Platelets contribute to COVID-19 clinical manifestations, of which microclotting in the pulmonary vasculature has been a prominent symptom. To investigate the potential diagnostic contributions of overall platelet morphology and their α-granules and mitochondria to the understanding of platelet hyperactivation and micro-clotting, we undertook a 3D ultrastructural approach. Because differences might be small, we used the high-contrast, high-resolution technique of focused ion beam scanning EM (FIB-SEM) and employed deep learning computational methods to evaluate nearly 600 individual platelets and 30â000 included organelles within three healthy controls and three severely ill COVID-19 patients. Statistical analysis reveals that the α-granule/mitochondrion-to-plateletvolume ratio is significantly greater in COVID-19 patient platelets indicating a denser packing of organelles, and a more compact platelet. The COVID-19 patient platelets were significantly smaller -by 35% in volume - with most of the difference in organelle packing density being due to decreased platelet size. There was little to no 3D ultrastructural evidence for differential activation of the platelets from COVID-19 patients. Though limited by sample size, our studies suggest that factors outside of the platelets themselves are likely responsible for COVID-19 complications. Our studies show how deep learning 3D methodology can become the gold standard for 3D ultrastructural studies of platelets.
Deep learning, 3D ultrastructural analysis reveals quantitative differences in platelet and organelle packing in COVID-19/SARSCoV2 patient-derived platelets.
深度学习 3D 超微结构分析揭示了 COVID-19/SARSCoV2 患者血小板中血小板和细胞器排列的定量差异
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作者:Matharu Sagar S, Nordmann Cassidy S, Ottman Kurtis R, Akkem Rahul, Palumbo Douglas, Cruz Denzel R D, Campbell Kenneth, Sievert Gail, Sturgill Jamie, Porterfield James Z, Joshi Smita, Alfar Hammodah R, Peng Chi, Pokrovskaya Irina D, Kamykowski Jeffrey A, Wood Jeremy P, Garvy Beth, Aronova Maria A, Whiteheart Sidney W, Leapman Richard D, Storrie Brian
| 期刊: | Platelets | 影响因子: | 2.600 |
| 时间: | 2023 | 起止号: | 2023 Dec;34(1):2264978 |
| doi: | 10.1080/09537104.2023.2264978 | 研究方向: | 细胞生物学 |
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