Professional Manufacturer for Dandelion root extract Supply to California
Professional Manufacturer for Dandelion root extract Supply to California Detail:
[Latin Name] Taraxacum officinale
[Plant Source] from China
[Specifications] Flavones 3%-20%
[Appearance] Brown fine powder
Plant Part Used:Root
[Particle size] 80 Mesh
[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
[Function]
(1) It is a general stimulant to the system, but especially to the urinary organs, and is chiefly used in kidney and liver disorders;
(2) Dandelion is also used as a remedy for hemorrhoids, gout, rheumatism, eczema, other skin conditions, and diabetes.
(3) Dandelion is used to treat chronic ulcers, stiff joints, and tuberculosis. It is also used to induce milk production in nursing mothers and to soothe inflamed breast tissue.
[Pharmacological effects]
(1) the antibacterial action: made of injection to extract the dandelion staphylococcus aureus and have strong hemolytic streptococcus pneumoniae, to kill, meningococci, diphtheria bacili, pseudomonas aeruginosa, proteus, dysenteric bacili, typhoid bacillus and card he also must kill staphylococcus, fungi, viruses, and some of the leptospira bacterium.
(2)other function. Advantageous bravery,diuresis and bitter soa, mild diarrhea inferior.
[Applications]
Dandelions extract injection, decoction, tablet, syrup, etc for a variety of infection are dampness.the curative effects, including the upper respiratory tract infection and chronic bronchitis, pneumonia, contagious hepatitis, urinary tract infection, surgical disorders, surgery, dermatology inflammation and sepsis inflammation, typhoid, biliary feeling, mumps, etc.
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We always stick to the principle "Quality First, Prestige Supreme". We are fully committed to providing our clients with competitively priced quality products, prompt delivery and professional service for Professional Manufacturer for Dandelion root extract Supply to California , The product will supply to all over the world, such as: Sydney, Bangladesh, Ecuador, Our company has a skillful sales team, strong economic foundation, great technical force, advanced equipment, complete testing means, and excellent after-sales services. Our products have beautiful appearance, fine workmanship and superior quality and win the unanimous approvals of the customers all over the world.
Characterizing the DNA Damage Response by Cell Tracking Algorithms and Cell Features Classification Using High-Content Time-Lapse Analysis. Walter Georgescu et al (2015), PLoS ONE https://dx.doi.org/10.1371/journal.pone.0129438
Traditionally, the kinetics of DNA repair have been estimated using immunocytochemistry by labeling proteins involved in the DNA damage response (DDR) with fluorescent markers in a fixed cell assay. However, detailed knowledge of DDR dynamics across multiple cell generations cannot be obtained using a limited number of fixed cell time-points. Here we report on the dynamics of 53BP1 radiation induced foci (RIF) across multiple cell generations using live cell imaging of non-malignant human mammary epithelial cells (MCF10A) expressing histone H2B-GFP and the DNA repair protein 53BP1-mCherry. Using automatic extraction of RIF imaging features and linear programming techniques, we were able to characterize detailed RIF kinetics for 24 hours before and 24 hours after exposure to low and high doses of ionizing radiation. High-content-analysis at the single cell level over hundreds of cells allows us to quantify precisely the dose dependence of 53BP1 protein production, RIF nuclear localization and RIF movement after exposure to X-ray. Using elastic registration techniques based on the nuclear pattern of individual cells, we could describe the motion of individual RIF precisely within the nucleus. We show that DNA repair occurs in a limited number of large domains, within which multiple small RIFs form, merge and/or resolve with random motion following normal diffusion law. Large foci formation is shown to be mainly happening through the merging of smaller RIF rather than through growth of an individual focus. We estimate repair domain sizes of 7.5 to 11 µm2 with a maximum number of ~15 domains per MCF10A cell. This work also highlights DDR which are specific to doses larger than 1 Gy such as rapid 53BP1 protein increase in the nucleus and foci diffusion rates that are significantly faster than for spontaneous foci movement. We hypothesize that RIF merging reflects a “stressed” DNA repair process that has been taken outside physiological conditions when too many DSB occur at once. High doses of ionizing radiation lead to RIF merging into repair domains which in turn increases DSB proximity and misrepair. Such finding may therefore be critical to explain the supralinear dose dependence for chromosomal rearrangement and cell death measured after exposure to ionizing radiation.
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