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首页> 外文期刊>Journal of biomedical materials research, Part A >Immune Responses in Mice of beta-Galactosidase Adsorbed Or Encapsulated in Poly(lactic Acid) and Poly(lactic-co-Glycolic Acid) Microspheres
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Immune Responses in Mice of beta-Galactosidase Adsorbed Or Encapsulated in Poly(lactic Acid) and Poly(lactic-co-Glycolic Acid) Microspheres

机译:聚(乳酸)和聚(乳酸-乙醇酸)微球吸附或封装的β-半乳糖苷酶对小鼠的免疫反应

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摘要

The immune response induced in mice by beta-ga-lactosidase (beta-gal) adsorbed or encapsulated on poly(lactic acid) (PLA) and poly(lactic-co-glycolic acid) (PLGA) micro-spheres was investigated. The encapsulated protein elicited higher antibody response than the protein adsorbed on the microspheres in the case of the PLA microspheres. However, the encapsulated protein elicited weaker antibody response than the adsorbed protein in the case of the PLGA (50:50) microspheres, probably because, in this case, the encapsulation process adversely affected protein immunogenidty. In the case of adsorbed beta-gal, higher antibody response was obtained with the PLA microspheres than with the PLGA (50:50) microspheres. This may be related to the lower rate of beta-gal desorption from the PLA microspheres. Based on the immunoglobulin Gl/immunoglobulin G2a ratios and the stimulation indices for interferon--gamma and interleukin-4, beta-gal encapsulated or adsorbed on PLA microspheres induced a Th_1-biased immune response whereas beta-gal encapsulated or adsorbed on PLGA (50:50) microspheres induced a Th_2-biased immune response. The results obtained indicate that more potent immune responses are obtained when the protein is encapsulated than adsorbed on the microspheres, providing that the encapsulation process does not adversely affect protein immunogenicity. Also, the type of polymer used to prepare the microspheres, but not the method of protein association with the microspheres, may affect the type of immune response.
机译:研究了由β-半乳糖苷酶(β-gal)吸附或包裹在聚乳酸(PLA)和聚乳酸-乙醇酸(PLGA)微球上引起的小鼠免疫应答。在PLA微球的情况下,包封的蛋白质引起的抗体应答高于微球上吸附的蛋白质。但是,在PLGA(50:50)微球的情况下,封装的蛋白质引起的抗体应答比吸附的蛋白质弱,这可能是因为在这种情况下,封装过程会对蛋白质的免疫原性产生不利影响。在吸附β-gal的情况下,与PLGA(50:50)微球相比,PLA微球获得更高的抗体反应。这可能与PLA微球的β-gal解吸速率较低有关。根据免疫球蛋白G1 /免疫球蛋白G2a的比率以及干扰素-γ和白介素4的刺激指数,包裹或吸附在PLA微球上的β-gal诱导了Th_1偏向的免疫反应,而包裹或吸附在PLGA上的beta-gal(50 :50)微球诱导了Th_2偏向的免疫反应。所获得的结果表明,包封蛋白质时所获得的免疫反应比吸附在微球上的更有力,前提是该包封过程不会对蛋白质的免疫原性产生不利影响。同样,用于制备微球的聚合物的类型(而不是与微球的蛋白质缔合的方法)可能会影响免疫反应的类型。

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