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Breaking World News
Bee venom: A potential HIV-killer?
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<blockquote data-quote="Samstwitch" data-source="post: 66484" data-attributes="member: 2770"><p><span style="font-size: 22px"><strong><a href="http://news.yahoo.com/bee-venom-potential-hiv-killer-172200370.html" target="_blank">Bee venom: A potential HIV-killer?</a></strong></span></p><p></p><p><span style="color: #ccffcc">Researchers have identified a virus-killing toxin, and combined it with a clever delivery mechanism</span></p><p></p><p><span style="color: #ccffcc">Part of what makes the HIV virus so difficult to kill is its tiny size. It's many times smaller than your average blood cell, which allows the sneaky virus to infect and kill white blood cells — "the very cells that are supposed to rub out viral infections," says WebMD.</span></p><p></p><p><span style="color: #ccffcc">It's also why scientists are looking to unlikely sources for ways to fight the virus. Now, we might have our most unlikely source yet: Bees.</span></p><p></p><p><span style="color: #ccffcc">Scientist at the Washington University School of Medicine, led by researcher Joshua L. Hood, have shown, in vitro, that it's indeed possible to kill HIV cells using bee venom. The active ingredient is a toxic peptide called melittin.</span></p><p></p><p><span style="color: #ccffcc">But hunting down HIV (those little spike-covered circles) isn't easy, especially since they're such small moving targets. To make things more difficult, the viruses themselves are covered in protective envelopes — stubborn, double-layered membranes that makes them die hard.</span></p><p></p><p><span style="color: #ccffcc">However, by using tiny nanoparticles (the purple blobs above) as a delivery mechanism, researchers were able to send melittin (the green "arms") to the HIV virus directly. This was accomplished by outfitting the nanoparticles with tiny bumpers (the red "O"s) that helped keep healthy blood cells at bay, essentially acting as a strainer that filters the pint-sized HIV virus into the bee-inspired death trap. </span></p><p></p><p><span style="color: #ccffcc">"The melittin forms little pore-like attack complexes and ruptures the envelope, stripping it off the virus," says Hood in a news release. "We are attacking an inherent physical property of HIV." In other words, it's unlikely the virus would develop a resistance.</span></p><p></p><p><span style="color: #ccffcc">Of course, the research is still at a very preliminary stage. One caveat: The study was conducted in a lab, and not in a living creature. (Consider, for a second, the implications of bee venom leaking into an immune system — it isn't pretty.)</span></p><p></p><p><span style="color: #ccffcc">Nonetheless, researchers are excited by the breakthrough, and what it could mean for new preventative measures.</span></p><p></p><p><span style="color: #ccffcc">"Our hope is that in places where HIV is running rampant, people could use this gel as a preventive measure to stop the initial infection," says Hood. The study was published last Thursday in the journal Antiviral Therapy.</span></p></blockquote><p></p>
[QUOTE="Samstwitch, post: 66484, member: 2770"] [SIZE=6][B][URL='http://news.yahoo.com/bee-venom-potential-hiv-killer-172200370.html']Bee venom: A potential HIV-killer?[/URL][/B][/SIZE] [COLOR=#ccffcc]Researchers have identified a virus-killing toxin, and combined it with a clever delivery mechanism[/COLOR] [COLOR=#ccffcc]Part of what makes the HIV virus so difficult to kill is its tiny size. It's many times smaller than your average blood cell, which allows the sneaky virus to infect and kill white blood cells — "the very cells that are supposed to rub out viral infections," says WebMD.[/COLOR] [COLOR=#ccffcc]It's also why scientists are looking to unlikely sources for ways to fight the virus. Now, we might have our most unlikely source yet: Bees.[/COLOR] [COLOR=#ccffcc]Scientist at the Washington University School of Medicine, led by researcher Joshua L. Hood, have shown, in vitro, that it's indeed possible to kill HIV cells using bee venom. The active ingredient is a toxic peptide called melittin.[/COLOR] [COLOR=#ccffcc]But hunting down HIV (those little spike-covered circles) isn't easy, especially since they're such small moving targets. To make things more difficult, the viruses themselves are covered in protective envelopes — stubborn, double-layered membranes that makes them die hard.[/COLOR] [COLOR=#ccffcc]However, by using tiny nanoparticles (the purple blobs above) as a delivery mechanism, researchers were able to send melittin (the green "arms") to the HIV virus directly. This was accomplished by outfitting the nanoparticles with tiny bumpers (the red "O"s) that helped keep healthy blood cells at bay, essentially acting as a strainer that filters the pint-sized HIV virus into the bee-inspired death trap. [/COLOR] [COLOR=#ccffcc]"The melittin forms little pore-like attack complexes and ruptures the envelope, stripping it off the virus," says Hood in a news release. "We are attacking an inherent physical property of HIV." In other words, it's unlikely the virus would develop a resistance.[/COLOR] [COLOR=#ccffcc]Of course, the research is still at a very preliminary stage. One caveat: The study was conducted in a lab, and not in a living creature. (Consider, for a second, the implications of bee venom leaking into an immune system — it isn't pretty.)[/COLOR] [COLOR=#ccffcc]Nonetheless, researchers are excited by the breakthrough, and what it could mean for new preventative measures.[/COLOR] [COLOR=#ccffcc]"Our hope is that in places where HIV is running rampant, people could use this gel as a preventive measure to stop the initial infection," says Hood. The study was published last Thursday in the journal Antiviral Therapy.[/COLOR] [/QUOTE]
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