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Characterization of the initial level and migration of silicone oil lubricant in empty prefilled syringes for biologics using infrared spectroscopy.
Bee, Jared S; Frey, Vadim V; Javed, Urooj; Chung, Jonathan; Corcoran, Marta L; Roussel, Paul S; Krause, Stephan O; Cash, Patricia W; Bishop, Steven M; Dimitrova, Mariana N.
Afiliação
  • Bee JS; Formulation Sciences, MedImmune, Gaithersburg, MD; jaredsbee@gmail.com.
  • Frey VV; Analytical Biotechnology, MedImmune, Gaithersburg, MD;
  • Javed U; Analytical Biotechnology, MedImmune, Gaithersburg, MD;
  • Chung J; Drug Delivery & Devices, MedImmune, Gaithersburg, MD; and.
  • Corcoran ML; Analytical Biotechnology, MedImmune, Gaithersburg, MD;
  • Roussel PS; Drug Delivery & Devices, MedImmune, Gaithersburg, MD; and.
  • Krause SO; Analytical Biotechnology, MedImmune, Gaithersburg, MD;
  • Cash PW; Analytical Biotechnology, MedImmune, Gaithersburg, MD;
  • Bishop SM; Formulation Sciences, MedImmune, Gaithersburg, MD;
  • Dimitrova MN; Protein Pharmaceutical Development, Biogen Idec Inc., Boston, MA.
PDA J Pharm Sci Technol ; 68(5): 494-503, 2014.
Article em En | MEDLINE | ID: mdl-25336420
Glass prefillable syringes are lubricated with silicone oil to ensure functionality and a consistent injection for the end user. If excessive silicone is applied, droplets could potentially result in aggregation of sensitive biopharmaceuticals or clouding of the solution. Therefore, monitoring and optimization of the applied silicone layer is critical for prefilled syringe development. The hydrophobic properties of silicone oil, the potential for assay interference, and the very small quantities applied to prefilled syringes present a challenge for the development of a suitable assay. In this work we present a rapid and simple Fourier transform infrared (FTIR) spectroscopy method for quantitation of total silicone levels applied to prefilled syringes. Level-dependent silicone oil migration occurred over time for empty prefilled syringes stored tip-up. However, migration from all prefilled syringes with between 0.25 and 0.8 mg of initial silicone oil resulted in a stable limiting minimum level of between 0.15 and 0.26 mg of silicone in the syringe reached after 1 to 4 years of empty tip-up storage. The results of the FTIR assay correlated well with non-destructive reflectometry characterization of the syringes. This assay can provide valuable data for selection of a robust initial silicone oil target and quality control of prefilled syringes intended for biopharmaceuticals. LAY ABSTRACT: Glass prefillable syringes are lubricated with silicone oil to ensure functionality and a consistent injection for the end user. If excessive silicone is applied, droplets could potentially result in aggregation of sensitive biopharmaceuticals or clouding of the solution. Therefore, monitoring and optimization of the applied silicone layer is critical for prefilled syringe development. The hydrophobic properties of silicone oil, the potential for assay interference, and the very small quantities applied to prefilled syringes present a challenge for the development of a suitable assay. In this work we present a rapid and simple Fourier transform infrared (FTIR) spectroscopy method for quantitation of total silicone levels applied to prefilled syringes. Level-dependent silicone oil migration occurred over time for empty prefilled syringes stored tip-up. However, migration from all prefilled syringes with between 0.25 and 0.8 mg of initial silicone oil resulted in a stable limiting minimum level of between 0.15 and 0.26 mg of silicone in the syringe reached after 1 to 4 years of empty tip-up storage. The results of the FTIR assay correlated well with non-destructive reflectometry characterization of the syringes. This assay can provide valuable data for selection of a robust initial silicone oil target and quality control of prefilled syringes intended for biopharmaceuticals.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Seringas / Produtos Biológicos / Biofarmácia / Óleos de Silicone / Contaminação de Medicamentos / Tecnologia Farmacêutica / Espectroscopia de Infravermelho com Transformada de Fourier / Embalagem de Medicamentos / Lubrificantes Idioma: En Ano de publicação: 2014 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Seringas / Produtos Biológicos / Biofarmácia / Óleos de Silicone / Contaminação de Medicamentos / Tecnologia Farmacêutica / Espectroscopia de Infravermelho com Transformada de Fourier / Embalagem de Medicamentos / Lubrificantes Idioma: En Ano de publicação: 2014 Tipo de documento: Article