Department of Biomedical Science & Institute of Bioscience and Biotechnology, Kangwon National University, Chuncheon, Republic of Korea (G.S., J.-C.K.) and Department of Biotechnology, School of Life Science and Biotechnology, Adamas University, Kolkata, India (S.C., C.C.).
Department of Biomedical Science & Institute of Bioscience and Biotechnology, Kangwon National University, Chuncheon, Republic of Korea (G.S., J.-C.K.) and Department of Biotechnology, School of Life Science and Biotechnology, Adamas University, Kolkata, India (S.C., C.C.)
Pharmacol Rev. 2023 Jul;75(4):739-757. doi: 10.1124/pharmrev.122.000719. Epub 2023 Jan 27.
Over the past few decades, humankind has constantly encountered new viral species that create havoc in the socioeconomic balance worldwide. Among the method to combat these novel viral infections, fast and point-of-care diagnosis is of prime importance to contain the spreading of viral infections. However, most sensitive diagnostic systems for viral infections are time-consuming and require well-trained professionals, making it difficult for the patients. In recent years nanozymes emerged as promising therapeutic and fast diagnostic tools due to their multienzyme-like catalytic performance. Nanozymes can be designed using inorganic or organic components with tailorable physicochemical surface properties, enabling the attachment of various molecules and species on the surface of the nanozyme for specific recognition. In addition to the composition, the multienzyme-like catalytic performance can be modulated by the shape and size of the nanoparticles. Due to their multicatalytic abilities, nanozymes can be used for fast diagnosis and therapy for viral infections. Here we attempt to focus on the insights and recent explorations on the advances in designing various types of nanozymes as a theranostic tool for viral infections. Thus, this review intends to generate interest in the clinical translation of nanozymes as a theranostic tool for viral infections by providing knowledge about the multidisciplinary potential of nanozyme. SIGNIFICANCE STATEMENT: The multienzyme-like properties of nanozymes suggest their role in diagnosing and treating various diseases. Although the potential roles of nanozymes for various viral infections have been studied in the last few decades, no review provides recent explorations on designing various types of nanozymes for the detection and treatment of viral infections. This review provides insights into designing nanozymes to diagnose and treat viral infections, assisting future researchers in developing clinically translatable nanozymes to combat novel viral infections.
在过去的几十年里,人类不断遇到新的病毒物种,这些物种在全球范围内造成了社会经济平衡的破坏。在对抗这些新型病毒感染的方法中,快速和即时诊断对于控制病毒感染的传播至关重要。然而,大多数用于病毒感染的敏感诊断系统都很耗时,需要经过专业培训的专业人员,这对患者来说很困难。近年来,纳米酶因其类似多酶的催化性能而成为有前途的治疗和快速诊断工具。纳米酶可以使用无机或有机成分设计,具有可调节的物理化学表面特性,能够在纳米酶表面附着各种分子和物质进行特异性识别。除了组成外,纳米颗粒的形状和大小可以调节类似多酶的催化性能。由于其多催化能力,纳米酶可用于快速诊断和治疗病毒感染。在这里,我们试图专注于设计各种类型的纳米酶作为治疗病毒感染的治疗工具的见解和最新探索。因此,本综述旨在通过提供关于纳米酶多学科潜力的知识,激发人们对纳米酶作为治疗病毒感染的治疗工具的临床转化的兴趣。
纳米酶的类似多酶性质表明它们在诊断和治疗各种疾病中的作用。尽管在过去几十年中已经研究了纳米酶在各种病毒感染中的潜在作用,但没有综述提供关于设计各种类型的纳米酶用于检测和治疗病毒感染的最新探索。本综述提供了设计纳米酶来诊断和治疗病毒感染的见解,帮助未来的研究人员开发可临床转化的纳米酶来对抗新型病毒感染。