Europe style for Reishi Mushroom Extract Factory in El Salvador
Europe style for Reishi Mushroom Extract Factory in El Salvador Detail:
[Latin Name] Ganoderma lucidum
[Plant Source]from China
[Specifications] 10 ~ 50%Polysaccharides
[Appearance] Yellow-brown powder
Plant Part Used:Herb
[Particle size] 80 Mesh
[Loss on drying] ≤5.0%
[Heavy Metal] ≤10PPM
[Shelf life] 24 Months
[Package] Packed in paper-drums and two plastic-bags inside.
[Net weight] 25kgs/drum
Application
Natural Reishi Mushroom Extract has been used in Traditional Chinese Medicine for at least 2,000 years. The Chinese name ling zhi translates as the “herbs of spiritual potency” and was highly prized as an elixir of immortality.
Natural Reishi Mushroom Extract is Traditional Chinese Medicine indications include treatment of general fatigue and weakness, asthma, insomnia, and cough.chemotherapy patient, strengthen constitution, improve symptomvaletudinarian and recuperated from a severe illness for the rehabilitation of anxiety, insomnia, slip of physical force and memory auxiliary treatments of cardiovascular disease, diabetes, chronic hepatitis, senile disease and other chronic disease anti-aging, face and skin beautifying and nourishing of the middle-aged and elder.
Main Functions:
1) Anti-cancer, anti-tumor, and anti-neoplastic effects
2) Up-regulate the immune system
3)Prevent cancer metastasis
4) Anti-bacterial and anti-viral activities
5) Lower blood pressure and blood sugar
6) Beneficial effect on Lowering Cholesterol
Product detail pictures:
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The really abundant projects administration experiences and just one to one particular provider model make the substantial importance of organization communication and our easy understanding of your expectations for Europe style for Reishi Mushroom Extract Factory in El Salvador , The product will supply to all over the world, such as: Rio de Janeiro, Algeria, Montpellier, Our company has abundant strength and possesses a steady and perfect sales network system. We wish we could establish sound business relationships with all customers from at home and abroad on the basis of mutual benefits.
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QAAFI SCIENCE SEMINAR SERIES
4 April 2017
DESCRIPTION
Cardiovascular disease (CVD) is one of the main causes of death and contribute significantly to high health burden worldwide. It is estimated that 17 million people die every year from CVD, and in Australia it represents 37% of all deaths. Risk factors causing heart diseases are obesity, tobacco smoking, inactivity and unhealthy diets according to WHO (2011). One of the strategies to lower the prevalence of CVD is to promote healthy eating via increasing the daily consumption of cereals, fruits, and vegetables. Population based studies have shown that diet is strongly associated with heart diseases, and these days a very important lifestyle change is the ‘heart-healthy’ diet which includes the consumption of soluble dietary fibres (SDF) from cereals for example. Although SDFs in intervention trials have been shown to decrease blood cholesterol and/or triglycerides, risk biomarkers for CVD, the detailed mechanism(s) are not yet defined, but restricted re-absorption of bile acids (BAs) resulting in an excess excretion in the faeces has been hypothesised.
In the Centre for Nutrition and Food Sciences (CNAFS) we have been studying the mechanisms behind the lipid lowering effects of SDFs such as β-glucan from oat and barley; and arabinoxylan from wheat and rye using in vitro, ex vivo and in vivo approaches. Using pigs as a model for humans, we found out that after an adaptation period on the test diets, (1) oat β-glucan not only physically hinders the active transport of bile acids and uptake of cholesterol, but also changes the BAs profile, thus resulting in reduced blood total and LDL-cholesterol. (2) Wheat arabinoxylan on the other hand, lowers blood triglycerides with delay in digestion and absorption of triglycerides from the small intestine to the blood circulation. In both experiments, lower circulating BAs levels, enhanced production of therapeutic and suppression of toxic BAs were seen without excess excretion of BAs in the faeces.
About Dr Nima Gunness
Dr Nima Gunness is a Postdoctoral Research Fellow at the Centre for Nutrition and Food Sciences (CNAFS), ARC Centre in Excellence in Plant Cell Walls. Nima was awarded a PhD in Nutrition, Biochemistry and Food Sciences from the University of Queensland, QLD, Australia after graduating with a Master in Food Technology degree from Curtin University, WA, Australia. Nima has a BSc in Biology from the University of Provence, Aix Marseille I, France.
Nima’s research interests include understanding and proposing solutions towards two major public health concerns cardiovascular disease and obesity via healthy eating. In her current role, Nima has been investigating the mechanisms behind the lipid-reducing properties of non-starch polysaccharides/soluble dietary fibres from cereals (e.g. oat, barley, wheat and rye) by investigating the structure/function of soluble dietary fibres in relation to their interactions with cholesterol, triglycerides and bile acids using in vitro, ex vivo and in vivo methods. She is also working on the nutritional mechanisms underpinning the epidemiological health benefits of whole fruit, vegetables and nuts, to translate these into consumer concepts (e.g. satiety per kJ and satiation). Nima has published a number of scientific articles in renowned international journals as first author, a review which is highly cited and a recent publication which has attracted media attention. Nima mentors PhD, Master, Honours and Overseas visiting students. Nima is part of the Project Leadership Team of the ARC CoE in Plant Cell Walls.
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