Showing posts with label prostate. Show all posts
Showing posts with label prostate. Show all posts

Monday, 19 August 2013

Scientists find and assess prostate tumors with the help of sugar

Main Category: Prostate / Prostate Cancer
Article Date: 19 Aug 2013 - 1:00 PDT Current ratings for:
Scientists find and assess prostate tumors with the help of sugar
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A natural form of sugar could offer a new, noninvasive way to precisely image tumors and potentially see whether cancer medication is effective, by means of a new imaging technology developed at UC San Francisco in collaboration with GE Healthcare.

The technology uses a compound called pyruvate, which is created when glucose breaks down in the body and which normally supplies energy to cells. In cancer, however, pyruvate is more frequently converted to a different compound, known as lactate. Previous animal studies showed that scientists could track the levels of pyruvate as it is converted to lactate via magnetic resonance imaging (MRI), by using a technology called hyperpolarization and injecting the hyperpolarized pyruvate into the body. The amount of lactate produced and rate of conversion enabled researchers to precisely detect the limits of a mouse's tumor, identify which cancers were most aggressive and track early biochemical changes as tumors responded to medication, long before physical changes occurred.

Now, a 31-patient study performed by scientists at UCSF and their collaborators at GE Healthcare has shown that the technology is safe in humans and effectively detects tumors in patients with prostate cancer. Findings appeared online in Science Translational Medicine.

While this first-in-human study was designed to identify a safe dosage and verify effectiveness, it lays the groundwork for using the technology to diagnose a variety of cancers and track treatment non-invasively, without conducting repeated biopsies.

"We now have a safe dose for patients - that was our primary goal," said Sarah J. Nelson, PhD, a UCSF professor of radiology and director of the Surbeck Laboratory of Advanced Imaging at UCSF, who was lead author on the study and led a diverse team on this project.

"In animal models, the amount of lactate over pyruvate is directly related to the aggressiveness of the cancer. We also have a lot of data that show it's reduced in cancers after treatment," she said. "This is a very ubiquitous molecule that will be important in tailoring treatments to specific individuals."

Prostate cancer is the most common form of cancer, with more than 200,000 new cases reported each year in the United States, according to the Centers for Disease Control and Prevention. The increased use of prostate-specific antigen (PSA) levels for screening men has been widely recognized as having identified more patients with prostate cancer at an earlier, and potentially more treatable, stage. Many of those tumors are slow growing, but it is difficult to predict which those are.

For an oncologist, this real-time imaging could provide immediate feedback on whether a patient should continue active surveillance of the tumor or pursue treatment, and also whether a therapy is working, either during standard treatment or in a clinical trial.

"There are natural risks in any treatment for prostate cancer, including radiation therapy and surgery. Those risks can have an enormous impact on the patient's quality of life," said UCSF oncologist Eric Small, MD, a co-author on the paper, UCSF professor of medicine and urology, and deputy director of the UCSF Helen Diller Family Comprehensive Cancer Center. "This technology begins to give us the ability to more accurately assess the extent and risk of an individual patient's actual cancer, which is absolutely critical, but so far is largely an unmet medical need."

The technology developed out of a collaboration that began nearly eight years ago, when GE Healthcare approached UCSF to see whether it could translate technology it had developed with researchers in Sweden into a clinical application. The hyperpolarizing technology had been shown to detect animal tumors, but converting that for clinical use was a formidable challenge.

UCSF pulled together a team of researchers ranging from oncologists and radiologists to clinical pharmacists with the precise knowledge of building clean-rooms for pharmaceutical production. At the time, Nelson also was the scientific director of the UCSF arm of the California Institute for Quantitative Biosciences (QB3), which supports both basic and translational science at the crossroads of biology and the quantitative sciences, such as imaging and bioinformatics.

"UCSF and QB3 offered an unusual combination of talent all in one location. They brought together the best engineering from UC Berkeley and the best bioscience and pharmacy knowledge from UCSF, and are now demonstrating the technology in a world-renowned academic medical center," said Jonathan Murray, managing director of Research Circle Technology at GE Healthcare and a co-author on the paper. "At GE Healthcare, we are delighted with the speed of progress of this collaboration. The science is very exciting."

In the clinical research study, which started in December 2010, the researchers labeled pyruvate with carbon-13 and injected this "hyperpolarized pyruvate" imaging agent into 31 prostate cancer patients in the UCSF Medical Center and UCSF Helen Diller Family Comprehensive Cancer Center. The team then used an MRI to follow pyruvate and its conversion to lactate in the prostate. As in previous studies in mice, the higher, more intense signals indicated a more rapid conversion to lactate, possibly a sign of more aggressive cancer. In contrast, there was very limited conversion detected in normal prostate.

The study deliberately focused on patients with low-grade tumors who had not yet received treatment, to identify the safe and appropriate dosage of pyruvate needed. Future studies will use the technology to assess the effectiveness of a patient's cancer therapy in shrinking their tumor - knowledge that will enable physicians to assess the dosage of chemotherapy needed on an individual basis.

While potential commercial use is still five to 10 years away, the UCSF team has received grants to extend the technology for studies in patients with cancers of the brain, breast, liver, lymph glands, pancreas and prostate. GE Healthcare also has developed equipment to process the hyperpolarized pyruvate in a less technical environment, enabling a broader clinical trial in the future.

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

The project was funded through the National Institute of Biomedical Imaging and Bioengineering (NIH grants R01 EB007588 and R21 EB005363). The polarizer and costs of the 13C patient studies were supported with funding from GE Healthcare. Some of the MRI acquisition methods have been patented; the authors declare no other competing interests.

Metabolic Imaging of Patients with Prostate Cancer Using Hyperpolarized [1-13C]Pyruvate, Sci. Transl. Med. DOI: 10.1126/scitranslmed.3006070. Additional UCSF co-authors on the project include John Kurhanewicz, Daniel B. Vigneron, Peder E. Z. Larson, Andrea L. Harzstark, Marcus Ferrone, Mark van Criekinge, Jose W. Chang, Robert Bok, Ilwoo Park, Galen Reed, Lucas Carvajal, Pamela Munster, and Vivian K. Weinberg. Additional co-authors include Jan Henrik Ardenkjaer-Larsen, Albert P. Chen, Ralph E. Hurd, Liv-Ingrid Odegardstuen, James Tropp and Jonathan A. Murray from General Electric Healthcare, Waukesha, WI; and Fraser J. Robb, from USA Instruments, Inc., Aurora, OH.

Full results and author contributions can be found in the paper, Metabolic imaging of patients with prostate cancer using hyperpolarized [1-13C] pyruvate. Sci. Transl. Med. 5, 198ra108 (2013).

These concepts are still investigational and not being offered for sale, nor have they been cleared or approved by the FDA for commercial availability.

University of California - San Francisco

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Saturday, 17 August 2013

Research 'backs watchful waiting' in prostate cancer

Featured Article
Academic Journal
Main Category: Prostate / Prostate Cancer
Also Included In: Cancer / Oncology;  Men's Health
Article Date: 16 Aug 2013 - 8:00 PDT Current ratings for:
Research 'backs watchful waiting' in prostate cancer
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Prostate cancer researchers publishing in the Cancer Research journal argue for more watchful waiting to manage the disease, rather than moving straight to aggressive treatment or surgery.

"Radical prostatectomy or radiation therapy, the usual treatments for prostate cancer, can have negative side-effects such as impotence and incontinence," the lead researcher said.

Kathryn Penney ScD, instructor in medicine at the Harvard Medical School, added:

"Choosing active surveillance could prevent this decline in quality of life."

The research paper analyzes data from two sets of research - one study with 420 physicians recruited to it, and the other involving 787 health professionals. All had been treated with surgery following diagnosis made between the years 1982 and 2004.

The findings from these studies were divided up according to when the men received their disease diagnosis and treatment.

Correlations between the participants' grade of cancer disease (Gleason score) were drawn against the increasing use of PSA screening by doctors to help identify prostate cancer, which has risen "from 42% in 1994 to 81% in 2000."

The PSA test to detect prostate cancer is a means of screening that gives doctors clues as to whether a man has the disease.

The American Cancer Society (ACS) says most healthy men have levels of PSA (prostate-specific antigen) in their blood of under 4 nanograms per milliliter (ng/mL) and that the diagnostic test indicates a higher chance of prostate cancer the more the result rises above this level.

The PSA level is not completely reliable though - it does not always suggest cancer and does not necessarily show level of malignancy. The oncology experts for ACS list numerous other factors that can influence levels of prostate-specific antigen, including, among other possibilities:?

An enlarged prostate (benign prostatic hyperplasia, BPH, for example)Prostatitis (infection or inflammation of the gland)And simply age - levels are likely to rise slowly in older men.

Dr. Kathryn Penney, also associate epidemiologist at Brigham and Women's Hospital in Boston, MA, said:

"Over time, because of PSA screening, men have been more likely to be diagnosed with prostate cancer at an earlier stage, before the disease has had an opportunity to grow and spread."

The analysis by the researchers was designed to find out if the prostate screening test had succeeded in bringing about a reduction in severity of cancers.

Kathryn Penney
Dr. Kathryn Penney, lead author, says her study calls for more patience in the treatment of prostate cancer

But Dr. Kathryn Penney, said of the results:

"We were surprised by just how constant the incidence of high-grade disease has been over time."

"If Gleason grade also progressed over time, we would expect a similar decrease in high Gleason grade disease over time," Dr. Penney continued, adding:

"Men with low-grade disease at diagnosis should seriously consider talking with their doctors about active surveillance."

Written by Markus MacGill


Copyright: Medical News Today
Not to be reproduced without permission of Medical News Today Visit our prostate / prostate cancer section for the latest news on this subject. Gleason grade progression is uncommon, Kathryn Penney, Meir Stampfer, Jaquelyn Jahn and others, Cancer Res: 73; 5163. Published August 15, 2013. Please use one of the following formats to cite this article in your essay, paper or report:

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Friday, 16 August 2013

Low-grade prostate cancers may not become aggressive with time - adds support for "watch and wait" approach

Main Category: Prostate / Prostate Cancer
Also Included In: Men's Health
Article Date: 15 Aug 2013 - 0:00 PDT Current ratings for:
Low-grade prostate cancers may not become aggressive with time - adds support for "watch and wait" approach
2 stars5 stars

Prostate cancer aggressiveness may be established when the tumor is formed and not alter with time, according to a study published in Cancer Research, a journal of the American Association for Cancer Research.

Researchers found that after the introduction of widespread prostate-specific antigen (PSA) screening, the proportion of patients diagnosed with advanced-stage cancers dropped by more than six-fold in 22 years, but the proportion diagnosed with high Gleason grade cancers did not change substantially. This suggests that low-grade prostate cancers do not progress to higher grade over time.

Cancer stage refers to the extent or spread of the disease, and cancer grade, called Gleason grade for prostate cancer, refers to the aggressiveness of the disease.

"We were able to look at finely stratified time periods to capture pre-PSA, early-PSA, and late-PSA eras within one study. Over time, because of PSA screening, men have been more likely to be diagnosed with prostate cancer at an earlier stage, before the disease has had an opportunity to grow and spread. If Gleason grade also progressed over time, we would expect a similar decrease in high Gleason grade disease over time," said Kathryn Penney, Sc.D., instructor in medicine at the Harvard Medical School and associate epidemiologist at the Channing Division of Network Medicine at Brigham and Women's Hospital in Boston, Mass. "We were surprised by just how constant the incidence of high-grade disease has been over time."

This study adds more evidence to the argument that patients who are diagnosed with low-grade prostate cancers can opt for an active surveillance, or "watch and wait" approach instead of getting treated right away.

Penney and colleagues used data from 420 participants recruited to the Physicians' Health Study and 787 participants recruited to the ongoing Health Professionals Follow-up Study. All participants were diagnosed with prostate cancer between 1982 and 2004, and treated with surgery. The researchers reanalyzed prostate tissue collected from these patients to assess Gleason grade.

The researchers divided the data into four time periods based on when the participants received a diagnosis and treatment: 1982-1993, 1993-1996, 1996-2000, and 2000-2004, to represent the pre-PSA and PSA eras. They found that the number of participants who had undergone PSA screening increased from 42 percent in 1994 to 81 percent in 2000.

They also found that the number of late-stage cancers decreased from 19.9 percent in the 1982-1993 group to just 3 percent in the 2000-2004 group, reflecting an 85 percent drop in stage at diagnosis. However, there was only a moderate decrease in high Gleason grade cancers, from 25.3 percent in the 1982-1993 group to 17.6 percent in the 2000-2004 group, reflecting a 30 percent drop.

With further analyses, the researchers found that the moderate drop in high Gleason grade cancers was not because progression to more aggressive disease was prevented through screening, but because of an increased diagnosis of low-grade disease that would not have been detected without PSA screening.

"Radical prostatectomy or radiation therapy, the usual treatments for prostate cancer, can have negative side effects such as impotence and incontinence; choosing active surveillance could prevent this decline in quality of life," said Penney. "Men with low-grade disease at diagnosis should seriously consider talking with their doctors about active surveillance."

Article adapted by Medical News Today from original press release. Click 'references' tab above for source.
Visit our prostate / prostate cancer section for the latest news on this subject. Please use one of the following formats to cite this article in your essay, paper or report:

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American Association for Cancer Research. "Low-grade prostate cancers may not become aggressive with time - adds support for "watch and wait" approach." Medical News Today. MediLexicon, Intl., 15 Aug. 2013. Web.
15 Aug. 2013. APA
American Association for Cancer Research. (2013, August 15). "Low-grade prostate cancers may not become aggressive with time - adds support for "watch and wait" approach." Medical News Today. Retrieved from
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'Low-grade prostate cancers may not become aggressive with time - adds support for "watch and wait" approach'

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Monday, 29 July 2013

Study features practical solution for MRI-ultrasound fusion to enable tumor-targeted, tissue-preserving prostate HIFU treatment

Main Category: MRI / PET / Ultrasound
Also Included In: Prostate / Prostate Cancer
Article Date: 27 Jul 2013 - 0:00 PDT Current ratings for:
Study features practical solution for MRI-ultrasound fusion to enable tumor-targeted, tissue-preserving prostate HIFU treatment
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Study results published in the current issue of British Journal of Urology International (10.1111/bju.12223) demonstrate that new software to register and fuse information from magnetic resonance imaging (MRI) and ultrasound (US) images enables intraoperative visualization of tumors, not ordinarily seen in a US image. This technology has the potential to support new tissue-preserving treatments for prostate cancer, such as focal therapy.

In the study, "Image-Directed, Tissue-Preserving Focal Therapy of Prostate Cancer: a Feasibility Study of a Novel Deformable MR-US Registration System" researchers from University College London (UCL) evaluated the feasibility of using a computer-assisted, deformable image registration software to enable three-dimensional, multi-parametric MRI derived information on tumor location and extent to inform both the planning and treatment phase of focal high intensity focused ultrasound (HIFU) therapy using SonaCare Medical's Sonablate® 500 system.

Nested within the multi-center INDEX Trial, this pilot study employed computer assisted MRI-US image registration software within the planning of the first 26 men with a MRI-visible tumor treated at UCL with HIFU using a tissue-preserving quadrant, hemispheric (hemi) or extended hemi ablation therapy. Results demonstrated that thesoftware, developed at UCL, enables information of tumor location to be used for therapy planning using the Sonablate® 500 system without adding significant extra time to the standard procedural workflow. Such planning is particularly important for new tissue-preserving treatment approaches to ensure that the tumor is completely treated.

"Multi-parametric MRI has shown promise as an accurate method for determining the focality of tumors, and has promise as a potentially important enabler for minimally-invasive, tissue-preserving, or focal, HIFU treatments. However, most ablative technologies for localized prostate cancer use an ultrasound platform to plan and deliver treatment, on which the tumor cannot be accurately localized. This often results in discrepancies between the tumor and target volumes, potentially leading to under-treatment at the margins, or treatment of larger tissue volumes to compensate for inaccuracies in targeting," said lead author Louise Dickinson of UCL. "We are very pleased that the results of this pilot study demonstrate that deformable image registration is feasible and safe when introduced into a HIFU ablative therapy setting and suggests potential for improving the accuracy of targeting lesions using a tissue-preserving focal therapy approach."

The researchis based on breakthrough image analysis algorithms developed at the UCL Centre for Medical Image Computing and has undergone extensive clinical evaluation as part of clinical research studies led by Professor Mark Emberton, MD, Professor of Interventional Oncology and Director of the Division of Surgery and Interventional Science at UCL. Twenty-six prostate cancer patients have been successfully treated at UCLH using the Sonablate(®) 500 with the aid of this software as part of the INDEX Trial.

Dr. Dickinson added: "Indeed, if on-going clinical trials demonstrate clinical utility for focal therapy as an alternative to current standards of care, it is possible that image registration software may be essential for the efficient implementation of truly focal therapy techniques in which individual tumors are treated within an appropriate and safe surgical margin. The use of MRI-US registration potentially provides a cost-effective solution that, as shown in this study, can be easily integrated within existing workflows and interfaces, using standard surgical equipment."

Subsequent to this research, the team at UCL, led by Dr. Dean Barratt, is now developing a commercial version of their prostate image registration/fusion software, called "SmartTarget", with funding from the UK Department of Health and Wellcome Trust Health Innovation Challenge Fund. The SmartTarget project focuses on translating technology, which combines state-of-the-art diagnostic imaging with advanced image guidance technology to provide doctors with information on cancer location, size and shape so that it can be used to direct and guide prostate biopsy and minimally-invasive cancer treatments. In particular, the SmartTarget system exploits MRI, which can detect and characterize clinically significant cancers in a large proportion of patients.

"The adoption of tissue preserving approaches for the treatment of prostate cancer has been hampered by limitations in diagnosing and localizing clinically significant prostate cancers," said Mark Carol, M.D., Chief Development Officer for SonaCare Medical. "The publication of these results in the British Journal of Urology International is a tremendous validation of UCL's pioneering research in image registration and fusion technology that has led to significant advances in the validation and adoption of focal HIFU. We are proud to work with UCL to expand access to this breakthrough technology designed to enable targeted treatment of clinically significant prostate cancers."

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

Recently SonaCare Medical, a global leader in minimally-invasive High-Intensity Focused Ultrasound (HIFU) technologies, and UCL Business PLC (UCLB), a leading technology transfer company that supports and commercializes research and innovations from UCL, announced a partnership to integrate SmartTarget image registration and fusion software into SonaCare Medical's innovative Sonablate® 500 HIFU system.

SonaCare Medical

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'Study features practical solution for MRI-ultrasound fusion to enable tumor-targeted, tissue-preserving prostate HIFU treatment'

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View the original article here