Mahmud Kazi Mustafa, Hossain Md Monir, Polash Shakil Ahmed, Takikawa Masato, Shakil Md Salman, Uddin Md Forhad, Alam Morshed, Ali Khan Shawan Mohammad Mahfuz, Saha Tanushree, Takeoka Shinji, Hasan Md Ashraful, Sarker Satya Ranjan
Department of Biochemistry and Molecular Biology, Jahangirnagar University, Savar, Dhaka 1342, Bangladesh.
Department of Biotechnology and Genetic Engineering, Jahangirnagar University, Savar, Dhaka 1342, Bangladesh.
ACS Omega. 2022 Jul 25;7(31):27216-27229. doi: 10.1021/acsomega.2c01922. eCollection 2022 Aug 9.
Nanotherapeutics has emerged as the most sought after approach to tackle the menace of drug-resistant pathogenic bacteria. Among others, biogenic silver nanoparticles (bAgNPs) synthesized using medicinal plant extracts demonstrate promising antibacterial propensity with excellent biocompatibility. Herein, bAgNPs were synthesized through the green chemistry approach using leaf extract as a reducing agent at different pH values (i.e., 5, 7, 8, and 10). The average size of bAgNPs synthesized at pH 5, 7, 8, and 10 was 23.3, 21.3, 17.2, and 35.3 nm, respectively, and all the nanoparticles were negatively charged. Their antibacterial potential was investigated against , DH5α, K12, enteropathogenic , and . The highest antibacterial activity was exhibited by bAgNPs synthesized at pH 8 against all the tested bacterial strains, which can be attributed to their small size and greater surface area to volume ratio. The bAgNPs demonstrated the highest zone of inhibition (29.5 ± 0.8 mm) against through oxidation of membrane fatty acids that resulted in the formation of the malondialdehyde-thiobarbituric acid (MDA-TBA) adduct. However, bAgNPs demonstrated excellent hemocompatibility with rat and human red blood cells. Biogenic AgNPs synthesized at pH 8 also exhibited biocompatibility in terms of liver and kidney function biomarkers. Furthermore, hematoxylin and eosin staining of the tissue sections of vital organs (i.e., liver, kidneys, lungs, heart, spleen, and brain) also confirmed the biocompatibility of bAgNPs.
纳米疗法已成为应对耐药病原菌威胁最受追捧的方法。其中,使用药用植物提取物合成的生物源银纳米颗粒(bAgNPs)具有良好的抗菌倾向和出色的生物相容性。在此,通过绿色化学方法,以叶提取物作为还原剂,在不同pH值(即5、7、8和10)下合成了bAgNPs。在pH 5、7、8和10下合成的bAgNPs的平均尺寸分别为23.3、21.3、17.2和35.3 nm,所有纳米颗粒均带负电荷。研究了它们对DH5α、K12、肠道致病性大肠杆菌和其他菌株的抗菌潜力。在pH 8下合成的bAgNPs对所有测试菌株均表现出最高的抗菌活性,这可归因于它们的小尺寸和更大的表面积与体积比。bAgNPs通过氧化膜脂肪酸导致丙二醛 - 硫代巴比妥酸(MDA - TBA)加合物的形成,对大肠杆菌表现出最高的抑菌圈(29.5±0.8 mm)。然而,bAgNPs与大鼠和人类红细胞表现出优异的血液相容性。在pH 8下合成的生物源AgNPs在肝功能和肾功能生物标志物方面也表现出生物相容性。此外,重要器官(即肝脏、肾脏、肺、心脏、脾脏和大脑)组织切片的苏木精和伊红染色也证实了bAgNPs的生物相容性。