Factory wholesale price for Red clover extract Factory for Cape Town
Factory wholesale price for Red clover extract Factory for Cape Town Detail:
[Latin Name] Trifolium pratensis L.
[Specification] Total isoflavones 20%; 40%; 60% HPLC
[Appearance] Brown to tan fine powder
Plant Part Used: Whole herb
[Particle size] 80Mesh
[Loss on drying] ≤5.0%
[Heavy Metal] ≤10PPM
[Storage] Store in cool & dry area, keep away from the direct light and heat.
[Shelf life] 24 Months
[Package] Packed in paper-drums and two plastic-bags inside.
[Net weight] 25kgs/drum
[What is Red Clober]
Red clover is a member of the legume family – the same class of plants where we find chickpeas and soybeans. Red clover extracts are used as dietary supplements for their high content of isoflavone compounds – which possess weak estrogenic activity and have been associated with a variety of health benefits during menopause (reduction of hot flashes, promotion of heart health and maintenance of bone density).
[Function]
1. Red Clover Extract can Improving health, anti-spasm, known for healing properties.
2. Red Clover Extract can Treating the skin diseases (such as eczema, burns, ulcers, psoriasis),
3. Red Clover Extract can Treating respiratory discomfort (such as asthma, bronchitis, intermittent cough)
4. Red Clover Extract can Owning anti-cancer activity and prevention of prostate disease.
5. Red Clover Extract can Most valuable of its estrogen-like effect and alleviate breast pain suffering.
6. Red Clover Extract can Contained red clover isoflavones plays in a weak estrogen, estrogen reduces the number and thusalleviate the suffering.
7. Red Clover Extract can Maintaining bone mineral density in postmenopausal women
8. Red Clover Extract can Raising high density lipoprotein cholesterol.
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QAAFI SCIENCE SEMINAR SERIES
28 March 2017
DESCRIPTION
The structure and material properties of growing and fleshy plant tissues are determined by their (primary) cell walls. The biological requirement in growing tissues for cell walls to combine structural strength with flexibility and extensibility is met through a network of cellulose fibres in a hydrogel form that is modified by the presence of other polysaccharides. From direct measurement on isolated plant cell walls and using a model bacterial cellulose hydrogel system, the molecular rules governing the association of non-cellulosic polysaccharides with cellulose fibres have been deduced. The effects of various features of cell wall hydrogels on the characteristic material properties under small deformation, compression and extension have been characterized and rationalized. Consequences for plant material properties and plant food behavior in the digestive tract will be discussed.
About Prof. Mike Gidley
Professor Mike Gidley is Director of the Centre for Nutrition and Food Sciences (CNAFS) in QAAFI. Prof. Gidley’s career includes 22 years in food R&D in the private sector and the last 13 years at UQ in the Centre for Nutrition and Food Sciences.
Research themes within CNAFS include ‘Smart Selections’ (how to identify the right combinations of raw materials and processing to deliver consumer-preferred foods), ‘Naturally Nutritious’ (maximising the intrinsic nutritional properties of agricultural products in foods and ingredients) and ‘Uniquely Australian’ (identifying and validating opportunities for elite products from foods and ingredients that can only have come from Australia).
Prof. Gidley’s own research is focused on structure – function relationships in important food components such as starch granules and plant cell walls. This has led to the detailed characterisation of starch and dietary fibre digestion/fermentation in vitro and in vivo, with the understanding generated leading to opportunities for optimising nutritional value of foods and feeds. He is a Program Leader in the Australian Research Council Centre of Excellence in Plant Cell Walls (2011-2017)
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WEB: https://qaafi.uq.edu.au/

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