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 in | Microbial pathogenesis Vol. 145; p. 104206 |
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Main Authors | , |
Format | Journal Article |
Language | English |
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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. |
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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 – sequence: 2 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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CitedBy_id | crossref_primary_10_3390_antibiotics13040318 crossref_primary_10_1128_msphere_00044_23 crossref_primary_10_3389_fimmu_2023_1288223 crossref_primary_10_3390_ijms25010160 crossref_primary_10_3390_antibiotics12050822 crossref_primary_10_1016_j_ijbiomac_2023_127939 crossref_primary_10_1016_j_oftale_2023_08_005 crossref_primary_10_3390_polym13081340 crossref_primary_10_1016_j_heliyon_2023_e19877 crossref_primary_10_1016_j_oftal_2023_07_011 crossref_primary_10_3390_microorganisms11071802 crossref_primary_10_53879_id_60_01_13497 |
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Keywords | Ocular microbiome Bacterial infectious diseases Molecular diagnosis |
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Title | Ocular bacterial infections: Pathogenesis and diagnosis |
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