| Literature DB >> 28932345 |
Maximilian Kmenta1,2, Katharina Bastl1, Uwe Berger1, Matthias F Kramer3, Matthew D Heath4, Sanna Pätsi5, Anna-Mari Pessi5, Annika Saarto5, Barbora Werchan6,7, Matthias Werchan6,7, Reinhard Zetter2, Karl-Christian Bergmann6,7.
Abstract
BACKGROUND: Grasses release the most widespread aeroallergens with considerable sensitization rates, while different species produce several pollen concentration peaks throughout the season. This study analyzed the prevalence of grass species in three different European city areas and compared the flowering period of these species with daily pollen concentrations and the symptom loads of grass pollen allergy sufferers.Entities:
Keywords: Grass pollen allergy; Patient’s Hayfever Diary; Phenology; Pollen exposure chamber; Symptom data
Year: 2017 PMID: 28932345 PMCID: PMC5594510 DOI: 10.1186/s40413-017-0163-2
Source DB: PubMed Journal: World Allergy Organ J ISSN: 1939-4551 Impact factor: 4.084
Fig. 1Comparison of daily grass pollen concentrations per m3 (left y-axis; gray line), daily averaged SLI values from 0 to 7 (right y-axis; black line) and the pollination periods of the different grass species including phenological stages 1–3 (1 and 3 gray horizontal lines; 2 black horizontal lines) during the main grass pollen season 2015 in Vienna (top left), Berlin (center left) and Turku (bottom right). Moreover, graphs of the linear correlation model of daily SLI observations (y-axis) and the square root of daily pollen concentrations per m3 (x-axis) for Vienna (top right), Berlin (center right) and Turku (bottom right)
Observed grass species in the phenological areas of Vienna, Berlin and Turku including start and end of the pollination period as well as the species life cycle (A = annual, P = perennial) and the distribution at the local observation sites (number of appearance/maximum number of observation sites)
| Observed grass species | Cycle | Start of the pollination period | End of the pollination period | Distribution (appearance at phenological sites) | Concerned cities |
|---|---|---|---|---|---|
|
| P | week 24 | week 27 | 2/3 | Vienna |
| week 25 | week 27 | 2/4 | Berlin | ||
| week 27 | week 32 | 3/3 | Turku | ||
|
| P | week 17 | week 20 | 1/3 | Vienna |
| week 19 | week 21 | 2/4 | Berlin | ||
| week 23 | week 32 | 3/3 | Turku | ||
|
| P | week 17 | week 19 | 1/3 | Vienna |
| week 19 | week 22 | 2/4 | Berlin | ||
| week 23 | week 25 | 2/3 | Turku | ||
|
| P | week 22 | week 24 | 3/3 | Vienna |
| week 23 | week 23 | 3/4 | Berlin | ||
| week 27 | week 29 | 2/3 | Turku | ||
|
| P | week 26 | week 28 | 1/3 | Vienna |
|
| P | week 22 | week 23 | 1/3 | Vienna |
|
| P | week 22 | week 24 | 1/3 | Vienna |
|
| A | week 19 | week 20 | 2/3 | Vienna |
| week 20 | week 22 | 3/4 | Berlin | ||
|
| P | week 24 | week 26 | 2/4 | Berlin |
|
| A | week 20 | Week 22 | 2/4 | Berlin |
|
| P | week 29 | week 33 | 2/3 | Turku |
|
| P | week 23 | week 26 | 1/3 | Vienna |
| week 27 | week 28 | 2/4 | Berlin | ||
| week 30 | week 32 | 3/3 | Turku | ||
|
| P | week 29 | week 33 | 1/3 | Vienna |
| week 28 | week 35 | 1/4 | Berlin | ||
|
| P | week 25 | week 26 | 1/3 | Vienna |
|
| P | week 20 | week 24 | 3/3 | Vienna |
| week 21 | week 23 | 4/4 | Berlin | ||
| week 27 | week 32 | 2/3 | Turku | ||
|
| P | week 28 | week 30 | 3/3 | Turku |
|
| P | week 27 | week 31 | 3/3 | Turku |
|
| P | week 22 | week 25 | 2/3 | Vienna |
| week 29 | week 34 | 3/3 | Turku | ||
|
| P | week 22 | week 24 | 3/3 | Vienna |
| week 23 | week 24 | 1/4 | Berlin | ||
|
| P | week 26 | week 28 | 1/3 | Turku |
|
| P | week 22 | week 24 | 1/3 | Vienna |
| week 26 | week 28 | 2/3 | Turku | ||
|
| P | week 22 | week 23 | 4/4 | Berlin |
| week 26 | week 30 | 3/3 | Turku | ||
|
| P | week 20 | week 21 | 1/3 | Vienna |
|
| P | week 23 | week 24 | 1/3 | Vienna |
| week 22 | week 24 | 2/4 | Berlin | ||
|
| A | week 19 | week 20 | 2/3 | Vienna |
| week 20 | week 23 | 1/4 | Berlin | ||
|
| P | week 23 | week 27 | 3/3 | Vienna |
| week 22 | week 25 | 2/4 | Berlin | ||
| week 29 | week 33 | 3/3 | Turku | ||
|
| P | week 23 | week 26 | 1/3 | Turku |
|
| P | week 29 | week 32 | 2/3 | Turku |
|
| P | week 25 | week 27 | 2/3 | Vienna |
| week 25 | week 27 | 2/4 | Berlin | ||
| week 28 | week 32 | 3/3 | Turku | ||
|
| P | week 33 | week 36 | 2/3 | Turku |
|
| A | week 23 | week 34 | 3/3 | Turku |
|
| P | week 27 | week 29 | 1/3 | Turku |
|
| P | week 19 | week 22 | 3/3 | Vienna |
| week 20 | week 23 | 3/4 | Berlin | ||
| week 25 | week 29 | 3/3 | Turku | ||
|
| P | week 22 | week 24 | 2/3 | Vienna |
| week 23 | week 23 | 1/4 | Berlin |
P-values of the analysis of variance from the resiudals of the linear correlation model with the most prevalent grass species at all three cities as well as p-values from the second analysis of variance regarding the daily pollen concentrations
| Most prevalent grass species |
|
| Occurrence at |
|---|---|---|---|
|
| 0.1479 | 0.5478 | Vienna |
| 0.001528 ** | 0.0222 * | Turku | |
|
| 0.3941 | 0.001284 ** | Berlin |
| 2.539*10−06 *** | 0.4861 | Turku | |
|
| 0.003809 ** | 0.0008423 *** | Berlin |
|
| 0.0001877 *** | 1.182*10−10 *** | Vienna |
| 0.02242 * | 0.0007735 *** | Berlin | |
|
| 0.3722 | 0.2972 | Vienna |
|
| 0.3794 | 0.004911 ** | Berlin |
|
| 0.7875 | 0.07981. | Berlin |
| 0.4429 | 0.1188 | Turku | |
|
| 0.005651 ** | 3.456*10−06 *** | Vienna |
| 2.733*10−05 *** | 0.3172 | Berlin | |
|
| 0.02357 * | 0.2024 | Turku |
|
| 6.198*10−05 *** | 0.011 * | Turku |
|
| 1.66*10−05 *** | 2.029*10−08 *** | Vienna |
| 0.1014 | 0.385 | Turku | |
|
| 0.0001877 *** | 1.182*10−10 *** | Vienna |
|
| 0.05804 . | 4.741*10−05 *** | Turku |
|
| 0.0002582 *** | 0.002926 ** | Berlin |
| 6.268*10−05 *** | 9.737*10−06*** | Turku | |
|
| 0.01636 * | 1.188*10−07 *** | Berlin |
|
| 0.3722 | 0.2972 | Vienna |
|
| 0.6543 | 0.000342 *** | Vienna |
| 0.04644 * | 1.484*10−07 *** | Berlin | |
|
| 0.001806 ** | 0.04513 * | Turku |
|
| 0.007979 ** | 0.6982 | Vienna |
| 0.7379 | 0.1035 | Berlin | |
| 0.03159 * | 0.3066 | Turku | |
|
| 0.3846 | 0.7961 | Vienna |
| 3.217*10−05 *** | 0.007992 ** | Berlin | |
| 0.03531 * | 0.001066 ** | Turku | |
|
| 0.0001877 *** | 1.182*10−10 *** | Vienna |
Significance codes: 0 ‘***’ 0.001 ‘**’ 0.01 ‘*’ 0.05 ‘.’ 0.1 ‘1’
Fig. 2Total nasal symptom scores (mean and SEM) induced by placebo and three different pollen species (top), mean values of the reduction of nasal flow by placebo and three different grass pollen species (center). And mean values of the reduction of nasal secretion by placebo and three different grass pollen species (bottom)