Wilkins Martin
Imperial College London, Hammersmith Hospital, Du Cane Road, London W12 0NN, United Kingdom.
Glob Cardiol Sci Pract. 2020 Apr 30;2020(1):e202007. doi: 10.21542/gcsp.2020.7.
The plasma proteome is rich in information. It comprises proteins that are secreted or lost from cells as they respond to their local environment. Changes in the constitution of the plasma proteome offer a relatively non-invasive report on the health of tissues. This is particularly true of the lung in pulmonary hypertension, given the large surface area of the pulmonary vasculature in direct communication with blood. So far, this is relatively untapped; we have relied on proteins released from the heart, specifically brain natriuretic peptide and troponin, to inform clinical management. New technology allows the measurement of a larger number of proteins that cover a broad range of molecular pathways in a single small aliquot. The emerging data will yield more than just new biomarkers of pulmonary hypertension for clinical use. Integrated with genomics and with the help of new bioinformatic tools, the plasma proteome can provide insight into the causative drivers of pulmonary vascular disease and guide drug development.
血浆蛋白质组蕴含丰富信息。它包含细胞在响应局部环境时分泌或释放的蛋白质。血浆蛋白质组构成的变化为组织健康状况提供了相对非侵入性的报告。鉴于肺血管系统与血液直接相通的巨大表面积,在肺动脉高压中肺的情况尤其如此。到目前为止,这方面相对未被充分利用;我们一直依赖从心脏释放的蛋白质,特别是脑钠肽和肌钙蛋白来指导临床管理。新技术允许在一小份样品中测量大量覆盖广泛分子途径的蛋白质。新出现的数据将产生的不仅仅是用于临床的肺动脉高压新生物标志物。与基因组学相结合并借助新的生物信息学工具,血浆蛋白质组能够深入了解肺血管疾病的致病驱动因素并指导药物开发。
Glob Cardiol Sci Pract. 2020-4-30
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