Dilnawaz Fahima, Acharya Sarbari, Kanungo Anwesha
Department of Biotechnology, School of Engineering and Technology, Centurion University of Technology and Management, Jatni, Bhubaneswar, Odisha 752050 India.
Department of Biology, School of Applied Sciences, KIIT Deemed to be University, Bhubaneswar, Odisha 751024 India.
Polym Bull (Berl). 2023 Apr 5:1-25. doi: 10.1007/s00289-023-04755-z.
Infectious diseases and their effective management are still a challenge in this modern era of medicine. Diseases, such as the SARS-CoV-2, Ebola virus, and Zika virus, still put human civilization at peril. Existing drug banks, which include antivirals, antibacterial, and small-molecule drugs, are the most advocated method for treatment, although effective but they still flounder in many instances. This calls for finding more effective alternatives for tackling the menace of infectious diseases. Nanoformulations are progressively being implemented for clinical translation and are being considered a new paradigm against infectious diseases. Natural polymers like chitosan are preferred to design nanoparticles owing to their biocompatibility, biodegradation, and long shelf-life. The chitosan nanoparticles (CNPs) being highly adaptive delivers contemporary prevention for infectious diseases. Currently, they are being used as antibacterial, drug, and vaccine delivery vehicles, and wound-dressing materials, for infectious disease treatment. Although the recruitment of CNPs in clinical trials associated with infectious diseases is minimal, this may increase shortly due to the sudden emergence of unknown pathogens like SARS-CoV-2, thus turning them into a panacea for the management of microorganisms. This review particularly focuses on the all-around application of CNPs along with their recent clinical applications in infectious disease management.
在现代医学时代,传染病及其有效管理仍是一项挑战。诸如严重急性呼吸综合征冠状病毒2(SARS-CoV-2)、埃博拉病毒和寨卡病毒等疾病,仍将人类文明置于危险之中。现有的药物库,包括抗病毒药、抗菌药和小分子药物,是最常被提倡的治疗方法,尽管它们有效,但在许多情况下仍效果不佳。这就需要找到更有效的替代方法来应对传染病的威胁。纳米制剂正逐渐用于临床转化,并被视为对抗传染病的一种新范例。像壳聚糖这样的天然聚合物因其生物相容性、可生物降解性和较长的保质期,而被优先用于设计纳米颗粒。高度适应性的壳聚糖纳米颗粒(CNPs)为传染病提供了当代预防措施。目前,它们正被用作抗菌、药物和疫苗递送载体,以及用于传染病治疗的伤口敷料材料。尽管在与传染病相关的临床试验中招募使用CNPs的情况很少,但由于像SARS-CoV-2这样未知病原体的突然出现,这种情况可能很快会增加,从而使它们成为管理微生物的万灵药。本综述特别关注CNPs的全面应用及其在传染病管理中的最新临床应用。