Mostrando entradas con la etiqueta the World. Mostrar todas las entradas
Mostrando entradas con la etiqueta the World. Mostrar todas las entradas

domingo, 11 de enero de 2015

nsf.gov - National Science Foundation - Treatment for parasitic worms helps animals survive infectious diseases--and spread them.- El tratamiento para los parásitos intestinales ayuda a los animales sobreviven a las enfermedades infecciosas

Hola amigos; A VUELO DE UN QUINDE EL BLOG., hemos recibido información de la Fundación Nacional de Ciencia de Los Estados Unidos sobre las enfermedades parasitarias intestinales de los animales que sobreviven ; Gusanos parásitos, que infectan a millones de personas y otros animales de todo el mundo, influyen en cómo el sistema inmune responde a enfermedades como el VIH y la tuberculosis.
En un nuevo estudio de búfalos africanos, de la Universidad de Georgia (UGA) ecólogo Vanessa Ezenwa ha encontrado que el tratamiento antiparasitario drásticamente mejora las posibilidades de un animal de sobrevivir a la tuberculosis bovina - pero con la consecuencia de aumentar la propagación de la tuberculosis
en la población.....
 
"Las intervenciones de salud a veces pueden tener resultados inesperados y no deseados", dijo Sam Scheiner, la Fundación Nacional de Ciencia (NSF) director de Ecología y Evolución del programa de Enfermedades Infecciosas (EEID), que financió la investigación. NSF, los Institutos Nacionales de Salud y el Departamento de Agricultura de Estados Unidos apoyan el programa EEID.
 
"Si se piensa en los seres humanos en este contexto, esto es lo que nos gustaría hacer - para averiguar cómo ayudar a las personas que se infectan por algo vivo más tiempo y ser menos enfermos", dijo Ezenwa. "Pero aquí nos encontramos con que hacer exactamente eso puede tener consecuencias imprevistas."
 
Scientists discover unanticipated consequences of some disease remedies

African buffalo at a watering hole in South Africa.
African buffalo at a watering hole in South Africa.
Credit and Larger Version
January 8, 2015
http://www.nsf.gov/news/news_summ.jsp?cntn_id=133775&WT.mc_id=USNSF_51&WT.mc_ev=click

Parasitic worms, which infect millions of people and other animals around the world, influence how the immune system responds to diseases like HIV and tuberculosis.
In a new study of African buffalo, University of Georgia (UGA) ecologist Vanessa Ezenwa has found that de-worming drastically improves an animal's chances of surviving bovine tuberculosis--but with the consequence of increasing the spread of TB in the population.
"Health interventions can sometimes have unexpected and unwelcome outcomes," said Sam Scheiner, National Science Foundation (NSF) director for the Ecology and Evolution of Infectious Diseases (EEID) program, which funded the research. NSF, the National Institutes of Health and the U.S. Department of Agriculture support the EEID program.
"By examining such outcomes, we can design better intervention strategies for infectious diseases."
The findings, published this week in the journal Science, have implications for human health.
"If you think about humans in this context, this is what we'd like to do--to figure out how to help people who get infected by something live longer and be less sick," Ezenwa said. "But here we found that doing exactly that can have unanticipated consequences."
 
Testing buffalo for parasitic worms
 
Ezenwa and co-author Anna Jolles of Oregon State University conducted the research in South Africa's Kruger National Park.
In 2008, with the assistance of the park's Veterinary Wildlife Services Department, they captured 216 African buffalo and tested them for parasitic worms, known as helminths, and for bovine TB.
Half the buffalo received treatment for helminths; the rest were left untreated as a control group.
For the next four years, the scientists recaptured and retested each buffalo approximately once every six months.
They found that animals treated for worms were nine times more likely to survive TB infections than untreated animals; with the worms gone, their immune systems were able to mount a stronger defense against TB.
According to Ezenwa, this finding confirmed predictions about the effects of worms on the immune system based on an earlier study of TB and helminth infections in African buffalo.
"We'd done a one-off, short-term experiment to see if we could replicate, in this wild animal, the immunological results seen in laboratory experiments treating helminths in mice," she said. "That led to this larger experiment in a much bigger population over a longer time."
 
Treatment not always a plus
 
Ezenwa said that the previous work also suggested that treatment would reduce the rate at which individuals acquire TB infection and therefore the TB transmission rate.
"We expected it would be a net positive for the individual and for the population," she said. "But in fact when you carry out an experiment at this larger scale, in a real population, you see it's not all positive outcomes."
The improved survival rate allows infected buffalo to continue to spread TB within the herd, Ezenwa said.
Since they still get infected at the same rate there is an unexpected negative result for the population as a whole.
"Because coinfection is such a complicated area, laboratory studies are really essential in telling us about the detailed mechanisms of how immunological interactions work," she said.
"But we will never understand the real implications if all the work concentrates in the lab."
 
Need to look at similar animals to humans
 
Ezenwa said that in order to address human infectious disease problems, researchers need to also look at coinfection in populations that bear more similarity to humans.
"African buffalo are long-lived, they're in the wild in social groups, they're genetically variable--that's a little bit closer to people than laboratory mice, which have the same genetic background and live under artificial conditions," she said.
And understanding bovine TB-helminth coinfection in African buffalo is particularly relevant for human health because helminths are known to influence human immune responses to TB.
"The number of human cases of bovine TB worldwide is unknown, but where it's studied, it appears to be a substantial fraction of the total," said Frederick Quinn, head of the UGA Department of Infectious Diseases in the College of Veterinary Medicine.
"It's also unknown if bovine TB bacteria transmit more efficiently than other TB bacteria, what traits this pathogen possesses that allow infection of so many different species of mammals, and what happens when the host is co-infected with parasites or HIV.
"This work is a tremendous start in answering some of the fundamental questions about this disease and how best to control it in humans and other animals."
-NSF-
Media Contacts Cheryl Dybas, NSF, (703) 292-7734, cdybas@nsf.gov
Beth Gavrilles, UGA, (706) 542-7247, bethgav@uga.edu

Related WebsitesNSF Special Report: Ecology and Evolution of Infectious Diseases: http://www.nsf.gov/news/special_reports/ecoinf/
NSF Ecology and Evolution of Infectious Diseases Discovery Article Series: http://www.nsf.gov/discoveries/disc_summ.jsp?cntn_id=133576&org=NSF
NSF-NIH-USDA Ecology and Evolution of Infectious Diseases Grants Awarded: http://www.nsf.gov/news/news_summ.jsp?cntn_id=132570


The National Science Foundation (NSF) is an independent federal agency that supports fundamental research and education across all fields of science and engineering. In fiscal year (FY) 2014, its budget is $7.2 billion. NSF funds reach all 50 states through grants to nearly 2,000 colleges, universities and other institutions. Each year, NSF receives about 50,000 competitive requests for funding, and makes about 11,500 new funding awards. NSF also awards about $593 million in professional and service contracts yearly.
 Get News Updates by Email 
Useful NSF Web Sites:
NSF Home Page:
 http://www.nsf.gov
NSF News:
 http://www.nsf.gov/news/
For the News Media:
 http://www.nsf.gov/news/newsroom.jsp
Science and Engineering Statistics:
 http://www.nsf.gov/statistics/
Awards Searches:
http://www.nsf.gov/awardsearch/
Buffalo herd on the move
Buffalo herd on the move, with a young male peering at the camera.
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Buffalo being darted from a helicopter
Buffalo being darted from a helicopter at the beginning of the study.
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Researchers Rob and Jo Spaan with a buffalo
Researchers Rob and Jo Spaan collecting samples during a routine buffalo capture.
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Two buffalos, one with a radio-collar
A radio-collared buffalo walks off the research site scene.
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Science journal cover
The researchers' findings are described in the Jan. 9, 2015 issue of the journal Science.
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The National Science Foundation (NSF)
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
Inscríbete en el Foro del blog y participa : A Vuelo De Un Quinde - El Foro!

domingo, 14 de septiembre de 2014

nsf.gov - National Science Foundation - How evolutionary principles could help save our world


Battling modern threats to food, land and health with applied evolutionary biology
Measles vaccination
A Ethiopian child about to get her measles vaccination.
Credit and Larger Version
September 11, 2014
The age of the Anthropocene--the scientific name given to our current geologic age--is dominated by human impacts on our environment. A warming climate. Increased resistance of pathogens and pests. A swelling population. Coping with these modern global challenges requires application of what one might call a more-ancient principle: evolution.
That's the recommendation of a diverse group of researchers, in a paper published today in the online version of the journal Science. A majority of the nine authors on the paper have received funding from the National Science Foundation (NSF).
"Evolution isn't just about the past anymore, it's about the present and the future," said Scott Carroll, an evolutionary ecologist at University of California-Davis and one of the paper's authors. Addressing societal challenges--food security, emerging diseases, biodiversity loss--in a sustainable way is "going to require evolutionary thinking."
The paper reviews current uses of evolutionary biology and recommends specific ways the field can contribute to the international sustainable development goals (SDGs), now in development by the United Nations.
Evolutionary biology has "tremendous potential" to solve many of the issues highlighted in the SDGs, said Peter Søgaard Jørgensen, another Science author from the University of Copenhagen's Center for Macroecology, Evolution and Climate. The field accounts for how pests may adapt rapidly to our interventions and how vulnerable species struggle to adapt to global change. The authors even chose this release date to coincide with the upcoming meeting of the UN General Assembly, which starts September 24.
Their recommendations include gene therapies to treat disease, choosing drought-and-flood-resistant crop varieties and altering conservation strategies to protect land with high levels of genetic diversity.
"Many human-engineered solutions to societal problems have turned out to have a relatively short useful life because evolution finds ways around them," said George Gilchrist, program officer in NSF's Division of Environmental Biology, which funded many of the Science authors. "Carroll and colleagues propose turning the tables and using evolutionary processes to develop more robust and dynamic solutions."
Applied evolutionary biology just recently made the leap from an academic discipline to a more-practical one, spurred by an effort within the community to better synthesize and share research insights. And--above all--increasing environmental pressures.
"The fact that we're changing the world means that evolutionary processes are going to be affected," said Thomas Smith, of the Department of Ecology and Evolutionary Biology at the University of California, Los Angeles (UCLA) and another Science author. The question is, according to Smith: Do we want to be engaged in this change, or not?
The paper also serves as a platform for establishing a cross-disciplinary field of applied evolutionary biology, Carroll said, and a way to promote the field as a path to sustainable development solutions.
"Evolutionary biology touches on many elements of the life sciences, from medicine to conservation biology to agriculture," said Smith. "And unfortunately, there hasn't been an effort to unify across these fields."
This disconnect exists despite the use of evolutionary tactics in many disciplines: treating HIV with a cocktail of drugs, for example, to slow pathogen resistance. And the effects of evolution already swirl in the public consciousness--and spark debate. Think of the arguments for and against genetically modified crops, or warnings about the increasing price of combating drug resistance (which costs more than $20 billion in the U.S. each year, according to the nonprofit Alliance for Prudent Use of Antibiotics).
Seldom are these issues described in an evolutionary context, said Smith. "We're missing an opportunity to educate the public about the importance of evolutionary principles in our daily lives."
In conservation, evolutionary approaches are often disregarded because of the belief that evolution is beyond our ability to manage and too slow to be useful, according to a paper Smith co-authored in the journal Annual Review of Ecology, Evolution and Systematics (AREES).
That article, recently published online, also tackles applied evolution. It was co-authored by Carroll, University of Maine Biologist Michael Kinnison, Sharon Strauss--of the Department of Evolution and Ecology at University of California-Davis--and Trevon Fuller of UCLA's Tropical Research Institute. All are NSF-funded. Kinnison and Strauss are also co-authors on the Science paper.
Yet contemporary evolution--what scientists are observing now--happens on timescales of months to a few hundred years, and can influence conservation management outcomes, according to the AREES paper.
Considering the evolutionary potential and constraints of species is also essential to combat "evolutionary mismatch." This means the environment a species exists in, and the one it has evolved to exist in, no longer match.
Such disharmony can be "dire and costly," the authors write in Science, citing the increasingly sedentary lifestyles--and processed food diets--of modern humans. These lifestyles are linked with increasing rates of obesity, diabetes and cardiovascular disorders. Restoring our health requires greater physical activity and less refined carbohydrates: "Diets and activity levels closer to those of the past, to which we are better adapted," the Science paper said.
Implementing applied evolutionary principles often requires very careful thinking about social incentives, said Jørgensen. Public vaccination programs, for example, and pest control in crops often create tension between individual and public good.
Applied evolution, therefore, requires input from biologists, doctors, agriculturalists: "We're making a call for policy makers, decision-makers at all levels," to be involved, Jørgensen said.
Evolutionary biologists don't have all the answers, said Smith. And using applied evolution is not without risk. But we have reached a point "where we need to take risks in many cases," he said. "We can't just sit back and be overly conservative, or we're going to lose the game."
-NSF-
Media Contacts Jessica Arriens, NSF, (703) 292-2243, jarriens@nsf.gov
Related WebsitesLong-Term Investigation of Evolution in a Community Context:
 http://www.nsf.gov/awardsearch/showAward?AWD_ID=0416326&HistoricalAwards=false
Evolution of persistence in the model bacterium, Sinorhizobium:
 http://www.nsf.gov/awardsearch/showAward?AWD_ID=0918897&HistoricalAwards=false
Genetic and Host Plant Influences in Insect Population Differentiation:
 http://www.nsf.gov/awardsearch/showAward?AWD_ID=9021106&HistoricalAwards=false
Genetic and Environmental Influences on Behavioral Flexibilty in an Insect:
 http://www.nsf.gov/awardsearch/showAward?AWD_ID=9306818&HistoricalAwards=false
Suppression of rhizobial reproduction by legumes: Implications for mutualism:
 http://www.nsf.gov/awardsearch/showAward?AWD_ID=0918986&HistoricalAwards=false
IGERT: Biological Invasions: From Genes to Ecosystems, From Science to Society:
 http://www.nsf.gov/awardsearch/showAward?AWD_ID=0114432&HistoricalAwards=false
Adaptive Divergence Versus Gene Flow in the Wild: Evaluation in Trinidadian Guppy Populations:
 http://www.nsf.gov/awardsearch/showAward?AWD_ID=0235605&HistoricalAwards=false
IGERT:REsponding to RApid Environmental CHange (REACH): From genes to ecosystems, science to society:
 http://www.nsf.gov/awardsearch/showAward?AWD_ID=0801430&HistoricalAwards=false
PIRE: Mapping Evolutionary Process in the Face of Climate Change: An Integrated Approach to Education and Conservation Prioritization in Central Africa:


The National Science Foundation (NSF) is an independent federal agency that supports fundamental research and education across all fields of science and engineering. In fiscal year (FY) 2014, its budget is $7.2 billion. NSF funds reach all 50 states through grants to nearly 2,000 colleges, universities and other institutions. Each year, NSF receives about 50,000 competitive requests for funding, and makes about 11,500 new funding awards. NSF also awards about $593 million in professional and service contracts yearly.
 Get News Updates by Email 
Useful NSF Web Sites:
NSF Home Page:
 http://www.nsf.gov
NSF News:
http://www.nsf.gov/news/
For the News Media:
http://www.nsf.gov/news/newsroom.jsp
Science and Engineering Statistics:
 http://www.nsf.gov/statistics/
Awards Searches:
 http://www.nsf.gov/awardsearch/
Pink bollworm
A caterpillar of pink bollworm, which has evolved to resistance to genetically modified cotton.
Credit and Larger Version
MRSA
Methicillin-resistant Staphylococcus aureus bacteria, or MRSA, an antibiotic-resistant bacteria.
Credit and Larger Version
child looking at a killer whale
A killer whale viewed by child. Both animals are slow to evolve.
Credit and Larger Version
A woman cares for her 5-year-old grandson in  Zambian hospital
The researchers' findings are described online in Science Sept. 11, 2014.
Credit and Larger Version
The National Science Foundation (NSF)
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
Inscríbete en el Foro del blog y participa : A Vuelo De Un Quinde - El Foro!

viernes, 23 de mayo de 2014

NASA : NASA Releases Earth Day "Global Selfie" Mosaic of Our Home Planet


NASA’s “Global Selfie” Earth mosaic
NASA’s “Global Selfie” Earth mosaic contains more than 36,000 individual photographs from the more than 50,000 images posted around the world on Earth Day, April 22, 2014.
Image Credit: 
NASA
 
For Earth Day this year, NASA invited people around the world to step outside to take a "selfie" and share it with the world on social media. NASA released Thursday a new view of our home planet created entirely from those photos.
The "Global Selfie" mosaic was built using more than 36,000 individual photographs drawn from the more than 50,000 images tagged #GlobalSelfie and posted on or around Earth Day, April 22, on Twitter, Instagram, Facebook, Google+ and Flickr. The project was designed to encourage environmental awareness and recognize the agency's ongoing work to protect our home planet.
Selfies were posted by people on every continent and 113 countries and regions, from Antarctica to Yemen, Greenland to Guatemala, and Pakistan to Peru. The resulting global mosaic is a zoomable 3.2-gigapixel image that users can scan and explore to look at individual photos. The Global Selfie was assembled after several weeks of collecting and curating the submitted images.
"With the Global Selfie, NASA used crowd-sourced digital imagery to illustrate a different aspect of Earth than has been measured from satellites for decades: a mosaic of faces from around the globe," said Peg Luce, deputy director of the Earth Science Division in the Science Mission Directorate at NASA Headquarters, Washington. "We were overwhelmed to see people participate from so many countries. We're very grateful that people took the time to celebrate our home planet together, and we look forward to everyone doing their part to be good stewards of our precious Earth.”
The GigaPan image of Earth is based on views of each hemisphere captured on Earth Day 2014 by the Visible Infrared Imaging Radiometer Suite instrument on the Suomi National Polar-orbiting Partnership (NPP) satellite. Suomi NPP, a joint mission between NASA and the National Oceanic and Atmospheric Administration, collects data on both long-term climate change and short-term weather conditions.
The Global Selfie mosaic and related images and videos are available at:
The Global Selfie is part of a special year for NASA Earth science. For the first time in more than a decade, five NASA Earth Science missions are scheduled to launch in one year. The Global Precipitation Measurement Core Observatory, a joint mission with the Japan Aerospace Exploration Agency, was launched in February. The Orbiting Carbon Observatory-2 is set to launch in July with the Soil Moisture Active Passive mission to follow in November. And two Earth science instruments -- RapidScat and the Cloud-Aerosol Transport System -- will be launched to the International Space Station.
NASA missions have helped identify thousands of new planets across the universe in recent years, but the space agency studies no planet more closely than our own. With 17 Earth-observing satellites in orbit and ambitious airborne and ground-based observation campaigns, NASA produces data that help scientists get a clearer picture of Earth's interconnected natural systems. The agency shares this unique knowledge with the global community and works with institutions in the United States and around the world that contribute to understanding and protecting our home planet.
For more information about NASA's Earth science activities in 2014, visit:
 
NASA
Guillermo Gonzalo Sánchez Achutegui

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