2016 China New Design Wolfberry Extract Factory for Ukraine
2016 China New Design Wolfberry Extract Factory for Ukraine Detail:
[Latin Name] Lycium barbarum L.
[Plant Source]from China
[Specifications]20%-90%Polysaccharide
[Appearance] Reddish brown powder
Plant Part Used:Fruit
[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
Product Description
The wolfberry is harvested when the fruit is orange red. After drying to the skin wrinkles, it is exposured to the skin moist and soft fruit, then removed the stem. Wolfberry is a kind of rare traditional Chinese medicine which is very rich in nutrients and has high medicinal value The materials contain not only such as iron, phosphorus, calcium, but also a lot of sugar, fat and protein. It also contains polysaccharide with good health care function to human body and germanium that is beneficial to human’s intelligence.
Function
1. With the function of regulating immune, inhibiting tumor growth and cell mutation;
2. With the function of lipid-lowering and anti-fatty liver;
3. Promoting the function of hematopoietic;
4. With the function of anti-tumor and anti-aging.
Applications:
1. Applied in food field, it can be produced into wine, canned, condensed juice and other more nourishment;
2. Applied in health product field , it can be made into suppositories, lotions, injection, tablets, capsules and other dosage forms to regulate immunity;
3. Applied in pharmaceutical field, effectively treating cancer, hypertension, cirrhosis and other diseases;
4. Applied in cosmetics field, it can prevent skin aging and improve skin elasticity.
Product detail pictures:
Related Product Guide:
We know that we only thrive if we could guarantee our combined price tag competiveness and quality advantageous at the same time for 2016 China New Design Wolfberry Extract Factory for Ukraine , The product will supply to all over the world, such as: Florida, Islamabad, Iceland, The best and original quality for spare parts is a most important factor for transportation. We may stick on supplying original and good quality parts even a little profit earned. God will bless us to do kindness business forever.
Make invisible ink using baking soda. Mix baking soda and water together in a bowl. Use a q-tip to write your message. Let it dry. There are two ways to decode the message when you write it with baking soda. You can use a candle to heat it up like with lemon juice. But with baking soda you can also decode it by rubbing juice across the paper with a cotton ball.
UCI Chem 128 Introduction to Chemical Biology (Winter 2013)
Lec 16. Introduction to Chemical Biology — Glycobiology & Polyketides — Part 2
View the complete course: https://ocw.uci.edu/courses/chem_128_introduction_to_chemical_biology.html
Instructor: Gregory Weiss, Ph.D.
License: Creative Commons BY-NC-SA
Terms of Use: https://ocw.uci.edu/info.
More courses at https://ocw.uci.edu
Description: Introduction to the basic principles of chemical biology: structures and reactivity; chemical mechanisms of enzyme catalysis; chemistry of signaling, biosynthesis, and metabolic pathways.
Introduction to Chemical Biology (Chem 128) is part of OpenChem: https://ocw.uci.edu/collections/open_chemistry.html
This video is part of a 18-lecture undergraduate-level course titled “Introduction to Chemical Biology” taught at UC Irvine by Professor Gregory Weiss.
Recorded March 5, 2013.
Index of Topics:
0:00:33 Polysaccharides
0:08:45 Fatty Acid Synthase: Paradigm for a Polyketide Synthesis Machine
0:10:58 Plasma Membrane = Lipid Barrier
0:13:44 Hydrolysis of LIpids in Cell Signaling
0:15:26 Prostaglandin Signaling to Coordinate Cell Response
0:16:15 Leukotrienes Mediate Inflammatory Response
0:19:09 Shutting Down the Prostaglandin Pathway at its Start
0:23:39 Converting Fats into Soaps
0:25:54 Diversifying Products from Polyketide Synthases
0:39:54 Fatty Acid Synthase (FAS) Has a Circular Assembly Line
0:44:18 Terpenes: Built from Isoprene (5C) Units
0:56:18 Inhibition of Cholesterol Synthesis
0:57:48 Cyclization of Straight-Chain Precursors by Enzymes
Required attribution: Weiss, Gregory Introduction to Chemical Biology 128 (UCI OpenCourseWare: University of California, Irvine), https://ocw.uci.edu/courses/chem_128_introduction_to_chemical_biology.html. [Access date]. License: Creative Commons Attribution-ShareAlike 3.0 United States License (https://creativecommons.org/licenses/by-sa/3.0/us/deed.en_US).
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