International Centre of Biodynamics, Intrarea Portocalelor 1B, 060101 Bucharest, Romania.
Nanobiophotonics and Laser Microspectroscopy Center, Interdisciplinary Research Institute in Bio-Nano-Sciences, Babes-Bolyai University, T. Laurian Str. 42, 400271 Cluj-Napoca, Romania.
Biosensors (Basel). 2023 Jun 7;13(6):632. doi: 10.3390/bios13060632.
Biomarkers play key roles in the diagnosis, risk assessment, treatment and supervision of cardiovascular diseases (CVD). Optical biosensors and assays are valuable analytical tools answering the need for fast and reliable measurements of biomarker levels. This review presents a survey of recent literature with a focus on the past 5 years. The data indicate continuing trends towards multiplexed, simpler, cheaper, faster and innovative sensing while newer tendencies concern minimizing the sample volume or using alternative sampling matrices such as saliva for less invasive assays. Utilizing the enzyme-mimicking activity of nanomaterials gained ground in comparison to their more traditional roles as signaling probes, immobilization supports for biomolecules and for signal amplification. The growing use of aptamers as replacements for antibodies prompted emerging applications of DNA amplification and editing techniques. Optical biosensors and assays were tested with larger sets of clinical samples and compared with the current standard methods. The ambitious goals on the horizon for CVD testing include the discovery and determination of relevant biomarkers with the help of artificial intelligence, more stable specific recognition elements for biomarkers and fast, cheap readers and disposable tests to facilitate rapid testing at home. As the field is progressing at an impressive pace, the opportunities for biosensors in the optical sensing of CVD biomarkers remain significant.
生物标志物在心血管疾病 (CVD) 的诊断、风险评估、治疗和监测中发挥着关键作用。光学生物传感器和分析方法是有价值的分析工具,可满足对生物标志物水平进行快速可靠测量的需求。本综述介绍了过去 5 年的最新文献调查。这些数据表明,继续朝着多重检测、更简单、更便宜、更快和创新的检测方向发展,而更新的趋势则涉及最小化样本量或使用替代采样基质(如唾液)进行更具侵入性的检测。与作为信号探针、生物分子的固定化支持物和信号放大的传统作用相比,纳米材料的酶模拟活性的利用取得了进展。与抗体相比,适体作为替代品的应用促使 DNA 扩增和编辑技术的新兴应用。光学生物传感器和分析方法已经在更大的临床样本集上进行了测试,并与当前的标准方法进行了比较。在 CVD 检测方面,未来的雄心勃勃的目标包括借助人工智能发现和确定相关生物标志物、更稳定的生物标志物特异性识别元件以及快速、廉价的读取器和一次性测试,以促进在家中快速检测。随着该领域以惊人的速度发展,生物传感器在 CVD 生物标志物的光学检测方面仍然具有重要意义。
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