A novel immuno-gold labeling protocol for nanobody-based detection of HER2 in breast cancer cells using immuno-electron microscopy

Publication date

2017-07

Authors

Kijanka, Marta MISNI 0000000393972898
van Donselaar, E G
Muller, WallyISNI 0000000388208596
Dorresteijn, B.ISNI 000000041943997X
Popov-Celeketic, DusanISNI 0000000019884361
el Khattabi, MohamedISNI 0000000388411500
Verrips, Cornelis TheodorusISNI 0000000395217060
van Bergen En Henegouwen, Paul M PORCID 0000-0001-6050-9042ISNI 0000000387765753
Post, Jan AndriesISNI 0000000387159446

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Article
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Abstract

Immuno-electron microscopy is commonly performed with the use of antibodies. In the last decade the antibody fragment indicated as nanobody (VHH or single domain antibody) has found its way to different applications previously done with conventional antibodies. Nanobodies can be selected to bind with high affinity and specificity to different antigens. They are small (molecular weight ca. 15kDa) and are usually easy to produce in microorganisms. Here we have evaluated the feasibility of a nanobody binding to HER2 for application in immuno-electron microscopy. To obtain highest labeling efficiency combined with optimal specificity, different labeling conditions were analysed, which included nanobody concentration, fixation and blocking conditions. The obtained optimal protocol was applied for post-embedment labeling of Tokuyasu cryosections and for pre-embedment labeling of HER2 for fluorescence microscopy and both transmission and scanning electron microscopy. We show that formaldehyde fixation after incubation with the anti-HER2 nanobody, improves labeling intensity. Among all tested blocking agents the best results were obtained with a mixture of cold water fish gelatine and acetylated bovine serum albumin, which prevented a-specific interactions causing background labeling while preserving specific interactions at the same time. In conclusion, we have developed a nanobody-based protocol for immuno-gold labeling of HER2 for Tokuyasu cryosections in TEM as well as for pre-embedment gold labeling of cells for both TEM and SEM.

Keywords

Nanobody, VHH, HER2, Light microscopy, Electron microscopy, SEM, TEM, SDG 3 - Good Health and Well-being

Citation

Kijanka, M, van Donselaar, E G, Müller, W H, Dorresteijn, B, Popov-Celeketic, D, El Khattabi, M, Verrips, C T, van Bergen En Henegouwen, P M P & Post, J A 2017, 'A novel immuno-gold labeling protocol for nanobody-based detection of HER2 in breast cancer cells using immuno-electron microscopy', Journal of Structural Biology, vol. 199, no. 1, pp. 1-11. https://doi.org/10.1016/j.jsb.2017.05.008