Zohra Tanzeel, Khalil Ali Talha, Saeed Faryal, Latif Bushra, Salman Muhammad, Ikram Aamer, Ayaz Muhammad, Murthy H C Ananda
Public Health Laboratories Division, National Institute of Health, Islamabad, Pakistan.
Department of Pathology, Lady Reading Hospital Medical Teaching Institution, Peshawar, KP, Pakistan.
Bioinorg Chem Appl. 2022 Aug 8;2022:3994340. doi: 10.1155/2022/3994340. eCollection 2022.
Dengue is a growing mosquito-borne viral disease prevalent in 128 countries, while 3.9 billion people are at high risk of acquiring the infection. With no specific treatment available, the only way to mitigate the risk of dengue infection is through controlling of vector, i.e., . Nanotechnology-based prevention strategies like biopesticides with nanoformulation are now getting popular for preventing dengue fever. Metal nanoparticles (NPs) synthesized by an eco-friendly process, through extracts of medicinal plants have indicated potential anti-dengue applications. Green synthesis of metal NPs is simple, cost-effective, and devoid of hazardous wastes. The recent progress in the phyto-synthesized multifunctional metal NPs for anti-dengue applications has encouraged us to review the available literature and mechanistic aspects of the dengue control using green-synthesized NPs. Furthermore, the molecular bases of the viral inhibition through NPs and the nontarget impacts or hazards with reference to the environmental integrity are discussed in depth. Till date, major focus has been on green synthesis of silver and gold NPs, which need further extension to other innovative composite nanomaterials. Further detailed mechanistic studies are required to critically evaluate the mechanistic insights during the synthesis of the biogenic NPs. Likewise, detailed analysis of the toxicological aspects of NPs and their long-term impact in the environment should be critically assessed.
登革热是一种通过蚊子传播且日益流行的病毒性疾病,在128个国家都有出现,有39亿人面临感染这种疾病的高风险。由于没有可用的特效治疗方法,减轻登革热感染风险的唯一途径是控制病媒,即……基于纳米技术的预防策略,如具有纳米配方的生物农药,现在在预防登革热方面越来越受欢迎。通过药用植物提取物采用环保工艺合成的金属纳米颗粒(NPs)已显示出潜在的抗登革热应用价值。金属纳米颗粒的绿色合成简单、成本效益高且无有害废物。植物合成的多功能金属纳米颗粒在抗登革热应用方面的最新进展促使我们回顾现有的文献以及使用绿色合成纳米颗粒控制登革热的作用机制。此外,还深入讨论了纳米颗粒抑制病毒的分子基础以及与环境完整性相关的非靶标影响或危害。到目前为止,主要关注的是银和金纳米颗粒的绿色合成,这需要进一步扩展到其他创新的复合纳米材料。需要进一步详细的作用机制研究,以严格评估生物源纳米颗粒合成过程中的作用机制见解。同样,应对纳米颗粒的毒理学方面及其对环境的长期影响进行详细分析并严格评估。