首页> 外文学位 >The Impact of Monomer Sequence and Stereochemistry on the Bulk Properties of Repeating Sequence Poly(Lactic-co-Glycolic Acid) Matrices.
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The Impact of Monomer Sequence and Stereochemistry on the Bulk Properties of Repeating Sequence Poly(Lactic-co-Glycolic Acid) Matrices.

机译:单体序列和立体化学对重复序列聚乳酸-乙醇酸共聚物基质本体性能的影响。

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摘要

Poly(lactic-co-glycolic acid) (PLGA)-based biodegradable materials have attracted considerable interest in the field of bioengineering due to their biocompatibility, FDA approval and tunable physico-chemical properties. Current methods for tuning the properties of PLGAs for a specific therapeutic application are, however, limited to changing the monomeric ratio and stereochemistry of cyclic diesters prior to ring-opening polymerization (ROP), a reaction that produces an unsequenced random copolymer. To understand how sequence, both structural and stereochemical, can be exploited to tune PLGA properties for specific applications, copolymers bearing periodic repeating sequences of lactic and glycolic acid were prepared using segmer assembly polymerization (SAP), an approach for controlling the sequence and stereochemistry within PLGA. A series of sequenced PLGAs were prepared, fabricated into various therapeutic devices, and characterized both in their initial states and after exposure to physiological conditions to promote hydrolytic degradation. Changes in sequence, stereochemistry, and monomeric ratios were shown to have a profound effect on such properties as in vitro erosion, swelling, compressive modulus, ultimate compressive stress, internal morphology, and crystallinity in implantable pellets. Data acquired from thermal analysis, gel permeation chromatography, and proton nuclear magnetic resonance established that the onset of molecular weight loss and oligomer formation via hydrolytic cleavage may be delayed based on backbone sequence. Two-photon microscopy studies of PLGA microparticles dramatically illustrate the profound influence of backbone sequence on the hydrolysis profile and development of the internal acidic microclimate. Sequenced PLGA microparticles were found to maintain their initial internal pH over a 28 d time period compared to their random analogues. These results were confirmed by evaluating the in vivo foreign body response to subcutaneous microparticle injections. After 28 d in vivo, the alternating stereopure PLGA, poly LG, had minimal giant cell infiltrate compared to the commonly used random analogue, PDLGA-50. These discoveries establish a greater understanding of the role of sequence in controlling properties for bioengineering applications in addition to providing valuable insight into the preferential hydrolysis mechanism of sequenced PLGAs.
机译:基于聚乳酸-乙醇酸(PLGA)的生物可降解材料因其生物相容性,FDA批准和可调节的理化特性而在生物工程领域引起了相当大的兴趣。然而,目前用于调节特定治疗应用的PLGAs性能的方法仅限于在开环聚合(ROP)之前改变环状二酯的单体比率和立体化学,ROP是一种产生无序无规共聚物的反应。为了理解如何利用序列,结构和立体化学来调节PLGA特性以用于特定应用,使用segmer组装聚合(SAP)制备了具有乳酸和乙醇酸周期性重复序列的共聚物,这是一种控制序列和立体化学的方法PLGA。制备了一系列测序的PLGA,组装成各种治疗装置,并在其初始状态和暴露于生理条件以促进水解降解后进行了表征。序列,立体化学和单体比率的变化显示出对诸如体外侵蚀,溶胀,压缩模量,最终压缩应力,内部形态和可植入丸剂的结晶度等性质具有深远影响。从热分析,凝胶渗透色谱和质子核磁共振获得的数据确定,基于骨架序列,可以延迟分子量损失和通过水解裂解形成低聚物的时间。 PLGA微粒的双光子显微镜研究显着说明了骨架序列对水解曲线和内部酸性微气候发展的深远影响。发现测序的PLGA微粒与其随机类似物相比,在28 d的时间内可保持其初始内部pH值。通过评估体内对皮下微粒注射的异物应答,证实了这些结果。体内28天后,与通常使用的随机类似物PDLGA-50相比,交替的立体纯PLGA(聚LG)具有最小的巨细胞浸润。这些发现除了对序列化PLGA的优先水解机制提供了有价值的见解之外,还建立了对序列在控制生物工程应用特性中作用的更好理解。

著录项

  • 作者

    Washington, Michael Andrew.;

  • 作者单位

    University of Pittsburgh.;

  • 授予单位 University of Pittsburgh.;
  • 学科 Chemistry.;Biomedical engineering.;Polymer chemistry.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 221 p.
  • 总页数 221
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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