Department of Anesthesiology and Surgical Intensive Care Unit, Xinhua Hospital, School of Medicine and School of Biomedical Engineering, Shanghai Jiao Tong University, Shanghai, China.
State Key Laboratory of Systems Medicine for Cancer, Institute for Personalized Medicine, Shanghai Jiao Tong University, Shanghai, China.
Nat Commun. 2024 Mar 28;15(1):2708. doi: 10.1038/s41467-024-46989-z.
Spatial proteomics elucidates cellular biochemical changes with unprecedented topological level. Imaging mass cytometry (IMC) is a high-dimensional single-cell resolution platform for targeted spatial proteomics. However, the precision of subsequent clinical analysis is constrained by imaging noise and resolution. Here, we propose SpiDe-Sr, a super-resolution network embedded with a denoising module for IMC spatial resolution enhancement. SpiDe-Sr effectively resists noise and improves resolution by 4 times. We demonstrate SpiDe-Sr respectively with cells, mouse and human tissues, resulting 18.95%/27.27%/21.16% increase in peak signal-to-noise ratio and 15.95%/31.63%/15.52% increase in cell extraction accuracy. We further apply SpiDe-Sr to study the tumor microenvironment of a 20-patient clinical breast cancer cohort with 269,556 single cells, and discover the invasion of Gram-negative bacteria is positively correlated with carcinogenesis markers and negatively correlated with immunological markers. Additionally, SpiDe-Sr is also compatible with fluorescence microscopy imaging, suggesting SpiDe-Sr an alternative tool for microscopy image super-resolution.
空间蛋白质组学以前所未有的拓扑水平阐明细胞生化变化。成像质谱流式细胞术(IMC)是一种用于靶向空间蛋白质组学的高维单细胞分辨率平台。然而,后续临床分析的精度受到成像噪声和分辨率的限制。在这里,我们提出了 SpiDe-Sr,这是一种嵌入去噪模块的超分辨率网络,用于增强 IMC 空间分辨率。SpiDe-Sr 有效地抵抗噪声,分辨率提高了 4 倍。我们分别用细胞、小鼠和人组织对 SpiDe-Sr 进行了演示,结果表明,峰值信噪比分别提高了 18.95%/27.27%/21.16%,细胞提取精度分别提高了 15.95%/31.63%/15.52%。我们进一步将 SpiDe-Sr 应用于研究 20 名患者的 269556 个单细胞的临床乳腺癌队列的肿瘤微环境,发现革兰氏阴性菌的侵袭与致癌标志物呈正相关,与免疫标志物呈负相关。此外,SpiDe-Sr 还与荧光显微镜成像兼容,这表明 SpiDe-Sr 是一种用于显微镜图像超分辨率的替代工具。