Khatun Sajmina, Putta Chandra Lekha, Hak Arshadul, Rengan Aravind Kumar
Department of Biomedical Engineering, IIT Hyderabad, Kandi, Sangareddy, Telangana 502285, India.
Biomater Biosyst. 2023 Jan 30;9:100073. doi: 10.1016/j.bbiosy.2023.100073. eCollection 2023 Mar.
The viral infection spreads with the assistance of a host. Traditional antiviral therapies cannot provide long-term immunity against emerging and drug-resistant viral infections. Immunotherapy has evolved as an efficient approach for disease prevention and treatment, which include cancer, infections, inflammatory, and immune disorders. Immunomodulatory nanosystems can dramatically enhance therapeutic outcomes by combating many therapeutic challenges, such as poor immune stimulation and off-target adverse effects. Recently, immunomodulatory nanosystems have emerged as a potent antiviral strategy to intercept viral infections effectively. This review introduces major viral infections with their primary symptoms, route of transmission & targeted organ, and different stages of the viral life cycle with respective traditional blockers. The IMNs have an exceptional capacity for precisely modulating the immune system for therapeutic applications. The nano sized immunomodulatory systems permit the immune cells to interact with infectious agents enhancing lymphatic drainage and endocytosis by the over-reactive immune cells in the infected areas. Immune cells that can be modulated upon viral infection via various immunomodulatory nanosystems have been discussed. Advancement in theranostics can yield an accurate diagnosis, adequate treatment, and real-time screening of viral infections. Nanosystem-based drug delivery can continue to thrive in diagnosing, treating, and preventing viral infections. The curative medicine for remerging and drug-resistant viruses remains challenging, though certain systems have expanded our perception and initiated a new research domain in antiviral treatments.
病毒感染在宿主的协助下传播。传统的抗病毒疗法无法提供针对新出现的和耐药性病毒感染的长期免疫力。免疫疗法已发展成为一种有效的疾病预防和治疗方法,包括癌症、感染、炎症和免疫紊乱。免疫调节纳米系统可以通过应对许多治疗挑战,如免疫刺激不足和脱靶副作用,显著提高治疗效果。最近,免疫调节纳米系统已成为一种有效的抗病毒策略,可有效拦截病毒感染。本文综述介绍了主要病毒感染及其主要症状、传播途径和靶器官,以及病毒生命周期的不同阶段和相应的传统阻断剂。免疫调节纳米系统在治疗应用中具有精确调节免疫系统的特殊能力。纳米尺寸的免疫调节系统允许免疫细胞与感染因子相互作用,增强感染区域过度反应的免疫细胞的淋巴引流和内吞作用。本文讨论了可通过各种免疫调节纳米系统在病毒感染时进行调节的免疫细胞。治疗诊断学的进展可以实现对病毒感染的准确诊断、充分治疗和实时筛查。基于纳米系统的药物递送在诊断、治疗和预防病毒感染方面可以继续蓬勃发展。尽管某些系统拓宽了我们的认知并开启了抗病毒治疗的新研究领域,但治疗复发性和耐药性病毒的药物仍然具有挑战性。