Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Ain Shams University, African Union Organization St., Cairo, 11566, Egypt.
Department of Biochemistry, Faculty of Pharmacy, Ain Shams University, Cairo, Egypt.
Sci Rep. 2020 Dec 4;10(1):21250. doi: 10.1038/s41598-020-78327-w.
Bio/chemoinformatics tools can be deployed to compare antimicrobial agents aiming to select an efficient nose-to-brain formulation targeting the meningitis disease by utilizing the differences in the main structural, topological and electronic descriptors of the drugs. Cefotaxime and ceftriaxone were compared at the formulation level (by comparing the loading in gelatin and tripalmitin matrices as bases for the formation of nanoparticulate systems), at the biopharmaceutical level (through the interaction with mucin and the P-gp efflux pumps) and at the therapeutic level (through studying the interaction with S. pneumoniae bacterial receptors). GROMACS v4.6.5 software package was used to carry-out all-atom molecular dynamics simulations. Higher affinity of ceftriaxone was observed compared to cefotaxime on the investigated biopharmaceutical and therapeutic macromolecules. Both drugs showed successful docking on mucin, P-gp efflux pump and S. pneumoniae PBP1a and 2b; but ceftriaxone showed higher affinity to the P-gp efflux pump proteins and higher docking on mucin. Ceftriaxone showed less out-of-matrix diffusion and higher entrapment on the gelatin and the tripalmitin matrices. Accordingly, Ceftriaxone gelatin nanospheres or tripalmitin solid lipid nanoparticles may pose a more feasible and efficient nose-to-brain formulation targeting the meningitis disease compared to the cefotaxime counterparts.
生物/化学信息学工具可用于比较抗菌药物,旨在通过利用药物主要结构、拓扑和电子描述符的差异,选择针对脑膜炎疾病的高效鼻腔递药制剂。在制剂水平(通过比较明胶和三棕榈酸甘油酯基质中作为纳米粒系统形成基础的载药量)、生物制药水平(通过与粘蛋白和 P-糖蛋白外排泵的相互作用)和治疗水平(通过研究与肺炎链球菌细菌受体的相互作用)比较了头孢噻肟和头孢曲松。使用 GROMACS v4.6.5 软件包进行全原子分子动力学模拟。与头孢噻肟相比,头孢曲松在研究的生物制药和治疗性大分子上表现出更高的亲和力。两种药物均成功对接粘蛋白、P-糖蛋白外排泵和肺炎链球菌 PBP1a 和 2b;但头孢曲松对 P-糖蛋白外排泵蛋白的亲和力更高,与粘蛋白的对接也更高。头孢曲松在明胶和三棕榈酸甘油酯基质中的扩散性更小,包封率更高。因此,与头孢噻肟相比,头孢曲松明胶纳米球或三棕榈酸甘油酯固体脂质纳米粒可能更适合作为针对脑膜炎疾病的高效鼻腔递药制剂。