Saturday, May 11, 2013

Cocaine vaccine passes key testing hurdle

May 10, 2013 ? Researchers at Weill Cornell Medical College have successfully tested their novel anti-cocaine vaccine in primates, bringing them closer to launching human clinical trials.

Their study, published online by the journal Neuropsychopharmacology, used a radiological technique to demonstrate that the anti-cocaine vaccine prevented the drug from reaching the brain and producing a dopamine-induced high.

"The vaccine eats up the cocaine in the blood like a little Pac-man before it can reach the brain," says the study's lead investigator, Dr. Ronald G. Crystal, chairman of the Department of Genetic Medicine at Weill Cornell Medical College.

"We believe this strategy is a win-win for those individuals, among the estimated 1.4 million cocaine users in the United States, who are committed to breaking their addiction to the drug," he says. "Even if a person who receives the anti-cocaine vaccine falls off the wagon, cocaine will have no effect."

Dr. Crystal says he expects to begin human testing of the anti-cocaine vaccine within a year.

Cocaine, a tiny molecule drug, works to produce feelings of pleasure because it blocks the recycling of dopamine -- the so-called "pleasure" neurotransmitter -- in two areas of the brain, the putamen in the forebrain and the caudate nucleus in the brain's center. When dopamine accumulates at the nerve endings, "you get this massive flooding of dopamine and that is the feel good part of the cocaine high," says Dr. Crystal.

The novel vaccine Dr. Crystal and his colleagues developed combines bits of the common cold virus with a particle that mimics the structure of cocaine. When the vaccine is injected into an animal, its body "sees" the cold virus and mounts an immune response against both the virus and the cocaine impersonator that is hooked to it. "The immune system learns to see cocaine as an intruder," says Dr. Crystal. "Once immune cells are educated to regard cocaine as the enemy, it produces antibodies, from that moment on, against cocaine the moment the drug enters the body."

In their first study in animals, the researchers injected billions of their viral concoction into laboratory mice, and found a strong immune response was generated against the vaccine. Also, when the scientists extracted the antibodies produced by the mice and put them in test tubes, it gobbled up cocaine. They also saw that mice that received both the vaccine and cocaine were much less hyperactive than untreated mice given cocaine.

Booster Shots to Dampen the Cocaine High

In this study, the researchers sought to precisely define how effective the anti-cocaine vaccine is in non-human primates, who are closer in biology to humans than mice.

They developed a tool to measure how much cocaine attached to the dopamine transporter, which picks up dopamine in the synapse between neurons and brings it out to be recycled. If cocaine is in the brain, it binds on to the transporter, effectively blocking the transporter from ferrying dopamine out of the synapse, keeping the neurotransmitter active to produce a drug high.

In the study, the researchers attached a short-lived isotope tracer to the dopamine transporter. The activity of the tracer could be seen using positron emission tomography (PET). The tool measured how much of the tracer attached to the dopamine receptor in the presence or absence of cocaine.

The PET studies showed no difference in the binding of the tracer to the dopamine transporter in vaccinated compared to unvaccinated animals if these two groups were not given cocaine. But when cocaine was given to the primates, there was a significant drop in activity of the tracer in non-vaccinated animals. That meant that without the vaccine, cocaine displaced the tracer in binding to the dopamine receptor. Previous research had shown in humans that at least 47 percent of the dopamine transporter had to be occupied by cocaine in order to produce a drug high. The researchers found, in vaccinated primates, that cocaine occupancy of the dopamine receptor was reduced to levels of less than 20 percent.

"This is a direct demonstration in a large animal, using nuclear medicine technology, that we can reduce the amount of cocaine that reaches the brain sufficiently so that it is below the threshold by which you get the high," says Dr. Crystal.

When the vaccine is studied in humans, the non-toxic dopamine transporter tracer can be used to help study its effectiveness as well, he adds.

The researchers do not know how often the vaccine needs to be administered in humans to maintain its anti-cocaine effect. One vaccine lasted 13 weeks in mice and seven weeks in non-human primates.

"An anti-cocaine vaccination will require booster shots in humans, but we don't know yet how often these booster shots will be needed," says Dr. Crystal. "I believe that for those people who desperately want to break their addiction, a series of vaccinations will help."

Co-authors of the study include Dr. Anat Maoz, Dr. Martin J. Hicks, Dr. Shankar Vallabhajosula, Michael Synan, Dr. Paresh J. Kothari, Dr. Jonathan P. Dyke, Dr. Douglas J. Ballon, Dr. Stephen M. Kaminsky, Dr. Bishnu P. De and Dr. Jonathan B. Rosenberg from Weill Cornell Medical College; Dr. Diana Martinez from Columbia University; and Dr. George F. Koob and Dr. Kim D. Janda from The Scripps Research Institute.

The study was funded by grants from the National Institute on Drug Abuse (NIDA).

Source: http://feeds.sciencedaily.com/~r/sciencedaily/top_news/~3/xf7o6yg0ou0/130510150141.htm

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Revealing hidden fungal species using DNA: The importance of recognizing cryptic diversity

May 10, 2013 ? Our ability to assess biological diversity, ecosystem health, ecological interactions, and a wide range of other important processes is largely dependent on accurately recognizing species. However, identifying and describing species is not always a straightforward task. In some cases, a single species may show a high level of morphological variation, while in other cases, multiple morphologically similar species may be hidden under a single species name. Cryptic species, two or more distinct species that are erroneously classified under a single species name, are found in all major groups of living things.

As an alternative to traditional morphology-based species delimitation, an international research group, including scientists from Germany, Iran, Spain, and the USA, describe five new species of lichen-forming fungi from what was traditionally considered a single species using differences in DNA sequence data. The authors state that "the effective use of genetic data appears to be essential to appropriately and practically identify natural groups in some phenotypically cryptic lichen-forming fungal lineages."

The study was published in the open access journal Mycokeys.

They also provide a reference DNA sequence database for specimen identification using DNA barcoding, making specimen identification more accessible and more reliable at the same time. The application of DNA-based identification can potentially be used as a way for both specialists and nonspecialists alike to recognize species that are otherwise difficult to identify.

Lichens are commonly used to monitor ecosystem health and the impact of atmospheric pollution. In addition, some lichens are potentially valuable sources of pharmaceutical products, including antibiotics, antioxidants, etc. In spite of their occurrence in all terrestrial ecosystems and overall ecological importance, lichens are commonly overlooked. DNA barcode identification can be performed in a variety of ecological, pharmaceutical, and biomonitoring studies in order to quickly sort specimens into the correct species.

The authors argue that the use of molecular sequence data in identifying species will likely become increasingly important and routinely applied. Other disciplines such as ecology, conservation, and physiology will benefit from a more objectively based species circumscription, enabling us to interpret distribution and ecological patterns more precisely, while more accurately monitoring environmental disturbance and climate change. The authors predict that this approach will prove to be an important tool in making critical conservation-related decisions.

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The above story is reprinted from materials provided by Pensoft Publishers. The original story is licensed under a Creative Commons License.

Note: Materials may be edited for content and length. For further information, please contact the source cited above.


Journal Reference:

  1. Steven Leavitt, Fernando Fern?ndez-Mendoza, Sergio P?rez-Ortega, Mohammad Sohrabi, Pradeep Divakar, Thorsten Lumbsch, Larry St. Clair. DNA barcode identification of lichen-forming fungal species in the Rhizoplaca melanophthalma species-complex (Lecanorales, Lecanoraceae), including five new species. MycoKeys, 2013; 7 (0): 1 DOI: 10.3897/mycokeys.7.4508

Note: If no author is given, the source is cited instead.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/most_popular/~3/MD3H01_Uh2s/130510124550.htm

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Friday, May 10, 2013

Kim Kardashian and Kanye West: Is This the End?

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Kris Kross' Chris Kelly Called 'True Friend' During Tearful Funeral

Jermaine Dupri, Da Brat, members of Xscape were on hand for the Atlanta funeral for the rapper.
By Gil Kaufman

Source: http://www.mtv.com/news/articles/1707097/kris-kross-chris-kelly-funeral.jhtml

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Shooting Challenge: Reflections In An Eye

Our eyes capture everything we see. So for this week's Shooting Challenge, we're going straight for the source.

The Challenge

Photograph something reflecting in an eye.

The Technique

I know what you're thinking: "That sounds neat. I've seen shots like that before. But how were they taken?"

This is how. <? Use that tutorial, with clearly laid out diagrams, and you'll be fine. Basically, the trick is to have a strong light source on one side of the eye, your subject on the other side of the eye and a camera set taking the shot in between.

The Example

Our example is the music video for K-Conjog's QWERTY, directed by Francesco Lettieri (via PetaPixel). The content can be a bit explicit, but it does show how far you can push the technique narratively/creatively.

The Rules

0. No watermarks. They're so ugly.
1. Submissions need to be your own.
2. Photos must be taken since this contest was announced.
3. Explain, briefly, the equipment, settings, technique and story behind shot.
4. Email submissions to contests@gizmodo.com, not me.
5. Include 970px wide image (200KB or less) AND a native resolution sized shot in email.
6. One submission per person.
7. Use the proper SUBJECT line in your email (more info on that below)
8. You agree to the Standard Contest Rules - though we DO accept non-US resident submissions.
9. If the image contains any material or elements that are not owned by you and/or which are subject to the rights of third parties, and/or if any persons appear in the image, you are responsible for obtaining, prior to submission of the photograph, any and all releases and consents necessary to permit the exhibition and use of the image in the manner set forth in these rules without additional compensation. If any person appearing in any image is under the age of majority in their state/province/territory of residence the signature of a parent or legal guardian is required on each release.

Send your best photo by Monday, May 14th at 10AM Eastern to contests@gizmodo.com with "Eye" in the subject line. Save your files as JPGs, and use a FirstnameLastnameEye.jpg (970px wide) and FirstnameLastnameEyeWallpaper.jpg (2560px wide) naming conventions. Include your shooting summary (camera, lens, ISO, etc) in the body of the email along with a story of the shot in a few sentences. And don't skip this story part because it's often the most enjoyable part for us all beyond the shot itself!

Source: http://gizmodo.com/shooting-challenge-reflections-in-an-eye-496307243

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Epigenomics of stem cells that mimic early human development charted

May 9, 2013 ? Scientists have long known that control mechanisms known collectively as "epigenetics" play a critical role in human development, but they did not know precisely how alterations in this extra layer of biochemical instructions in DNA contribute to development.

Now, in the first comprehensive analysis of epigenetic changes that occur during development, a multi-institutional group of scientists, including several from the Salk Institute for Biological Studies, has discovered how modifications in key epigenetic markers influence human embryonic stem cells as they differentiate into specialized cells in the body. The findings were published May 9 in Cell.

"Our findings help us to understand processes that occur during early human development and the differentiation of a stem cell into specialized cells, which ultimately form tissues in the body," says co-lead author Joseph R. Ecker, a professor and director of Salk's Plant Molecular and Cellular Biology Laboratory and holder of the Salk International Council Chair in Genetics.

Scientists have established that the gene expression program encoded in DNA is carried out by proteins that bind to regulatory genes and modulate gene expression in response to environmental cues. Growing evidence now shows that maintenance of this process depends on epigenetic marks such as DNA methylation and chromatin modifications, biochemical processes that alter gene expression as cells divide and differentiate from embryonic stem cells into specific tissues. Epigenetic modifications -- collectively known as the epigenome -- control which genes are turned on or off without changing the letters of the DNA alphabet (A-T-C-G), providing cells with an additional tool to fine-tune how genes control the cellular machinery.

In their study, the Salk researchers and their collaborators from several prominent research institutions across the United States examined the beginning state of cells, before and after they developed into specific cell types. Starting with a single cell type -- the H1 human embryonic stem cell, the most widely studied stem cell line to date -- the team followed the cells' epigenome from development to different cell states, looking at the dynamics in changes to epigenetic marks from one state to another. Were they methylated, an essential process for normal development, or unmethylated? What happened to the cells during development? What regulatory processes occurred in the cell lineage?

The scientists found sections of the DNA that activate regulatory genes, which in turn control the activity of other genes, tend to have different amounts of letters of the DNA alphabet, "C" and "G" specifically, depending on when these regulatory genes are turned on during development. Additionally, regulatory genes that control early development are often located on stretches of DNA called methylation valleys, or DMVs, that are generally CG rich and devoid of epigenetic chemical modifications known as methylation.

Consequently, these genes have to be regulated by another epigenetic mechanism, which the authors found were chemical changes called chromatin modifications. Chromatin is the mass of material -- DNA and proteins -- in a cell's nucleus that helps to control gene expression.

On the other hand, genes active in more mature cells whose tissue type is already determined tend to be CG poor and regulated by DNA methylation. The results suggest that distinct epigenetic mechanisms regulate early and late states of embryonic stem cell differentiation.

"Epigenomic studies of how stem cells differentiate into distinct cell types are a great way to understand early development of animals," says Ecker, who is also a Howard Hughes Medical Institute and Gordon and Betty Moore Foundation Investigator. "If we understand how these cells' lineages originate, we can understand if something goes right or wrong during differentiation. It's a very basic study, but there are implications for being able to produce good quality cell types for various therapies."

For example, says Matthew Schultz, a graduate student in Ecker's lab, "understanding how development plays out normally could give us clues about how to reverse the process and turn normal adult cells into stem cells to regenerate tissues."

One area where the findings may help is in the study of tumor development. In normal tissue, DMVs are unmethylated, but in cancer, especially breast, colon and lung cancer, they are hypermethylated, suggesting, says Ecker, that alterations in the DNA methylation machinery might be an important mechanism aiding tumor development. He says further investigation is required to develop a greater understanding of this process.

Other researchers on the study were Matthew D. Schultz, Ryan Lister, Joseph R. Nery, Mark A. Urich and Huaming Chen, from the Salk Institute; Wei Xie, Nisha Rajagopal, R. David Hawkins, Danny Leung, Ah Young Lee, Audrey Kim, Samantha Kuan, Chia-an Yen, Sarit Klugman, Lee E. Edsall, Ulrich Wagner, Yan Li, Zhen Ye and Bing Ren of the Ludwig Institute for Cancer Research; Zhonggang Hou, Shulan Tian, Scott A. Swanson, Jiuchun Zhang, Pengzhi Yu, Nicholas E. Propson, Jessica E. Antosiewicz-Bourget, Ron Stewart and James A. Thomson of the Morgridge Institute for Research; Pradipta Ray Ashwinikumar Kulkarni, Zhenyu Xuan, Wen-Yu Chung and Michael Q. Zhang of the University of Texas at Dallas; John W. Whitaker, Hongbo Yang, Tao Wang, Yun Zhu, Neil C. Chi, and Wei Wang of the University of California, San Diego; and Kran Suknuntha and Igor Sluvkin of the University of Wisconsin.

The study was supported by the National Institutes of Health Epigenome Roadmap Project, the National Heart, Lung and Blood Institute, and the American Heart Association.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/health_medicine/genes/~3/E86AFfaqYI0/130509133155.htm

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Social connections drive the 'upward spiral' of positive emotions and health

Social connections drive the 'upward spiral' of positive emotions and health [ Back to EurekAlert! ] Public release date: 9-May-2013
[ | E-mail | Share Share ]

Contact: Anna Mikulak
amikulak@psychologicalscience.org
202-293-9300
Association for Psychological Science

People who experience warmer, more upbeat emotions may have better physical health because they make more social connections, according to a new study published in Psychological Science, a journal of the Association for Psychological Science.

The research, led by Barbara Fredrickson of the University of North Carolina at Chapel Hill and Bethany Kok of the Max Planck Institute for Human Cognitive and Brain Sciences also found it is possible for a person to self-generate positive emotions in ways that make him or her physically healthier.

"People tend to liken their emotions to the weather, viewing them as uncontrollable," says Fredrickson. "This research shows not only that our emotions are controllable, but also that we can take the reins of our daily emotions and steer ourselves toward better physical health."

To study the bodily effects of up-regulating positive emotions, the researchers zeroed in on vagal tone, an indicator of how a person's vagus nerve is functioning. The vagus nerve helps regulate heart rate and is also a central component of a person's social-engagement system.

Because people who have higher vagal tone tend to be better at regulating their emotions, the researchers speculated that having higher vagal tone might lead people to experience more positive emotions, which would then boost perceived positive social connections. Having more social connections would in turn increase vagal tone, thereby improving physical health and creating an "upward spiral."

To see whether people might be able to harness this upward spiral to steer themselves toward better health, Kok, Fredrickson, and their colleagues conducted a longitudinal field experiment.

Half of the study participants were randomly assigned to attend a 6-week loving-kindness meditation (LKM) course in which they learned how to cultivate positive feelings of love, compassion, and goodwill toward themselves and others. They were asked to practice meditation at home, but how often they meditated was up to them. The other half of the participants remained on a waiting list for the course.

Each day, for 61 consecutive days, participants in both groups reported their "meditation, prayer, or solo spiritual activity," their emotional experiences, and their social interactions within the last day. Their vagal tone was assessed twice, once at the beginning and once at the end of the study.

The data provided clear evidence to support the hypothesized upward spiral, with perceived social connections serving as the link between positive emotions and health.

Participants in the LKM group who entered the study with higher vagal tone showed steeper increases in positive emotions over the course of the study. As participants' positive emotions increased, so did their reported social connections. And, as social connections increased, so did vagal tone. In contrast, participants in the wait-list group showed virtually no change in vagal tone over the course of the study.

"The daily moments of connection that people feel with others emerge as the tiny engines that drive the upward spiral between positivity and health," Fredrickson explains.

These findings add another piece to the physical health puzzle, suggesting that positive emotions may be an essential psychological nutrient that builds health, just like getting enough exercise and eating leafy greens.

"Given that costly chronic diseases limit people's lives and overburden healthcare systems worldwide, this is a message that applies to nearly everyone, citizens, educators, health care providers, and policy-makers alike," Fredrickson observes.

###

This work was supported National Institute of Mental Health Grant MH59615.

Those interested in learning more can explore Barbara Fredrickson's recent book, Love 2.0, at http://www.PositivityResonance.com.

For more information about this study, please contact: Barbara L. Fredrickson at blf@unc.edu.

The APS journal Psychological Science is the highest ranked empirical journal in psychology. For a copy of the article "How Positive Emotions Build Physical Health: Perceived Positive Social Connections Account for the Upward Spiral Between Positive Emotions and Vagal Tone" and access to other Psychological Science research findings, please contact Anna Mikulak at 202-293-9300 or amikulak@psychologicalscience.org.


[ Back to EurekAlert! ] [ | E-mail | Share Share ]

?


AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert! system.


Social connections drive the 'upward spiral' of positive emotions and health [ Back to EurekAlert! ] Public release date: 9-May-2013
[ | E-mail | Share Share ]

Contact: Anna Mikulak
amikulak@psychologicalscience.org
202-293-9300
Association for Psychological Science

People who experience warmer, more upbeat emotions may have better physical health because they make more social connections, according to a new study published in Psychological Science, a journal of the Association for Psychological Science.

The research, led by Barbara Fredrickson of the University of North Carolina at Chapel Hill and Bethany Kok of the Max Planck Institute for Human Cognitive and Brain Sciences also found it is possible for a person to self-generate positive emotions in ways that make him or her physically healthier.

"People tend to liken their emotions to the weather, viewing them as uncontrollable," says Fredrickson. "This research shows not only that our emotions are controllable, but also that we can take the reins of our daily emotions and steer ourselves toward better physical health."

To study the bodily effects of up-regulating positive emotions, the researchers zeroed in on vagal tone, an indicator of how a person's vagus nerve is functioning. The vagus nerve helps regulate heart rate and is also a central component of a person's social-engagement system.

Because people who have higher vagal tone tend to be better at regulating their emotions, the researchers speculated that having higher vagal tone might lead people to experience more positive emotions, which would then boost perceived positive social connections. Having more social connections would in turn increase vagal tone, thereby improving physical health and creating an "upward spiral."

To see whether people might be able to harness this upward spiral to steer themselves toward better health, Kok, Fredrickson, and their colleagues conducted a longitudinal field experiment.

Half of the study participants were randomly assigned to attend a 6-week loving-kindness meditation (LKM) course in which they learned how to cultivate positive feelings of love, compassion, and goodwill toward themselves and others. They were asked to practice meditation at home, but how often they meditated was up to them. The other half of the participants remained on a waiting list for the course.

Each day, for 61 consecutive days, participants in both groups reported their "meditation, prayer, or solo spiritual activity," their emotional experiences, and their social interactions within the last day. Their vagal tone was assessed twice, once at the beginning and once at the end of the study.

The data provided clear evidence to support the hypothesized upward spiral, with perceived social connections serving as the link between positive emotions and health.

Participants in the LKM group who entered the study with higher vagal tone showed steeper increases in positive emotions over the course of the study. As participants' positive emotions increased, so did their reported social connections. And, as social connections increased, so did vagal tone. In contrast, participants in the wait-list group showed virtually no change in vagal tone over the course of the study.

"The daily moments of connection that people feel with others emerge as the tiny engines that drive the upward spiral between positivity and health," Fredrickson explains.

These findings add another piece to the physical health puzzle, suggesting that positive emotions may be an essential psychological nutrient that builds health, just like getting enough exercise and eating leafy greens.

"Given that costly chronic diseases limit people's lives and overburden healthcare systems worldwide, this is a message that applies to nearly everyone, citizens, educators, health care providers, and policy-makers alike," Fredrickson observes.

###

This work was supported National Institute of Mental Health Grant MH59615.

Those interested in learning more can explore Barbara Fredrickson's recent book, Love 2.0, at http://www.PositivityResonance.com.

For more information about this study, please contact: Barbara L. Fredrickson at blf@unc.edu.

The APS journal Psychological Science is the highest ranked empirical journal in psychology. For a copy of the article "How Positive Emotions Build Physical Health: Perceived Positive Social Connections Account for the Upward Spiral Between Positive Emotions and Vagal Tone" and access to other Psychological Science research findings, please contact Anna Mikulak at 202-293-9300 or amikulak@psychologicalscience.org.


[ Back to EurekAlert! ] [ | E-mail | Share Share ]

?


AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert! system.


Source: http://www.eurekalert.org/pub_releases/2013-05/afps-scd050913.php

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