Advance in cholera bacteria points to new treatment and vaccineDecember 08, 2005Opening a new door to an effective vaccine and therapy for a disease that strikes thousands annually, researchers at Dartmouth Medical School discovered that the bacteria that causes the intestinal disease Cholera spreads in the environment in much the same way it infects humans. Appearing in the December 8 issue of the journal Nature, the study investigates the bacterium Vibrio cholerae and its ability to attach to a host, enabling it to multiply and adding to the risk of infecting humans. "We've discovered, through genetics, a factor that is important in the normal biology of the organism out in the environment and it is also one of the very initial factors for cholera colonization in the intestine," said Dr. Ronald Taylor, professor of microbiology and immunology at DMS who led the research. "Now that we know what the bacterium attaches to in the intestine, we can find ways to block that initial contact." Cholera and the bacterium that causes it is found in contaminated drinking water and food, often in underdeveloped countries and refugee camps. Once the disease takes hold, it causes diarrhea, vomiting, severe dehydration and can result in death if treatment is not promptly given. In 2001 alone, 28 countries reported over 40 outbreaks of cholera to the World Health Organization, resulting in the deaths of thousands. Large outbreaks are often traced back to contaminated water supplies that are commonly associated with algal or zooplankton blooms. For the V. cholerae bacterium to infect someone with cholera, the bacterium often binds to plankton in the aquatic environment before it arrives at the human intestine via contaminated food and water sources. V. cholerae attaches to the outer surface of plankton, made up of a carbonate substance called chitin. Once attached to the plankton's chitin, the bacterium thrives on the carbon and multiplies. Humans do not have chitin in the surface of intestinal cells, where the bacterium takes hold, and researchers have been searching for another substance that could be responsible for playing a role in attachment. In the study, Taylor and colleagues screened cultured intestinal cells and found mutant bacteria that had trouble binding to the intestinal cells. One mutant strain of V. cholerae lacks a gene that enables it to properly bind with a sugar called GlcNAc. When they compared it with normal, wild-type V. cholerae bacteria, the researchers found that the protein encoded by this gene provided normal bacteria the ability to attach to the GlcNAc on cells. The team verified that the GlcNAc in the intestine initiates the attachment and colonization of the bacteria by testing the mutant strain on zooplankton and cultured intestinal cells in vitro as well as in an in vivo cholera model. "We set out to find factors that would reduce the bacteria's ability to bind to the epithelial lining of the intestine," said Taylor. "What's interesting is that we've identified a factor that works both in the environment and in the human body. This type of link hasn't been discussed before and it has a strong potential for vaccine and therapeutic development." These findings could lead to a new form of therapy to treat people with cholera. "Now that we know that the bacteria are binding this particular sugar, we could essentially trick the infecting bacteria to bind to the sugar included in a derivative of oral rehydration therapy solution instead of the intestine," said study co-author Brooke Jude, a fourth-year PhD student at Dartmouth Medical School. A vaccine for cholera already exists, but only works 50% of the time and people who take it are only immune for 12 months, according to Taylor. Taylor believes that a more effective vaccine could be developed by inducing the production of antibodies directed against the protein his research team has discovered, thereby blocking its function. This would inhibit an early step in the intestinal colonization process, and the bacteria would pass harmlessly through the body. The authors acknowledge that in addition to GlcNAc, there may be other points of attachment that could still be responsible for allowing the bacteria to bind to the intestine, and they are currently focusing their research to identify any other areas of attachment.. "There may be more of these factors and as we find them and knock them out, we'll decrease the ability for cholera bacteria to colonize even further," said Taylor. Dartmouth Medical School |
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| Related Cholera Current Events and Cholera News Articles New insight into predicting cholera epidemics in the Bengal Delta Cholera, an acute diarrheal disease caused by the bacterium Vibrio cholerae, has reemerged as a global killer. Outbreaks typically occur once a year in Africa and Latin America. But in Bangladesh the epidemics occur twice a year - in the spring and again in the fall. Designing probiotics that ambush gut pathogens Researchers in Australia are developing diversionary tactics to fool disease-causing bacteria in the gut. Vi typhoid vaccine proves highly effective in young children A new study has found that a currently available yet underused vaccine against typhoid fever is highly effective in young children and protects unvaccinated neighbors of vaccinees. Simple measures may prevent transmission of stomach ulcer bacteria The stomach ulcer bacterium Helicobacter pylori is not transmitted through drinking water as previously thought, but rather through vomit and possibly faeces. Superbug risk to war wounded Soldiers who survive severe injuries on battlefields such as those in Iraq and Afghanistan can be at risk from developing infections of their wounds with multidrug resistant bacteria. Flies May Spread Drug-Resistant Bacteria from Poultry Operations Researchers at the Johns Hopkins Bloomberg School of Public Health found evidence that houseflies collected near broiler poultry operations may contribute to the dispersion of drug-resistant bacteria and thus increase the potential for human exposure to drug-resistant bacteria. Bacterial pathogens and rising temperatures threaten coral health Coral reefs around the world are in serious trouble from pollution, over-fishing, climate change and more. The last thing they need is an infection. But that's exactly what yellow band disease (YBD) is-a bacterial infection that sickens coral colonies. Of Mice and Peanuts: A new mouse model for peanut allergy Chicago researchers report the development of a new mouse model for food allergy that mimics symptoms generated during a human allergic reaction to peanuts. From poison to prevention One of the major challenges in modern vaccinology is to engineer vectors that are highly infectious, yet don't cause illness. Trickier still is to ensure that such weapons against infectious disease can be safely disarmed, once their immunogenic work is done. Blocking the spread of antibiotic resistance in bacteria It's as simple as A, T, G, C. Northwestern University scientists have exploited the Watson-Crick base pairing of DNA to provide a defensive tool that could be used to fight the spread of antibiotic resistance in bacteria -- one of the world's most pressing public health problems. More Cholera Current Events and Cholera News Articles |
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