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Stimulus-Responsive Delivery Systems for Enabling the Oral Delivery of Protein Therapeutics Exhibiting High Isoelectric Point.

机译:刺激响应的传递系统,可实现具有高等电点的蛋白质治疗药物的口服传递。

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摘要

Protein therapeutics offer numerous advantages over small molecule drugs and are rapidly becoming one of the most prominent classes of therapeutics. Unfortunately, they are delivered almost exclusively by injection due to biological obstacles preventing high bioavailability via the oral route. In this work, numerous approaches to overcoming these barriers are explored.;pH-Responsive poly(itaconic acid-co-N-vinylpyrrolidone) (P(IA-co-NVP)) hydrogels were synthesized, and the effects of monomer ratios, crosslinking density, microparticle size, protein size, and loading conditions were systematically evaluated using in vitro tests. P(IA-co-NVP) hydrogels demonstrated up to 69% greater equilibrium swelling at neutral conditions than previously-studied poly(methacrylic acidco- N-vinylpyrrolidone) hydrogels and a 10-fold improvement in time-sensitive swelling experiments. Furthermore, P(IA-co-NVP) hydrogel microparticles demonstrated up to a 2.7-fold improvement in delivery of salmon calcitonin (sCT) compared to methacrylic acid-based systems, with a formulation comprised of a 1:2 ratio of itaconic acid to Nvinylpyrrolidone demonstrating the greatest delivery capability.;Vast improvement in delivery capability was achieved using reduced ionic strength conditions during drug loading. Use of a 1.50 mM PBS buffer during loading yielded an 83-fold improvement in delivery of sCT compared to a standard 150 mM buffer. With this improvement, a daily dose of sCT could be provided using P(IA-co- NVP) microparticles in one standard-sized gel capsule. P(IA-co-NVP) was also tested with larger proteins urokinase and Rituxan. Crosslinking density provided a facile method for tuning hydrogels to accommodate a wide range of protein sizes.;The effects of protein PEGylation were also explored. PEGylated sCT displayed lower release from P(IA-co-NVP) microparticles, but displayed increased apparent permeability across a Caco-2 monolayer by two orders of magnitude. Therefore, PEGcontaining systems could yield high bioavailability of orally delivered proteins.;Finally, a modified SELEX protocol for cellular selection of transcellular transport-initiating aptamers was developed and used to identify aptamer sequences showing enhanced intestinal perfusion. Over three selection cycles, the selected aptamer library showed significant increases in absorption, and from an initial library of 1.1 trillion sequences, 5-10 sequences were selected that demonstrated up to 10-fold amplification compared to the naive library. These sequences could provide a means of overcoming the significant final barrier of intestinal absorption.
机译:与小分子药物相比,蛋白质治疗剂具有许多优势,并且正迅速成为治疗剂中最突出的类别之一。不幸的是,由于生物学障碍,它们几乎只能通过注射来递送,从而阻止了通过口服途径的高生物利用率。在这项工作中,探索了克服这些障碍的许多方法。合成了pH响应型聚衣康酸-co-N-乙烯基吡咯烷酮(P(IA-co-NVP))水凝胶,并考察了单体比例,交联的影响使用体外测试系统地评估了密度,微粒大小,蛋白质大小和负载条件。 P(IA-co-NVP)水凝胶在中性条件下的平衡溶胀比以前研究的聚(甲基丙烯酸-N-乙烯基吡咯烷酮)水凝胶高69%,并且对时间敏感的溶胀实验提高了10倍。此外,与基于甲基丙烯酸的系统相比,P(IA-co-NVP)水凝胶微粒的鲑鱼降钙素(sCT)递送性能提高了2.7倍,其中衣康酸与乙烯基吡咯烷酮显示出最大的传递能力。;在药物加载过程中,通过降低离子强度条件,实现了传递能力的极大提高。与标准150 mM缓冲液相比,在加载过程中使用1.50 mM PBS缓冲液可提高sCT的传递83倍。通过这种改进,可以在一个标准尺寸的凝胶胶囊中使用P(IA-co-NVP)微粒提供sCT的日剂量。 P(IA-co-NVP)也用较大的蛋白尿激酶和Rituxan进行了测试。交联密度为调节水凝胶以适应各种蛋白质大小提供了一种简便的方法。;还探讨了蛋白质聚乙二醇化的作用。聚乙二醇化的sCT从P(IA-co-NVP)微粒释放的释放量较低,但在整个Caco-2单层上的表观渗透性却增加了两个数量级。因此,含PEG的系统可产生口服递送的蛋白质的高生物利用度。最后,开发了一种用于细胞选择跨细胞转运起始适体的改良SELEX方案,并用于鉴定显示增强的肠灌注的适体序列。在三个选择周期中,所选的适体文库显示出吸收的显着增加,并且从1.1万亿个序列的初始文库中,选择了5-10个序列,这些序列显示的扩增倍增至朴素库。这些序列可以提供克服肠道吸收的重大最终障碍的手段。

著录项

  • 作者

    Koetting, Michael Clinton.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Chemical engineering.;Biomedical engineering.;Pharmaceutical sciences.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 255 p.
  • 总页数 255
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:20

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