Saki Norouzi Ghazal, Rahimpour Farshad
Biotechnology Research Laboratory, Chemical Engineering Department, Faculty of Petroleum and Chemical Engineering, Razi University, Kermanshah 67144-14971, Iran.
ACS Omega. 2024 Feb 16;9(8):9676-9685. doi: 10.1021/acsomega.3c09664. eCollection 2024 Feb 27.
This study investigated the impact of bioconjugation on the partitioning of insulin, a clinically valuable protein, in an aqueous two-phase system. Gold nanoparticles of different sizes were synthesized and conjugated with insulin. Analysis of the conjugated insulin showed that the insulin remains fully active. Conjugated gold nanoparticles (AuNPs/insulin) were used in polyethylene glycol (PEG)-dextran aqueous two-phase systems to investigate the effect of pH, PEG and dextran molecular weights, PEG and dextran concentrations, AuNPs/insulin dosage, and nanoparticle size on the partition coefficient. These systems were chosen for their biocompatibility and low toxicity. Response surface methodology with D-optimal design was used to model and optimize these systems and their affected parameters. At the optimum condition of a pH = 8 system containing 21% PEG 4000, 5% dextran 100,000, and 100 IU AuNPs/insulin, the partition coefficient of AuNPs/insulin was found to be 192.96, which is in agreement with the empirical partition coefficient of 189.2. This is significantly higher than the partition coefficient of free insulin in a similar system. This approach could be used to overcome limitations in the feasibility of aqueous two-phase systems for industrial-scale purification of biomolecules and biopharmaceuticals.
本研究考察了生物共轭对临床上有价值的蛋白质胰岛素在双水相体系中分配的影响。合成了不同尺寸的金纳米颗粒并使其与胰岛素共轭。对共轭胰岛素的分析表明,胰岛素仍保持完全活性。将共轭金纳米颗粒(金纳米颗粒/胰岛素)用于聚乙二醇(PEG)-葡聚糖双水相体系,以研究pH值、PEG和葡聚糖分子量、PEG和葡聚糖浓度、金纳米颗粒/胰岛素用量以及纳米颗粒尺寸对分配系数的影响。选择这些体系是因其具有生物相容性和低毒性。采用具有D-最优设计的响应面方法对这些体系及其影响参数进行建模和优化。在pH = 8、含有21% PEG 4000、5%葡聚糖100000以及100 IU金纳米颗粒/胰岛素的体系的最佳条件下,发现金纳米颗粒/胰岛素的分配系数为192.96,这与经验分配系数189.2一致。这显著高于类似体系中游离胰岛素的分配系数。该方法可用于克服双水相体系在工业规模纯化生物分子和生物制药方面可行性的局限性。