Department of Pharmaceutics, Sri Adichunchanagiri College of Pharmacy, Adichunchanagiri University, B.G. Nagar, Karnataka, 571448, India.
Department of Pharmaceutics, Annamacharya College of Pharmacy, New Boyanapalli, Rajampet, 516126, Andhra Pradesh, India.
Pharm Nanotechnol. 2024;12(3):197-205. doi: 10.2174/2211738511666230901160530.
Biosensors have been one of the most fascinating topics for scientists for a long time. This is because biological moieties are multifaceted and are unswervingly related to the presence of a healthy atmosphere. The biosensor approach has also endured profound changes in recent years. Biosensors have been emphasized for various applications, including food quality estimation, surveillance systems, and health and metabolic abnormality diagnostics. The advances in nanotechnology have led to a considerable potential to enhance biosensors' sensitivity, robustness, and anti-interference capabilities. Several new nanomaterials (such as nanoparticles, nanotubes, nanorods, and nanowires) have been fabricated due to the evolution of nanotechnology, and their unique features are gradually being identified, allowing for much faster detection and reproducibility. Biosensor performance has also been enhanced substantially as a result of their use. Because of their capacity to detect a wide range of compounds at deficient concentrations, nanobiosensors have sparked much interest. This article discusses biosensors based on various nanomaterials, their evolution, accompanying features, and their applications in multiple fields.
生物传感器长期以来一直是科学家们最感兴趣的话题之一。这是因为生物分子具有多面性,并且与健康的大气环境息息相关。近年来,生物传感器的方法也发生了深刻的变化。生物传感器已被强调用于各种应用,包括食品质量评估、监测系统以及健康和代谢异常诊断。纳米技术的进步使得提高生物传感器的灵敏度、鲁棒性和抗干扰能力具有相当大的潜力。由于纳米技术的发展,已经制造出了几种新型纳米材料(如纳米粒子、纳米管、纳米棒和纳米线),并且它们的独特特性逐渐被识别,从而能够实现更快的检测和更高的重现性。由于它们的使用,生物传感器的性能也得到了极大的提高。由于纳米生物传感器能够检测到低浓度的多种化合物,因此引起了广泛的关注。本文讨论了基于各种纳米材料的生物传感器、它们的演变、伴随的特征以及它们在多个领域的应用。