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1.
Qatar Med J ; 2023(2): 22, 2023.
Article in English | MEDLINE | ID: mdl-38025337

ABSTRACT

Background: The prevalence of asthma is 9% among adults in Qatar, and its severity can be attributed to intrinsic and extrinsic factors such as environmental changes. As part of the project to investigate the association between air pollution and asthma severity, the rate of exacerbations in adult patients with asthma has been studied in Qatar. Methods: Retrospective data of patients with asthma (16-70 years) from January 2019 to December 2021 was retrieved from Cerner medical records. Frequencies of exacerbations in inpatient and outpatient departments were analyzed using means ± SD and median (IQR) for descriptive data and frequency and percentage for categorical data. Exacerbations were divided into single, double, and more than double for each quarter of the year (January 2019-December 2021) using SPSS and Minitab statistical packages. Results: A total of 6977 exacerbations visits (representing 6558 patients) were identified during the study period. The mean ± SD age was 41±14.3 years, with a female: male ratio of almost 1:1. The patients from the MENA region, including Qataris, presented 67% compared to 33% from the Indian subcontinent and other countries. The number of patient visits for hospitalization due to exacerbations showed a distinctive pattern during the three years. The highest record of asthmatics with exacerbations was observed in 2019 (42.7%) compared to half the rate in 2020 and 2021 (28.5%, 28.8%), respectively. The single exacerbation group was almost five times higher than 2 or >2 exacerbation groups in all years (2019-2021). Conclusion: This preliminary overview provides the rate of exacerbation episodes in patients with asthma in Qatar. One cause of these exacerbations can be attributed to air quality changes. The drop in the exacerbation rate observed in 2020-2021 could be explained by COVID-19 lockdown regulations or patients' adherence to prescribed meds. We aim to propose preventive and therapeutic strategies to alleviate asthmatics' symptoms and improve their quality of life.

2.
Int J Mol Sci ; 24(14)2023 Jul 24.
Article in English | MEDLINE | ID: mdl-37511610

ABSTRACT

Atopic dermatitis (AD) is the most common chronic relapsing neuroinflammatory skin disease that is characterized by a complex and multifactorial pathophysiology. It reflects a profound interplay between genetic and environmental factors, and a recently disclosed neuroimmune dysregulation that drives skin barrier disruption, pruritus, and microbial imbalance. In terms of the key external environmental players that impact AD, air quality and itch severity linkage have been thoroughly researched. The impact of ambient air pollutants including particulate matter (PM) and AD pruritic exacerbation has been recorded despite reductions in air pollution levels in in developed countries. The developing countries have, on the contrary, experienced significant urbanization and industrialization with limited environmental protection standards in the past decades. This unprecedented construction, petrochemical industry utilization, and increment in population counts has been paired with consistent exposure to outdoor PM. This may present a key cause of AD pruritic exacerbation supported by the fact that AD prevalence has intensified globally in the past 50 years, indicating that environmental exposure may act as a trigger that could flare up itch in vulnerable persons. At the molecular level, the impact of PM on severe pruritus in AD could be interpreted by the toxic effects on the complex neuroimmune pathways that govern this disease. AD has been recently viewed as a manifestation of the disruption of both the immune and neurological systems. In light of these facts, this current review aims to introduce the basic concepts of itch sensory circuits in the neuroimmune system. In addition, it describes the impact of PM on the potential neuroimmune pathways in AD pathogenesis with a special focus on the Fc Epsilon RI pathway. Finally, the review proposes potential treatment lines that could be targeted to alleviate pruritus based on immune mediators involved in the Fc Epsilon signaling map.


Subject(s)
Air Pollutants , Dermatitis, Atopic , Humans , Dermatitis, Atopic/metabolism , Receptors, IgE/metabolism , Particulate Matter/adverse effects , Pruritus/metabolism , Air Pollutants/adverse effects
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