Information provided in the product description is from published literature. Due to the nature of scientific experimentation, your results (e.g., selectivity and effective concentrations) or specific application for this product may differ. If you have questions about how this product fits your application, please contact our technical support staff.
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Item No. 46461

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BSA-Linoleate ω-6 Polyunsaturated Fatty Acid Complex (5 mM) is composed of linoleic acid (Item No. 90150) and fatty acid-free bovine serum albumin (BSA) at an approximately 6:1 molar ratio of linoleate:BSA. It was prepared under sterile conditions, then filtered and aliquoted into sterile vials. Cayman's BSA-Linoleate ω-6 Polyunsaturated Fatty Acid Complex (5 mM) can be used for efficient fatty acid delivery to cells in culture as a source of essential nutrients to support cell growth in serum-free or reduced-serum media. It can also be used for the purpose of monitoring lipid metabolism and inflammatory signaling pathways, as linoleic acid is a precursor to arachidonic acid and downstream inflammatory lipid mediators.1,2,3,4,5 Cayman's BSA-Linoleate ω-6 Polyunsaturated Fatty Acid Complex (5 mM) is suitable for use in short- and long-term cell culture applications (25+ hours). This product can be used to achieve higher concentrations or perform larger experiments than can be achieved with BSA-Linoleate ω-6 Polyunsaturated Fatty Acid Complex (1 mM) (Item No. 38649). For best results, it is recommended that this product be used in conjunction with Cayman's BSA Control for BSA-Fatty Acid Complexes (5 mM) (Item No. 29556), prepared with fatty acid-free BSA.
WARNING This product is not for human or veterinary use.
1. Cell culture models of fatty acid overload: Problems and solutions. Biochim. Biophys. Acta Mol. Cell Biol. Lipids 1863(2), 143-151 (2018).
2. Lipid sensing by mTOR complexes via de novo synthesis of phosphatidic acid. The Journal of Biological Chemisty 292(15), 6303-6311 (2017).
3. Effect of long-
4. Regulation of tumour cell fatty acid oxidation by n-
5. Loss of virulence in NAD(P)H cytochrome b5 oxidoreductase deficient Leishmania major. Biochem. Biophys. Res. Commun. 503(1), 371-377 (2018).