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  <Header>
    <ArticleTitle>PREVALENCE OF AIRBORNE PATHOGENIC FUNGI IN EDUCATIONAL BUILDINGS IN SANA'A CITY, YEMEN</ArticleTitle>
  </Header>
  <ArticleParameters>
    <ArticleReceivingDate>2024-03-10</ArticleReceivingDate>
    <ArticleRevisedDate>2024-03-18</ArticleRevisedDate>
    <ArticleAcceptanceDate>2024-04-17</ArticleAcceptanceDate>
    <ArticlePublishedOn>9/30/2024 1:45:58 PM</ArticlePublishedOn>
    <Journal>Canadian Journal of Applied Sciences</Journal>
    <Volume>14</Volume>
    <Year>2024</Year>
    <ArticleType>Original research article</ArticleType>
    <FirstPage>1</FirstPage>
    <LastPage>14</LastPage>
    <CollectionYear>2024</CollectionYear>
    <PublisherId>1925-7430.14.1</PublisherId>
    <ArticleDoi>http://dx.doi.org/10.21065/1925-7430.14.1</ArticleDoi>
    <Language>English</Language>
  </ArticleParameters>
  <Authors>
    <ArticleAuthors>Hameed Ahmed Golah</ArticleAuthors>
  </Authors>
  <keywords>
    <Articlekeywords>Isolation, Identification, Airborne Fungi, Sana'a, Schools, Yemen, Pathogenic fungi</Articlekeywords>
  </keywords>
  <Abstract>
    <ArticleAbstract>Objective: The ambient air quality within educational institutions significantly influences
the health and well-being of students, educators, and all associated personnel, thereby
impacting the broader community's health. This investigation aimed to isolate and
identify airborne pathogenic and opportunistic fungi in the educational settings of
Sana'a city, Yemen.
Methods: The research encompassed four distinct educational structures: a
government-run middle school for girls (School 1), a government-run middle school for
boys (School 2), a private high school for girls (School 3), and a private high school for
boys (School 4). Utilizing the open plate technique, a total of 64 air samples were
meticulously collected from various departments within these institutions, properly
labeled, and subsequently transported to a laboratory for detailed examination and
analysis employing standardized microbiological methodologies. Through
morphological and microscopic examination techniques, a diversity of fungal isolates
was identified.
Results: The findings disclosed the isolation of 50 pathogenic and opportunistic fungal
isolates across the four schools in Sana'a, distributed as follows: 10 isolates (20%) from
School 1, 18 isolates (36%) from School 2, 8 isolates (16%) from School 3, and 14
isolates (28%) from School 4. Notably, School 2 harbored the highest number of
isolates at 36%, while School 3 exhibited the lowest at 16%. A statistically significant
variation (P&lt;0.05) was observed among the fungal isolates and the schools. Of the total
isolates, only 11 (22%) were identified as pathogenic, whereas 39 (78%) were
classified as opportunistic fungi. These comprised eight fungal genera: Rhizopus,
Cladosporium, Aspergillus, Curvularia, Penicillium, Alternaria, Trichophyton, and
Chrysosporium, with respective frequencies of 7 (14%), 3 (6%), 21 (42%), 2 (4%), 11
(22%), 3 (6%), 1 (2%), and 2 (4%). Aspergillus was the most prevalent genus 2
identified, whereas Trichophyton was the least prevalent. No significant differences
(P&lt;0.05) were noted among these fungal genera. Furthermore, the distribution of
pathogenic fungi across the schools was as follows: 3 (6%) in School 1, 5 (10%) in
School 2, 1 (2%) in School 3, and 2 (4%) in School 4, with no significant variance
observed among the schools regarding pathogenic fungi prevalence. The investigation
highlighted a predominant presence of pathogenic fungi within classroom sections (CR)
compared to teachers' rooms (TR).
Conclusions: The study elucidates the presence of various pathogenic fungi within
school environments in Sana'a, underscoring the necessity for enhanced hygiene
practices in these educational establishments.</ArticleAbstract>
  </Abstract>
</ArticalData>