In serology, each sample is typically tested individually, one antigen at a time. This is costly and time consuming. Serology techniques should ideally allow recurrent measurements in parallel in small sample volumes and be inexpensive and fast. Here we show that mass cytometry can be used to scale up multiplexed serology testing by leveraging polystyrene beads uniformly loaded with combinations of stable isotopes. We generated 18,480 unique isotopically barcoded beads to simultaneously detect, in a single tube with 924 serum samples, the levels of immunoglobulins G and M against 19 proteins from SARS-CoV-2 (a total of 36,960 tests in 400ânl of sample volume and 30âμl of reaction volume). As a rapid, high-throughput and cost-effective technique, serology by mass cytometry may contribute to the effective management of public health emergencies originating from infectious diseases.
High-throughput multiplexed serology via the mass-spectrometric analysis of isotopically barcoded beads.
利用同位素条形码微珠的质谱分析进行高通量多重血清学检测
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作者:Drainas Alexandros P, McIlwain David R, Dallas Alec, Chu Theresa, Delgado-González Antonio, Baron Maya, Angulo-Ibáñez Maria, Trejo Angelica, Bai Yunhao, Hickey John W, Lu Guolan, Lu Scott, Pineda-Ramirez Jesus, Anglin Khamal, Richardson Eugene T, Prostko John C, Frias Edwin, Servellita Venice, Brazer Noah, Chiu Charles Y, Peluso Michael J, Martin Jeffrey N, Wirz Oliver F, Pham Tho D, Boyd Scott D, Kelly J Daniel, Sage Julien, Nolan Garry P, Rovira-Clavé Xavier
| 期刊: | Nature Biomedical Engineering | 影响因子: | 26.600 |
| 时间: | 2025 | 起止号: | 2025 Jul;9(7):1117-1128 |
| doi: | 10.1038/s41551-025-01349-0 | 研究方向: | 其它 |
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