Gut microbial ecology and function of a Pakistani cohort with Iron deficiency Anemia.
Hajra Khurshid, Muhammad Bilal Jamshaid, Zahra Salahuudin, Kashaf Sibtain et al.
Kernaussage
Iron deficiency anemia significantly modulates gut microbial diversity and microbial metabolite production, with specific anaerobic bacterial genera (Coprococcus, Anaerovoracaceae, Exiguobacterium) positively associated with anemia and branched short-chain fatty acid production, while a lack of red meat and fish consumption and high milk consumption are linked to anemia.
Abstract
Iron deficiency anemia (IDA) is a major public health concern among women of reproductive age leading to high maternal mortality. Pakistan being one of the Lower -Middle income countries (LMIC) is facing this challenge tremendously. The objective of this study is to determine the impact of IDA on gut microbial diversity as well as its relationship with microbial metabolites.16 S rRNA gene profiling of healthy and IDA affected meconium samples was performed with additional meta-data collected through questionnaire. The anemia was linked to different dietary parameters through chi-square test of independence and Generalized Linear Latent Variable Model (GLLVM). Anaerobic bacterial genera such as Coprococcus, Anaerovoracaceae, strongly associated with anemia and negatively correlated with red meat and fish consumption. Moreover, these microbes positively correlated with branched short chain fatty acids (BSCFAs) production. BSCFAs have strong implications in metabolic disorders. This study provides a snapshot of how anemia modulates gut microbial diversity and microbial metabolites production which may have an impact on iron metabolism.
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Quelle: PubMed Central / National Library of Medicine (NLM). Apollion steht in keiner Verbindung mit NLM und wird von NLM nicht empfohlen. Evidenzgrade bewerten die methodische Studienqualität — nicht die inhaltliche Richtigkeit.
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