Department of Pharmaceutics, Crescent School of Pharmacy, B.S. Abdur Rahman Crescent Institute of Science and Technology, Chennai, 600048, India.
Department of Pharmacology. KIPS, Shri Shankaracharya Professional University Bhilai, Chhattisgarh, 490020, India.
Biomed Microdevices. 2024 Oct 23;26(4):42. doi: 10.1007/s10544-024-00725-y.
Biomedical imaging plays a critical role in early detection, precise diagnosis, treatment planning, and monitoring responses, but traditional methods encounter challenges such as limited sensitivity, specificity, and inability to monitor therapeutic responses due to factors like short circulation half-life and potential toxicity. Nanoparticles are revolutionizing biomedical imaging as contrast agents across modalities like computed tomography (CT), optical, magnetic resonance imaging (MRI), and ultrasound, exploiting unique attributes such as those of metal-based, polymeric, and lipid nanoparticles. They shield imaging agents from immune clearance, extending circulation time, and enhancing bioavailability at tumor sites. This results in improved imaging sensitivity. The study highlights advancements in multifunctional nanoparticles for targeted imaging, tackling concerns regarding toxicity and biocompatibility. Critically evaluating conventional contrast agents, emphasizes the shortcomings that nanoparticles aim to overcome. This review provides insight into the current status of nanoparticle-based contrast agents, illuminating their potential to reshape therapeutic monitoring and precision diagnostics.
生物医学成像在早期检测、精确诊断、治疗规划和监测反应中起着至关重要的作用,但传统方法遇到了一些挑战,如灵敏度、特异性有限,以及由于半衰期短和潜在毒性等因素而无法监测治疗反应。纳米粒子正在彻底改变生物医学成像,作为对比剂,可以应用于多种模态,如计算机断层扫描(CT)、光学、磁共振成像(MRI)和超声,利用独特的属性,如基于金属、聚合物和脂质的纳米粒子。它们保护成像剂免受免疫清除,延长循环时间,并增强肿瘤部位的生物利用度,从而提高成像的灵敏度。该研究强调了多功能纳米粒子在靶向成像方面的进展,解决了毒性和生物相容性方面的问题。对传统对比剂的批判性评估强调了纳米粒子旨在克服的缺点。这篇综述提供了对基于纳米粒子的对比剂的现状的深入了解,阐明了它们在重塑治疗监测和精准诊断方面的潜力。