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首页> 外文期刊>Journal of pharmaceutical sciences. >Effect of the Siliconization Method on Particle Generation in a Monoclonal Antibody Formulation in Pre-filled Syringes
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Effect of the Siliconization Method on Particle Generation in a Monoclonal Antibody Formulation in Pre-filled Syringes

机译:硅化方法对预填充注射器单克隆抗体制剂中颗粒产生的影响

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摘要

Silicone oil is used as a lubricant in glass pre-filled syringes (PFS) but can contribute to the generation of particles within protein formulations in PFS. To mitigate the production of such particles, various silicone oil coating processes have been proposed. In this study, three siliconization methods (the covalent method, the baked silicone oil method, and the liquid silicone oil method) were used to coat glass syringes with silicone oil. Glide forces were determined for syringes coated by each method. Then, a monoclonal antibody formulation or a buffer solution were incubated in the coated syringes in either the presence or absence of an air bubble, and the syringes were rotated end-over-end to induce air bubble movement within the syringe. The particle concentrations were measured throughout the incubation period using flow microscopy. The coating method did not affect particle concentrations measured in buffer alone, nor did the coating method affect particle concentrations measured in antibody formulations in the absence of an air bubble. Particle concentrations were influenced by the syringe coating method in protein formulations agitated in the presence of an air bubble, with the most particles formed in syringes lubricated with liquid silicone oil. Fewer particles were produced in syringes lubricated with baked silicone oil, and the fewest particles were produced in syringes with covalently-attached silicone oil. However, the glide forces measured in syringes coated with silicone oil by each method are inversely correlated with the measured particle concentrations. (c) 2015 Wiley Periodicals, Inc. and the American Pharmacists Association J Pharm Sci 104:1601-1609, 2015
机译:硅油在玻璃预灌装注射器(PFS)中用作润滑剂,但可有助于在PFS中蛋白质制剂中生成颗粒。为了减轻这种颗粒的产生,已经提出了各种硅油涂覆方法。在这项研究中,使用三种硅化方法(共价法,烘烤硅油法和液体硅油法)为玻璃注射器涂上硅油。确定通过每种方法涂覆的注射器的滑动力。然后,在存在或不存在气泡的情况下,在包被的注射器中孵育单克隆抗体制剂或缓冲溶液,并将注射器颠倒旋转以引起气泡在注射器内的运动。在整个孵育过程中,使用流式显微镜测量颗粒浓度。包被方法既不影响在单独的缓冲液中测得的颗粒浓度,也没有影响在没有气泡的情况下在抗体制剂中测得的颗粒浓度。在有气泡的情况下搅拌的蛋白质制剂中,颗粒浓度受注射器包衣方法的影响,在注射器中形成的大多数颗粒都用液体硅油润滑。用烘烤的硅油润滑的注射器中产生的颗粒较少,而用共价连接的硅油在注射器中产生的颗粒最少。但是,通过每种方法在涂有硅油的注射器中测得的滑动力与测得的颗粒浓度成反比。 (c)2015年Wiley Periodicals,Inc.和美国药剂师协会J Pharm Sci 104:1601-1609,2015年

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