55263-U
96-Well Protein Precipitation Filter Plate
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Application
- Determination of estrone sulfate, testosterone, androstenedione, DHEAS, cortisol, cortisone, and 17α-hydroxyprogesterone by LC-MS/MS in children and adolescents.: This study employs 96-Well Protein Precipitation Filter Plates for rapid sample preparation, significantly increasing the throughput of hormone analysis in pediatric populations. This technique enhances the accuracy and efficiency of hormonal assessments, crucial for clinical and research settings (Ankarberg-Lindgren et al., 2020).
- Quantitative Determination of Ethyl Glucuronide and Ethyl Sulfate in Postmortem and Antemortem Whole Blood Using Phospholipid Removal 96-Well Plate and UHPLC-MS-MS.: This research demonstrates the utility of 96-Well Filter Plates in removing phospholipids from blood samples, streamlining the detection of ethyl glucuronide and ethyl sulfate, substances important for forensic and clinical toxicology (Sidqey et al., 2021).
- Development of a CDC-certified total testosterone assay for adult and pediatric samples using LC-MS/MS.: The study highlights the application of 96-Well Protein Precipitation Filter Plates in developing a CDC-certified assay for testosterone, showing their critical role in enhancing diagnostic accuracy in clinical settings (Star-Weinstock et al., 2019).
- Validation and application of a liquid chromatography-tandem mass spectrometric method for quantification of the drug transport probe fexofenadine in human plasma using 96-well filter plates.: This paper validates a high-throughput method for the analysis of fexofenadine, showcasing the 96-Well Filter Plates′ efficiency in clinical pharmacology and bioanalysis settings (Stanton et al., 2010).
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Articles
Sigma-Aldrich.com presents an article focusing on ion-suppression and phospholipid contamination and some of their major causes and difficulties.
This Sigma-Aldrich article discusses how the HybridSPE-Phospholipid Technology works and how the phospholipids are removed.
This article highlights the impact that sample matrix effects can have on LC/MS response and discusses two novel approaches to reduce it.
Protocols
A simple method to enrich phospholipids from plasma samples, involving a HybridSPE-PPT 96-well plate that both retains phospholipids and removes precipitated proteins.
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