Friday, 28 June 2013

Cancer cure

www.bodybynaturesupplements.com




One of nature's oddest creatures has given up the secret of its incredible cancer immunity.
The naked mole rat, a hairless rodent that lives in ant-like colonies underground, appears to enjoy complete protection against the disease, despite its unusually long 30-year lifespan.
Now for the first time scientists believe they know why. The discovery could lead to exciting new cancer treatments for human patients.
The key to the mole rat's freedom from cancer is a gooey substance in its body tissue that stops normal cells turning cancerous.
Known as "high molecular weight hyaluronan", or HMW-HA, it surrounds mole rat cells and in the laboratory clogged up vacuum pumps and tubing. When the "goo" was taken away, cells became vulnerable to cancer triggers and started forming tumours.
In the mole rat, HMW-HA's primary function is generating a very flexible, elastic skin that allows it to squeeze through narrow underground tunnels.
Its rejuvenating effect on skin is already well known to the cosmetics industry, which uses it in anti-wrinkle creams and injections. This suggests HMW-HA could safely be used to treat cancer.
Lead scientist Dr Andrei Seluanov, from the University of Rochester, US, said: "There's indirect evidence that HMW-HA would work in people. It's used in anti-wrinkle injections and to relieve pain from arthritis in knee joints, without any adverse effects. Our hope is that it can also induce an anti-cancer response."
The naked mole rat's unique form of hyaluronan - part of the connective material between cells, or extracellular matrix - is absent from cell cultures from other mammals, including humans, mice and guinea pigs. It has giant molecules, more than five times larger than those of mouse or human hyaluronan.
The research, published in the journal Nature, showed that mole rat hyaluronan activates a powerful anti-cancer gene called p16 which prevents cells proliferating when too many of them crowd together. Next the scientists plan to test the anti-cancer effectiveness of HMW-HA on mice, after which they will focus on human cells.

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