11 Years Manufacturer Barley Grass Powder Manufacturer in Tajikistan
11 Years Manufacturer Barley Grass Powder Manufacturer in Tajikistan Detail:
Barley Grass Powder
Key Words: Organic barley grass powder;Barley grass juice powder
[Latin Name] Hordeum vulgare L.
[Plant Source] Barley Grass
[Solubility] Free soluble in water
[Appearance] Green fine powder
Plant Part Used: Grass
[Particle size]100 Mesh-200Mesh
[Loss on drying] ≤5.0%
[Heavy Metal] ≤10PPM
[Pesticide residue] EC396-2005, USP 34, EP 8.0, FDA
[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 Barley ?]
Barley is an annual grass. Barley grass is the leaf of the barley plant, as opposed to the grain. It is capable of growing in a wide range of climatic conditions. Barley grass has greater nutritional value if harvested at a young age.
The fiber in barley might lower cholesterol and blood pressure in people with high cholesterol. Barley may also reduce blood sugar and insulin levels. Barley seems to slow stomach emptying. This could help keep blood sugar stable and create a sensation of being full, which might help to control appetite.
[Function]
1. Improves energy naturally
2. Rich in antioxidants
3. Improves digestion & regularity
4. Alkalizes the internal body
5. Helps rebuild the immune system
6. Provides raw building blocks for hair, skin and nails
7. Contains detoxification and cleansing properties
8. Contains anti-inflammatory ingredients
9. Promotes clear thinking
10. Has anti-aging properties
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Monosaccharide examples are glucose, fructose and galactose
Disaccharide examples are maltose, lactose and sucrose
Polysaccharide examples are starch, glycogen and cellulose
Video abstract of Original Research paper “Ulva lactuca polysaccharides prevent Wistar rat breast carcinogenesis through the augmentation of apoptosis, enhancement of antioxidant defense system, and suppression of inflammation” published in the open access journal Breast Cancer – Targets and Therapy by Abd-Ellatef et al.
Background: Recently, several research studies have been focused on the isolation and function of the polysaccharides derived from different algal species, which revealed multiple biological activities such as antioxidant and antitumor activities. This study assesses the possible breast cancer chemopreventive properties of common seaweeds, sea lettuce, Ulva lactuca (ulvan) polysaccharides using in vitro bioassays on human breast cancer cell line (MCF-7) and an in vivo animal model of breast carcinogenesis.
Methods: Cytotoxic effect of ulvan polysaccharides on MCF-7 was tested in vitro. For an in vivo investigation, a single dose of 25 mg/kg body weight 7,12-dimethylbenz[a]anthracene (DMBA) and ulvan polysaccharides (50 mg/kg body weight every other day) for 10 weeks were administered orally to the Wistar rats.
Results: Deleterious histopathological alterations in breast tissues including papillary cyst adenoma and hyperplasia of ductal epithelial lining with intraluminal necrotic materials and calcifications were observed in the DMBA-administered group. These lesions were prevented in the DMBA-administered group treated with ulvan polysaccharides. The immunohistochemical sections depicted that the treatment of DMBA-administered rats with ulvan polysaccharides markedly increased the lowered pro-apoptotic protein, p53, and decreased the elevated anti-apoptotic
marker, bcl2, expression in the breast tissue. The elevated lipid peroxidation and the suppressed antioxidant enzyme activities in DMBA-administered control were significantly prevented by
the treatment with ulvan polysaccharides. The elevated levels of inflammatory cytokines tumor necrosis factor-α and nitric oxide were significantly ameliorated in DMBA-administered rats treated with ulvan polysaccharides as compared to DMBA-administered control.
Conclusion: In conclusion, ulvan polysaccharides at the level of initiation and promotion might have potential chemopreventive effects against breast carcinogenesis. These preventive effects
may be mediated through the augmentation of apoptosis, suppression of oxidative stress and inflammation, and enhancement of antioxidant defense system.
Read the Original Research paper here https://doi.org/10.2147/BCTT.S125165

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