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Demonstrating a Multi-drug Resistant Mycobacterium tuberculosis Amplification Microarray
Published on: April 25, 2014
Multidimensional cfRNA response modeling identifies a 5-gene pair signature for high-robust pulmonary tuberculosis
Changchun Wu1, Huiyuan Qiao1, Xianrun Pan1
1The Clinical Hospital of Chengdu Brain Science Institute, School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu 611731, China.
None:
Lack of non-invasive biomarkers hinders pulmonary tuberculosis (PTB) management. We developed a multidimensional machine learning framework to systematically evaluate five cell-free RNA (cfRNA)-derived host response modalities: immune cell infiltration, global transcriptional perturbation (expression- and rank-based), key genes, and gene pairs. While immune-cell and global perturbation models showed moderate efficacy, an optimized 5-gene pair classifier demonstrated robust diagnostic power. This signature achieved an AUC of 0.947 in the validation subset derived from the parent study and maintained 100% sensitivity (95% CI: 0.741-1.000) in HIV-coinfected individuals. Model scores correlated significantly with bacterial load (r = 0.65) and radiological severity. Kappa analysis confirmed substantial diagnostic agreement (kappa = 0.42-0.56) between this signature and chest X-ray systems, with the signature providing high discriminative power in cases with ambiguous radiological findings. This cfRNA-based 5-gene pair signature establishes a robust diagnostic paradigm, offering efficient PTB detection in resource-limited settings and a foundation for future point-of-care diagnostics.
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