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Thursday, June 02, 2016

Aviação

How One Man Came to Own the Skies and Make Aviation History

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Viking
Peter B. Doran is the Vice President of Research at the Center for European Policy Analysis at the Center for European Policy Analysis and the author of Breaking Rockefeller.

In 1903, the Wright brothers invented the airplane. In 1910, Glenn H. Curtiss topped their monopoly on aviation

In May 1910 pioneering pilot Glenn H. Curtiss brought all of Manhattan to a standstill with a record-breaking feat of aviation.

At the time, Curtiss was fighting a legal battle to break the Wright brothers’ monopoly over all powered human flight, but it was bleeding him dry. In order to pay his lawyers, Curtiss had to do the impossible. He had to win an impossible prize.
Joseph Pulitzer’s New York World had put up $10,000 ($250,000 today) for anyone who could complete the 150-mile journey from Albany to New York in an aeroplane. If Curtiss could win Pulitzer’s prize, he could sustain his battle to open the skies to innovation./.../

Wednesday, June 01, 2016

Dia Mundial Sem Fumo


World No Tobacco Day 2016 http://www.who.int/campaigns/no-tobacco-day/2016/en/


Ontem, 31 de maio de 2016 - Dia Mundial sem Tabaco - perguntei-me ao passar frente o deteriorado monumento  em homenagem ao saudoso Professor Mário Rigatto, se era tão curta nossa memória, ou se não valorizávamos mais uma de suas principais bandeiras alertando para os riscos do tabagismo.
Eu não poderia esquecer o Rigatto que me antecedeu por quatro anos na universidade, a quem tive a honra de suceder em 1971 na presidência da Comissão Científica da AMRIGS, como companheiro em inúmeras atividades relacionadas com o controle do tabagismo no país e pelo mundo afora, sobre longevidade e exercício Físico, na Sociedade Brasileira de Cardiologia e na Academia Sul-Riograndense de Medicina.
Além da pintura degradada já aparecem sinais de comprometimento da estrutura do monumento. Precisamos nos unir para providenciar em seu restauro, o que pode também servir como pretexto para relembrá-lo, bem como suas ideias e propostas.




A seguir, artigo do Professor Carlos M. Gottchall e link de entrevistas dele no You Tube


Mário Rigatto, meu Mestre (28/12/1928 ¾ 17/1/2000)
Arquivos Brasileiros de Cardiologia On-line version ISSN 1678-4170
Arq. Bras. Cardiol. vol.74 n.1 São Paulo Jan. 2000




Dr. Mario Rigatto 2/7
Serie de entrevistas com o Dr. Mario Rigatto (parte 2) - O Amor.
Dr. Mario Rigatto 4/7
Dr. Mario Rigatto 1/7
Entrevista com Dr. Mario Rigatto no programa do Jo em Novembro de 1998.
Serie de entrevistas com o Dr. Mario Rigatto (parte 5) - Tabagismo, Longevidade. Dr. Mario Rigatto 7/7

Alzheimer D and infections

From Scientific America: 
Antimicrobial Mechanism Gone Rogue May Play Role in Alzheimer's Disease 
A new study finds that a key protein implicated in Alzheimer’s may normally protect the brain from infectionBy Jordana Cepelewicz on May 26, 2016



Brain scan of a patient affected by Alzheimer's Disease. Credit: Photo By BSIP/UIG via Getty Images

General consensus among Alzheimer’s researchers has it that the disease’s main culprit, a protein called amyloid beta, is an unfortunate waste product that is not known to play any useful role in the body—and one that can have devastating consequences. When not properly cleared from the brain it builds up into plaques that destroy synapses, the junctions between nerve cells, resulting in cognitive decline and memory loss. The protein has thus become a major drug target in the search for a cure to Alzheimer’s.
Now a team of researchers at Harvard Medical School and Massachusetts General Hospital are proposing a very different story. In a study published this week in Science Translational Medicine, neurologists Rudolph Tanzi and Robert Moir report evidence that amyloid beta serves a crucial purpose: protecting the brain from invading microbes.“The original idea goes back to 2010 or so when Rob had a few too many Coronas,” Tanzi jokes. Moir had come across surprising similarities between amyloid beta and LL37, a protein that acts as a foot soldier in the brain’s innate immune system, killing potentially harmful bugs and alerting other cells to their presence. “These types of proteins, although small, are very sophisticated in what they do,” Moir says. “And they’re very ancient, going back to the dawn of multicellular life.”Just as amyloid beta is known to do, these antimicrobial proteins can build up and form fibrils that, when not properly regulated, have harmful effects. Yet unlike amyloid beta, their role in the immune system has been widely accepted: They prevent microbes from adhering to host cells, and ultimately trap them. So five years ago the pair of researchers set out to determine whether amyloid beta could also act as a natural antibiotic. They had previously explored their hypothesis in vitro, but in this new study they used worms and mice. For these animal models they compared what happened when amyloid beta was overexpressed to when it was not produced, and found that the former led to increased resistance to infection and longer survival rates.The team first infected cultured human and hamster cells with a type of fungus called Candida albicans and found that high expression of amyloid beta had a protective effect, doubling the number of cells that were not infected. The researchers then moved on to roundworms, or nematodes, which usually do not survive for more than two to three days once the fungus takes hold. The nematodes with overexpressed amyloid beta, however, were still going strong five to six days after they were infected. Finally, the researchers infected the brains of mice with a strain of salmonella to cause meningitis. Mice that were genetically altered to overproduce human amyloid beta survived nearly twice as long as mice that did not have the protein at all.Most shocking of all, according to Tanzi and Moir, was that when they injected bacteria into the brains of Alzheimer’s mouse models, amyloid plaques—the hallmark of the disease—formed within 48 hours. “We didn’t know this was even possible,” Tanzi says, “that amyloid plaques would form rapidly overnight.” And in the middle of each plaque was one Salmonella bacterium, supporting the theory that the amyloid deposition had formed around the microbe as an entrapment mechanism—just like LL37 and other established antimicrobial proteins.“These results are particularly intriguing,” says Anna Palamara, a microbiologist at the Sapienza University of Rome who was not involved in the study. “Previous [research] shows that several infectious agents, including viruses, trigger amyloid beta production and accumulation.” Herpes and influenza are just two of the infections that have been tested by other research teams.The Harvard team’s new findings provide further evidence that Alzheimer’s could be inadvertently spurred by an infection that causes the formation of too much amyloid. As people get older the immune system and blood-brain barrier become increasingly compromised, making it easier for microbes to sneak into the brain. It wouldn’t take many of these pathogens, according to Tanzi, to cause amyloid buildup. “And that could rapidly start the cascade toward the disease,” he says, “causing tangles and inflammation. You’ve got all three pillars of Alzheimer’s right there.”“It is possible to speculate that during a mild infection the production of amyloid beta may help,” Palamara says. “But in the presence of persistent or repeated infections, amyloid beta levels may accumulate, exceeding a threshold. In this case its protective role might change to the well-known neurotoxic one.”The idea that amyloid beta has a positive function in the body could potentially change how scientists approach potential treatments. Instead of attempting to completely eliminate the protein, “we might want to think about just dialing it down,” Tanzi says. Moreover, Moir adds, the drugs in trials now are for the most part designed to reduce inflammation by targeting pathways in the adaptive immune system. But if amyloid production and deposition are innate immune responses, then targeting pathways of innate immunity or the microbes themselves may be the way to go.They do not expect convincing the scientific community of this to be easy. “This is really going to cause a lot of unrest in the field,” Tanzi says. “Any new revolutionary discovery is first ridiculed, then violently opposed, and finally taken to be self-evident. We’re ready for the ridicule and the violent opposition, and we think we have enough data so that we can look forward to self-evident.”But the pair has a long way to go. They are now moving forward with a plan to systematically characterize the microbes found in the aging brain. From there they hope to identify the pathogens that may be involved in the onset of Alzheimer’s—as well as those that potentially play a role in other amyloid diseases, such as diabetes.“We’re at the top of a mountain with a freshly formed layer of snow,” Moir says. “Where you go is where you choose. There’s so much to explore.”

Loss of Y Chromosome


NEW YORK (Reuters Health) - Lifetime-acquired loss of Y chromosome (LOY) in blood in men may increase the risk of Alzheimer's disease (AD) and may explain why men live shorter lives than women on average, according to new research.
Dr. Jan P. Dumanski of Uppsala University in Sweden and colleagues analyzed data from three independent studies of dementia: two prospective studies and one case-control study. All participants were genotyped, and the researchers used a continuous variable, the median of the log R ratio (mLRRY), to estimate the degree of LOY in each participant.
Of more than 3,200 participants included in their analysis, the researchers found detectable LOY in 546 (17%), with an mLRRY value lower than the 99% confidence limit. The frequency of LOY was similar in all three studies, 17.5%, 21.1%, and 15.4%/.../
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Stress and Cognition Decline

Hormone Causes Decline in Cognition After Social Stress

Summary: Researchers explore how stress can influence our cognitive performance.
Source: Max Planck Institute.
How does stress influence our cognitive performance? This is an issue scientists at the Max Planck Institute of Psychiatry in Munich have been dealing with. For the first time, they have identified a brain mechanism that explains why the cognitive performance of mice is reduced after being exposed to social stress. This finding will help to improve our understanding and treatment of disorders involving cognitive decline in humans.
The prefrontal cortex is a brain region responsible for mental activity, perception and recognition, in short for cognition. No matter whether we want to respond flexibly to certain situations, have to do several things simultaneously or make plans for the future – none of this would be possible without our prefrontal cortex. However, these processes are very susceptible to stress. Our anger resulting from being stuck in a traffic jam in the morning or trouble with the boss at lunchtime causes social stress. The so-called Corticotropin-releasing factor (CRF) controls our reaction in the prefrontal cortex; however, which exact role it plays was not clear previously.
Therefore, scientists at the Max Planck Institute of Psychiatry tested what exactly happens in the brain during such stressful periods in mice. They exposed mice to acute social stress and observed a cognitive decline in the rodents some hours later. The mice were not able to show cognitive flexibility in a test maze or remember the chronological sequence of events they had learned before.
In order to find out more about the role CRF plays in this process, the scientists blocked the action of the peptide using a drug, a so-called CRF antagonist. This time, the performance of the mice did not decrease several hours after the stressful event; they were able to perform the required tasks as successfully as they had done without stress.
Image shows the location of the PFC.
Image shows the location of the PFC.
The prefrontal cortex is a brain region responsible for mental activity, perception and recognition, in short for cognition. NeuroscienceNews.com image is for illustrative purposes.
“The crucial point is that we were able to identify the mechanism responsible for the reduction in performance after stress,” Mathias Schmidt, research group leader and head of the study, summarizes. Understanding this mechanism is important in order to comprehend how stress affects our thinking, feeling and perceiving. Since the mechanisms underlying the flexibility in perception and memory performance are similar in mice and humans, it is very probable that the findings are transferable to humans. Many psychiatric diseases such as depression or schizophrenia are accompanied by impaired cognitive function. With their findings, the scientists hope to develop approaches for novel treatments and medications.
ABOUT THIS PSYCHOLOGY RESEARCH ARTICLE
Source: Anke Schlee – Max Planck Institute
Image Source: This NeuroscienceNews.com image is in the public domain.
Original Research: Abstract for “Prefrontal cortex corticotropin-releasing hormone receptor 1 conveys acute stress-induced executive dysfunction” by Andrés Uribe-Mariño, Nils C Gassen, Maximilian F Wiesbeck, Georgia Balsevich, Sara Santarelli, Beate Solfrank, Carine Dournes, Gabriel R Fries, Merce Masana, Christiana Labermaier, Xiao-Dong Wang, Kathrin Hafner, Bianca Schmid, Theo Rein, Alon Chen, Jan M Deussing, and Mathias Schmidt in Biological Psychiatry. Published online April 8 2016 doi:10.1016/j.biopsych.2016.03.2106

Pain Reliever

New Class of Pain Relievers Discovered and Tested


Summary: Researchers say a new compound simultaneously blocks two sought after pain targets.
Source: Duke.
New drug blocks two sought-after pain targets.
A research team at Duke University has discovered a potential new class of small-molecule drugs that simultaneously block two sought-after targets in the treatment of pain.
These proof-of-concept experiments, published June 1 in Scientific Reports, could lead to the development of a new drug to treat conditions including skin irritation and itching, headaches, jaw pain, and abdominal pain stemming from the pancreas and colon.
More than 100 million people suffer from chronic pain in the United States, according to a report from the Institute of Medicine, and new medicines are badly needed.
“We are very pleased with what is a first chapter in a highly promising story,” said Wolfgang Liedtke, M.D., Ph.D., a professor of neurology, anesthesiology and neurobiology at Duke University School of Medicine, who treats patients with head and face pain and other sensory disorders. “We hope to be able to develop these compounds for clinical use in humans or animals.”/.../

Ancient Greek Astronomy


REMARKABLE ASTRONOMICAL ACHIEVEMENTS OF THE ANCIENT GREEKS -- 6/01/16

Today's selection -- from To Explain the World by Steven Weinberg.Thousands of years before Christopher Columbus, the early Greek philosopher Aristotle laid out the reasons for concluding that the Earth was round, and from that point forward,this became the prevailing view among ancient astronomers and philosophers./.../