Allergenic Ambrosia pollen grains in the air of some Polish cities in 2019

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Aneta Sulborska
Elżbieta Weryszko-Chmielewska
Piotr Rapiejko
Katarzyna Dąbrowska-Zapart
Dariusz Jurkiewicz
Ewa Kalinowska
Małgorzata Puc
Agnieszka Lipiec
Małgorzata Malkiewicz
Zenon Siergiejko

Abstrakt

Ambrosia is regarded as the most dangerous allergy-related plant posing a considerable threat to human health with its highly allergenic pollen. In Europe, there are 4 Ambrosia species originating from North America; they most often colonize ruderal habitats and agricultural fields. The aim of the study was to compare Ambrosia pollen seasons in 9 cities located in different parts of Poland in 2019. Aerobiological tests were conducted in Bialystok, Bydgoszcz, Lublin, Olsztyn, Piotrkow Trybunalski, Sosnowiec, Szczecin, Warsaw, and Wroclaw. The investigations were carried out with the volumetric method using Burkard or Lanzoni pollen samplers. The 98% method was used to determine the duration of the pollen season. The earliest onset of the pollen season was recorded in Szczecin (August 7th) and Sosnowiec (August 9th), whereas the latest beginning was noted in Wroclaw (August 22nd) and Bydgoszcz (August 21st). The longest pollen season was recorded in Sosnowiec (52 days) as well as Lublin and Szczecin (50 days), while the shortest pollen season was noted in Wroclaw (10 days). The highest mean daily concentrations of Ambrosia pollen grains were recorded in Sosnowiec (104 P/m3) and Wroclaw (77 P/m3), whereas the lowest value was obtained in Szczecin (18 P/m3). Peak days were noted mostly during the last 10 days of August. The highest value of Ambrosia annual pollen sum was reported from Sosnowiec (326) and Lublin (310), while the lowest sum was noted in Szczecin (69). The multimodal course of the graph presenting the pollen seasons in the analysed cities and literature data indicate that the pollen originated not only from local sources but also from long-distance transport. The highest risk of Ambrosia pollen-induced allergy in sensitive subjects was demonstrated in Lublin, Piotrkow Trybunalski and Warsaw. The concentration of Ambrosia pollen in the air of the analysed Polish cities was substantially lower than the values indicated by measurement stations located in other parts of Europe.

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Sulborska , A., Weryszko-Chmielewska , E., Rapiejko , P., Dąbrowska-Zapart , K., Jurkiewicz , D., Kalinowska , E., Puc , M., Lipiec , A., Malkiewicz , M., & Siergiejko , Z. (2019). Allergenic Ambrosia pollen grains in the air of some Polish cities in 2019 . Alergoprofil, 15(4), 10-16. https://doi.org/10.24292/01.AP.154251119
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Bibliografia

1. Makra L, Matyasovszky I, Hufnagel L et al. The history of ragweed in the world. Appl Ecol Env Res. 2015; 13(2): 489-512.
2. Sofiev M, Bergmann KC (eds). Allergenic pollen: a review of the production, release, distribution and health impacts. Springer, Dordrecht 2013. https://doi.org/10.1007/978-94-007-4881-1.
3. Rapiejko P. Alergeny pyłku roślin. Medical Education, Warszawa 2010.
4. Skjøth CA, Šikoparija B, Jäger S; EAN-Network. Pollen sources. In: Sofiev M, Bergmann K-Ch (ed). Allergenic Pollen. Springer, Dordrecht, Heidelberg, New York, London 2013: 9-27.
5. Hansen A. Ambrosia L. In: Tutin TG, Heywood NA, Burg-es DM et al (ed). Flora Europaea. Cambridge University Press, Cambridge, London, New York, Melbourne 1976.
6. Weryszko-Chmielewska E, Piotrowska-Weryszko K. Charakterystyka sezonów pyłkowych wybranych taksonów roślin w Lublinie w latach 2001-2013. In: Weryszko-Chmielewska E (ed). Ziarna pyłku i zarodniki grzybów w powietrzu różnych regionów Polski. Norbertinum, Lublin 2014.
7. Malkiewicz M. Dynamika sezonów pyłkowych drzew (Alnus, Corylus, Betula) i roślin zielnych (Ambrosia, Artemisia, Poaceae) w powietrzu Wrocławia w latach 2003-2013. In: Weryszko-Chmielewska E (ed). Ziarna pyłku i zarodniki grzybów w powietrzu różnych regionów Polski. Norbertinum, Lublin 2014.
8. Majkowska-Wojciechowska B, Balwierz Z, Kowalski ML. Sezonowa dynamika stężeń pyłku najczęściej uczulających drzew, traw i chwastów w Łodzi, w latach 2003-2013. In: Weryszko-Chmielewska E (ed). Ziarna pyłku i zarodniki grzybów w powietrzu różnych regionów Polski. Norbertinum, Lublin 2014.
9. Myszkowska D, Ziemianin M, Piotrowicz K et al. Analiza sezonów pyłkowych wybranych taksonów roślin w Krakowie w latach 2011-2013. In: Weryszko-Chmielewska E (ed). Ziarna pyłku i zarodniki grzybów w powietrzu różnych regionów Polski. Norbertinum, Lublin 2014.
10. Dąbrowska-Zapart K, Chłopek K. Dynamika sezonów pyłkowych wybranych taksonów roślin w powietrzu Sosnowca w latach 2001-2013. In: Weryszko-Chmielewska E (ed). Ziarna pyłku i zarodniki grzybów w powietrzu różnych regionów Polski. Norbertinum, Lublin 2014.
11. Piotrowska-Weryszko K, Weryszko-Chmielewska E. The air-borne pollen calendar for Lublin, central-eastern Poland. AAEM. 2014; 21(3): 541-545.
12. Rodinkova VV. Airborne pollen spectrum and hay fever type prevalence in Vinnitsa, central Ukraine. Acta Agrobotanica. 2015; 68(4): 383-389.
13. Comtois P, Gagnon L. Pollen concentration and frequency of pollinosis symptoms: Method of determination of the clinical threshold. Revue Française d’Allergologie. 1988; 28: 279-286.
14. Thibaudon M. Allergy risk associated with pollens in France. Eur Ann Allergy Clin Immunol 2003; 35: 170-172.
15. Banken R, Comtois P. Concentration de l’herbe à poux et prévalence de la rhinite allergique dans deux municipalités des Laurentides. L’Unión Médeicale du Canada. 1990; 119: 178-182.
16. Zink K, Vogel H, Vogel B et al. Modeling the dispersion of Ambrosia artemisiifolia L. pollen with the model system COSMO-ART. Int J Biometeorol. 2012; 56(4): 669-680.
17. Jäger S. Global aspects of ragweed in Europe. In: Spieksma FThM (ed). Ragweed in Europe. 6th International Congress of Aerobiology. Perugia, Italy 1998. Satellite Symposium Proceedings, Alk-Abelló A/S, Horsholm DK: 6-10.
18. Heinzerling LM, Burbach GJ, Edenharter G et al. GA2 LEN skin test study I: GA2 LEN harmonization of skin prick testing: novel sensitization patterns for inhalant allergens in Europe. Allergy. 2009; 64(10): 1498-1506.
19. Weryszko-Chmielewska E. Aerobiologia. Wydawnictwo Akademii Rolniczej, Lublin 2007.
20. Clot B, Schneiter D, Tercier Ph et al. Ambrosia pollen in Switzerland: Local production or transport? Allergie at Immunologie. 2002; 34: 126-128.
21. Makra L, Palfi S. Intra-regional and long-range ragweed pollen transport over southern Hungary. Acta Climatologica et Chorologica. 2007; 40-41: 69-77.
22. Stach A, Smith M, Skjøth CA et al. Examining Ambrosia pollen episodes at Poznan (Poland) using back-trajectory analy-sis. Int J Biometeorol. 2007; 51: 275-286.
23. Smith M, Skjøth CA, Myszkowska D et al. Long-range trans-port of Ambrosia pollen to Poland. Agric For Meteorol. 2008; 148(10): 1402-1411.
24. Šikoparija B, Skjøth CA, Alm Kübler K et al. A mechanism for long distance transport of Ambrosia pollen from the Pannonian Plain. Agric For Meteorol. 2013; 180: 112-117.
25. Grewling Ł, Bogawski P, Jenerowicz P et al. Mesoscale atmospheric transport of ragweed pollen allergens from infected to uninfected areas. Int J Biometeorol. 2016. https://doi.org/10.1007/s00484-016-1139-6.
26. Kasprzyk I, Myszkowska D, Grewling Ł et al. The occurrence of Ambrosia pollen in Rzeszów, Kraków and Poznań, Poland: investigation of trends and possible transport of Ambrosia pollen from Ukraine. Int J Biometeorol. 2011; 55(4): 633-644.
27. de Weger LA, Pashley CH, Šikoparija B et al. The long dis-tance transport of airborne Ambrosia pollen to the UK and the Netherlands from Central and south Europe. Int J Biometeorol. 2016. https://doi.org/10.1007/s00484-016-1170-7.
28. Hirst JM. An automatic volumetric spore trap. Ann Appl Biol. 1952; 39(2): 257-265.
29. Taramarcaz P, Lambelet C, Clot B et al. Ragweed (Ambrosia) progression and it’s health risks: will Switzerland resist this invasion? Swiss Med Wkly. 2005; 135: 538-548.
30. Piotrowska-Weryszko K, Weryszko-Chmielewska E, Lipiec A et al. Ragweed pollen season in southern Poland in 2016. Alergoprofil. 2016; 12(4): 182-185.
31. Puc M, Kotrych D, Rapiejko P et al. Ragweed pollen season in the cities of northern Poland in 2016. Alergoprofil. 2016; 12(4): 178-181.
32. Weryszko-Chmielewska, Woźniak A, Piotrowska-Weryszko K et al. Ambrosia pollen season in selected cities in poland in 2018. Alergoprofil. 2018; 14(4): 111-116.
33. Stępalska D, Myszkowska D, Leśkiewicz K et al. Co-occurence of Artemisia and Ambrosia pollen seasons against the backgroung of the synoptic situations in Poland. J Biometeorol. 2016. https://doi.org/10.1007/s00484-016-1254-4.