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Nasal smear as an allergy screening test

Detection of allergen-specific antibodies in nasal secretions

Date:
April 17, 2020
Source:
Technical University of Munich (TUM)
Summary:
In the world of allergy diagnostics, the familiar blood samples and unpleasant skin prick procedures for testing allergen tolerance may soon be a thing of the past. A team of researchers has demonstrated that sufficient quantities of allergy antibodies for a diagnosis can be effectively measured in nasal secretions.
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Stuffy noses, itching and fits of sneezing -- 130 million people in Europe suffer from hay fever and other forms of allergic rhinitis. Until now, these conditions have typically been diagnosed using blood samples or skin prick tests. The latter method is often seen as particularly uncomfortable because the skin is exposed to various allergens and punctured with a fine needle. Many patients -- especially children -- even find the blood test quite unpleasant.

Diagnosis with biochip technology

Claudia Traidl-Hoffmann, a professor of environmental medicine at TUM and the director of the Institute of Environmental Medicine at the Helmholtz Zentrum München, has now tested a new diagnostic method for allergic rhinitis with her team. The scientists studied nasal smears using a method originally developed for blood samples: With a recent development in biochip technology, practitioners have been able for some time now to measure antibody concentrations for 112 different allergens with a single small blood sample.

Prof. Traidl-Hoffmann's team used this molecular diagnostics technology to measure concentrations of immunoglobulin E (IgE) antibodies in the blood and nasal secretions of test subjects. These antibodies play a role in certain allergic responses. The researchers studied individuals with and without sensitization to the most common airborne allergens, including dust mite castings, grass pollen and the pollen of birch, hazelnut and alder trees.

Results for a range of allergens

For the same tests, the blood and nasal smears yielded similar results: They detected identical allergic sensitization patterns, i.e. the same sets of substances for which the body had developed an immune response. This was the case for all airborne allergens investigated. Previous studies had already demonstrated a link between the detection of allergy antibodies in the blood and in nasal secretions for certain aeroallergens. The researchers have now confirmed this correlation for a wide range of such allergens.

Gentle method with potential

"A big advantage of allergy diagnostics with a nasal smear is that it is a good option for small children as compared to blood samples or skin prick testing. For that age group, a hyposensitization therapy is important because allergic rhinitis can develop into allergic asthma," says Prof. Claudia Traidl-Hoffmann. PD Dr. Stefanie Gilles adds: "We also believe that, with nasal smears, IgE antibodies specific to certain allergies can be detected that cannot be measured in a blood sample. We now need to do further studies to explore that hypothesis."


Story Source:

Materials provided by Technical University of Munich (TUM). Note: Content may be edited for style and length.


Journal Reference:

  1. Mehmet Gökkaya, Vera Schwierzeck, Karisa Thölken, Stephan Knoch, Michael Gerstlauer, Gertrud Hammel, Claudia Traidl‐Hoffmann, Stefanie Gilles. Nasal specific IgE correlates to serum specific IgE: First steps towards nasal molecular allergy diagnostic. Allergy, 2020; DOI: 10.1111/all.14228

Cite This Page:

Technical University of Munich (TUM). "Nasal smear as an allergy screening test." ScienceDaily. ScienceDaily, 17 April 2020. <www.sciencedaily.com/releases/2020/04/200417103819.htm>.
Technical University of Munich (TUM). (2020, April 17). Nasal smear as an allergy screening test. ScienceDaily. Retrieved October 31, 2024 from www.sciencedaily.com/releases/2020/04/200417103819.htm
Technical University of Munich (TUM). "Nasal smear as an allergy screening test." ScienceDaily. www.sciencedaily.com/releases/2020/04/200417103819.htm (accessed October 31, 2024).

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