Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER) - Raebareli, Lucknow, 226002, India.
Department of Pharmacy, Banasthali University, Banasthali, Rajasthan, 304022, India.
AAPS PharmSciTech. 2024 Feb 17;25(3):41. doi: 10.1208/s12249-024-02754-5.
Viral infections represent a significant threat to global health due to their highly communicable and potentially lethal nature. Conventional antiviral interventions encounter challenges such as drug resistance, tolerability issues, specificity concerns, high costs, side effects, and the constant mutation of viral proteins. Consequently, the exploration of alternative approaches is imperative. Therefore, nanotechnology-embedded drugs excelled as a novel approach purporting severe life-threatening viral disease. Integrating nanomaterials and nanoparticles enables ensuring precise drug targeting, improved drug delivery, and fostered pharmacokinetic properties. Notably, nanocrystals (NCs) stand out as one of the most promising nanoformulations, offering remarkable characteristics in terms of physicochemical properties (higher drug loading, improved solubility, and drug retention), pharmacokinetics (enhanced bioavailability, dose reduction), and optical properties (light absorptivity, photoluminescence). These attributes make NCs effective in diagnosing and ameliorating viral infections. This review comprises the prevalence, pathophysiology, and resistance of viral infections along with emphasizing on failure of current antivirals in the management of the diseases. Moreover, the review also highlights the role of NCs in various viral infections in mitigating, diagnosing, and other NC-based strategies combating viral infections. In vitro, in vivo, and clinical studies evident for the effectiveness of NCs against viral pathogens are also discussed.
病毒感染因其高度传染性和潜在致命性而对全球健康构成重大威胁。传统的抗病毒干预措施面临着诸如耐药性、耐受性问题、特异性问题、高成本、副作用和病毒蛋白不断突变等挑战。因此,探索替代方法势在必行。因此,嵌入纳米技术的药物作为一种针对严重危及生命的病毒性疾病的新方法脱颖而出。将纳米材料和纳米粒子结合起来,可以确保精确的药物靶向、改善药物输送并促进药代动力学特性。值得注意的是,纳米晶体(NCs)是最有前途的纳米制剂之一,在物理化学性质(更高的药物载量、提高的溶解度和药物保留)、药代动力学(增强的生物利用度、减少剂量)和光学性质(光吸收率、光致发光)方面具有显著的特性。这些特性使 NCs 能够有效诊断和改善病毒感染。本综述包括病毒感染的流行情况、病理生理学和耐药性,以及强调当前抗病毒药物在疾病管理方面的失败。此外,该综述还强调了 NCs 在各种病毒感染中的作用,以减轻、诊断和其他基于 NC 的策略来对抗病毒感染。还讨论了针对病毒病原体的 NCs 的体外、体内和临床研究的有效性。