Department of Biochemistry, Faculty of Sciences, Neyshabur Branch, Islamic Azad University, Neyshabur, Iran.
Nuclear Medicine Research Center, Mashhad University of Medical Sciences, Mashhad, Iran.
J Biomol Struct Dyn. 2021 Feb;39(3):1029-1043. doi: 10.1080/07391102.2020.1724568. Epub 2020 Feb 12.
Berberine is widely used in traditional Iranian medicine to treat diabetes and inflammatory conditions. This study was aimed at developing a method for the preparation of Berberine nanoparticles (Nano-Ber) in order to improve its aqueous-phase solubility and its complex formation with human serum albumin (HSA) and holo-transferrin (HTF) from the viewpoint of interaction behavior. Nano-Ber was prepared with olive oil as the oil phase, Tween 80 as the surfactant and Span 60 as the co-surfactant. Nano-Ber was obtained with a spherical shape and a mean particle size of 43.7 ± 3.6 nm, with an optimal oil:surfactant:co-surfactant ratio of 1:2:2, w/w/w. The antioxidant activity of Nano-Ber in comparison with Berberine was tested using DPPH and it was found that Nano-Ber had a large antioxidant activity. The cytotoxicity effects of Nano-Ber and Berberine on HepG2 were compared by MTT assay and detected in the treated HepG2 cells at concentrations up to 0.1 mM. The binding constants of HSA-Nano-Ber and HTF-Nano-Ber complexes formation were (2.93 ± 0.02) × 10 and (9.62 ± 0.03) × 10 , respectively. Hydrogen bonds and van der Waals interactions were the predominant forces in the HSA-Nano-Ber and HTF-Nano-Ber complexes, and the process of Nano-Ber binding HSA and HTF was driven by Δ = -122.76 kJ mol, Δ = -325.49 J molK for HSA and Δ = -125.09 kJ mol, Δ = -43.37 J molK for HTF. The results of the simulation demonstrated that the Nano-Ber molecules were stabilized on the surface of final aggregates through both hydrophilic and hydrophobic interactions. Communicated by Ramaswamy Sarma.
小檗碱在伊朗传统医学中被广泛用于治疗糖尿病和炎症。本研究旨在开发一种制备小檗碱纳米粒子(Nano-Ber)的方法,以提高其在水相中的溶解度,并从相互作用行为的角度研究其与人血清白蛋白(HSA)和全转铁蛋白(HTF)的络合。Nano-Ber 是用橄榄油作为油相,Tween 80 作为表面活性剂,Span 60 作为助表面活性剂制备的。Nano-Ber 呈球形,平均粒径为 43.7±3.6nm,油:表面活性剂:助表面活性剂的最佳比例为 1:2:2,w/w/w。用 DPPH 法测试了 Nano-Ber 与小檗碱的抗氧化活性,发现 Nano-Ber 具有很强的抗氧化活性。用 MTT 法比较了 Nano-Ber 和小檗碱对 HepG2 的细胞毒性作用,并在 0.1mM 浓度下检测了处理后的 HepG2 细胞。HSA-Nano-Ber 和 HTF-Nano-Ber 复合物形成的结合常数分别为(2.93±0.02)×10 和(9.62±0.03)×10 。氢键和范德华相互作用是 HSA-Nano-Ber 和 HTF-Nano-Ber 复合物中的主要作用力,Nano-Ber 与 HSA 和 HTF 结合的过程由 ΔG=-122.76 kJ·mol 驱动,对于 HSA 为 ΔG=-325.49 J·molK,对于 HTF 为 ΔG=-125.09 kJ·mol,ΔG=-43.37 J·molK。模拟结果表明,Nano-Ber 分子通过亲水和疏水相互作用稳定在最终聚集体的表面上。由 Ramaswamy Sarma 传达。