Single molecule array (Simoa) assay with optimal antibody pairs for cytokine detection in human serum samples
文献情報
Danlu Wu, Milena Dumont Milutinovic, David R. Walt
Concentrations of cytokines in bodily fluids reflect the physiological or pathological state of the patient and can be used for prognosis, disease diagnosis or for monitoring therapeutic efficacy. However, in the bodily fluids of healthy or sub-healthy individuals, many cytokines are present at concentrations that are near or below the detection limits of current methods. Here we selected antibody pairs to be employed in the single molecule array (Simoa) assay for ten cytokines including GM-CSF, TNF-α, IFN-γ, IL-1β, IL-2, IL-4, IL-5, IL-6, IL-7, and IL-10. The limits of detection (LODs) obtained were as low as 90 aM–6 fM. These assays allow detection of cytokines in healthy human serum samples at levels significantly below the detection limits of conventional ELISA assays. We provide detailed antibody pair information as well as the concentration profiles of ten cytokines in healthy human serum to serve as reference data for further ultrasensitive immunoassay development and future clinical applications.
関連文献
Intramolecular vibrational energy redistribution and the quantum ergodicity transition: a phase space perspective
Sourav Karmakar, Srihari Keshavamurthy
DOI: 10.1039/D0CP01413C
Enhanced conductivity of water at the electrified air–water interface: a DFT-MD characterization
Fabrizio Creazzo, Sana Bougueroua, Alessandra Serva, Jiri Sponer, Franz Saija, Marie-Pierre Gaigeot
DOI: 10.1039/C9CP06970D
Charge fluctuations from molecular simulations in the constant-potential ensemble
Laura Scalfi, Sara Bonella, Paul A. Madden
DOI: 10.1039/C9CP06285H
Tuning the binding energy of excitons in the MoS2 monolayer by molecular functionalization and defective engineering
Kangli Wang, Beate Paulus
DOI: 10.1039/D0CP01239D
Radical⋯radical chalcogen bonds: CSD analysis and DFT calculations
Bartomeu Galmés, Jaume Adrover, Giancarlo Terraneo, Antonio Frontera, Giuseppe Resnati
DOI: 10.1039/D0CP01643H
Solvent similarity index
Mark D. Driver, Christopher A. Hunter
DOI: 10.1039/D0CP01570A
Highly-excited state properties of cumulenone chlorides in the vacuum-ultraviolet
Quynh L. D. Nguyen, William K. Peters, Ryan C. Fortenberry
DOI: 10.1039/D0CP01835J
Analytical magnetostatic model for 2D arrays of interacting magnetic nanowires and nanotubes
Yenni Velázquez-Galván, Armando Encinas
DOI: 10.1039/D0CP00808G
Highly efficient energy transfer from a water soluble zinc silver indium sulphide quantum dot to organic J-aggregates
Naupada Preeyanka, Himani Dey, Sudipta Seth, Abdur Rahaman, Moloy Sarkar
DOI: 10.1039/D0CP01845G
Multifunctionality of lanthanum–strontium manganite nanopowder
Ziyu Wei, I. V. Zatovsky, D. S. Butenko, Quanjun Li, I. V. Fesych, E. E. Zubov, P. Yu. Polynchuk, V. G. Pogrebnyak, V. M. Poroshin
DOI: 10.1039/D0CP01426E
こちらもおすすめ
「邻羟基阿托伐他汀内酯标准品」に適用される法規ガイドelinesは何ですか?
CAS番号163217-74-1の「邻羟基阿托伐他汀内酯标准品」は、GHS分類では危険物に分類されず、主にREACH規則とFDA/EPAの管理対象となります。R...
メチル(3R)-3-アミノ-2,3-ジヒドロ-1-ベンゾファンラニン-5-カルボイル酸塩塩酸塩の主な用途は何ですか?
メチル(3R)-3-アミノ-2,3-ジヒドロ-1-ベンゾファンラニン-5-カルボイル酸塩塩酸塩は、医薬品や合成化学の研究に広く用いられます。また、特定の薬物の前...
トランス-4-メチルピロリジン-3-オール塩酸塩はどのように合成されますか?
トランス-4-メチルピロリジン-3-オール塩酸塩は、4-メチルピロリジンの塩酸塩化によって合成されます。一般的な合成方法では、4-メチルピロリジンを塩酸に加えて...
硫雜環丁烷-1,1-二氧化物は安全ですか?
硫雜環丁烷-1,1-二氧化物は安全ではありません。毒性は報告されていませんが、高温下で分解し、可燃性があるため、高圧ガスは注意が必要です。密閉した容器で保管し、...
9-ヒドロキシエリプチシネ塩酸塩はどのように合成されますか?
9-ヒドロキシエリプチシネ塩酸塩は、エリプチシネから塩酸を添加することで合成されます。選択性は高いですが、収率は約70%です。
5-塩素-2-(メチルアミノ)フェニル-(2-塩素フェニル)メタン酮の物理化学的性質は何ですか?
5-塩素-2-(メチルアミノ)フェニル-(2-塩素フェニル)メタン酮のCAS番号は5621-86-3です。この化合物は白色の結晶性粉末で、分子量は415.03で...
1-[2-(4-甲氧基-苯氧基)-乙基]-哌嗪はどのように保存すればよいですか?
1-[2-(4-甲氧基-苯氧基)-乙基]-哌嗪は、直射日光を避けて暗所に、室温(15-25℃)で保管し、密閉容器に入れることで安定性を保つことができます。
2-[3-(4-甲氧基フェニル)プロピル]-4,4,5,5-四メチル-1,3,2-ドイボロロールアンの主な用途は何ですか?
2-[3-(4-甲氧基フェニル)プロピル]-4,4,5,5-四メチル-1,3,2-ドイボロロールアンは、医薬品の合成、有機合成化学、および新材料の研究で使用され...
掲載誌
Analyst

Analyst publishes analytical and bioanalytical research that reports premier fundamental discoveries and inventions, and the applications of those discoveries, unconfined by traditional discipline barriers.













phosphoryl}methyl 4-methylbenzenesulfonate structure {[3-(Hexadecyloxy)propoxy](hydroxy)phosphoryl}methyl 4-methylbenzenesulfonate structure](https://static.chemtradehub.com/structs/864/864068-45-1-ba7c.webp)
