Normal Human Pooled Serum Catalog # S2010007 Lot # Batch dependent Expiration Batch dependent Volume 50 mL Appearance Yellow orange Origin Human Matrix Human serum Storage –20°C or lower. Avoid repeated freeze-thaw cycles. Aliquot as needed. Other Names Pooled serum, normal serum, human pooled serum, human normal pooled serum Versatile matrix for assay development and control. Normal Human Pooled Serum is a filtered, cryopreserved human serum matrix derived from multiple donors to ensure physiological consistency and broad applicability. It is widely used in clinical assay development, biomarker validation, and metabolic profiling. The pooled format minimizes donor-specific variability, making it ideal for standardization across research workflows. This product is yellow-orange in appearance and supplied in a liquid format for ease of aliquoting and long-term storage. It is suitable for use in ELISA, LC-MS/MS, immunoassays, and other analytical platforms requiring a human serum background. Researchers rely on this matrix for calibrating instruments, validating sample preparation protocols, and benchmarking endogenous analyte levels. Each batch is rigorously screened and processed to ensure consistency, and the serum is stored at –20°C or lower to preserve integrity. It is recommended to aliquot upon receipt to avoid freeze-thaw degradation. This product is RUO-compliant and not intended for diagnostic or therapeutic use. Key Features: Pooled human serum matrix for reduced donor variability Liquid format for easy aliquoting and long-term storage Compatible with ELISA, LC-MS/MS, and immunoassay platforms Ideal for assay calibration, method development, and control samples Preserved at –20°C to maintain analyte stability RUO designation: not for clinical or therapeutic use Indication for Use:This product is for Research Use Only (RUO). It is not intended for human or animal use, diagnostic procedures, or therapeutic applications. References: Gil MM, Accurti V, Santacruz B, Plana MN, Nicolaides KH. Analysis of Cell-Free DNA in Maternal Blood in Screening for Aneuploidies: Updated Meta-Analysis. Ultrasound Obstet Gynecol. 2017 Sep;50(3):302–314. Carrasco-Labra A, Lytvyn L, Falck-Ytter Y, Surawicz CM, Chey WD. AGA Technical Review on the Evaluation of Functional Diarrhea and Diarrhea-Predominant Irritable Bowel Syndrome in Adults (IBS-D). Gastroenterology. 2019 Sep;157(3):859–880. Liu X, Zhai T, Ma R, Luo C, Wang H, Liu L. Effects of uric acid-lowering therapy on the progression of chronic kidney disease: a systematic review and meta-analysis. Ren Fail. 2018 Nov;40(1):289–297. Suyoto PST. Effect of low-carbohydrate diet on markers of renal function in patients with type 2 diabetes: A meta-analysis. Diabetes Metab Res Rev. 2018 Oct;34(7):e3032. Patel A, Laffan MA, Waheed U, Brett SJ. Randomised trials of human albumin for adults with sepsis: systematic review and meta-analysis with trial sequential analysis of all-cause mortality. BMJ. 2014 Jul 22;349:g4561. Song T, Rössle M, He F, Liu F, Guo X, Qi X. Transjugular intrahepatic portosystemic shunt for hepatorenal syndrome: A systematic review and meta-analysis. Dig Liver Dis. 2018 Apr;50(4):323–330. Kapourchali FR, Surendiran G, Goulet A, Moghadasian MH. The Role of Dietary Cholesterol in Lipoprotein Metabolism and Related Metabolic Abnormalities: A Mini-review. Crit Rev Food Sci Nutr. 2016 Oct 25;56(14):2408–15. Bao Y, Chen Z, Liu E, Xiang L, Zhao D, Hong J. Risk Factors in Preschool Children for Predicting Asthma During the Preschool Age and the Early School Age: a Systematic Review and Meta-Analysis. Curr Allergy Asthma Rep. 2017 Nov 18;17(12):85.