies with the drug in glioblastoma had been conducted.

"Obviously, glioblastoma is a cancer with too few effective therapies," said Gilbert, who also holds the Blanche Bender Professorship in Cancer Research. "When we launched this study, those in the field of brain cancer - both the scientific and patient communities - were excited. Bevacizumab recently received approval in the second-line (recurrent disease) setting, and we knew some physicians were already giving the drug as a frontline therapy - even with virtually no data to support that decision. It was important from a patient care and regulatory standpoint that we conduct this trial."

The Phase III, international study (RTOG 0825) was a collaboration of three cooperative groups: RTOG, NCCTG and ECOG.

The randomized, double-blind, placebo-controlled study registered 978 and enrolled 637 patients, respectively, all of whom were newly diagnosed with glioblastoma. Participants underwent surgery to resect some or most of the tumor, received the standard of care of chemoradiation with temozolomide, and were randomized to receive either bevacizumab or placebo. The study was designed with two primary endpoints: PFS and OS.

Two distinguishing factors of the study design include: crossover to bevacizumab in the placebo arm at the time of progression, and longitudinal assessment of symptom burden, neurocognitive function and quality of life.

"With the crossover, we could determine the possible overall, or progression free survival benefits that could distinguish the potential benefits of early versus later use of bevacizumab," Gilbert said. "Also, there may be some alternative advantages for delaying progression in the disease. In order to interpret that possible delay in progression, it was important to understand what the quality of the survival of that possible progression free survival interval."

A third distinction: the study was designed to look at the impact of pre-specified molecular markers -- a nine-gene signature expression and MGMT methylation -- to determine if a subgroup that specifically benefited from bevacizumab could be identified.

The researchers found no difference in OS between the bevacizumab and placebo arms, 15.7 and 16.1 months, respectively. PFS did not reach the pre-set level statistical significance -- although longer ??in those taking bevacizumab upfront (10.7 months), compared to in those receiving placebo (7.3 months).

Bevacizumab was associated with a higher rate of toxicities, including hypertension, bleeding, deep vein thrombosis and pulmonary embolism, and gastrointestinal perforation. Those on the therapy also experienced increase rates of symptom burden and neurocognitive decline, as well decreased quality of life, compared to those on placebo.

When looking at the molecular markers, no subgroup of patients that benefitted from bevacizumab could be identified, said Gilbert.

Despite the disappointing findings, Gilbert stressed that the study did not find that bevacizumab had no place in the management of glioblastoma.

"Ultimately, our study showed that bevacizumab has the same benefit whether given early or late and because of the risk of extra toxicity upfront, its used can be reserved as a later treatment for most patients," said Gilbert.

Complementary studies detailing quality of life, symptom burden and molecular findings will all be presented by MD Anderson faculty at the meeting.

Article adapted by Medical News Today from original press release. Click 'references' tab above for source.
Visit our cancer / oncology section for the latest news on this subject. Abstract 1

In addition to Gilbert, others on the international study include: Kenneth D. Adalpe, M.D., Paul D. Brown, M.D., Ritsuko Komaki, M.D., Eric Sulman, M.D. Ph.D., and Jeffrey Wefel, all of MD Anderson; James Dignam, Ph.D., and Minhee Won, both of RTOG; Minesh Mehta, M.D., professor, University of Maryland Medical Center; Deborah T. Blumenthal, M.D., Tel Aviv Sourasky Medical Center; Michael A. Vogelbaum, M.D., Ph.D., Cleveland Clinic Foundation; Howard Colman, M.D., Ph.D., Huntsman Cancer Institute; Arnab Chakravarti, M.D., Arthur James Cancer Center; Robert Jeraj, Ph.D., University of Wisconsin; Terri S. Armstrong, Ph.D., University of Texas Health Science Center School of Nursing; Kurt Jaeckle, M.D., Mayo Clinic Florida; David Schiff, M.D., University of Virginia Medical Center; James Atkins, M.D., National Surgical Adjuvant Breast and Bowel Project and SCCC-CCOP; David Brachman, M.D., Arizona Oncology Services Foundation; and Maria Werner-Wasik, M.D., Thomas Jefferson University Hospital.

Gilbert is on Roche's advisory board; Genentech financially supported the 0825 study; it was also supported by NCI U10CA 21661, U10 CA37422.

University of Texas M. D. Anderson Cancer Center

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5 Jun. 2013. APA

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posted by Greg P. on 4 Jun 2013 at 1:16 pm

Wow! This is blockbuster news! In one study, patients who were expected to benefit the most from Avastin based on "genetic" testing had the worst survival rates.

Bevacizumab-induced tumor calcifications can be elicited in glioblastoma microspheroid culture and represent massive calcium accumulation death (MCAD) of tumor endothelial cells

http://precedings.nature.com/documents/7069/version/1

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'No Benefit Offered By Bevacizumab For Newly Diagnosed Glioblastoma'

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Monday, June 17, 2013

Identifying Glioblastoma Patients Most Likely To Benefit From Bevacizumab

Main Category: Cancer / Oncology
Also Included In: Neurology / Neuroscience
Article Date: 04 Jun 2013 - 0:00 PDT Current ratings for:
Identifying Glioblastoma Patients Most Likely To Benefit From Bevacizumab
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A new test may help identify newly diagnosed glioblastoma patients more likely to benefit from bevacizumab (AvastinR), according to new research from The University of Texas MD Anderson Cancer Center.

The results of the study were presented at the annual meeting of the American Society of Clinical Oncology.

This study is associated with RTOG 0825, a large multi-center Phase III trial that evaluated the addition of bevacizumab to standard chemoradiation and maintenance temozolomide in treating newly diagnosed glioblastoma. Half of the participants received bevacizumab while the other half received a placebo.

Glioblastoma is the most frequent and aggressive type of brain tumor. Despite slight gains, tumors pose a high risk of recurrence and are commonly fatal.

"In general, glioblastomas are heterogeneous and no drug has been found that benefits every patient," said Erik Sulman, M.D., Ph.D., assistant professor in MD Anderson's Department of Radiation Oncology and lead author of the study. "We wanted to determine which patients are most likely to benefit from bevacizumab and use that information to develop a diagnostic tool that can predict which patients may be good candidates for the drug."

Does mesenchymal gene expression predict response to bevacizumab?

Bevacizumab is a monoclonal antibody that binds to the protein vascular endothelial growth factor. It is a type of anti-angiogenesis agent and prevents the growth of new blood vessels that tumors need to develop.

Previous studies found some patients with recurring glioblastoma have longer progression-free survival and receive some lessening of symptoms with the drug.

The goal of this study was to investigate the ability of a particular type of gene expression signature to predict response to bevacizumab.

Mesenchymal expression, poor outcomes correlated

As part of RTOG 0825, 637 randomized patients submitted specimens for molecular analysis. The umbrella study data also included molecular stratification that measured the degree of gene enrichment. These genes are known to function in cancer cell invasion and in establishing new blood supply, a function which bevacizumab is designed to prevent.

Researchers observed a significant association between a lower mesenchymal signature and better survival in patients taking bevacizamab.

Based on this association and following the examination of 43 genes in total, researchers modeled a novel gene expression predictor of outcome specific to those in the bevacizumab group.

"One of the key things about this predictor is that it's designed to be used on standard, archival tumors found in most clinical pathology labs," Sulman said. "It doesn't require fresh tissue."

Next steps

The group plans ongoing studies to determine the extent to which this gene signature represents a predictive marker for bevacizumab use in newly diagnosed glioblastoma.

"We will use data from the remaining patients on the trial to validate these findings," Sulman said. "We hope the test will be validated and used as a diagnostic tool to select patients for initial treatment with bevacizumab. Then, we plan to look beyond glioblastoma to see if it could benefit other tumor types currently treated or in clinical trials with bevacizumab."

Article adapted by Medical News Today from original press release. Click 'references' tab above for source.
Visit our cancer / oncology section for the latest news on this subject. Support sources for the study include Radiation Therapy Oncology Group (RTOG) grants U10 CA21661, CCOP grant U10 CA37422, Brain SPORE P50 CA127001 from the National Cancer Institute and Genentech, Inc.

Disclosures: Sulman received an honorarium from Merck.

In addition to Sulman other MD Anderson authors on the study include: Mark Gilbert, M.D., Paul Brown, M.D., Ritsuko Komaki, M.D. and Kenneth Aldape, M.D. Other authors include: Minhee Won, MA and James Dignam, Ph.D., Radiation Therapy Oncology Group; Deborah Blumenthal, M.D., Tel Aviv Sourasky Medical Center; Michael Vogelbaum, M.D., Ph.D., Cleveland Clinic; Howard Colman, M.D., Ph.D., Huntsman Cancer Institute; Robert Jenkins, M.D., Ph.D. and Kurt Jaeckle, M.D., Mayo Clinic; Arnab Chakravarti M.D., Ohio State University; Robert Jeraj, Ph.D., University of Wisconsin Madison; David Schiff, M.D., University of Virginia; James Atkins, M.D., Southeast Cancer Control Consortium; David Brachman, M.D., Arizona Oncology Services; Maria Werner-Wasik, M.D, Thomas Jefferson University Hospital; and Minesh Mehta, M.D., University of Maryland Medical Center.

University of Texas M. D. Anderson Cancer Center

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5 Jun. 2013. APA

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'Identifying Glioblastoma Patients Most Likely To Benefit From Bevacizumab'

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Sunday, June 16, 2013

Glioblastoma Patients Treated With Bevacizumab Experience Reduced Cognitive Function And Quality Of Life

Main Category: Neurology / Neuroscience
Also Included In: Cancer / Oncology
Article Date: 04 Jun 2013 - 0:00 PDT Current ratings for:
Glioblastoma Patients Treated With Bevacizumab Experience Reduced Cognitive Function And Quality Of Life
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Many glioblastoma patients treated with bevacizumab (AvastinR) have significant deterioration in neurocognitive function, symptoms and quality of life. Not only that, the changes often predict treatment outcomes, according to new research from The University of Texas MD Anderson Cancer Center.

The findings from the large national multi-center Phase III trial, RTOG 0825, were presented at the annual meeting of the American Society of Clinical Oncology.

Glioblastoma is the most frequent and aggressive type of brain tumor. Despite slight gains, tumors pose a high risk of recurrence and are commonly fatal.

Previous studies found bevacizumab, a monoclonal antibody directed against the vascular endothelial growth factor, prolongs progression-free survival (PFS) in patients with recurrent glioblastoma.

RTOG 0825, one of the largest trials to study the clinical benefit of a brain tumor treatment, evaluated newly diagnosed patients treated with bevacizumab, in addition to standard chemoradiation and maintenance temozolomide, versus those who received a placebo and standard treatment.

Tests measured effects of treatment

Using objective tests of cognitive function and subjective measures of symptoms and quality of life, 507 patients were evaluated at diagnosis and at intervals throughout treatment as long as scans showed their tumors were not progressing.

"Most studies rely on traditional endpoints, including overall survival and radiographic outcomes, such as PFS, with little attention to the impact of the disease and therapies on the patient," said Jeffrey Wefel, Ph.D., associate professor in MD Anderson's Department of Neuro-Oncology and a senior author on the study. "This makes the potential clinical benefit difficult to ascertain."

Neurocognitive changes

At the beginning of the study, patients' neurocognitive function in both groups was below healthy population norms. Longitudinal analyses showed those treated with bevacizumab compared to ones treated with placebo demonstrated greater decline in global neurocognitive function, executive function (skills involved in tasks such as planning, organizing and multi-tasking) and processing speed.

Additionally, baseline performance and early change (through week 10) in global neurocognitive function, memory, executive function and processing speed were prognostic for survival.

"Relatively little attention has been directed toward investigating patient biomarkers associated with outcomes," Wefel said. "We sought to determine if patient cognitive function was a biomarker associated with progression-free and overall survival (OS) time. We found patients with worse cognitive function at baseline, and those who experienced cognitive decline after concurrent chemoradiation with or without bevacizumab, were at greater risk for shorter PFS and OS time."

Quality of life and side effects

Symptoms and quality of life were significantly worse for patients receiving bevacizumab, particularly at weeks 22 and 34. In particular, symptom burden, including treatments, and generalized and affective symptoms were greater, with persistent differences seen in treatment-associated symptoms. Additionally, overall symptom burden, tumor and treatment-related symptoms, as well symptoms that interfered with daily activities, were also worse for those on bevacizumab over the treatment course.

Baseline and early change rating of both symptoms and quality of life, like neurocognitive function, were also prognostic for survival.

"The idea of our research was to put together the total picture of this treatment, not only how it affects the tumor, but how it affects patients and how they go about their lives," said Terri Armstrong, Ph.D., adjunct professor in MD Anderson's Department of Neuro-Oncology. "It was our hope this treatment would improve life for them, but that just wasn't the case. For many, both tumor and treatment-related symptoms were worse and continued to get worse over time."

Next steps

"We're eager to continue investigating the data within this trial to identify subsets of patients for whom a particular therapeutic approach may have been associated with a favorable net clinical benefit for survival, cognition, symptoms and quality of life," Wefel said.

Article adapted by Medical News Today from original press release. Click 'references' tab above for source.
Visit our neurology / neuroscience section for the latest news on this subject. Support sources for the study include Radiation Therapy Oncology Group (RTOG) grants U10 CA21661 and U10 CA37422 and Genentech, Inc.

Disclosures: Wefel serves on Genentech's advisory board and is a consultant to Roche. Armstrong also serves on Genentech's advisory board.

In addition to Wefel and Armstrong other MD Anderson authors on the study include Mark Gilbert, M.D. and Ritsuko Komaki, M.D. Other authors include: Stephanie Pugh, Ph.D. and Minhee Won, MA Radiation Therapy Oncology Group; Merideth Wendland, M.D., Willamette Valley Cancer Institute; David Brachman, M.D., Arizona Oncology Services; Ian Crocker, M.D., Emory University; H. Ian Robins, M.D., Ph.D., University Wisconsin Madison; R. Jeffrey Lee, M.D., Intermountain Medical Center; and Minesh Mehta, M.D., University of Maryland Medical Center.

Abstract # 2004 and 2003

University of Texas M. D. Anderson Cancer Center

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5 Jun. 2013. APA
University of Texas M. D. Anderson Cancer Center. (2013, June 4). "Glioblastoma Patients Treated With Bevacizumab Experience Reduced Cognitive Function And Quality Of Life." Medical News Today. Retrieved from
http://www.medicalnewstoday.com/releases/261338.php.

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'Glioblastoma Patients Treated With Bevacizumab Experience Reduced Cognitive Function And Quality Of Life'

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Tuesday, June 11, 2013

Progression Of Glioblastoma May Be Accelerated By Cytomegalovirus

Main Category: Cancer / Oncology
Also Included In: Neurology / Neuroscience;??Infectious Diseases / Bacteria / Viruses
Article Date: 04 Jun 2013 - 1:00 PDT Current ratings for:
Progression Of Glioblastoma May Be Accelerated By Cytomegalovirus
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A virus that infects most Americans but that usually remains dormant in the body might speed the progression of an aggressive form of brain cancer when particular genes are shut off in tumor cells, new research shows. The animal study by researchers at the Ohio State University Comprehensive Cancer Center - Arthur G. James Cancer Hospital and Richard J. Solove Research Institute (OSUCCC - James) and at Dana Farber Cancer Institute suggests that cytomegalovirus (CMV) might significantly accelerate the development and progression of glioblastoma, a deadly form of brain cancer.

The virus by itself does not cause cancer, the study suggests, but it might influence tumor development when changes occur that silence two genes called p53 and Nf1 in tumor cells. These genes are protective "tumor suppressor" genes that normally cause cells to die before they become malignant. But cancer-related changes can silence them, enabling malignant cells to survive, multiply and form tumors.

The findings are published in the journal Cancer Research. Some 50 to 80 percent of Americans become infected with CMV by age 40. The virus is transmitted by contact with infected saliva and other body fluids, and through sexual contact. Most people are infected early in life and then the virus remains dormant.

"CMV has been detected in many cancer types, suggesting that it might be reactivated when cancer occurs in the body," says co-corresponding author and researcher Dr. Chang-Hyuk Kwon, assistant professor of neurological surgery, at the OSUCCC - James and at the Dardinger Center for Neuro-oncology and Neurosciences.

The researchers also learned that CMV stimulates tumor-cell proliferation by activating a biochemical cell pathway called STAT3. In healthy cells, STAT3 plays an important role in controlling cell proliferation.

"Our data indicate that CMV contributes to glioblastoma when already-mutated cancer cells proliferate using the STAT3 signaling pathway," Kwon says. "We believe that CMV's action occurs in the tumor's cells of origin early in tumor initiation."

The findings raise questions about how cancer is studied, says co-corresponding author Dr. E. Antonio Chiocca, chairman of neurosurgery at the Brigham and Women's Hospital and surgical director for the Center for Neuro-oncology at Dana-Farber Cancer Institute in Boston.

"First, we usually study cancer in models that are virus-free, but our findings suggest that CMV might play a significant role in human cancers," he says.

"Secondly, anti-viral therapy against CMV might now be justified for human cancers, and immune responses to such cancer-modulating viruses should be carefully studied," Chiocca says.

About 18,500 new cases of glioblastoma multiforme are expected annually in the U.S., and 12,760 Americans are expected to die of the disease.

Kwon, Chiocca and their colleagues conducted the study using two mouse models infected with murine CMV (MCMV). One model developed glioblastoma spontaneously; the other received implants of human glioblastoma cells. Key technical findings include: MCMV-infected mice with genetic mutations in p53 and NF1 in their brain cells that predisposed them to spontaneous glioblastoma had shorter survival than non-MCMV-infected mice with the same mutations; Implanting human gliomas into the brains of MCMV-infected animals significantly shortened their survival compared with controls; MCMV infection increased levels of activated STAT3 in neural stem cells, the cells in which glioblastoma is thought to originate; Human CMV increased STAT3 activation and proliferation of patient-derived glioblastoma cells; a STAT3 inhibitor reversed this effect in cell and animal models. Article adapted by Medical News Today from original press release. Click 'references' tab above for source.
Visit our cancer / oncology section for the latest news on this subject. Other researchers involved in this study were Richard L. Price, Jieun Song, Katherine Bingmer, Tae Hyong Kim, Ji-Yeun Yi, Xiaokui Mo, Todd Hollon, Eric Murnan, Christopher Alvarez-Breckenridge, Soledad Fernandez, Balveen Kaur, Andreana Rivera, Michael Oglesbee and Charles Cook of Ohio State; and Michal O. Nowicki from the Brigham and Women's Hospital/Dana Farber Cancer Institute.

The Ohio State University Comprehensive Cancer Center – Arthur G. James Cancer Hospital and Richard J. Solove Research Institute strives to create a cancer-free world by integrating scientific research with excellence in education and patient-centered care, a strategy that leads to better methods of prevention, detection and treatment. Ohio State is one of only 41 National Cancer Institute (NCI)-designated Comprehensive Cancer Centers and one of only seven centers funded by the NCI to conduct both phase I and phase II clinical trials. The NCI recently rated Ohio State's cancer program as "exceptional," the highest rating given by NCI survey teams. As the cancer program's 210-bed adult patient-care component, The James is a "Top Hospital" as named by the Leapfrog Group and one of the top cancer hospitals in the nation as ranked by U.S.News & World Report.

Ohio State University Medical Center

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'Progression Of Glioblastoma May Be Accelerated By Cytomegalovirus'

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