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单链可变区抗体片段作为细胞毒性纳米颗粒靶向配体的全面优化

Comprehensive optimization of a single-chain variable domain antibody fragment as a targeting ligand for a cytotoxic nanoparticle.

作者信息

Zhang Kathy, Geddie Melissa L, Kohli Neeraj, Kornaga Tad, Kirpotin Dmitri B, Jiao Yang, Rennard Rachel, Drummond Daryl C, Nielsen Ulrik B, Xu Lihui, Lugovskoy Alexey A

机构信息

a Merrimack Pharmaceuticals, Inc. ; Cambridge , MA USA.

出版信息

MAbs. 2015;7(1):42-52. doi: 10.4161/19420862.2014.985933.

Abstract

Antibody-targeted nanoparticles have the potential to significantly increase the therapeutic index of cytotoxic anti-cancer therapies by directing them to tumor cells. Using antibodies or their fragments requires careful engineering because multiple parameters, including affinity, internalization rate and stability, all need to be optimized. Here, we present a case study of the iterative engineering of a single chain variable fragment (scFv) for use as a targeting arm of a liposomal cytotoxic nanoparticle. We describe the effect of the orientation of variable domains, the length and composition of the interdomain protein linker that connects VH and VL, and stabilizing mutations in both the framework and complementarity-determining regions (CDRs) on the molecular properties of the scFv. We show that variable domain orientation can alter cross-reactivity to murine antigen while maintaining affinity to the human antigen. We demonstrate that tyrosine residues in the CDRs make diverse contributions to the binding affinity and biophysical properties, and that replacement of non-essential tyrosines can improve the stability and bioactivity of the scFv. Our studies demonstrate that a comprehensive engineering strategy may be required to identify a scFv with optimal characteristics for nanoparticle targeting.

摘要

抗体靶向纳米颗粒有潜力通过将细胞毒性抗癌疗法导向肿瘤细胞来显著提高其治疗指数。使用抗体或其片段需要精心设计,因为包括亲和力、内化速率和稳定性在内的多个参数都需要优化。在此,我们展示了一个关于单链可变片段(scFv)迭代工程的案例研究,该scFv用作脂质体细胞毒性纳米颗粒的靶向臂。我们描述了可变结构域的方向、连接VH和VL的结构域间蛋白质接头的长度和组成,以及框架区和互补决定区(CDR)中的稳定突变对scFv分子特性的影响。我们表明可变结构域方向可改变对鼠源抗原的交叉反应性,同时保持对人源抗原的亲和力。我们证明CDR中的酪氨酸残基对结合亲和力和生物物理特性有不同贡献,并且替换非必需酪氨酸可提高scFv的稳定性和生物活性。我们的研究表明,可能需要一种全面的工程策略来鉴定具有纳米颗粒靶向最佳特性的scFv。

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