- Blood-free cell culture media supplement and serum reducer
- 适用于促进多个干细胞和p
- 适用于促进多个干细胞和p
- 细胞培养补充
- 细胞培养媒体
- Blood-free chemically defined adherent HEK293t cell expansion media
- 为赋形剂应用而优化
- The most effective way to deliver iron in cell culture without any oxidative reactions or
- 单个组件
- 专为细胞培养基应用而优化
- Blood-free chemically defined VERO expansion and virus production media
- Animal component free lysozyme for bacterial lysis, food preservation, and diagnostic appl
- Recombinant holo-lactoferrin for improvement in performance of select cell culture systems
- High purity, low lipid recombinant albumin solution
- Animal component free lysozyme for bacterial lysis, food preservation, and diagnostic appl
- Blood-free chemically defined T Lymphocyte expansion media
- Egg free lysozyme for use in food processing
- 在细胞培养中传递铁的最有效方法是没有任何氧化反应或
- The most effective way to deliver iron in cell culture without any oxidative reactions or
$265.00 – $2,105.00
Name | Price | Qty | |
---|---|---|---|
Lysobac – Recombinant human lysozyme – 10 g | $265.00 | ||
Lysobac – Recombinant human lysozyme – 100 g | $2,105.00 |
Product Description
Lysobac is a recombinant human lysozyme that is suitable for uses as a preservative in foods and beverages, diagnostic applications, bioprocessing and life science research. Lysobac is four times more active per mg for lysing Micrococcus and E. coli., when compared with the highly variable chicken lysozyme and thus is a more effective as a preservative. Lysobac also eliminates any concerns regarding consumers with egg allergies.
Advantages
- Manufactured in the United States, in a tertiary-level, animal component-free, ISO 9001 certified facility
- Raw materials, manufacturing equipment, and packaging is certified animal-free
- Host manufacturing system is of non-animal and non-human source
- Complete supply and manufacturing chain is owned and operated by InVitria
- Supplied as a lyophilized powder
- Four times as active per mg for lysing MicroCoccus and E. coli than chicken lysozyme
- Provides minimal risk to denaturing of target proteins