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Oral mycobiome identification in atopic dermatitis, leukemia, and HIV patients - a systematic review. | LitMetric

AI Article Synopsis

  • Oral mycobiome profiling is crucial for understanding interactions between hosts and pathogens, especially in patients with chemotherapy or HIV, and links to worsening chronic conditions like atopic dermatitis.
  • A systematic review analyzed 21 studies focusing on oral fungi in HIV, leukemia, and atopic dermatitis patients, using English or Portuguese literature from 2009 to 2019.
  • The most common identification methods were morphological and biochemical tests, but high-throughput sequencing techniques are increasingly favored for their accuracy and efficiency in profiling oral fungal species.

Article Abstract

Introduction: Oral mycobiome profiling is important to understand host-pathogen interactions that occur in various diseases. Invasive fungal infections are particularly relevant for patients who have received chemotherapy and for those who have HIV infection. In addition, changes in fungal microbiota are associated with the worsening of chronic conditions like atopic dermatitis (AD). This work aims, through a systematic review, to analyze the methods used in previous studies to identify oral fungi and their most frequent species in patients with the following conditions: HIV infection, leukemia, and atopic dermatitis.

Methods: A literature search was performed on several different databases. Inclusion criteria were: written in English or Portuguese; published between September 2009 and September 2019; analyzed oral fungi of HIV-infected, leukemia, or AD patients.

Results: 21 studies were included and the most identified species was . The predominant methods of identification were morphological (13/21) and sugar fermentation and assimilation tests (11/21). Polymerase chain reaction (PCR) was the most used molecular method (8/21) followed by sequencing techniques (3/21).

Conclusions: Although morphological and biochemical tests are still used, they are associated with high-throughput sequencing techniques, due to their accuracy and time saving for profiling the predominant species in oral mycobiome.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7482892PMC
http://dx.doi.org/10.1080/20002297.2020.1807179DOI Listing

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