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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Erythropoietin loaded microspheres prepared from biodegradable LPLG-PEO-LPLG triblock copolymers: protein stabilization and in-vitro release properties
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Erythropoietin loaded microspheres prepared from biodegradable LPLG-PEO-LPLG triblock copolymers: protein stabilization and in-vitro release properties

机译:由可生物降解的LPLG-PEO-LPLG三嵌段共聚物制备的负载促红细胞生成素的微球:蛋白质稳定和体外释放特性

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Biodegradable microspheres containing recombinant human Erythrupoietin (EPO) were prepared from ABA triblock copolymers. consisting of hydrophobic poly(L-lactic-co-glycolic acid) A blocks and hydrophilic polyethylenoxide (PEO) B blocks. Different polymer compositions were studied for the microencapsulation of EPO using a modified double-emulsion process (W/O/W). The encapsulation efficiency for EPO, ranging from 72% to 99% was quite acceptable. The formation of high molecular weight EPO aggregates, however, was higher than in poly(D,L-lactide-co-glycolide) (PLG) microparticles. Using different excipients with known protein stabilizing properties, such as Bovine Serum Albumin (BSA), Poly-L-Histidine (PH), Poly-L-Arginine (PA) or a combination of PA with Dextran 40 (D40), the EPO aggregate content was significantly reduced to <5% of the encapsulated EPO. In contrast to PLG, ABA triblockcopolymers containing >7 mol % PEG, allowed a continuous release of EPO from microspheres for up to 2 weeks under in-vitro conditions. The release profile was comparable to FITC-Dextran 40 kDa (FD 40) loaded microspheres in the initial release phase, while EPO release was leveling off at later time points. BSA additionally prolonged the EPO release, while blends of PLG and PEO did not generate continuous EPO release profiles. LPLG-PEO-LPLG triblock-copolymers (35 mol % PEG; 30 kDa) in combination with 5% BSA yielded both an acceptable level of EPO aggregates and a continuous release profile under in-vitro conditions for up to 2 weeks. The formation of EPO aggregates at later time points is probably induced by acidic cleavage products of the biodegradable polymer and requires further optimization of the ABA polymer composition. (C) 1998 Elsevier Science BN. All rights reserved. [References: 21]
机译:由ABA三嵌段共聚物制备了含有重组人促红细胞生成素(EPO)的可生物降解的微球。由疏水性聚L-乳酸-乙醇酸共聚物A嵌段和亲水性聚环氧乙烷(PEO)B嵌段组成。使用改进的双乳化工艺(W / O / W)研究了不同的聚合物组合物对EPO的微囊化作用。 EPO的封装效率从72%到99%不等。但是,高分子量EPO聚集体的形成要高于聚(D,L-丙交酯-共-乙交酯)(PLG)微粒。使用具有已知蛋白质稳定特性的不同赋形剂,例如牛血清白蛋白(BSA),聚L-组氨酸(PH),聚L-精氨酸(PA)或PA与右旋糖酐40(D40)的组合,EPO聚集体含量显着降低至封装的EPO的<5%。与PLG相比,含有> 7 mol%PEG的ABA三嵌段共聚物允许在体外条件下从微球中连续释放EPO长达2周。在初始释放阶段,释放曲线与装载了FITC-Dextran 40 kDa(FD 40)的微球相当,而EPO释放在随后的时间点趋于平稳。 BSA还可延长EPO的释放,而PLG和PEO的混合物不会产生连续的EPO释放曲线。 LPLG-PEO-LPLG三嵌段共聚物(35摩尔%PEG; 30 kDa)与5%BSA的结合产生了可接受水平的EPO聚集体,并在体外条件下连续释放长达2周。在以后的时间点,EPO聚集体的形成可能是由可生物降解的聚合物的酸性裂解产物引起的,需要进一步优化ABA聚合物的组成。 (C)1998 Elsevier Science BN。版权所有。 [参考:21]

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