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Impact of single-chain Fv antibody fragment affinity on nanoparticle targeting of epidermal growth factor receptor-expressing tumor cells
Authors:Zhou Yu  Drummond Daryl C  Zou Hao  Hayes Mark E  Adams Gregory P  Kirpotin Dmitri B  Marks James D
Institution:Department of Anesthesia and Pharmaceutical Chemistry, University of California, San Francisco Rm 3C-38, San Francisco General Hospital, 1001 Potrero Ave, San Francisco, CA 94110, USA.
Abstract:To determine the importance of single-chain Fv (scFv) affinity on binding, uptake, and cytotoxicity of tumor-targeting nanoparticles, the affinity of the epidermal growth factor receptor (EGFR) scFv antibody C10 was increased using molecular evolution and yeast display. A library containing scFv mutants was created by error-prone PCR, displayed on the surface of yeast, and higher affinity clones selected by fluorescence activated cell sorting. Ten mutant scFv were identified that had a 3-18-fold improvement in affinity (KD=15-88 nM) for EGFR-expressing A431 tumor cells compared to C10 scFv (KD=264 nM). By combining mutations, higher affinity scFv were generated with KD ranging from 0.9 nM to 10 nM. The highest affinity scFv had a 280-fold higher affinity compared to that of the parental C10 scFv. Immunoliposome nanoparticles (ILs) were prepared using EGFR scFv with a 280-fold range of affinities, and their binding and uptake into EGFR-expressing tumor cells was quantified. At scFv densities greater than 148 scFv/IL, there was no effect of scFv affinity on IL binding and uptake into tumor cells, or on cytotoxicity. At lower scFv densities, there was less uptake and binding for ILs constructed from the very low affinity C10 scFv. The results show the importance of antibody fragment density on nanoparticle uptake, and suggest that engineering ultrahigh affinity scFv may be unnecessary for optimal nanoparticle targeting.
Keywords:CDR  complementarity-determining region  DiIC18(3)-DS  1  1′-dioctadecyl-3  3  3′  3′-tetramethylindocarbocyanine-5  5′-disulfonic acid  DSPC  1  2-distearoyl-sn-glycero-3-phosphocholine  ECD  extracellular domain  EGF  epidermal growth factor  EGFR  epidermal growth factor receptor  FACS  fluorescent-activated cell sorting  Fc  crystallizable fragment  IC50  ligand value resulting in 50% inhibition of binding or uptake  IgG  immunoglobulin G  IL  immunoliposome  ILs-Dox  immunoliposomal doxorubicin  ILs-TPT  immunoliposomal topotecan  Mal-PEG-DSPE  β-(N-maleimido)propionyl poly(ethylene glycol)-1  2-distearoyl-3-sn-phosphoethanolamine  nLs-TPT  nanoliposomal topotecan  PE  phycoerythrin  PEG  poly(ethylene glycol)  PEG-DSPE  N-(polyethylene glycol)distearoylphosphatidylethanolamine  scFv  single-chain Fv  TEA8SOS  triethylammonium sucroseoctasulfate
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