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Extended release microparticle-in-gel formulation of octreotide: Effect of polymer type on acylation of peptide during in vitro release

机译:奥曲肽的凝胶微粒缓释制剂:体外释放过程中聚合物类型对肽酰化的影响

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Polymeric microparticles (MPs)-in-gel formulations for extended delivery of octreotide were developed. We investigated influence of polymer composition on acylation of octreotide and kinetics of release during in vitro release from biodegradable polymeric formulations. Polycaprolactone (PCL), polylactic acid (PLA), polyglycolic acid (PGA) and polyethylene glycol (PEG) based triblock (TB approximate to PCL10k-PEG(2k)-PCL10k) and pentablock (PBA approximate to PLA(3k)-PCL7k-PEG(2k)-PCL7k-PLA(3k) and PBB approximate to PGA(3k)-PCL7k-PEG(2k)-PCL7k-PGA(3k)) polymers were investigated. Octreotide was encapsulated in MPs using methanol-oil/water emulsion solvent evaporation method. The particles were characterized for size, morphology, encapsulation efficiency, drug loading and in vitro release. Release samples were subjected to HPLC analysis for quantitation and HPLC-MS analysis for identification of native and chemically modified octreotide adducts. Entrapment efficiency of methanol-oil/water method with TB, PBA and PBB polymers were 45%, 60%, and 82%, respectively. A significant fraction of released octreotide was acylated from lactide and glycolide based PBA (53%) and PBB (92%) polymers. Substantial amount of peptide was not released from PBB polymers after 330 days of incubation. Complete release of octreotide was achieved from TB polymer over a period of 3 months with minimal acylation of peptide (13%). PCL based polymers resulted in minimal acylation of peptide and hence may be suitable for extended peptide and protein delivery. Conversely, polymers having PLA and PGA blocks may not be appropriate for peptide delivery due to acylation and incomplete release. (C) 2015 Elsevier B.V. All rights reserved.
机译:开发了用于延长递送奥曲肽的凝胶状聚合物微粒(MPs)。我们调查了聚合物组成对奥曲肽酰化和体外可生物降解聚合物配方释放过程中释放动力学的影响。聚己内酯(PCL),聚乳酸(PLA),聚乙醇酸(PGA)和基于聚乙二醇(PEG)的三嵌段(TB近似于PCL10k-PEG(2k)-PCL10k)和五嵌段(PBA近似于PLA(3k)-PCL7k-对PEG(2k)-PCL7k-PLA(3k)和PBB近似于PGA(3k)-PCL7k-PEG(2k)-PCL7k-PGA(3k))聚合物进行了研究。使用甲醇-油/水乳液溶剂蒸发法将奥曲肽包裹在MP中。表征颗粒的大小,形态,包封效率,载药量和体外释放。对释放样品进行HPLC分析以进行定量分析,并进行HPLC-MS分析以鉴定天然和化学修饰的奥曲肽加合物。 TB,PBA和PBB聚合物对甲醇-油/水方法的截留效率分别为45%,60%和82%。从基于丙交酯和乙交酯的PBA(53%)和PBB(92%)聚合物中,很大一部分释放的奥曲肽被酰化。孵育330天后,没有从PBB聚合物中释放出大量肽。在3个月的时间内,从TB聚合物中完全释放出奥曲肽,而肽的酰化作用最小(13%)。基于PCL的聚合物可将肽的酰化作用降至最低,因此可能适用于延长的肽和蛋白质递送。相反,由于酰化和不完全释放,具有PLA和PGA嵌段的聚合物可能不适用于肽递送。 (C)2015 Elsevier B.V.保留所有权利。

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