Department of Chemical and Biological Engineering, Iowa State University, Ames, Iowa 50011.
Department of Veterinary Microbiology and Preventive Medicine, Iowa State University, Ames, Iowa 50011.
J Biomed Mater Res B Appl Biomater. 2009 Nov;91(2):938-947. doi: 10.1002/jbm.b.31478.
The release kinetics and stability of ovalbumin encapsulated into polyanhydride microspheres with varying chemistries were studied. Polymers based on the anhydride monomers sebacic acid (SA), 1,6-bis(p-carboxyphenoxy)hexane (CPH), and 1,8-bis (p-carboxyphenoxy)-3,6-dioxaoctane (CPTEG) were utilized. Microspheres were fabricated using two non-aqueous methods: a solid/oil/oil double emulsion technique and cryogenic atomization. The studies showed that the two fabrication methods did not significantly affect the release kinetics of ovalbumin, even though the burst release of the protein was a function of the fabrication method and the polymer chemistry. Antigenic stability of ovalbumin released from microspheres prepared by cryogenic atomization was studied by western blot analysis. These studies indicate that the amphiphilic CPTEG:CPH polyanhydrides preserved protein structure and enhanced protein stability by preserving the immunological epitopes of released protein.
研究了不同化学性质的聚酸酐微球包封卵清蛋白的释放动力学和稳定性。使用了基于酸酐单体癸二酸(SA)、1,6-双(对羧基苯氧基)己烷(CPH)和 1,8-双(对羧基苯氧基)-3,6-二氧辛烷(CPTEG)的聚合物。微球采用两种非水方法制备:固/油/油双乳液技术和低温雾化。研究表明,两种制备方法对卵清蛋白的释放动力学没有显著影响,尽管蛋白质的突释是制备方法和聚合物化学性质的函数。通过 Western blot 分析研究了由低温雾化制备的微球中释放的卵清蛋白的抗原稳定性。这些研究表明,亲脂性 CPTEG:CPH 聚酸酐通过保留释放蛋白的免疫表位来保持蛋白结构并增强蛋白稳定性。