Gautam Darsh, Pandit Vinay, Kumar Sanjay, Talwan Poonam, Sharma Tarun
Department of Pharmaceutics, Himachal Institute of Pharmaceutical Education and Research, Nadaun, Himachal Pradesh, 177033, India.
Department of Pharmaceutics, Laureate Institute of Pharmacy, Kathog, Kangra, Himachal Pradesh, 176041, India.
Curr Drug Deliv. 2025;22(6):721-731. doi: 10.2174/0115672018278607240405060054.
Managing bacterial pathogens in the central nervous system is an immense issue for researchers all around the globe. The problem of these infections remains throughout the population, regardless of the discovery of several possible medicines. The major obstacle to drug delivery is the BBB, but only a few medicines that fulfill demanding requirements can penetrate it. Considering inadequate antibiotic alternatives and the increasing development of resistance, it is more important than ever to find new approaches to address this worldwide problem. Medical nanotechnology has evolved as a cutting-edge and effective means of treating many of the most difficult CNS illnesses, including bacterial meningitis. Various metallic nanoparticles, such as gold, silver, and titanium oxide, have shown bactericidal potential. Gold nanoparticles have gotten a great deal of interest due to their excellent biocompatibility, simplicity of surface modification, and optical qualities. The current study described AuNP-based detection and therapy options against meningitis-- causing bacteria, including bacterial pathogens' mechanisms for crossing BBB and AuNPs' mode of Action against those bacteria. The current study looked into green synthesized bactericidal gold nanoparticles-based therapy techniques for diagnosing and intervening in bacterial meningitis. Nevertheless, more research is needed before these laboratory findings can be translated into therapeutic trials. Nonetheless, we can confidently assert that the knowledge acquired and addressed in this study will benefit neuro-nanotechnology researchers.
对于全球的研究人员来说,管理中枢神经系统中的细菌病原体是一个巨大的问题。尽管发现了几种可能的药物,但这些感染问题在整个人口中仍然存在。药物递送的主要障碍是血脑屏障,只有少数满足苛刻要求的药物才能穿透它。考虑到抗生素替代品不足以及耐药性的不断发展,寻找解决这一全球性问题的新方法比以往任何时候都更加重要。医学纳米技术已发展成为治疗许多最棘手的中枢神经系统疾病(包括细菌性脑膜炎)的前沿且有效的手段。各种金属纳米颗粒,如金、银和二氧化钛,已显示出杀菌潜力。金纳米颗粒因其出色的生物相容性、表面修饰的简便性和光学性质而备受关注。当前的研究描述了基于金纳米颗粒的针对引起脑膜炎的细菌的检测和治疗方案,包括细菌病原体穿越血脑屏障的机制以及金纳米颗粒对这些细菌的作用方式。当前的研究探讨了基于绿色合成的杀菌金纳米颗粒的治疗技术,用于诊断和干预细菌性脑膜炎。然而,在这些实验室结果能够转化为治疗试验之前,还需要更多的研究。尽管如此,我们可以自信地断言,本研究中获得和探讨的知识将使神经纳米技术研究人员受益。