Author/Authors :
Khodabakhsh, Farnaz Department of Genetics and Advanced Medical Technology - Medical Biotechnology Research Center - Faculty of Medicine - AJA University of Medical Sciences - Tehran, Iran , Salimian, Morteza Department of Medical Laboratory - Kashan University of Medical Sciences - Kashan, Iran , Ziaee, Pardis Department of Biology - Central Tehran Branch - Islamic Azad University - Tehran, Iran , Kazemi-Lomedasht, Fatemeh Department of Biotechnology - Venom and Biotherapeutics Molecules Laboratory - Biotechnology Research Center - Pasteur Institute of Iran - Tehran, Iran , Behdani, Mahdi Department of Biotechnology - Venom and Biotherapeutics Molecules Laboratory - Biotechnology Research Center - Pasteur Institute of Iran - Tehran, Iran , Ahangari Cohan, Reza Department of Nanobiotechnology - New Technologies Research Group - Pasteur Institute of Iran - Tehran, Iran
Abstract :
Inhibition of angiogenesis using monoclonal antibodies is an effective
strategy in cancer therapy. However, they could not penetrate sufficiently into solid
tumors. Antibody fragments have solved this issue. However, they suffer from short in
vivo half-life. In the current study, a tandem bivalent strategy was used to enhance
the pharmacokinetic parameters of an anti-VEGF165 nanobody.
Methods: Homology modeling and MD simulation were used to check the stability of
protein. The cDNA was cloned into pHEN6C vector and the expression was investigated
in WK6 Escherichia coli (E. coli) cells by SDS-PAGE and western blot. After purification,
the size distribution of tandem bivalent nanobody was investigated by dynamic
light scattering. Moreover, in vitro antiproliferative activity and pharmacokinetic
study were studied in HUVECs and Balb/c mice, respectively.
Results: RMSD analysis revealed the tandem bivalent nanobody had good structural
stability after 50 ns of simulation. A hinge region of llama IgG2 was used to fuse the
domains. The expression was induced by 1 mM IPTG at 25°C for overnight. A 30 kDa
band in 12% polyacrylamide gel and nitrocellulose paper has confirmed the expression.
The protein was successfully purified using metal affinity chromatography. MTT
assay revealed there is no significant difference between the antiproliferative activity
of tandem bivalent nanobody and the native protein. The hydrodynamic radius and
terminal half-life of tandem bivalent nanobody increased approximately 2-fold by
multivalency compared to the native protein.
Conclusion: Our data revealed that the physicochemical as well as in vivo pharmacokinetic
parameters of tandem bivalent nanobody was significantly improved.
Keywords :
Vascular endothelial growth factor , Cancer , Pharmacokinetics , Single domain antibody