8/23/2012

Extraction and Purification of Bioproducts and Nanoparticles using Aqueous Two-Phase Systems Strategies

Aqueous Two-Phase Systems (ATPS) is a primary recovery technique that has shown great potential for the efficient extraction and purification of high value biological compounds. The main advantages of this technique include scaling up feasibility, process integration capability and biocompatibility. In this review, the efficient use of ATPS for the extraction of proteins, genetic material, low molecular weight compounds, bioparticles, nanoparticles and cells is highlighted. The important role of ATPS in process integration, i.e., extractive conversion, extractive fermentation, cell disruption integrated with product recovery, and extractive purification, is discussed. A novel approach to protein molecular characterization combining ATPS and 2-dimension electrophoresis (2-DE) is introduced as a first step in the process development. Novel approaches for downstream processing using ATPS and dielectrophoresis are presented. Finally, trends concerning the application of ATPS strategies to address the future challenges of bioseparation are discussed.


Keywords: Aqueous Two-Phase Systems, Biological Products, Extraction
Received: February 2, 2008; accepted: March 24, 2008
DOI: 10.1002/ceat.200800068

Source: http://onlinelibrary.wiley.com/doi/10.1002/ceat.200800068/pdf

7/09/2012

Repeat aneurysm screening for high-risk men should be considered

Aneurysm screening for men aged over 65 is cost effective and rescreening those at highest risk, at least once, should be considered, suggests a study published on bmj.com today.

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Researchers find a brain center for social choices

Although many areas of the human brain are devoted to social tasks like detecting another person nearby, a new study has found that one small region carries information only for decisions during social interactions. Specifically, the area is active when we encounter a worthy opponent and decide whether to deceive them.

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Climate change suspended reef growth for 2 millennia

According to a paper published this week in Science, natural climatic shifts stopped reef growth in the eastern Pacific for 2,500 years.

MELBOURNE, FLA.—Climate change drove coral reefs to a total ecosystem collapse lasting thousands of years, according to a paper published this week in Science. The paper shows how natural climatic shifts stopped reef growth in the eastern Pacific for 2,500 years. The reef shutdown, which began 4,000 years ago, corresponds to a period of dramatic swings in the El Niño–Southern Oscillation (ENSO). "As humans continue to pump greenhouse gases into the atmosphere, the climate is once again on the threshold of a new regime, with dire consequences for reef ecosystems unless we get control of climate change," said coauthor Richard Aronson, a biology professor at Florida Institute of Technology.

Doctoral student Lauren Toth and Aronson, her adviser at Florida Tech, led the study of how past episodes of climate change influenced tropical reefs of the eastern Pacific. Toth, Aronson and a multi-institutional research team drove 17-foot, small-bore aluminum pipes deep into the dead frameworks of coral reefs along the Pacific coast of Panama and pulled out cross-sections of the reefs. By analyzing the corals in the cores, they were able to reconstruct the history of the reefs over the past 6,000 years.

"We were shocked to find that 2,500 years of reef growth were missing from the frameworks," said Toth. "That gap represents the collapse of reef ecosystems for 40 percent of their total history." When Toth and Aronson examined reef records from other studies across the Pacific, they discovered the same gap in reefs as far away as Australia and Japan.

Toth linked the coral-reef collapse to changes in ENSO. ENSO is the climate cycle responsible for the weather conditions every few years known as El Niño and La Niña events. The timing of the shutdown in reef growth corresponds to a period of wild swings in ENSO. "Coral reefs are resilient ecosystems," said Toth. "For Pacific reefs to have collapsed for such a long time and over such a large geographic scale, they must have experienced a major climatic disturbance. That disturbance was an intensified ENSO regime."

Scenarios of climate change for the coming century echo the climate patterns that collapsed reefs in the eastern Pacific 4,000 years ago. The reefs off Panama are on the verge of another collapse. "Climate change could again destroy coral-reef ecosystems, but this time the root cause would be the human assault on the environment and the collapse could be longer-lasting," said Aronson. "Local issues like pollution and overfishing are major destructive forces and they need to be stopped, but they are trumped by climate change, which right now is the greatest threat to coral reefs."

Toth noted more hopefully that reefs have proven resilient in the past, so the potential for recovery should be good if climate change can be mitigated or reversed.

This research was supported by the Smithsonian Institution and the U.S. National Science Foundation.

Contact Information:
Richard B. Aronson, corresponding author and primary contact
Department of Biological Sciences, Florida Institute of Technology, Melbourne, FL 32901
raronson@fit.edu
cell (321) 480-2615
office (321) 674-7364

Lauren T. Toth, senior author; available July 9-12 at the 12th International Coral Reef Symposium, Cairns, Australia
ltoth2009@my.fit.edu
Skype (321) 215-4608


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Discovery of Human Monoclonal Chikungunya Antibodies

Chikungunya is prevalent in Africa, South Asia, and South-East Asia and is transmitted by the Aedes mosquito, the same mosquito that spreads dengue fever. Singapore alone, over 1000 Chikungunya cases were reported over the period 2008-2010.Identify and generate fully human monoclonal antibodies, to develop two antibodies that could neutralize several Chikungunya strains in vitro by culturing immune cells from an individual who had developed resistance to Chikungunya. Monoclonal antibodies can be more potent and have fewer side effects than conventional small molecule drugs.
“The discovery of these antibodies is a big step forward in combating a disease that presently has no available vaccine or specific treatment. This was invaluable in helping to isolate the target antibodies from the cultured immune cells.Further validate the use of these antibodies as a viable treatment for Chikungunya.”Further testing in vivo would have to be carried out to validate the antibodies’ performance as a potential treatment for Chikungunya.
“The successful synergy is that the development of two antibodies against a disease that is on the rise has been accomplished. The human immunology, virology and molecular biology, helped to speed up the selection, sequencing and characterization of the most potent antibody candidates.To note that this breakthrough was achieved in less than a year from the start of the project”.
“The new platform used for the generation of fully human monoclonal antibody is already providing excellent results, and to generate a number of new fully human monoclonal antibodies that could be used as therapeutics.
"The discovery of these new fully human monoclonal antibodies with strong neutralizing activities against the Chikungunya virus constitutes an an additional testimony of the efficiency of the Humalex® platform.For more information contact coordinator [ a t ] nthrys -dot- com
 
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