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Hybrid Vesicle Stability under Sterilisation and Preservation Processes Used in the Manufacture of Medicinal Formulations

机译:药用制剂生产中杀菌和保存过程中的混合囊泡稳定性

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摘要

Sterilisation and preservation of vesicle formulations are important considerations for their viable manufacture for industry applications, particular those intended for medicinal use. Here, we undertake an initial investigation of the stability of hybrid lipid-block copolymer vesicles to common sterilisation and preservation processes, with particular interest in how the block copolymer component might tune vesicle stability. We investigate two sizes of polybutadiene- -poly(ethylene oxide) polymers (PBd -PEO and PBd -PEO ) mixed with the phospholipid 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC) considering the encapsulation stability of a fluorescent cargo and the colloidal stability of vesicle size distributions. We find that autoclaving and lyophilisation cause complete loss of encapsulation stability under the conditions studied here. Filtering through 200 nm pores appears to be viable for sterilisation for all vesicle compositions with comparatively low release of encapsulated cargo, even for vesicle size distributions which extend beyond the 200 nm filter pore size. Freeze-thaw of vesicles also shows promise for the preservation of hybrid vesicles with high block copolymer content. We discuss the process stability of hybrid vesicles in terms of the complex mechanical interplay between bending resistance, stretching elasticity and lysis strain of these membranes and propose strategies for future work to further enhance the process stability of these vesicle formulations.
机译:囊泡制剂的灭菌和保存对于它们在工业上的应用,特别是用于医药用途的可行的制造是重要的考虑因素。在这里,我们对杂种脂质-嵌段共聚物囊泡对常见的灭菌和保存过程的稳定性进行了初步研究,尤其关注嵌段共聚物组分如何调节囊泡稳定性。我们研究了两种尺寸的聚丁二烯-聚环氧乙烷聚合物(PBd -PEO和PBd -PEO)与磷脂1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine(POPC)混合在一起的情况荧光货物和胶体稳定性的囊泡大小分布。我们发现,在此处研究的条件下,高压灭菌和冻干会完全丧失封装稳定性。通过200nm的孔进行过滤对于所有囊泡组合物的灭菌似乎是可行的,其中囊封的货物的释放相对较低,即使对于囊泡尺寸分布超过200nm的过滤器孔径也是如此。囊泡的冻融也显示出保存具有高嵌段共聚物含量的混合囊泡的希望。我们根据这些膜的抗弯曲性,拉伸弹性和裂解应变之间的复杂机械相互作用,讨论了混合囊泡的工艺稳定性,并提出了进一步提高这些囊泡配方的工艺稳定性的策略。

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