Selected article for: "control early diagnosis and infectious disease"

Author: Ren, Yi; He, Qing‐Yu; Fan, Jianqing; Jones, Brian; Zhou, Yuan; Xie, Yi; Cheung, Chung‐Yan; Wu, Adrian; Chiu, Jen‐Fu; Peiris, J. S. Malik; Tam, Paul Kwong Hang
Title: The use of proteomics in the discovery of serum biomarkers from patients with severe acute respiratory syndrome
  • Cord-id: zayzw78f
  • Document date: 2004_9_2
  • ID: zayzw78f
    Snippet: Severe acute respiratory syndrome (SARS) is a new infectious disease with a global impact. Understanding its pathogenesis and developing specific diagnostic methods for its early diagnosis are crucial for the effective management and control of this disease. By using proteomic technology, truncated forms of α(1)‐antitrypsin (TF‐α(1)‐AT) were found to increase significantly and consistently in sera of SARS patients compared to control subjects. The result showed a sensitivity of 100% for
    Document: Severe acute respiratory syndrome (SARS) is a new infectious disease with a global impact. Understanding its pathogenesis and developing specific diagnostic methods for its early diagnosis are crucial for the effective management and control of this disease. By using proteomic technology, truncated forms of α(1)‐antitrypsin (TF‐α(1)‐AT) were found to increase significantly and consistently in sera of SARS patients compared to control subjects. The result showed a sensitivity of 100% for SARS patients and a specificity of 92.8% for controls. Furthermore, the levels of these proteins significantly correlated with certain clinico‐pathological parameters. The dramatic increase in TF‐α(1)‐AT may be the result of degradation of α(1)‐AT. As α(1)‐AT plays an important role in the protection of lung function, its degradation may be an important factor in the pathogenesis of SARS. These findings indicate that increased TF‐α(1)‐AT may be therapeutically relevant, and may also be a useful biological marker for the diagnosis of SARS.

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