Manufacturing Industry

Nano-sized Trojan horse to aid nutrition

New Materials Asia, Oct, 2008

Researchers from Australia's Monash University have designed a nano-sized Trojan horse particle to ensure healing antioxidants can be better absorbed by the human body.

Dr Ken Ng and Dr Ian Larson from the University's Faculty of Pharmacy and Pharmaceutical Sciences have designed a nanoparticle, one thousandth the thickness of a human hair, that protects antioxidants from being destroyed in the gut and ensures a better chance of them being absorbed in the digestive tract.

Antioxidants are known to neutralise the harmful effect of free radicals and other reactive chemical species that are constantly generated by our body and are thought to promote better health.

Normally our body's own antioxidant defence is sufficient, but in high-risk individuals, such as those with a poor diet or those at risk of developing atherosclerosis, diabetes or Alzheimer's disease, a nutritional source of antioxidants is required.

Orally delivered antioxidants are easily destroyed by acids and enzymes in the human body, with only a small percentage of what is consumed actually being absorbed. The solution is to design a tiny sponge-like chitosan biopolymeric nanoparticle as a protective vehicle for antioxidants. Chitosan is a natural substance found in crab shells.

"Antioxidants sit within this tiny Trojan horse, protecting it from attack from digestive juices in the stomach," Larson said. "Once in the small intestine the nanoparticle gets sticky and bonds to the intestinal wall. It then leaks its contents directly into the intestinal cells, which allows them to be absorbed directly into the blood stream. We hope that by mastering this technique, drugs and supplements also vulnerable to the digestive process can be better absorbed by the human body."

For further information, contact: Monash University, VIC 3800, Australia; tel: 3-9902-6000; fax: 3-9905-4007; Internet: www.monash.edu.au

COPYRIGHT 2008 International Newsletters
COPYRIGHT 2008 Gale, Cengage Learning
 

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