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Bioengineers make way for production of eco friendly plastics

Washington, November 23 (ANI): A team of pioneering South Korean scientists has succeeded in producing the polymers used for everyday plastics through bioengineering, rather than through the use of fossil fuel based chemicals, which clears the way for the production of eco friendly plastics.

The team, from the prestigious KAIST University and the Korean chemical company LG Chem, led by Professor Sang Yup Lee focused their research on Polylactic Acid (PLA), a bio-based polymer which holds the key to producing plastics through natural and renewable resources.

"The polyesters and other polymers we use everyday are mostly derived from fossil oils made through the refinery or chemical process," said Lee.

"The idea of producing polymers from renewable biomass has attracted much attention due to the increasing concerns of environmental problems and the limited nature of fossil resources. PLA is considered a good alternative to petroleum based plastics as it is both biodegradable and has a low toxicity to humans," he added.

Until now, PLA has been produced in a two-step fermentation and chemical process of polymerization, which is both complex and expensive.

Now, through the use of a metabolically engineered strain of E.coli, the team have developed a one-stage process which produces polylactic acid and its copolymers through direct fermentation.

This makes the renewable production of PLA and lactate-containing copolymers cheaper and more commercially viable.

"By developing a strategy which combines metabolic engineering and enzyme engineering, we've developed an efficient bio-based one-step production process for PLA and its copolymers," said Lee.

"This means that a developed E. coli strain is now capable of efficiently producing unnatural polymers, through a one-step fermentation process," he added.

This combined approach of systems-level metabolic engineering and enzyme engineering now allows for the production of polymer and polyester based products through direct microbial fermentation of renewable resources.

"Global warming and other environmental problems are urging us to develop sustainable processes based on renewable resources," said Lee.

"This new strategy should be generally useful for developing other engineered organisms capable of producing various unnatural polymers by direct fermentation from renewable resources," he added. (ANI)

Camels, snails, pineapple plants make 'Top Ten Charity Christmas Gifts' list!

London, Dec 8 (ANI): A camel might sound bizarre as a Christmas gift, but the desert animal has been named as the most favoured choice in the top ten list of charity gifts for 2008.The independent watchdog 'Intelligent Giving' has compiled the top ten charity gifts from a search of more than 200 charities.Available via Oxfam for 95 pounds, the camels emerged as the winner because they "provide a whole host of services to their owners: you can ride.....
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