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In Vitro Characterization and Stability Profiles of Antibody–Fluorophore Conjugates Derived from Interchain Cysteine Cross-Linking or Lysine Bioconjugation

机译:源自链间半胱氨酸交联或赖氨酸生物缀合的抗体-荧光团缀合物的体外表征和稳定性概况

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摘要

Fluorescent labelling of monoclonal antibodies (mAbs) is classically performed by chemical bioconjugation methods. The most frequent labelling technique to generate antibody–fluorophore conjugates (AFCs) involves the bioconjugation onto the mAb lysines of a dye bearing an -hydroxysuccinimide ester or an isothiocyanate group. However, discrepancies between labelling experiments or kits can be observed, related to reproducibility issues, alteration of antigen binding, or mAb properties. The lack of information on labelling kits and the incomplete characterization of the obtained labelled mAbs largely contribute to these issues. In this work, we generated eight AFCs through either lysine or interchain cysteine cross-linking bioconjugation of green-emitting fluorophores (fluorescein or BODIPY) onto either trastuzumab or rituximab. This strategy allowed us to study the influence of fluorophore solubility, bioconjugation technology, and antibody nature on two known labelling procedures. The structures of these AFCs were thoroughly analyzed by mass spectroscopy, and their antigen binding properties were studied. We then compared these AFCs in vitro by studying their respective spectral properties and stabilities. The shelf stability profiles and sensibility to pH variation of these AFCs prove to be dye-, antibody- and labelling-technology-dependent. Fluorescence emission in AFCs was higher when lysine labelling was used, but cross-linked AFCs were revealed to be more stable. This must be taken into account for the design of any biological study involving antibody labelling.
机译:单克隆抗体(mAb)的荧光标记通常通过化学生物缀合方法进行。产生抗体-荧光团偶联物(AFC)的最常用标记技术涉及带有-羟基琥珀酰亚胺酯或异硫氰酸酯基团的染料在mAb赖氨酸上的生物偶联。但是,可以观察到标记实验或试剂盒之间的差异,这与可再现性问题,抗原结合的改变或mAb特性有关。缺少有关标记试剂盒的信息以及所获得的标记mAb的不完全表征在很大程度上造成了这些问题。在这项工作中,我们通过绿色发光荧光团(荧光素或BODIPY)的赖氨酸或链间半胱氨酸交联生物缀合在曲妥珠单抗或利妥昔单抗上产生了8种AFC。该策略使我们能够研究荧光团溶解度,生物缀合技术和抗体性质对两种已知标记程序的影响。通过质谱对这些AFC的结构进行了彻底分析,并研究了它们的抗原结合特性。然后,我们通过研究它们各自的光谱特性和稳定性,在体外比较了这些AFC。这些AFC的货架稳定性和对pH值变化的敏感性证明是依赖于染料,抗体和标记技术的。当使用赖氨酸标记时,AFC中的荧光发射较高,但是显示出交联的AFC更稳定。任何涉及抗体标记的生物学研究的设计都必须考虑到这一点。

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