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基于丙交酯聚合物和聚乙二醇共混物的可生物降解微粒中包裹的蛋白质抗原的稳定性和免疫原性。

The stability and immunogenicity of a protein antigen encapsulated in biodegradable microparticles based on blends of lactide polymers and polyethylene glycol.

作者信息

Lavelle E C, Yeh M K, Coombes A G, Davis S S

机构信息

Department of Pharmaceutical Sciences, University of Nottingham, UK.

出版信息

Vaccine. 1999 Feb 12;17(6):512-29. doi: 10.1016/s0264-410x(98)00229-1.

Abstract

Protein-loaded microparticles were produced from blends of poly(ethylene glycol) (PEG) with poly(L-lactide) (PLA) homopolymer or poly(DL-lactide co-glycolide) copolymers (PLG) using a water-in oil-in oil method. The stability of ovalbumin (OVA) associated with microparticles prepared using PEG and 50:50 PLG, 75:25 PLG and PLA, respectively, was analysed by SDS-PAGE and quantified by scanning densitometry following incubation in PBS at 37 degrees C for up to 1 month. Fragmentation and aggregation of OVA was detected with all 3 formulations. The extent of both processes correlated with the degradation rate of the lactide polymer used and decreased in the order PLA < 75:25 PLG < 50:50 PLG. Extensive degradation of the PLG/PEG microparticles also occurred over 4 weeks whereas the use of PLA/PEG blends resulted in a stable microparticle morphology and much reduced fragmentation and aggregation of the associated protein. Following a single sub-cutaneous immunisation, high levels of specific serum IgG antibody were elicited by OVA associated with the PLA/PEG particles. Injection of OVA associated with the 75:25 PLG/PEG microparticles resulted in very low levels of specific antibody. A higher response was induced by the 50:50 PLG/PEG formulation but there was very large inter-animal variation in this group. Antibody levels elicited by all 3 formulations were significantly higher than those elicited by a single injection of soluble OVA. Analysis of antigen specific IgG1 and IgG2a antibody subtype levels also revealed the greater efficacy of the PLA/PEG microparticles as an adjuvant system. The use of PLA/PEG microparticles shows improved protein loading and delivery capacity while maintaining a high level of stability of the associated protein. These results indicate a strong correlation between the stability of microencapsulated antigen and the magnitude of the immune response following sub-cutaneous immunisation.

摘要

采用油包水再包油法,由聚乙二醇(PEG)与聚-L-丙交酯(PLA)均聚物或聚(DL-丙交酯-共-乙交酯)共聚物(PLG)的共混物制备了载蛋白微粒。分别使用PEG与50:50 PLG、75:25 PLG和PLA制备的微粒结合的卵清蛋白(OVA)的稳定性,通过SDS-PAGE进行分析,并在37℃的PBS中孵育长达1个月后,通过扫描光密度法进行定量。在所有3种制剂中均检测到OVA的片段化和聚集。这两个过程的程度与所用丙交酯聚合物的降解速率相关,并且按PLA < 75:25 PLG < 50:50 PLG的顺序降低。PLG/PEG微粒在4周内也发生了广泛降解,而使用PLA/PEG共混物则导致微粒形态稳定,相关蛋白质的片段化和聚集大大减少。单次皮下免疫后,与PLA/PEG颗粒结合的OVA引发了高水平的特异性血清IgG抗体。注射与75:25 PLG/PEG微粒结合的OVA导致特异性抗体水平非常低。50:50 PLG/PEG制剂诱导了更高的反应,但该组动物之间存在非常大的差异。所有3种制剂引发的抗体水平均显著高于单次注射可溶性OVA引发的抗体水平。对抗原特异性IgG1和IgG2a抗体亚型水平的分析也揭示了PLA/PEG微粒作为佐剂系统的更大功效。使用PLA/PEG微粒显示出改善的蛋白质负载和递送能力,同时保持相关蛋白质的高水平稳定性。这些结果表明微囊化抗原的稳定性与皮下免疫后免疫反应的强度之间存在很强的相关性。

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