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从可注射水凝胶中释放抗体的置换亲和力。

Displacement Affinity Release of Antibodies from Injectable Hydrogels.

出版信息

ACS Appl Mater Interfaces. 2019 Aug 28;11(34):30648-30660. doi: 10.1021/acsami.9b12572. Epub 2019 Aug 16.

DOI:10.1021/acsami.9b12572
PMID:31381850
Abstract

Current methods to tune release rates of therapeutic antibodies (Abs) for local delivery are complex and routinely require bioconjugations that may reduce Ab bioactivity. To rapidly tune release profiles of bioactive Abs, we developed a biophysical interaction system within a neutravidin modified poly(carboxybetaine) hydrogel (pCB-NT) that tunes release rates of desthiobiotinylated Abs (D-Abs) using a constant hydrogel and D-Ab combination. Herein, we delivered desthiobiotinylated bevacizumab (D-Bv), a recombinant humanized monoclonal IgG1 Ab for antiangiogenic cancer therapies. D-Bv's high affinity for pCB-NT ( 7.8 × 10 M; ∼ 2 h) produces a slow D-Bv release rate (∼5 ng day) that is increased by the dissolution of hydrogel encapsulated biotin derivative pellets, which displaces D-Bv from pCB-NT binding sites. In contrast to traditional affinity systems, displacement affinity release of Abs (DARA) does not require Ab or hydrogel modifications for each unique release rate. D-Bv release rates were tuned by simply altering the total biotin derivative concentration; the effective first-order () and mass per day release rates were tuned 25- and 8-fold, respectively. Local surface plasmon resonance (LSPR) and biolayer interferometry (BLI) confirmed the D-Bv binding affinity for the corresponding ligand and Fc receptor, demonstrating that the biophysical interaction system is amenable to anticancer Abs for receptor or cytokine blockade and immune cell recruitment to cancer cells.

摘要

当前调节治疗性抗体(Abs)局部递释释放率的方法较为复杂,通常需要生物共轭,这可能会降低 Ab 的生物活性。为了快速调节具有生物活性的 Abs 的释放特性,我们在一个经中性亲和素修饰的聚(羧基甜菜碱)水凝胶(pCB-NT)内开发了一种生物物理相互作用系统,该系统使用恒定的水凝胶和 D-Ab 组合来调节去硫生物素化 Abs(D-Abs)的释放率。在此,我们递送了去硫生物素化贝伐珠单抗(D-Bv),一种用于抗血管生成癌症治疗的重组人源化单克隆 IgG1 Ab。D-Bv 与 pCB-NT 具有高亲和力(7.8×10^M;2 h),导致 D-Bv 的释放速率较慢(5 ng/day),当水凝胶包封的生物素衍生物颗粒溶解时,释放速率会增加,从而将 D-Bv 从 pCB-NT 结合位点上置换出来。与传统的亲和力系统不同,Abs 的置换亲和力释放(DARA)不需要为每个独特的释放速率对 Ab 或水凝胶进行修饰。通过简单改变生物素衍生物的总浓度即可调节 D-Bv 的释放速率;有效一级动力学()和每天的释放速率分别调节了 25 倍和 8 倍。局部表面等离子体共振(LSPR)和生物层干涉(BLI)证实了 D-Bv 与相应配体和 Fc 受体的结合亲和力,表明该生物物理相互作用系统适用于用于受体或细胞因子阻断以及免疫细胞募集到癌细胞的抗癌 Abs。

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