Ocular bacterial infections: Pathogenesis and diagnosis

The human eye is a rigid asymmetric structure with unique defence system. Despite considerable resident microbiota, eye is exposed to external environment where a range of microorganisms also inhabits. Opportunistically, some of these microorganisms could associate with eye pathogen that could conta...

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Published inMicrobial pathogenesis Vol. 145; p. 104206
Main Authors Deepthi, KrishnanNair Geetha, Prabagaran, Solai Ramatchandirane
Format Journal Article
LanguageEnglish
Published England Elsevier Ltd 01.08.2020
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Abstract The human eye is a rigid asymmetric structure with unique defence system. Despite considerable resident microbiota, eye is exposed to external environment where a range of microorganisms also inhabits. Opportunistically, some of these microorganisms could associate with eye pathogen that could contact incidentally, leading to destructive visual consequences. Among such microbiota, bacteria form the major proportion concerning ocular complications worldwide. The succession of genome based approach through 16S rRNA gene based identification tremendously augmented the knowledge on diversity of ocular surface bacteria. Such evidence suggests that while few bacteria contribute towards normal ocular functions, considerable number of bacteria play active role in pathophysiology of ocular diseases. Thus, understanding the complexity of ocular microflora not only throw light on their critical role towards normal function of the eye, but also enlighten on certain visual exigencies. Under these circumstances, development of a rapid, reliable and cost effective method is essential that eventually evolve as a routine diagnostic protocol. Such precise prognostic modalities facilitate ophthalmologists to formulate pioneering therapeutics towards challenging ocular diseases. •The human eye is colonized by a consortium of microbiota.•Bacteria as major contributor in variety of ocular infections.•Advancement in molecular techniques shown promise for early detection and mitigation of ocular infections.
AbstractList The human eye is a rigid asymmetric structure with unique defence system. Despite considerable resident microbiota, eye is exposed to external environment where a range of microorganisms also inhabits. Opportunistically, some of these microorganisms could associate with eye pathogen that could contact incidentally, leading to destructive visual consequences. Among such microbiota, bacteria form the major proportion concerning ocular complications worldwide. The succession of genome based approach through 16S rRNA gene based identification tremendously augmented the knowledge on diversity of ocular surface bacteria. Such evidence suggests that while few bacteria contribute towards normal ocular functions, considerable number of bacteria play active role in pathophysiology of ocular diseases. Thus, understanding the complexity of ocular microflora not only throw light on their critical role towards normal function of the eye, but also enlighten on certain visual exigencies. Under these circumstances, development of a rapid, reliable and cost effective method is essential that eventually evolve as a routine diagnostic protocol. Such precise prognostic modalities facilitate ophthalmologists to formulate pioneering therapeutics towards challenging ocular diseases.
The human eye is a rigid asymmetric structure with unique defence system. Despite considerable resident microbiota, eye is exposed to external environment where a range of microorganisms also inhabits. Opportunistically, some of these microorganisms could associate with eye pathogen that could contact incidentally, leading to destructive visual consequences. Among such microbiota, bacteria form the major proportion concerning ocular complications worldwide. The succession of genome based approach through 16S rRNA gene based identification tremendously augmented the knowledge on diversity of ocular surface bacteria. Such evidence suggests that while few bacteria contribute towards normal ocular functions, considerable number of bacteria play active role in pathophysiology of ocular diseases. Thus, understanding the complexity of ocular microflora not only throw light on their critical role towards normal function of the eye, but also enlighten on certain visual exigencies. Under these circumstances, development of a rapid, reliable and cost effective method is essential that eventually evolve as a routine diagnostic protocol. Such precise prognostic modalities facilitate ophthalmologists to formulate pioneering therapeutics towards challenging ocular diseases. •The human eye is colonized by a consortium of microbiota.•Bacteria as major contributor in variety of ocular infections.•Advancement in molecular techniques shown promise for early detection and mitigation of ocular infections.
ArticleNumber 104206
Author Deepthi, KrishnanNair Geetha
Prabagaran, Solai Ramatchandirane
Author_xml – sequence: 1
  givenname: KrishnanNair Geetha
  surname: Deepthi
  fullname: Deepthi, KrishnanNair Geetha
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  givenname: Solai Ramatchandirane
  surname: Prabagaran
  fullname: Prabagaran, Solai Ramatchandirane
  email: prabagaran@buc.edu.in, prabagaran1@gmail.com
BackLink https://www.ncbi.nlm.nih.gov/pubmed/32330515$$D View this record in MEDLINE/PubMed
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Keywords Ocular microbiome
Bacterial infectious diseases
Molecular diagnosis
Language English
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Snippet The human eye is a rigid asymmetric structure with unique defence system. Despite considerable resident microbiota, eye is exposed to external environment...
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SubjectTerms Bacterial infectious diseases
Molecular diagnosis
Ocular microbiome
Title Ocular bacterial infections: Pathogenesis and diagnosis
URI https://dx.doi.org/10.1016/j.micpath.2020.104206
https://www.ncbi.nlm.nih.gov/pubmed/32330515
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