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Rationalising drug delivery using nanoparticles: a combined simulation and immunology study of GnRH adsorbed to silica nanoparticles

机译:使用纳米颗粒合理化药物递送:GnRH吸附到二氧化硅纳米颗粒上的组合模拟和免疫学研究

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摘要

Silica nanoparticles (SiNPs) have been shown to have significant potential for drug delivery and as adjuvants for vaccines. We have simulated the adsorption of GnRH-I (gonadotrophin releasing hormone I) and a cysteine-tagged modification (cys-GnRH-I) to model silica surfaces, as well as its conjugation to the widely-used carrier protein bovine serum albumin (BSA). Our subsequent immunological studies revealed no significant antibody production was caused by the peptide-SiNP systems, indicating that the treatment was not effective. However, the testosterone response with the native peptide-SiNPs indicated a drug effect not found with cys-GnRH-I-SiNPs; this behaviour is explained by the specific orientation of the peptides at the silica surface found in the simulations. With the BSA systems, we found significant testosterone reduction, particularly for the BSA-native conjugates, and an antibody response that was notably higher with the SiNPs acting as an adjuvant; this behaviour again correlates well with the epitope presentation predicted by the simulations. The range of immunological and hormone response can therefore be interpreted and understood by the simulation results and the presentation of the peptides to solution, paving the way for the future rational design of drug delivery and vaccine systems guided by biomolecular simulation.
机译:二氧化硅纳米粒子(SiNPs)已被证明具有很大的潜力可用于药物输送和作为疫苗的佐剂。我们已经模拟了GnRH-I(促性腺激素释放激素I)的吸附和半胱氨酸标记的修饰物(cys-GnRH-1)对二氧化硅表面的建模,以及其与广泛使用的载体蛋白牛血清白蛋白(BSA)的缀合)。我们随后的免疫学研究表明,肽-SiNP系统未引起明显的抗体产生,表明该治疗无效。然而,天然肽-SiNPs对睾丸激素的反应表明,cys-GnRH-I-SiNPs没有发现药物作用。这种行为可以通过模拟中发现的肽在二氧化硅表面的特定取向来解释。使用BSA系统时,我们发现睾丸激素显着降低,尤其是对于BSA天然偶联物而言,并且以SiNPs为佐剂的抗体应答显着更高。这种行为再次与模拟预测的抗原决定簇表现良好相关。免疫和激素反应的范围因此可以通过模拟结果和肽在溶液中的呈现来解释和理解,为未来通过生物分子模拟指导合理设计药物输送和疫苗系统铺平了道路。

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