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Indian plant extracts may treat diabetes: study

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Press Trust of India Melbourne
Last Updated : May 27 2015 | 5:02 PM IST
Traditional Indian and Australian Aboriginal plants could be used to manage diabetes and may also have potential use in cancer treatment, a new study led by an Indian-origin researcher claims.
Researchers from Swinburne University of Technology identified plant species that could potentially be applied in the management of type 2 diabetes and related complications of weight gain, hypertension and immune suppression.
As part of her PhD research, Dr Vandana Gulati studied seven Australian Aboriginal medicinal plants and five Indian Ayurvedic plants to determine their anti-diabetic potential.
She investigated the 12 medicinal plant extracts for their effect on glucose uptake and adipogenesis - the formation of fatty tissue.
She also investigated the potential anti-cancer activity of the extracts in two cancerous cell lines.
"We found that some of the plant extracts stimulated glucose uptake in fat cells while others reduced fat accumulation in fat cells," Gulati said.

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Among the Indian Ayurvedic plant extracts, Kali musli (Curculigo orchioides) stimulated glucose uptake as well as reduced fat accumulation.
Vijayasar (Pterocarpus marsupium), and Kalmeigh (Andrographis paniculata) reduced accumulation in fat cells.
Of the traditional Aboriginal plant extracts tested, Witchetty Bush (Acacia kempeana) and Australian sandalwood (Santalum spicatum) both stimulated glucose uptake and Dead finish (Acacia tetragonophylla).
Turpentine bush (Beyeria Ieshnaultii) and Caustic weed (Euphorbia drumondii) significantly reduced fat accumulation in fat cells.
Furthermore, extracts of Witchetty bush and Dead finish also showed strong activity against cervical cancer cells.
A 2012 Swinburne study looked at how some of these extracts slow down two key enzymes in carbohydrate metabolism which affect blood sugar and diabetes and also found they had an antioxidant effect.
"Australian medicinal plants are an untapped source and should be further explored as potential treatments for disease," Chair of Swinburne's Department of Chemistry and Biotechnology, Professor Enzo Palombo, said.
This research was published in BMC Complementary & Alternative Medicine.

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First Published: May 27 2015 | 5:02 PM IST

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