Related Experiment Video
Updated: Mar 18, 2026

Establishing a Porcine Ex Vivo Cornea Model for Studying Drug Treatments against Bacterial Keratitis
Published on: May 12, 2020
Advances in the laboratory diagnosis of non-viral microbial keratitis
Joveeta Joseph1, Savitri Sharma2
1Jhaveri Microbiology Centre, LV Prasad Eye Institute, Hyderabad, Telangana, India.
Abstract:
Infectious keratitis remains a leading cause of corneal blindness and visual impairment worldwide, with bacterial, fungal, amoebic and viral pathogens presenting major diagnostic and therapeutic challenges. Early and precise pathogen identification is essential to initiate early treatment and prevent irreversible ocular damage. Direct visualisation of pathogens by microscopy of corneal scrapings has been one of the most rewarding and time-tested methods; however, ocular microbiology laboratories seem to be losing the expertise for the same. Culture methods also seem to be losing favour for their long turnaround time and low sensitivity. These have paved the way for newer, rapid and sensitive molecular techniques to make a foray into the realm of diagnosis of non-viral keratitis. This review critically evaluates recent advances in molecular diagnostics for infectious keratitis, focusing on DNA/RNA-based sequencing, real-time PCR (qPCR) and mass spectrometry (MS) and examines their clinical relevance, limitations and potential for point-of-care application.An extensive literature analysis was conducted, integrating findings from peer-reviewed studies published between 2000 and 2025. Emerging diagnostic platforms were compared with conventional microbiological methods in terms of diagnostic accuracy, turnaround time and clinical applicability across paediatric and adult cohorts. Traditional culture-based approaches exhibit limited sensitivity (30%-60%) and slow pathogen detection. In contrast, multiplex and quantitative PCR enable rapid, sensitive and specific pathogen identification, including in culture-negative cases. Next-generation sequencing offers broad-spectrum, culture-independent profiling of bacteria, fungi and protozoa, enhancing diagnostic yield and understanding of pathogen diversity. MS has transformed microbial and host proteomic/metabolomic analyses, identifying candidate biomarkers for disease severity and prognosis. Recent innovations such as portable qPCR devices, clustered regularly interspaced short palindromic repeats-based diagnostics and artificial intelligence-assisted data interpretation extend molecular testing to near-patient settings. The integration of these technologies into routine clinical workflows promises earlier intervention, personalised therapy and improved visual outcomes, particularly in resource-limited environments.
Insights
New molecular diagnostics like DNA sequencing, qPCR, and MS offer faster, more accurate identification of infectious keratitis pathogens than traditional methods. These advanced techniques improve early treatment and visual outcomes, especially in resource-limited settings.
Area of Science:
- Ophthalmology
- Microbiology
- Molecular Diagnostics
Background:
- Infectious keratitis is a major cause of global blindness.
- Accurate and rapid pathogen identification is crucial for effective treatment.
- Traditional methods like microscopy and culture have limitations in speed and sensitivity.
Purpose of the Study:
- To review recent advances in molecular diagnostics for infectious keratitis.
- To evaluate the clinical relevance and limitations of new diagnostic platforms.
- To explore the potential of point-of-care applications for infectious keratitis diagnosis.
Main Methods:
- Literature analysis of studies from 2000-2025.
- Comparison of molecular techniques (sequencing, qPCR, MS) with conventional methods.
- Assessment of diagnostic accuracy, turnaround time, and clinical applicability.
Main Results:
- Molecular methods (qPCR, sequencing, MS) show higher sensitivity and speed than culture.
- Next-generation sequencing provides broad-spectrum, culture-independent pathogen profiling.
- Emerging technologies like portable qPCR and AI enhance near-patient testing capabilities.
Conclusions:
- Molecular diagnostics are transforming infectious keratitis diagnosis, offering improved accuracy and speed.
- These advancements facilitate earlier intervention and personalized therapy.
- Integration into clinical workflows promises better visual outcomes, particularly in underserved areas.
More Related Videos
05:05Technique of Conjunctival Biopsy and Direct Immunofluorescence for Diagnosing Mucous Membrane Pemphigoid
Published on: June 17, 2025
04:00Author Spotlight: Establishing a Practical and Cost-Effective Protocol for Corneal Sensitivity Testing in Clinical Settings
Published on: August 2, 2024
Related Concept Videos
Methods of Classification and Identification
Acute Pyelonephritis II: Diagnostic Studies and Management