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Concentration Dependent and Adverse Effects in Immunohistochemistry using the Tyramine Amplification Technique

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Abstract

Although the tyramine amplification technique to enhance sensitivity in immunohistochemistry has been described in numerous methodological papers, it has not yet gained access to diagnostic immunohistochemistry. This is mainly due to problems and pitfalls occurring in adaptation of this method to routine application.

In this study a monoclonal antibody and a polyclonal antiserum (pan-cytokeratin and anti-myoglobin) were tested in tissues with different amounts of epitopes, using a checkerboard table and testing a total of 133 different dilution combinations of both the tyramide solution and the primary antibodies.

The specific tissue investigated, i.e. the amount of accessable epitope to be detected and the applied concentration of the tyramide solution mainly influenced the staining reaction. Several pitfalls such as an uneven distribution of the staining or dramatic overstaining (paradoxical overstaining) must be considered to achieve optimal results.

In conclusion, our data confirm methodological studies that the tyramine amplification technique is a powerful method to enhance immunohistochemical sensitivity. However, for reliable daily practice several pitfalls of the technique have to be circumvented.

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References cited

  • Adams JC (1992) Biotin amplification of biotin and horseradish peroxidase signals in histochemical stains. J Histochem Cytochem 40: 1457-1463.

    Google Scholar 

  • Battifora H (1991) Assessment of antigen damage in immunohistochemistry. Am J Clin Pathol 96: 669-671.

    Google Scholar 

  • Bigbee JW (1977) Effects of primary antiserum dilution on staining of antigen rich tissues with the peroxidase antiperoxidase technique. J Histochem Cytochem 25: 443-447.

    Google Scholar 

  • Bobrow MN, Harris TD, Shaughnessy KJ, Litt GJ (1989) Catalyzed reporter deposition, a novel method of signal amplification. Application to immunoassays. J Immunol Methods 125: 279-285.

    Google Scholar 

  • Bobrow MN, Shaughnessy KJ, Litt GJ (1991) Catalyzed reporter deposition, a novel method of signal amplification II. Application to membrane immunoassays. J Immunol Methods 137: 103-112.

    Google Scholar 

  • Bobrow MN, Litt GJ, Shaughnessy KJ, Mayer PC, Conlon J (1992) The use of catalyzed reporter deposition as a means of signal amplification in a variety of formats. J Immunol Methods 150: 145-149.

    Google Scholar 

  • Cordell J, Falini B, Erber WN, Ghosh AK, Abdulaziz Z, Macdonald S, Pulford KKA, Stein H, Mason DY (1984) Immunoenzymatic labeling of monoclonal antibodies using immune complexes of alkaline phosphatase and monoclonal anti-alkaline phosphatase (APAAP)complexes. J Histochem Cytochem 32: 219-229.

    Google Scholar 

  • Hsu SM, Raine L, Fanger H (1981) Use of avidin-biotin-peroxidase complex (ABC) in immunoperoxidase technique: a comparison between ABC and unlabeled antibody (PAP) procedures. J Histochem Cytochem 29: 577-580.

    Google Scholar 

  • Hunyady B, Hipkin RW, Schonbrunn A, Mezey E (1997) Immunohisto-chemical localization of somatostatin receptor SST2A in the rat pancreas. Endocrinology 138: 2632-2635.

    Google Scholar 

  • Kerstens HM, Poddighe PJ, Hanselaar AG (1995) A novel in situ hybridization signal amplification method based on the deposition of biotinylated tyramine. J Histochem Cytochem 43: 347-352.

    Google Scholar 

  • King G, Payne S, Walker F, Murray GI (1997) A highly sensitive detection method for immunohistochemistry using biotinylated tyramine. J Pathol 183: 237-241.

    Google Scholar 

  • Komminoth P, Werner M (1997) Target and signal amplification: approaches to increase the sensitivity of in situ hybridization. Histochem Cell Biol 108: 325-333.

    Google Scholar 

  • Mayer G, Bendayan M (1997) Biotinyl-Tyramide: a novel approach for electron microscopic immunocytochemistry J Histochem Cytochem 45: 1449-1454.

    Google Scholar 

  • Merz H, Malisius R, Mannweiler S, Zhou R, Hartmann W, Orscheschek K, Moubayed P, Feller AC (1995) ImmunoMax. A maximized immunohistochemical method for the retrieval and enhancement of hidden antigens. Lab Invest 73: 149-156.

    Google Scholar 

  • Raap AK, Van De Corput MP, Vervenne RA, Van Gijlswijk RP, Tanke HJ, Wiegant J (1995) Ultra-sensitive FISH using peroxidase-mediated deposition of biotin-or fluorochrome tyramides. Hum Mol Genet 4: 529-534.

    Google Scholar 

  • Sanno N, Teramoto A, Sugiyama M, Itho Y, Osamura RY (1996) Application of catalyzed signal amplification in immunodetection of gonadotropin subunits in clinically nonfunctioning pituitary adenomas. Am J Clin Pathol 106: 16-21.

    Google Scholar 

  • Schöfer C, Weipoltshammer K, Almeder M, Wachtler F (1997) Signal amplification at the ultrastructural level using biotinylated tyramides and immunogold detection. Histochem Cell Biol 108: 313-319.

    Google Scholar 

  • Shi SR, Key ME, Kalra KL (1991) Antigen retrieval in formalin-fixed, paraffin-embedded tissues: an enhancement method for immunohistochemical staining based on microwave oven heating of tissue sections. J Histochem Cytochem 39: 741-748.

    Google Scholar 

  • Sternberger LA, Hardy P Jr, Cuculis JJ, Meyer HG (1970) The unlabeled antibody enzyme method of immunohistochemistry: preparation and properties of soluble antigen—antibody complex (horseradish peroxidase—antihorseradishperoxidase) and its use in identification of spirochetes. J Histochem Cytochem 18: 315-333.

    Google Scholar 

  • Strappe PM, Wang TH, McKenzie CA, Lowrie S, Simmonds P, Bell JE (1997) Enhancement of immunohistochemical detection of HIV-1 p24 antigen in brain by tyramide signal amplification. J Virol Methods 67: 103-112.

    Google Scholar 

  • Takahashi H, Shikata N, Tsubura A (1994) Immunohistochemical reaction patterns of keratins in MNNG-induced shrew oesophageal carcinomas. Virchows Arch 424: 267-271.

    Google Scholar 

  • Van Eyken P, Sciot R, Van Damme B, De Wolf-Peeters C, Desmet VJ (1987) Keratin immunohistochemistry in normal human liver. Cytokeratin pattern of hepatocytes, bile ducts and acinar gradient. Virchows Arch A Pathol Anat Histopathol 412: 63-72.

    Google Scholar 

  • Van Gijlswijk RP, Wiegant J, Raap AK, Tanke HJ (1996) Improved localization of fluorescent tyramides for fluorescence in situ hybridization using dextran sulfate and polyvinyl alcohol. J Histochem Cytochem 44: 389-392.

    Google Scholar 

  • Viac J, Reano A, Brochier J, Staquet MJ, Thivolet J (1983) Reactivity pattern of a monoclonal antikeratin antibody (KL1). J Invest Dermatol 81: 351-354.

    Google Scholar 

  • Von Wasielewski R, Werner M, Nolte M, Wilkens L, Georgii A (1994) Effects of antigen retrieval by microwave heating in formalin-fixed tissue sections on a broad panel of antibodies. Histochemistry 102: 165-172.

    Google Scholar 

  • Von Wasielewski R, Mengel M, Gignac S, Wilkens L, Werner M, Georgii A (1997) Tyramine amplification technique in routine immunohistochemistry. J Histochem Cytochem 45: 1455-1459.

    Google Scholar 

  • Von Wasielewski R, Mengel M, Nolte M,Werner M (1998) Influence of fixation, antibody clones and signal amplification on steroid receptor analysis. Breast J 4: 33-40.

    Google Scholar 

  • Wada T, Yasutomi M, Yamada K, Hashimura K, Kunikata M, Tanaka T, Huang JW, Mori M (1991) Heterogeneity of keratin expression and actin distribution in benign and malignant mammary diseases. Anticancer Res 11: 1983-1993.

    Google Scholar 

  • Werner M, Von Wasielewski R, Komminoth P (1996) Antigen retrieval, signal amplification and intensification in immunohistochemistry. Histochem Cell Biol 105: 253-260.

    Google Scholar 

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Mengel, M., Werner, M. & von Wasielewski, R. Concentration Dependent and Adverse Effects in Immunohistochemistry using the Tyramine Amplification Technique. Histochem J 31, 195–200 (1999). https://doi.org/10.1023/A:1003554217994

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