Showing posts with label cervical cancer. Show all posts
Showing posts with label cervical cancer. Show all posts

17 Jan 2013

Cancer Focus: Pap Test for OVCA by G. Pawelski

'Pap' test possible for Ovarian Cancer?
(reprinted with permission from Gregory Pawelski)


Using cervical fluid obtained during routine Pap tests, scientists at the Johns Hopkins Kimmel Cancer Center have developed a test to detect ovarian and endometrial cancers. In a pilot study, the "PapGene" test, which relies on genomic sequencing of cancer-specific mutations, accurately detected all 24 (100 percent) endometrial cancers and nine of 22 (41 percent) ovarian cancers. Results of the experiments are published in the journal, Science Translational Medicine.

The investigators note that larger scale studies are needed before clinical implementation can begin, but they believe the test has the potential to pioneer genomic-based cancer screening tests.

The Papanicolaou (Pap) test, during which cells collected from the cervix are examined for microscopic signs of cancer, is widely and successfully used to screen for cervical cancers. However, no routine screening method is available for ovarian or endometrial cancers.

Since the Pap test occasionally contains cells shed from the ovaries or endometrium, cancer cells arising from these organs could be present in the fluid as well, says Luis Diaz, M.D., associate professor of oncology at Johns Hopkins and director of the Swim Across America Laboratory. The Laboratory is sponsored by a volunteer organization that raises funds for cancer research. "Our genomic sequencing approach may offer the potential to detect these cancer cells in a scalable and cost effective way," adds Diaz.

Cervical fluid of patients with gynecologic cancer carries normal cellular DNA mixed together with DNA from cancer cells, according to the investigators. Their task was to use genomic sequencing to distinguish cancerous from normal DNA.

The scientists had to determine the most common genetic changes in ovarian and endometrial cancers in order to prioritize which genomic regions to include in their test. They searched publically-available genome-wide studies of ovarian cancer, including those done by other Johns Hopkins investigators, to find ovarian-cancer specific mutations. Such genome-wide studies were not available for the most common type of endometrial cancer, so they conducted genome-wide sequencing studies on 22 of these endometrial cancers.

From the ovarian and endometrial cancer genome data, the Johns Hopkins-led team identified 12 of the most frequently mutated genes in both cancers and developed the PapGene test with this insight in mind.

The investigators then applied PapGene on Pap test samples from ovarian and endometrial cancer patients at The Johns Hopkins Hospital, Memorial Sloan-Kettering Cancer Center, the University of Sao Paulo in Brazil and ILSBio, a tissue bank. The new test detected both early and late stage disease in the endometrial and ovarian cancers tested. No healthy women in the control group were misclassified as having cancer.

The investigators' next steps include applying PapGene on more samples and working to increase the test's sensitivity in detecting ovarian cancer. "Performing the test at different times during the menstrual cycle, inserting the cervical brush deeper into the cervical canal, and assessing more regions of the genome may boost the sensitivity," says Chetan Bettegowda, M.D., Ph.D., assistant professor of neurosurgery at Johns Hopkins.

Together, ovarian and endometrial cancers are diagnosed in nearly 70,000 women in the United States each year, and about one-third of them will die from it.

"Genomic-based tests could help detect ovarian and endometrial cancers early enough to cure more of them," says graduate student Yuxuan Wang, who notes that the cost of the test could be similar to current cervical fluid HPV testing, which is less than $100.

PapGene is a high-sensitivity approach for the detection of cancer-specific DNA mutations, according to the investigators; however, false mutations can be erroneously created during the many steps - including amplification, sequencing, and analysis - required to prepare the DNA collected from a Pap test specimen for sequencing. The investigators needed to build a safeguard into PapGene's sequencing method, designed to weed out artifacts that could lead to misleading test results.

"If unaccounted for, artifacts could lead to a false positive test result and incorrectly indicate that a healthy person has cancer," says graduate student Isaac Kinde.

Kinde added a unique genetic barcode - a random set of 14 DNA base pairs - to each DNA fragment at an initial stage of the sample preparation process. Although each DNA fragment is copied many times before eventually being sequenced, all of the newly-copied DNA can be traced back to one original DNA molecule through their genetic barcodes. If the copies originating from the same DNA molecule do not all contain the same mutation, then an artifact is suspected and the mutation is disregarded. However, bonafide mutations, which exist in the sample before the initial barcoding step, will be present in all of the copies originating from the original DNA molecule.

References:

Funding for the research was provided by Swim Across America, the Commonwealth Fund, the Hilton-Ludwig Cancer Prevention Initiative, the Virgina and D.K. Ludwig Fund for Cancer Research, the Experimental Therapeutics Center of Memorial Sloan-Kettering Cancer Center, the Chia Family Foundation, The Honorable Tina Brozman Foundation, The United Negro College Fund-Merck Graduate Science Dissertation Fellowship, the Burroughs Wellcome Career Award for Medical Scientists, the National Colorectal Cancer Research Alliance and the National Institutes of Health's National Cancer Center (N01-CN-43309, CA129825, CA43460).

In addition to Kinde, Bettegowda, Wang and Diaz, investigators participating in the research include Jian Wu, Nishant Agrawal, Ie-Ming Shih, Robert Kurman, Robert Giuntoli, Richard Roden, James R. Eshleman from Johns Hopkins; Nickolas Papadopoulos, Kenneth Kinzler and Bert Vogelstein from the Ludwig Center at Johns Hopkins; Fanny Dao and Douglas A. Levine from Memorial Sloan-Kettering Cancer Center; Jesus Paula Carvalho and Suely Kazue Nagahashi Marie from the University of Sao Paulo. Papadopoulos, Kinzler, Vogelstein and Diaz are co-founders of Inostics and Personal Genome Diagnostics. They own stocks in the companies and are members of their Scientific Advisory Boards. Inostics and Personal Genome Diagnostics have licensed several patent applications from Johns Hopkins. These relationships are subject to certain restrictions under The Johns Hopkins University policy, and the terms of these arrangements are managed by the University in accordance with its conflict-of-interest policies.

Citation: Johns Hopkins Medicine. "Detecting Ovarian, Endometrial Cancers Using "PapGene" Test." Medical News Today. MediLexicon, Intl., 11 Jan. 2013

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Gregory D. Pawelski

1 Jan 2012

Cervical Cancer Awareness Month

January is Cervical Cancer Awareness month in the USA and Australia - a "sister" cancer to ovarian cancer in that it's a member of the gynaecological cancer family.  It differs vastly from ovarian cancer as it is readily detectable and often preventable.  If caught at an early stage, it's curable.

Cervical cancer is detectable by the Pap test which highlights cell abnormalities and allows for early treatment.  According to the National Cervical Cancer Coalition, most women whose cells progress to cervical cancer have not had a Pap test in the previous 3 to 5 years.  The majority of these women are 35-55 years old.  There are two main types of cervical cancer - adenocarcenoma of the cervix and squamous cell carcenoma.  Certain studies report the former to be much more aggressive than squamous cell - which is the more common (80%) of the two.
 
Two types of Human Papillomavirus (HPV) are found in 99% of cervical cancers.  HPV is considered the most common sexually transmitted infection in the US.  For 90% of women, this infection clears up on its own within two years.  Those subject to persistent infection have a higher risk of developing abnormal cells.  Other risk factors include - high parity (large number of live births), smoking and multiple sex partners. A publication in the Lancet 2002 states that there is solid evidence that long-term use of oral contraceptives is associated with 3-4 times increased risk of cervical cancer.  Long-term is defined as 5-9 years (3 times the risk) and 10 years plus (4 times the risk).

As stated above, the best and simplest way of detecting cervical cancer is with a Pap test.  Secondarily, an HPV test may be recommended.  Symptoms of cervical cancer can include abnormal bleeding, pelvic pain not related to your period, increased urinary frequency, unusual discharge and pain during urination.Today, there is an HPV vaccine available which is said to have a 70-80% effectiveness in preventing cervical cancer.  Many States in the US and most Provinces in Canada encourage and/or require girls to be immunised before starting Middle School or High School.  This is not without controversy.  All inoculations have a potential for side effects.  However, the bigger issue seems to be one of morality.  In certain views, the vaccine is regarded as a green light for sexual permissiveness in teens.

Caught at an early stage, cervical cancer is often treated with surgery and perhaps pelvic radiation.  The protocol for advanced cervical cancer includes the use of chemotherapy and radiation therapy after a radical hysterectomy and lymphadenectomy.  Recurrent cervical cancer lesions can be re-treated with radiation and chemotherapy with a very poor prognosis.

On a personal note, we have a family member who is in palliative care - at the end stage of her struggle with cervical cancer.  As a nurse, she followed all the rules but sadly ended up with the short straw.  She is accepting, courageous and at peace.  One of my girlfriends has an  Irish grandmother who would say "her place in heaven is assured".

Awareness and prevention of this dreaded disease is everything.  Absent overt signs and symptoms, women up to the age of 70 are encouraged, even after having been vaccinated, to have a Pap test at least every 3 years.