Betaine
Betaine in Food Products, Applications, Production, Technology,
Projects, Manufacturers, Suppliers & Buyers
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- Betaine is a nutrient
that plays an important role in the health of the cardiovascular system.
- Betaine functions closely
with other nutrients -- namely, S-adenosylmethionine (SAMe), folic acid,
and vitamins B6 and B12 -- to break down Hcy and reduce toxic levels of
this substance in the bloodstream.
- Betaine supplements are
used to lower levels of Hcy in people with this inherited health
condition.
- Betaine may contribute to
the lowering of Hcy, a substance recognized as a significant risk factor
for atherosclerosis and blood clots in the walls of blood vessels, which
can lead to a heart attack or stroke.
- Betaine supplements are
manufactured as a byproduct of sugar beet processing. They are available
in powder, tablet, and capsule forms.
- Betaine is a normal
component of the metabolic cycle of methionine and has been shown to
increase S-adenosylmethionine levels .By increasing SAM levels, betaine
protects against fat accumulation within hepatocytes.
- Betaine acts also as a
methyl group donor and has a number of important applications including
its use as a feed additive. The known biosynthetic pathways of betaine
are universal and very well characterized.
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Alternative Medicine
- Betaine
- Betaine-Monograph
- Trimethylglycine
- Betaine
Hydrochloride
- Betaine
Aldehyde
- Betaine and Betaine
Hydrochloride
- Betaine Lipids
- Cocamidopropyl Betaine
- G
- Betaine/GABA
Transporter Antibodies
Betaine Content
in Food Products
- Choline Content of Common
Foods-USDA Database
- Betaine Concentration of
Common Foods in US
- Erratum
- Betaine and
Homocysteine
- Novel Foods and
Processes
Products,
Specifications and Its Price
- Betaine Hydrochloride
Specification
- Betaine Cryst Research
Grade
- Mind Power-Source
Naturals
- Betaine Anhydrous
Products
- Betaine HCL
- Betaine Hydrochloride
Complex by Nature's Plus
- TMG
- Trimethylglycine
- Betaine
- Betaine Hydrochloride
Products
- Betaine Series
Material Safety
Data Sheet
- Cocamidpropyl
Betaine
- Betaine,
Anhydrous
- Betaine,
Hydrochloride
- Betaine
- Betaine
Hydrochloride
- Betaine
Monohydrate
- Betaine
Phosphate
- Betaine Free Base
Anhydrous
Applications
- Enhanced Synthesis of
Choline and Glycine Betaine in Transgenic Tobacco Plants
- Diphosphopyridine
Nucleotide Effect on the Rate of Oxidation of Betaine
Aldehyde
- Role of Choline in
Moderate Halophile Halomonas elongata
- Glycine Betaine Transport
in Lactococcus lactis
- Benefits of
Trimethylglycine in Personal-Care Formulations
- Betaine-Lipotropic Agent
and Alleviator of Osmotic Stress
- Growth-Promoting Activity
of Betaine in Chick
- Betaine Improves PCR
Amplification of GC-rich DNA Sequences
- Dietary Betaine
Supplementation Affects Energy Metabolism of Pigs
- Homocysteine-Betaine
Interactions in Murine Model
- Betaine Uptake System
Enhances Stress Tolerance of Lactobacillus salivarius
- Betaine Supplementation
Decreases Plasma Homocysteine Concentrations
- Effects of Betaine on
Growth Performance of Finishing Barrows
- Fish Feed
Additives
- Betaine in Human
Nutrition
- Betaine Rescue of An
Animal Model with Methylenetetrahydrofolate Reductase
Deficiency
- Thermoprotection by
Glycine Betaine and
Choline
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Production
- Glycine Betaine
Transmethylase Mutant of Pseudomonas aeruginosa
- Effects of Choline,
Betaine, and Wheat Floral Extracts
on Growth of Fusarium
graminearum
- Pathways of Glycine
Betaine Synthesis in Two Extremely Halophilic Bacteria, Actinopolyspora
Halophila and Ectothiorhodospira Halochloris
- Overproduction of Spinach
Betaine Aldehyde Dehydrogenase in Escherichia coli
- Functional
Characterization of Choline Monooxygenase, an Enzyme for Betaine
Synthesis in Plants
- Genetic Engineering of
Glycinebetaine Production
- Glycine Betaine Synthesis
in Plants
- Biosynthesis,
Translocation, and Accumulation of Betaine in Sugar Beet
- Formation of N,N-Dimethylglycine, Acetic Acid, and
Butyric Acid from Betaine by Eubacterium
limosum
- Radiotracer Evidence
Implicating Phosphoryl and Phosphatidyl Bases as Intermediates in
Betaine Synthesis by Water-Stressed Barley Leaves
Technology
- New Treatment
Technology
- Role for Compatible
Solutes Glycine Betaine and L-Carnitine
- SepTor
Technology
- New Treatment
Opportunities
- Enhanced Plant Stress
Resistance
- Betaine Recovery
Process-US Patent
- Food Products Containing
Betaine-US Patent
Projects and Consultants
- Betaine in
Nash
- Production of Betaine(s)
from Australian Melaleuca spp for Use in Agriculture to Reduce Plant
Stress
- Development of
Accurate and Representative Food Composition Data for the U.S. Food
Supply
- Hessner Laboratory
Project
- Effect of Protein,
Betaine and Choline on Plasma Homocysteine in Humans
- Nutritional Programming
During Critical Periods of Development
- ChemNet-Trade
Consultant
- Lucy Tucker- Consultant
Profile
Reports
- Extreme Halophiles
Synthesize Betaine from Glycine by Methylation
- Scientific Program SASAT 2006
- Cardiovascular
Diseases
- Betaine Potassium Iodide
Dihydrate
- Interactive Effects of
Betaine, Crude Protein,and Net Energy in Finishing Pigs
- Danisco Annual
Report-2006
- Preliminary Observations
on Nutritional Effects of Betaine/Amino Acid Mixture
Manufacturers,
Suppliers and Buyers
- Betaine Manufacturers in
India
- Betaine Hydrochloride
Suppliers
- Betaine Hydrochloride
Suppliers
- Betaine Anhydride
Suppliers-California
- Betaine
Exporters
- Betaine
Suppliers
- Chinese Suppliers for
Betaine
- Cocoamidopropyl Betaine
Suppliers
- Hydroxy Sulfonic Betaine
SHB Supplier
- Betaine
Importers
- Betaine Buyers
Company
Profiles
- Guangzhou Tinci High-Tech
Material
- RIA
International
- Sigma-Aldrich
- Sunwin
Chemicals
- TianCheng International
- Wall Chemie GmbH
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