G1049
Poly-L-γ-glutamic acid sodium salt
suitable for drug transporter assays, Mol wt ≥750,000
Synonym(s):
γ-PGA
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product name
Poly-L-γ-glutamic acid sodium salt,
form
powder
mol wt
≥750,000
technique(s)
drug transporter assay: suitable
color
white to off-white
application(s)
cell analysis
storage temp.
−20°C
Application
High molecular weight poly-γ-glutamic acid (γPGA) was found to increase levels of NK cell-mediated cytotoxicity and INF-γ secretion in C57BL/6 mice. Biodegradable γ-PGA nanoparticles have been evaluated for use as antigen delivery carriers and delivery of influenza virus hemagglutin (HA) vaccine. Additional life science applications for γ-PGA include uses in biodegradable fibers and nanofiber sheets, hydrogels, and cryoprotectants.
Other Notes
High molecular weight poly-γ-glutamic acid is a polymer of glutamic acid connected by amide linkages between α-amino and γ-carboxylic acid groups. γ-PGA is produced by fermentation in Bacillus species. The subunits are predominantly L-isomer.
Storage Class Code
11 - Combustible Solids
WGK
WGK 3
Flash Point(F)
Not applicable
Flash Point(C)
Not applicable
Certificates of Analysis (COA)
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Chemistry & biodiversity, 7(6), 1555-1562 (2010-06-22)
Ultra-high-molecular-weight poly-gamma-glutamic acid (gamma-PGA) is a most promising biodegradable polymer that is produced by Bacillus subtilis (chungkookjang). Attractive properties of gamma-PGA are that it is water soluble, anionic, biodegradable, and edible. Development of gamma-PGA has pursued in terms of cosmetics/skin
Preparation and evaluation of poly(γ-glutamic acid)-based anti-adhesion membranes.
Key Engineering Materials, 342, 225-225 (2007)
Vaccine, 27(42), 5896-5905 (2009-08-04)
Adding poly(gamma-glutamic acid) nano-particles (gamma-PGA-NPs), a safe, natural material, to subcutaneous immunization with influenza virus hemagglutinin (HA) vaccine increases the protective immune responses against influenza virus in mice. Here, we examined whether intranasal administration of the HA vaccine with gamma-PGA-NPs
The utility of poly(γ-glutamic acid) nanoparticles as antigen delivery carriers in dendritic cell-based cancer immunotherapy.
Biological & Pharmaceutical Bulletin, 33, 2007-2007 (2010)
Microbial cell factories, 18(1), 3-3 (2019-01-11)
Genome-scale metabolic models (GEMs) allow predicting metabolic phenotypes from limited data on uptake and secretion fluxes by defining the space of all the feasible solutions and excluding physio-chemically and biologically unfeasible behaviors. The integration of additional biological information in genome-scale models
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