Friday, November 23, 2012

Food and Drink Commentary | International Supermarket News

The new issue of Bidwells first ?Food and Drink? sector commentary examines key trends within the food industry from a property perspective.

Food & Drink producers are continuing to experience pressure with regard to both escalating input prices, particularly in areas like animal feed and fuel, and a constrained consumer economy struggling to emerge from a double-dip recession.? With little prospect of improvement in 2013, the need to control property cost overheads whilst enhancing operational flexibility is of paramount importance.

? But this dark cloud does have a silver (or maybe bronze) lining, according to the new report? commented Ian Peck, Partner, Bidwells

A soft market is a good time to consider:

  • Relocating to high quality industrial or logistics facilities
  • Renegotiating leases
  • Securing planning permission for new facilities
  • Purchasing land or buildings.

?

So when you are carving your way through a recessionary forest, keep your eyes peeled (for a bargain), your mind open (to new possibilities) and your advisors close (to your and the market)

?

Short URL: http://www.internationalsupermarketnews.com/?p=8575

Source: http://www.internationalsupermarketnews.com/news/8575

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Polymer chemistry: Dual-function molecules enhance widely used chemical reaction while reducing harmful by-products

ScienceDaily (Nov. 21, 2012) ? Production of biocompatible and super-absorbent materials may become easier, thanks to Anbanandam Parthiban and co-workers at the A*STAR Institute of Chemical and Engineering Sciences. Using a modification to the high-precision technique known as atom transfer radical polymerization (ATRP), which links molecules into long chains, the researchers have developed new compounds that can directly polymerize acidic vinyl monomers, such as acrylic acid.

Acrylic acid polymers are water-absorbing materials widely used in diapers and as emulsifying agents for pharmaceuticals and cosmetics.

Previous attempts to use ATRP with polar vinyl monomers, including acrylic acid, were unsuccessful, a failure that some chemists attributed to catalyst 'poisoning' by carboxylic acids. Parthiban and his team's compounds resolve this problem by binding to the catalyst while simultaneously initiating the radical polymerization process. This process prevents poisoning and dramatically reduces metallic waste.

Despite ATRP's inability to directly produce acrylic acid polymers, it is used in laboratories worldwide: it allows researchers to assemble complex polymers in a step-by-step fashion that gives enormous control over product architectures. The key is using a catalyst that can readily switch between two oxidation states, such as a copper salt, explains Parthiban. The copper catalyst first interacts with an ATRP initiator molecule to activate organic free radicals and an oxidized metal complex. The free radicals then quickly polymerize target monomers, while the metal complex undergoes equilibrium with a dormant, lower oxidation state. With appropriate reaction conditions, chemists can then restart polymerization with new monomers.

Parthiban and co-workers addressed ATRP's limitation by developing 'unimolecular ligand-initiator systems' (ULIS), a series of branched molecules containing multiple binding sites for copper atoms, as well as halogens for activating free radical species. In this approach, the ULIS molecules become part of the polymer chain during the active-dormant cycles instead of remaining isolated. The researchers envisaged that this interconnection would suppress the acidic side-reactions that lead to catalyst poisoning.

Experiments by the researchers proved their theories correct: they could efficiently polymerize acrylic acid and other vinyl monomers using ULIS-promoted ATRP (see image). Surprisingly, they found that these reactions could be achieved using less than 100 parts-per-million concentrations of copper catalyst, a quantity comparable to residues left in conventional ATRP purified polymers.

Parthiban notes that although the ULIS ligands are part of the polymer chain and might be expected to produce high amounts of metal waste, the homogenous nature of intramolecular-based free radical polymerization allows less metal to be used -- an important consequence for sustainable chemistry efforts.

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Story Source:

The above story is reprinted from materials provided by The Agency for Science, Technology and Research (A*STAR).

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


Journal Reference:

  1. Satyasankar Jana, Anbanandam Parthiban, Foo Ming Choo. Unimolecular ligand?initiator dual functional systems (ULIS) for low copper ATRP of vinyl monomers including acrylic/methacrylic acids. Chemical Communications, 2012; 48 (35): 4256 DOI: 10.1039/C2CC16663A

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

Disclaimer: Views expressed in this article do not necessarily reflect those of ScienceDaily or its staff.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/top_news/top_technology/~3/_JeGnJ383wY/121123132615.htm

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4D scans show fetuses yawn in the womb

LONDON | Wed Nov 21, 2012 6:44pm EST

LONDON (Reuters) - Growing into a fully formed human being is a long process, and scientists have found that unborn babies not only hiccup, swallow and stretch in the womb, they yawn too.

Researchers who studied 4D scans of 15 healthy fetuses also said they think yawning is a developmental process which could potentially give doctors a new way to check on a baby's health.

While some scientists have previously suggested that fetuses yawn, others disagree and say it is nothing more than a developing baby opening and stretching its mouth.

But writing in the journal PLOS ONE on Wednesday, British researchers said their study was able to clearly distinguish yawning from "non-yawn mouth opening" based on how long the mouth was open.

The researchers did this by using 4D video footage to examine all the times when fetuses opened their mouths.

Nadja Reissland of Durham University's department of Psychology, who led the study, said the function and importance of yawning in fetuses is still unknown, but the findings suggest it may be linked to fetal development and could provide a further indication of the health of the unborn baby.

"Unlike us, fetuses do not yawn contagiously, nor do they yawn because they are sleepy," she said. "Instead, the frequency of yawning in the womb may be linked to the maturing of the brain early in gestation."

The study was carried out on eight female and seven male fetuses from 24 to 36 weeks gestation. The researchers found that yawning declined from 28 weeks and that there was no significant difference in how often boys and girls yawned.

(Reporting by Kate Kelland, editing by Paul Casciato)

Source: http://feeds.reuters.com/~r/reuters/scienceNews/~3/eIl-g2a1gCM/us-foetus-yawn-idUSBRE8AK1HG20121121

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Italian financier Proto under investigation for market rigging: sources

MILAN (Reuters) - Italian financier Alessandro Proto, who has announced offers for stakes in some of Italy's top companies, has been placed under investigation for alleged market rigging, judicial sources said on Thursday.

Confirming media reports, the judicial sources said Milan prosecutors had placed the financier under investigation for alleged market rigging in relation to statements made by his consultancy firm Proto Organisation.

Proto denied he was under investigation for market manipulation.

"Proto is not under investigation in any proceedings about market rigging," his lawyer Francesco Rubino said on Thursday.

"All financial activities of the Proto Organisation have always been carried out with the utmost transparency and in conformity with market rules and Italian laws," he said in an email.

In a separate statement, Proto said he had not been notified of an investigation by prosecutors and that he would not let false accusations intimidate him.

"This is mud-slinging against someone who wants to do something for the country," Proto said.

Under Italian law, prosecutors do not need to tell people they are being investigated.

The judicial sources said Proto's past statements about his offers for stakes in Italian banks Monte dei Paschi di Siena and UniCredit , publisher RCS and car maker Fiat , were only partially true.

Prosecutors believe that Proto announced these offers without making clear that they had been immediately rejected, the sources said.

The sources said Proto was also being investigated for fraud in connection with separate deals, including real estate operations.

Earlier in November, market regulator Consob said Proto had not provided required information in relation to his role in an investment in RCS, the publisher of Italy's leading newspaper Corriere della Sera.

(Reporting by Manuela D'Alessandro; Writing by Danilo Masoni; Editing by Emilio Parodi and David Holmes)

Source: http://news.yahoo.com/italian-financier-proto-under-investigation-market-rigging-sources-185405000--finance.html

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Every Ship's Stateroom Should Have a Quarterdeck Striker

This fascinating timepiece, dubbed the Quarderdeck Striker, is an electromechanical marvel designed and hand-built by John Hilgenberg, inventor of the air-driven Pneumachron. It is a mechanical clock at heart—just look at all the wooden gears—but its functionality is supplemented with electric servos that drive the rolling odometer time display, the power-maintaining winding mechanism (which Hilgenberg believes is the first of its kind), and the nutcracker bell striker who tolls the naval time every fifteen. Check out the video for a full explanation of the mechanism's inner workings from Hilgenberg himself. [Makezine] More »


Source: http://feeds.gawker.com/~r/gizmodo/full/~3/UF4jmFnQqic/every-ships-stateroom-should-have-a-quarterdeck-striker

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Novel therapeutic advancement in search for heart muscle progenitor cells: New hope for heart attack patients

ScienceDaily (Nov. 22, 2012) ? Breakthrough in heart research: The research team from Professor Katja Schenke-Layland of the Fraunhofer Institute for Interfacial Engineering and Biotechnology IGB in Stuttgart has discovered cell surface markers that enable the identification and isolation of living functional cardiovascular progenitor cells (CPCs). For the first time, therapeutically relevant CPCs can be derived from induced-pluripotent stem cells (iPS) cells. CPCs, which are typically only found in fetal development, can become all of the different cell types of the heart and can integrate into heart muscle tissue after injection.

An estimated 17 million people die from cardiovascular disease each year. Although mortality rates are declining, heart attacks are still among the most frequent causes of death in the developed world. Often, the cause of a heart attack is the closure of a coronary artery that supplies blood to the heart, which kills heart muscle cells. Cardiomyocytes, which are the heart muscle cells responsible for the contraction of the heart, are not able to regenerate after a heart attack. The massive loss of cells and tissue, and the highly restricted regeneration capacity of the adult heart, lead to an impaired blood supply throughout the body that drastically affects a patient's quality of life. To restore the heart's function after a major heart attack, clinicians require functionally mature cardiomyocytes that perform like the native cells in the adult heart to replace the cells that were killed.

The production of such functional cardiomyocytes from well-defined cardiovascular progenitor cells (CPCs) is the focus of the research team led by Prof. Dr. Katja Schenke-Layland from the Fraunhofer Institute for Interfacial Engineering and Biotechnology IGB in Stuttgart and her colleagues, Dr. Ali Nsair of the University of California Los Angeles (UCLA) and Prof. Dr. Robb MacLellan of the University of Washington in Seattle, who have now succeeded in identifying such cells in a mouse model. The work could revolutionize the treatment of heart disease.

Development of heart muscle cells from precursor cells

Myocardial cells -- as well as endothelial cells and smooth muscle cells -- develop from CPCs during the embryonic development of humans and other animals. There has been a significant amount of research effort towards discovering a path for the clinical application of these cells in patients. The reason for the lack of success is that the markers that help to identify CPCs, such as Islet1 or Nkx2.5, are located in the nucleus of the cells. The use of these cell markers modifies the cells rendering them therapeutically unusable, making the identification of safe cell-surface markers essential.

Surface markers identified for cardiovascular progenitor cells

On this task, the research team of Professor Katja Schenke-Layland from the Fraunhofer IGB in Stuttgart, Prof. Dr. Robb MacLellan and Dr. Ali Nsair of the University of California Los Angeles (UCLA), where Schenke-Layland previously worked before returning to Germany to join the Fraunhofer-Gesellschaft's Attract Program, focused their research. With success: They were able to identify two markers, the receptors Flt1 (VEGFR1) and Flt4 (VEGFR3), on the surface of CPCs with which these cells can be clearly identified while fully preserving their biological function. This discovery allows scientists to isolate clinically relevant cardiovascular progenitor cells that can be functionally matured.

In the search for surface markers, the researchers investigated the cardiovascular progenitor cells using microarray gene expression profiling. These studies show exactly which genes are active at a specific point in time. The resulting data from this analysis were compared to the sequencing data from existing databases of already known as cell markers.

From induced-pluripotent stem cells, cardiovascular progenitor cells are developed

Encouraged by the success of being able to identify and isolate living CPCs, the researchers sought out to derive the cells from induced-pluripotent stem (iPS) cells. For this purpose, they used a method for which the Japanese scientist Shinya Yamanaka was recently awarded the 2012 Nobel Prize for Medicine. This work, published just six years ago, demonstrated that only four proteins are responsible for the embryonic state of cells (Takahashi K, Yamanaka S. Cell 2006, 126 (4): 663 -676). He brought those four genes into differentiated -- mature and specialized -- cells, which then returned them back to an embryonic state. From these cells, which he called iPS cells, scientists can develop all cells of the body, such as liver cells, nerve cells or heart muscle cells.

In their study, the researchers used cells from a mouse strain in which the cells are labeled with a visible green fluorescent protein (GFP) that can be identified with a fluorescence microscope. The cells from these mice were then reprogrammed with the same four genes discovered by Yamanka, resulting in iPS cells that could be easily identified.

In a next step, the researchers cultured the GFP-labeled iPS cells in the laboratory under different conditions with cell-influencing solutions such as growth factors. "Using our newly established cell surface markers, we could detect and isolate the Flt1 and Flt4 positive CPCs in culture," says Schenke-Layland. "When we cultured the isolated mouse CPCs then in vitro, they actually developed -- as well as the embryonic stem cell-derived progenitor cells -- into endothelial cells, smooth muscle cells and more interestingly into functional heart muscle cells."

iPS cell-derived CPCs integrate into the living mouse heart

But how do the developed CPCs behave in living organisms? Can these cells really integrate into tissue and regenerate heart muscle? To answer these questions, the scientists injected the GFP-labeled CPCs into the hearts of living mice. After 28 days, the researchers analyzed the hearts and saw that the green fluorescent cells had developed into beating heart muscle cells and had fully integrated into the myocardial tissue of the mouse.

Enormous potential for heart research

Researchers have long tried to stimulate the regeneration of heart muscle cells. For this purpose, they inject stem cells or stem cell-derived cardiomyocytes into the heart. Although the majority of studies found a slight improvement in heart function, in most cases, neither long-term integration nor the differentiation of the cells into heart muscle has been demonstrated.

The result of the group from Schenke-Layland, Nsair and MacLellan provides the first opportunity to generate functioning heart muscle cells, which integrate into the heart muscle. "We are currently focusing on research with human iPS cells. If we can show that cardiovascular progenitor cells can be derived from human iPS cells that have the ability to mature into functional heart muscle, we will have discovered a truly therapeudic solution for heart attack patients," hopes the scientist.

The work of the research group has been funded by the German-American funding from the Federal Ministry of Education and Research (BMBF) and the California Institute for Regenerative Medicine (CIRM), as well as the Fraunhofer-Gesellschaft (Attract Program), the Ministry of Science, Research and the Arts of Baden-W?rttemberg, and the US National Institutes of Health (NIH).

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Story Source:

The above story is reprinted from materials provided by Fraunhofer-Gesellschaft.

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


Journal Reference:

  1. Ali Nsair, Katja Schenke-Layland, Ben Van Handel, Denis Evseenko, Michael Kahn, Peng Zhao, Joseph Mendelis, Sanaz Heydarkhan, Obina Awaji, Miriam Vottler, Susanne Geist, Jennifer Chyu, Nuria Gago-Lopez, Gay M. Crooks, Kathrin Plath, Josh Goldhaber, Hanna K. A. Mikkola, W. Robb MacLellan. Characterization and Therapeutic Potential of Induced Pluripotent Stem Cell-Derived Cardiovascular Progenitor Cells. PLoS ONE, 2012; 7 (10): e45603 DOI: 10.1371/journal.pone.0045603

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

Disclaimer: This article is not intended to provide medical advice, diagnosis or treatment. Views expressed here do not necessarily reflect those of ScienceDaily or its staff.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/health_medicine/heart_disease/~3/BY4-eiieI8A/121122112833.htm

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Thursday, November 22, 2012

Seals gamble with their pups' futures

Wednesday, November 21, 2012

Some grey seal mums adopt risky tactics when it comes to the future of their young, a strategy that can give their pup a real advantage, according to scientists.

Researchers from Durham University, UK, and the University of St Andrews, looking at grey seal colonies in Scotland, found that some seal mothers are flexible in the parenting style they adopt and 'gamble' on the outcome of their actions, whilst other play it safe and steady.

The study is the first to demonstrate how variation in personality traits in large marine mammals in the wild can persist, rather than a single, successful, personality type dominating the population.

The research shows that some seal mothers have a very fixed approach to looking after their pups, and tend to behave in a similar fashion whatever the local conditions on the breeding colony are; whether they are in a crowded and busy location, or in a less disturbed situation. These mums tend to achieve average success in terms of their pups' weight gain (crucial to the future survival of the pup), so that, by-and-large, they generally do well. These mums seem to have a 'play it safe' approach to life.

Some seal mothers have a very different approach. These mums are more flexible and try to adjust their mothering behaviour according to the local conditions. In potentially unpredictable situations, this can be risky; sometimes they get it right and their pups fare very well, but other times they might get it wrong and their pups do rather badly.

The findings, published in the journal PLoS One, show that individual animals can differ markedly in their ability to adjust their behaviour to their local environmental conditions and that large variations in behavioural strategies can persist within a species.

According to the researchers, the results for both extremes of personality show how different types can be maintained by selection. This retains behavioural diversity within a species, potentially making the species more resilient to environmental change.

The results are relevant to environment and conservation policies that use a one-size-fits-all approach, as these may need to be re-evaluated to take into account individual differences in animal personality, the researchers say.

Lead author, Dr Sean Twiss, School of Biological and Biomedical Sciences, Durham University, said: "Some mums have a very fixed way of caring for their pups, come what may, whilst others are more flexible. "Seals that 'gamble' and try to fit their behaviour to their immediate surroundings can do very well, if they get it right! However, being flexible can be risky - a mum might 'mis-judge' the conditions and fail to match her behaviour to the prevailing conditions.

"In either resting or disturbed situations, seal mums behaved in very individual ways, some showing high levels of maternal attentiveness, others showing low levels. Some behaved the same when disturbed as they did at rest while other individuals changed their behaviour dramatically when disturbed."

These differences in mothers' behaviour, either fixed or flexible, can have profound effects on their pups. After about 2 weeks of being looked after by their mothers, all pups are left to fend for themselves, and have to teach themselves to feed. The fatter a mum leaves her pup, the more time the pup has to learn, and its chances of surviving are better.

The scientists observed seals on the Scottish island of North Rona during the breeding season over two years. The team observed seals in their natural habitat to analyse responses to unusual stimuli (disturbances) and to assess seal behaviour at rest.

Co-author Dr Paddy Pomeroy said: "What's really interesting about these short term tests is the way behavioural types map onto individual measures of reproductive success. If more flexible mothers are better and worse pup rearers, one of our next tasks will be to see how breeding successes and failures are apportioned over lifetimes, which can only be done in this type of study."

###

Durham University: http://www.dur.ac.uk

Thanks to Durham University for this article.

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Source: http://www.labspaces.net/125406/Seals_gamble_with_their_pups__futures

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