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Showing posts with label Mouse. Show all posts
Showing posts with label Mouse. Show all posts

Monday, December 23, 2013

H. pylori vaccine shows promise in mouse studies

Dec. 19, 2013 — Researchers from Southern Medical University in Guangdong, Guangzhou, China, have developed an oral vaccine against Helicobacter pylori, the bacteria responsible for peptic ulcers and some forms of gastric cancer, and have successfully tested it in mice. The research is published ahead of print in the journal Clinical and Vaccine Immunology.

The investigators constructed a live recombinant bacterial vaccine, expressing the H. pylori antigen, adhesin Hp0410, in the food-grade bacterium, Lactobacillus acidophilus. They then used it to orally vaccinate the mice.

The vaccine elicited specific anti-Hp0410 IgG antibodies in serum, and showed "a significant increase" in the level of protection against gastric Helicobacter infection, according to the report. When assayed, following challenge with H. pylori, immunized mice had significantly lower bacterial loads than non-immunized mice.

H. pylori is a class 1 human carcinogen, according to the World Health Organization. It causes gastritis, peptic ulcers, stomach cancer, and mucosa-associated lymphoid tissue lymphoma. Antibiotic therapy is complex, unsuccessful in some patients (particularly in developing countries) and relapse is common. A vaccine against H. pylori could circumvent these difficulties.

L. acidophilus, a bacterium which is common in yogurt cultures, has distinct advantages as an oral vaccine antigen delivery vehicle. It is safe and nontoxic. It resists the stomach's acidity and tolerates bile, all of which aids in enabling it to survive in the gastrointestinal (GI) tract for more than 72 hours. Additionally, it adheres to, and elicits an immune response from the GI tract mucosa.

The current first-line treatment option for H. pylori infection includes two antibiotics and a proton pump inhibitor, but is ineffective in roughly 20 percent of patients.

"The high cost of treatment, noncompliance, and antibiotic resistance are the most important reasons," says first author Fan Hongying.

Roughly 15-30 percent of patients relapse quickly, she says, noting that after treatment, H. pylori may be resupplied to the stomach from a reservoir in the mouth. A vaccine would circumvent these problems.

"Our results collectively indicate that adhesin Hp0410 is a promising candidate vaccine antigen and recombinant Lactobacillus acidophilus expressing Hp0410 is likely to constitute an effective, low-cost live bacterial vaccine against H. pylori," says Hongying.


View the original article here

Monday, December 2, 2013

Admit intestinal microorganisms based on NIH mouse determines the results of cancer treatment.

National cancer are in the population of microorganisms that live in symbiotic Gut microflora, intestinal as required according to the mouse study by scientists at the Institute (NCI) ideal response to cancer treatment.

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Thursday, September 19, 2013

Definitely a reduced glucose in mouse metabolism immunity likely

That regulates the glucose metabolism in immune cells may enhance the capacity and extend the fight against cancer and infectious diseases.

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Monday, September 16, 2013

Cancer Drug May Be Helpful for Diabetes, Mouse Study Hints

SUNDAY, Sept. 15 (HealthDay News) -- The cancer drug Zaltrap (aflibercept) could help treat diabetes, suggest findings from research using mice.

Scientists say they've identified a molecular pathway (a series of interactions among proteins) involved in the development of diabetes, and also found that the drug can regulate this pathway.

Zaltrap is approved in the United States to treat metastatic (spreading) colorectal cancer and the wet form of the eye disease macular degeneration. The drug inhibits the vascular endothelial growth factor (VEGF) pathway, thereby blocking the growth of blood vessels into tumors and starving them of oxygen.

The researchers, from the Stanford University School of Medicine, identified a series of proteins that link VEGF inhibitors and blood glucose levels.

"We were surprised to find that this drug currently used in patients for cancer treatment had beneficial effects on diabetes in laboratory mice and could, potentially, in humans," Dr. Calvin Kuo, a professor of medicine, said in a university news release.

Scientists caution, however, that research with animals often fails to provide similar results in humans.

"Proteins involved in this pathway could be targeted for the development of new diabetes therapies," Amato Giaccia, a professor of cancer biology and director of radiation oncology, said in the news release.

The findings appeared online Sept. 15 in two articles in the journal Nature Medicine.

The researchers said there have been indications that VEGF inhibitors such as Zaltrap could influence blood glucose levels in people, but no human studies have been conducted.

"Anecdotally, there have been reports that diabetic patients who have been prescribed VEGF inhibitors to treat their cancer are better able to control their diabetes," Kuo said.

Three co-authors of Kuo's study are employees at Regeneron Pharmaceuticals, which makes aflibercept.

More information

The U.S. National Institute of Diabetes and Digestive and Kidney Diseases has more about diabetes.

Copyright c 2013?HealthDay. All rights reserved.


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