Cheap PriceList for Organic Bee pollen Supply to Turkmenistan
Cheap PriceList for Organic Bee pollen Supply to Turkmenistan Detail:
[Products Name] Bee pollen
[Specification]
Tea bee pollen
Mixed bee pollen
Pure Rape bee pollen
Bee pollen Extrac
[Gerneral feature]
1. Low antibiotics;
2.Organic certified by ECOCERT, according to EOS & NOP organic standard;
3.100% pure natural bee pollen, no additives;
[Introduction]
Bee pollen is the pollen agglomerate which was collected from plant and processed by bees, and was called almighty nutrition food, concentrated natural drug storeroom, to be taken orally cosmetic, concentrated amino acid etc, bee pollen is the gem of human natural food.
Pollen can be harvested by the beekeeper from the bees as they enter their hive. It is then cleaned and either dried or frozen before being included in natural remedies and food supplements.
[Functions]
Bee pollen can enhance body colligate immunity function, prevent from caducity, hairdressing, prevent from cardiovascular virus, prevention and cure prostate virus, adjust intestines and stomach function, adjust nerve system, accelerate sleep, cure other viruses assistant such as anemia, diabetes, improve memory and the balk of menopause.
Pollen can be used as Honey Bee Pollen .Honey Bee Pollen is a mixture of bee pollen (milled), royal jelly. It is a liquid product and the recommended dose is 2 teaspoonful per day preferably with breakfast.
Pollen contains no additives or preservatives. It is suitable for all ages, but particularly those who have a hectic lifestyle, or older people who are in their advanced years and would benefit from a pleasant tasting, easy to take liquid product with added important vitamins which they might not be getting in their normal diet.
Most people take this on a regular basis as a breakfast supplement. It can provide a boost to a general feeling of well being for those feeling below par. Not only does it impart the effect of royal jelly but the pollen is extremely nutritious containing many amino acids and proteins.
[Application] It was widely used in health tonic, health pharmacy, hairdressing and cosmetic area.
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QAAFI Science Seminar
Presented by Prof. Mike Gidley
Director of Centre for Nutrition & Food Sciences at QAAFI
ABSTRACT
Plant cell walls and associated polysaccharides (a.k.a. dietary fibre) play a pivotal role in the digestion of a healthy diet, mostly as the defining structural characteristic of whole grains, fruits, nuts, and vegetables. Credible hypotheses can be constructed to link cell wall properties of these plant-based foods to reduction in risk factors for major non-communicable diseases.
The physical properties of plant cell wall polysaccharide components relevant to digestive tract functionality can be grouped into (i) bulk structuring, (ii) transport barriers, and (iii) molecular binding. Examples of each type of functionality from both in vitro and in vivo studies will be presented.
The conventional sub-division of dietary fibre into soluble and insoluble types disguises the reality that the physical form of plant cell walls in digesta is typically intermediate between the extremes of dissolved polymers and non-swollen solid particles which are often used to exemplify soluble and insoluble fibre fractions. An alternative method of categorising dietary fibres is proposed based on a combination of particle/molecule size and effective density.
About Prof. Mike Gidley
Prof. Gidley obtained a Bachelor of Science (Hons) in Chemistry, at the University of London in 1977 and went on to complete his PhD in Chemistry at the University of Cambridge in 1982.
Before establishing CNAFS in 2003 (a joint initiative between UQ and the Queensland Government), Prof. Gidley worked for Unilever Research in the United Kingdom for more than 20 years, beginning as a research scientist and culminating as the Group Leader for Plant-based Foods and Ingredients.
Prof. Gidley’s major research interest is the linking of plant molecular structures to macroscopic properties with relevance to plant-based food properties. In particular, Prof. Gidley is interested in investigating polysaccharide assemblies such as plant cell walls (as part of the Australian Research Council Centre of Excellence in Plant Cell Walls and starch granules, particularly the way these structures are assembled in nature and then disassembled during manufacturing and later during digestion.
Prof. Gidley’s field of research involves the use of spectroscopic, microscopic and materials analyses of natural materials and model systems. Insights into structure-property relationships are obtained and can then be used to provide targets for raw materials and processes with enhanced food and nutritional properties.
This lecture explains about the glycoprotein synthesis inside endoplasmic reticulum. https://shomusbiology.com/
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Polysaccharides are long carbohydrate molecules of monosaccharide units joined together by glycosidic bonds. They range in structure from linear to highly branched. Polysaccharides are often quite heterogeneous, containing slight modifications of the repeating unit. Depending on the structure, these macromolecules can have distinct properties from their monosaccharide building blocks. They may be amorphous or even insoluble in water.[1][2]
When all the monosaccharides in a polysaccharide are the same type, the polysaccharide is called a homopolysaccharide or homoglycan, but when more than one type of monosaccharide is present they are called heteropolysaccharides or heteroglycans.[3][4]
Examples include storage polysaccharides such as starch and glycogen, and structural polysaccharides such as cellulose and chitin.
Polysaccharides have a general formula of Cx(H2O)y where x is usually a large number between 200 and 2500. Considering that the repeating units in the polymer backbone are often six-carbon monosaccharides, the general formula can also be represented as (C6H10O5)n where 40≤n≤3000. Source of the article published in description is Wikipedia. I am sharing their material. © by original content developers of Wikipedia.
Link- https://en.wikipedia.org/wiki/Main_Page Biochemistry, 4th Edition
Donald Voet, Judith G. Voet
November 2010, ©2011

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