Anthrax is an acute infectious disease caused by the spore-forming bacterium Bacillus anthracis. Anthrax most commonly occurs in wild and domestic lower vertebrates (cattle, sheep, goats, camels, antelopes, and other herbivores), but it can also occur in humans when they are exposed to infected animals or tissue from infected animals.
Anthrax is most common in agricultural regions where it occurs in animals. These include South and Central America, Southern and Eastern Europe, Asia, Africa, the Caribbean, and the Middle East. When anthrax affects humans, it is usually due to an occupational exposure to infected animals or their products. Workers who are exposed to dead animals and animal products from other countries where anthrax is more common may become infected with B. anthracis (industrial anthrax). Anthrax outbreaks occur in the United States on an annual basis in livestock and wild game animals such as deer.
Anthrax infection can occur in three forms: cutaneous (skin), inhalation, and gastrointestinal. B. anthracis spores can live in the soil for many years, and humans can become infected with anthrax by handling products from infected animals or by inhaling anthrax spores from contaminated animal products. Anthrax can also be spread by eating undercooked meat from infected animals. It is rare to find infected animals in the United States.
Scientists at Seattle Biomedical Research Institute and Northwestern University Feinberg School of Medicine have reached a major milestone in the effort to wipe out some of the most lethal diseases on the planet. As leaders of two large structural genomics centers, they've experimentally determined 500 three-dimensional protein structures from a number of bacterial and protozoan pathogens, which could potentially lead to new drugs, vaccines and diagnostics to combat deadly infectious diseases.
Theoretical biologists at Los Alamos National Laboratory have used a New Mexico supercomputer to aid an international research team in untangling another mystery related to ribosomes-those enigmatic jumbles of molecules that are the protein factories of living cells.
NanoBio Corporation announced today that it has received a $6M grant from the Bill & Melinda Gates Foundation to support the development of a safe and effective intranasal vaccine for Respiratory Syncytial Virus (RSV).
Soligenix, Inc., a late-stage biopharmaceutical company, announced today that the United States Patent and Trademark Office has granted patent #7,829,668, entitled Compositions and methods for modifying toxic effects of proteinaceous compounds.
Advanced Life Sciences Holdings, Inc., a biopharmaceutical company engaged in the discovery, development and commercialization of novel drugs in the therapeutic areas of infection, oncology and respiratory diseases, today announced that the Company has applied to the U.S. Food and Drug Administration for orphan drug designation for ALS-886, a novel therapy to reduce and prevent tissue damage, for the treatment of Acute Respiratory Distress Syndrome (ARDS).
Researchers from the National Institute of Allergy and Infectious Diseases (NIAID), part of the National Institutes of Health, have determined a key mechanism by which Bacillus anthracis bacteria initiate anthrax infection despite being greatly outnumbered by immune system scavenger cells. The finding, made by studying genetically modified mice, adds new detail to the picture of early-stage anthrax infection and supports efforts to develop vaccines and drugs that would block this part of the cycle.
Senator Dick Lugar on Friday said that poorly secured medical laboratories in East African countries, which host insurgent groups linked to Al Qaeda, are vulnerable to bioterrorism, Agence France-Presse reports.
PharmAthene, Inc. a biodefense company developing medical countermeasures against biological and chemical threats, today reported financial and operational results for the third quarter and nine months ended September 30, 2010.
Aradigm Corporation today announced financial results for the third quarter and nine months ended September 30, 2010.
Advanced Life Sciences Holdings, Inc., a biopharmaceutical company engaged in the discovery, development and commercialization of novel drugs in the therapeutic areas of infection, oncology and respiratory diseases, today announced that the Company has been awarded a cash grant under the Qualifying Therapeutic Discovery Project which was created by Congress as part of the Patient Protection and Affordable Care Act of 2010.
PharmAthene, Inc. a biodefense company developing medical countermeasures against biological and chemical threats, today announced that it has closed its previously announced registered public offering of 4,300,000 shares of its common stock at a price to the public of $3.50 per share.
Advanced Life Sciences Holdings, Inc., a biopharmaceutical company engaged in the discovery, development and commercialization of novel drugs in the therapeutic areas of infection, oncology and respiratory diseases, today announced that it has entered into a Cooperative Research and Development Agreement ("CRADA") with The Walter Reed Army Institute of Research.
Soligenix, Inc., a late-stage biopharmaceutical company, reported today that it has completed enrollment of its Phase 1B clinical trial of RiVax™, a ricin subunit vaccine, in healthy volunteers. Preliminary results indicate that RiVax™ appears safe at all doses tested in volunteers. This trial is designed to assess the duration of immune responses using an adjuvant formulation of RiVax™ over a period of more than one year after vaccination.
A team of Melbourne and London researchers have shown how a protein called perforin punches holes in, and kills, rogue cells in our bodies. Their discovery of the mechanism of this assassin is published today in the science journal Nature.
Scientists from the UK and Australia have seen the human immune system's assassin a protein called perforin in action for the first time. The UK team, funded by the Biotechnology and Biological Sciences Research Council (BBSRC) and the Wellcome Trust, is based at Birkbeck College where they used powerful electron microscopes to study the mechanism that perforin uses to punch holes in rogue cells.
In a medical breakthrough scientists have found a protein called perforin that kills rogue cells in the human body especially the ones causing cancer. The team comprising of experts from Melbourne and London found that perforin punches holes and kills these cells. The research appeared in the acclaimed journal Nature.
PharmAthene, Inc., a biodefense company developing medical countermeasures against biological and chemical threats, today announced that it has priced a registered public offering of 4,300,000 shares of its common stock at a price to the public of $3.50 per share.
Frankfurt am Main. The chemist and biologist Professor Cesare Montecucco, 62, of the Department of Biomedical Research at the University of Padua, Italy, has won the 100,000 euro Paul Ehrlich and Ludwig Darmstaedter Prize 2011 for his contribution to research in the field of bacterial diseases, including tetanus, botulism, anthrax and Helicobacter pylori associated diseases.
Aradigm Corporation today announced positive top line data from its recently concluded 6-month Phase 2b study (ORBIT-2) with Aradigm's once-daily dual release ciprofloxacin for inhalation (DRCFI, ARD-3150) in patients with non-cystic fibrosis bronchiectasis.
Bavarian Nordic A/S announced today that the company has received funding from the U.S. National Institutes of Health (NIH) to advance its early research in filoviruses (Ebola and Marburg virus).
Terms
While we only use edited and approved content for Azthena
answers, it may on occasions provide incorrect responses.
Please confirm any data provided with the related suppliers or
authors. We do not provide medical advice, if you search for
medical information you must always consult a medical
professional before acting on any information provided.
Your questions, but not your email details will be shared with
OpenAI and retained for 30 days in accordance with their
privacy principles.
Please do not ask questions that use sensitive or confidential
information.
Read the full Terms & Conditions.