Se afișează postările cu eticheta Developed. Afișați toate postările
Se afișează postările cu eticheta Developed. Afișați toate postările

joi, 15 decembrie 2011

New Food Allergy Model For Fenugreek Developed

Main Category: Nutrition / Diet
Also Included In: Allergy
Article Date: 15 Dec 2011 - 1:00 PST

email icon email to a friend   printer icon printer friendly   write icon opinions  
not yet ratednot yet rated
A mouse model to investigate allergy to fenugreek has been developed by Norwegian researchers. The model can also be used to study cross-reactivity to peanut, soy and lupin, major food allergens with public health relevance.

Fenugreek is a member of the legume family and is used as an ingredient in curries, chutneys and teas. Allergic reactions to fenugreek may be severe yet its presence is rarely declared in ingredient listings. There is also great concern about potential cross-reactivity with other legumes such as peanut, soy and lupin.

"Allergens that are hidden in generic terms like spices, pose a special problem for food-allergic people. Fenugreek is a well-known food ingredient in Asian dishes, and as dietary patterns are changing, we will be more exposed to fenugreek also in Norway. Mouse models are important research tools that give valuable information in the understanding of food allergies, and may contribute to develop specific therapies for these food allergies" says Nina Eriksen Vinje, researcher at the Division of Environmental Medicine at the Norwegian Institute of Public Health. Vinje is the first author of the paper published in the Scandinavian Journal of Immunology.

Cross-reactivity between peanut and fenugreek first came to attention in 2006. The Norwegian Food Allergy Register received reports about allergic reactions to food containing curry powder, and cross-reactivity between peanut and fenugreek was confirmed in two peanut-allergic patients. It has since been discovered that fenugreek gives a stronger cross-reaction to peanut than other legumes such as soy and green peas.

Mouse models

New foods need to be tested on specific food-allergy models for each potential allergen. Mice are used as they have a well-characterised immune system that resembles the human immune system, allowing researchers to study complex immune reactions. The food-allergy model for fenugreek developed by the Norwegian Institute of Public Health can also be used to understand suspected cross-reactivity to peanuts and other legumes.

Article adapted by Medical News Today from original press release. Source: Wiley-Blackwell
Visit our nutrition / diet 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:

MLA

Norwegian Institute of Public Health. "New Food Allergy Model For Fenugreek Developed." Medical News Today. MediLexicon, Intl., 15 Dec. 2011. Web.
15 Dec. 2011. APA

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


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)

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.



View the original article here

Prognostic Model Developed For MDS Related To Prior Cancer Therapy

Main Category: Cancer / Oncology
Article Date: 15 Dec 2011 - 2:00 PST

email icon email to a friend   printer icon printer friendly   write icon opinions  
not yet ratednot yet rated
A large-scale analysis of patients whose myelodysplastic syndrome is related to earlier cancer treatment overturns the notion that all of them have a poor prognosis, researchers from The University of Texas MD Anderson Cancer Center report at the 53rd Annual Meeting of the American Society of Hematology.

"MDS patients whose disease springs from earlier radiation, chemotherapy or both treatments are usually told that they have a poor prognosis. But by analyzing survival risk factors in a large patient population, we've found these patients fall into good, intermediate and poor prognostic groups," said study leader Guillermo Garcia-Manero, M.D., Ph.D., professor in MD Anderson's Department of Leukemia.

Understanding their differing characteristics will better inform treatment decisions for these patients, Garcia-Manero said.

Myelodysplastic syndrome consists of a group of diseases in which the bone marrow progenitor cells that normally morph into red and white blood cells and platelets fail to respond to normal growth controls. That results in too many progenitor cells (also known as blasts) and too few mature blood cells, and in about 30 percent of patients, the disease progresses to acute myeloid leukemia (AML).

Treatment-related MDS is often more resistant to therapy

Therapy-related MDS generally differs from other MDS cases by having more chromosomal abnormalities, a higher rate of conversions to acute myeloid leukemia and high resistance to standard MDS therapy. Even so, Garcia-Manero notes, a one-size-fits-all poor prognosis is not accurate.

The research team analyzed 1,950 MD Anderson patients treated between 1998 and 2007. It found 438 had a history of one or more previous cancers that were treated before their MDS diagnosis. Of these, 279 cases who had received chemotherapy, radiotherapy or both were analyzed.

A first round of analysis identified at least 15 factors associated with overall survival when considered as isolated, single variables.

Next, the researchers conducted a multi-variable analysis that narrowed factors reducing overall survival to seven:

Age 65 or older.

ECOG performance status scores of 2-4. (Eastern Cooperative Oncology Group criteria range from 0, which means fully active, to 4, signifying complete disability).

Cytogenetics. Having at least seven chromosomal alterations and/or complex cytogenetics.

Two MDS subgroups as determined by World Health Organization Criteria. RARS and RAEB-1/2.

Serum hemoglobin levels of less than 11g/dL.

Platelet levels of less than 50.

Dependency on blood transfusions.

Prognostic model sorts patients into three risk groups

Garcia-Manero and colleagues created a novel prognostic model that incorporated these multivariate factors and divided patients into three categories:

Good prognosis - 57 patients fell into this group by having 0-2 of the multivariate risk characteristics. Their median survival was 34 months.

Intermediate prognosis - 154 patients in this category had 3-4 risk factors and a median survival of 12 months.

Poor prognosis - 61 patients had 5-7 risk factors and a median survival of only five months.

The model also predicted one-year leukemia-free survival of 96 percent in the good category, 84 percent for intermediate, and 72 percent for the poor.

Model validated in a test group of patients

The researchers validated the model by applying it to an additional 189 treatment-related cases diagnosed between 2008 and 2010. Median survival rates in the test group were:

Good - 26 months

Intermediate - 13 months

Poor - 7 months.

"We believe this model will facilitate development of risk-adapted treatment strategies for patients with treatment-related myelodysplastic syndromes," Garcia-Manero said.

Article adapted by Medical News Today from original press release. Source: University of Texas M. D. Anderson Cancer Center
Visit our cancer / oncology section for the latest news on this subject. University of Texas M. D. Anderson Cancer Center Please use one of the following formats to cite this article in your essay, paper or report:

MLA

University of Texas M. D. Anderson Cancer Center. "Prognostic Model Developed For MDS Related To Prior Cancer Therapy." Medical News Today. MediLexicon, Intl., 15 Dec. 2011. Web.
15 Dec. 2011. APA

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


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)

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.



View the original article here

marți, 13 decembrie 2011

Vaccine Developed That Attacks Breast Cancer In Mice; Implications For Ovarian, Colorectal And Pancreatic Cancers

Main Category: Breast Cancer
Also Included In: Pancreatic Cancer;  Ovarian Cancer;  Immune System / Vaccines
Article Date: 13 Dec 2011 - 3:00 PST

email icon email to a friend   printer icon printer friendly   write icon opinions  
not yet ratednot yet rated
Researchers from the University of Georgia and the Mayo Clinic in Arizona have developed a vaccine that dramatically reduces tumors in a mouse model that mimics 90 percent of human breast and pancreatic cancer cases - including those that are resistant to common treatments.

The vaccine, described this week in the early edition of the journal Proceedings of the National Academy of Sciences, reveals a promising new strategy for treating cancers that share the same distinct carbohydrate signature, including ovarian and colorectal cancers.

"This vaccine elicits a very strong immune response," said study co-senior author Geert-Jan Boons, Franklin Professor of Chemistry and a researcher in the UGA Cancer Center and its Complex Carbohydrate Research Center. "It activates all three components of the immune system to reduce tumor size by an average of 80 percent."

When cells become cancerous, the sugars on their surface proteins undergo distinct changes that set them apart from healthy cells. For decades, scientists have tried to enable the immune system to recognize those differences to destroy cancer cells rather than normal cells. But since cancer cells originate within the body, the immune system generally doesn't recognize them as foreign and therefore doesn't mount an attack.

The researchers used unique mice developed by Sandra Gendler, Grohne Professor of Therapeutics for Cancer Research at the Mayo Clinic in Arizona and co-senior author on the study. Like humans, the mice develop tumors that overexpress a protein known as MUC1 on the surface of their cells. The tumor-associated MUC1 protein is adorned with a distinctive, shorter, set of carbohydrates that set it apart from healthy cells.

"This is the first time that a vaccine has been developed that trains the immune system to distinguish and kill cancer cells based on their different sugar structures on proteins such as MUC1," Gendler said. "We are especially excited about the fact that MUC1 was recently recognized by the National Cancer Institute as one of the three most important tumor proteins for vaccine development."

Gendler pointed out that MUC1 is found on more than 70 percent of all cancers that kill. Many cancers, such as breast, pancreatic, ovarian and multiple myeloma, express MUC1 with the shorter carbohydrate in more than 90 percent of cases.

She explained that when cancer occurs, the architecture of the cell changes and MUC1 is produced at high levels, promoting tumor formation. A vaccine directed against MUC1 has tremendous potential, Gendler said, as a preventative for recurrence or as a prophylactic in patients at high risk for particular cancers. A vaccine also can be used together with standard therapy such as chemotherapy in cancers that cannot be cured by surgery, such as pancreatic cancer.

Boons noted that MUC1 is also overexpressed in 90 percent of the subset of patients who are not responsive to hormonal therapy, such as Tamoxifen or aromatase inhibitors, or the drug Herceptin. These so-called "triple-negative" tumors are extremely aggressive and difficult to treat, Boons said, and a new treatment option is urgently needed.

"In the U.S. alone, there are 35,000 patients diagnosed every year whose tumors are triple-negative," Boons said. "So we might have a therapy for a large group of patients for which there is currently no drug therapy aside from chemotherapy."

Therapeutic vaccines received renewed attention last year when the Food and Drug Administration approved the first cancer treatment vaccine, a drug known as Provenge that is used to treat metastatic prostate cancer. Treatment with the drug, which is manufactured in Georgia, requires clinicians to isolate immune cells from the patient and then to send the cells to a lab, where they are linked to a protein that stimulates the immune system. The cells are returned to the patient's treating physician, who then infuses the drug over three treatments, usually two weeks apart.

Boons' vaccine, on the other hand, is much simpler. It is fully synthetic, meaning that its components can be manufactured in a lab with assembly-line precision. The vaccine consists of three components - an immune system booster known as an adjuvant, a component that triggers the production of the immune system's T-helper cells, and a carbohydrate-linked peptide molecule that directs the immune response to cells bearing MUC1 proteins with truncated carbohydrates.

Biotechnology is a key industry in Georgia, and this year Boons founded an Athens-based company, known as Viamune, to help develop and commercialize the vaccine and the technologies used to create it. The company is one of nearly 30 that are affiliated with the University's BioBusiness Center, which is an incubator for life sciences start-up companies associated with UGA.

"Companies like these have the potential to create stable, high-paying jobs that have a significant social and economic impact," said Stefan Schulze, associate director of the Georgia BioBusiness Center. He noted that Viamune was a one four finalists selected from 40 companies at an investor's forum hosted this year by the non-profit organization Southeast BIO.

Boons, Gendler and their colleagues are currently testing the vaccine's effectiveness against human cancer cells in culture and are planning to assess its toxicity. If all goes well, they anticipate that phase I clinical trials to test the safety of the vaccine could begin by late 2013.

The vaccine represents nearly a decade of work on the part of Boons and his team. A 2007 study demonstrated the vaccine's effectiveness in another mouse model, and Boons is cautiously optimistic about his most recent results. Although promising results in mice often don't translate to humans, Boons said he is confident that vaccines that target the specific carbohydrate signatures of cancer cells will ultimately play an important role in the treatment of the disease.

"We are beginning to have therapies that can teach our immune system to fight what is uniquely found in cancer cells," Boons said. "When combined with early diagnosis, the hope is that one day cancer will become a manageable disease."

Article adapted by Medical News Today from original press release. Click 'references' tab above for source.
Visit our breast cancer section for the latest news on this subject. In addition to co-senior authors Boons, Ph.D., and Gendler, Ph.D., the co-first authors on the paper are Vani Lakshminarayanan, Ph.D., at the Mayo Clinic in Arizona and Pamela Thompson at the University of Georgia. Additional authors include, at UGA, Margreet Wolfert, Ph.D., and Therese Buskas, Ph.D., and, at the Mayo Clinic, Judy Bradley, Latha Pathangey, Cathy Madsen and Peter Cohen, M.D.
University of Georgia Please use one of the following formats to cite this article in your essay, paper or report:

MLA

University of Georgia. "Vaccine Developed That Attacks Breast Cancer In Mice; Implications For Ovarian, Colorectal And Pancreatic Cancers." Medical News Today. MediLexicon, Intl., 13 Dec. 2011. Web.
13 Dec. 2011. APA

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


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)

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.



View the original article here