Related Experiment Video
Updated: Sep 23, 2026

Quantification of Acanthamoeba spp. Motility
Published on: September 20, 2024
Determination of amoebicidal activities of multipurpose contact lens solutions by using a most probable number
Tara K Beattie1, David V Seal, Alan Tomlinson
1Department of Vision Sciences, Glasgow Caledonian University, Glasgow, Scotland, United Kingdom. t.k.beattie@gcal.ac.uk
Abstract:
Six multipurpose contact lens solutions [All-in-One, All-in-One (Light), ReNu MultiPlus, Optifree Express, Complete, and Solo-care soft] were tested for their efficacies against Acanthamoeba castellanii trophozoites and cysts by using a most probable number (MPN) technique for amoebic enumeration. Against trophozoites, All-in-One, ReNu Multiplus, and Optifree Express achieved total kill (log reduction of >3) after the manufacturer's minimum recommended disinfection time (MMRDT), with the remaining solutions failing to reach a log reduction of 1. After 24 h of exposure, all solutions proved trophozoiticidal, achieving, with the exception of Complete (log reduction of 3.13), total kill. Against cysts, All-in-One gave a log reduction of >3 within the MMRDT, with all other solutions failing to achieve a log reduction of 1. After 24 h of exposure, All-in-One achieved total kill of cysts (log reduction of 3.74), ReNu MultiPlus gave a log reduction of 3.15, and the remaining solutions reached log reductions of between 1.09 and 2.27. The MPN technique provides a simple, reliable, and reproducible method of amoebic enumeration that depends on simply establishing the presence or absence of growth on culture plates inoculated with a series of dilutions and determining the MPN of amoebae present from statistical tables. By use of this technique, two of the multipurpose solutions tested, ReNu MultiPlus and Optifree Express, demonstrated effective trophozoiticidal activities within the recommended disinfection times; however, only All-in-One proved effective against both trophozoites and cysts over the same time period. This MPN technique, which uses axenically produced trophozoites and mature, double-walled cysts, has the potential to form the basis of a national standard for amoebicidal efficacy testing of multipurpose contact lens disinfecting solutions.
Insights
Six multipurpose contact lens solutions were tested for efficacy against Acanthamoeba. All-in-One solution demonstrated superior effectiveness against both trophozoites and cysts within recommended disinfection times.
Area of Science:
- Ophthalmology
- Microbiology
- Biotechnology
Background:
- Contact lens solutions are crucial for maintaining lens hygiene.
- Acanthamoeba castellanii poses a significant risk of microbial keratitis in contact lens wearers.
- Evaluating the amoebicidal efficacy of multipurpose solutions is essential for eye health.
Purpose of the Study:
- To assess the efficacy of six multipurpose contact lens solutions against Acanthamoeba castellanii.
- To compare the performance of different solutions against both Acanthamoeba trophozoites and cysts.
- To validate the most probable number (MPN) technique for amoebicidal testing.
Main Methods:
- Six multipurpose contact lens solutions were tested.
- Efficacy was evaluated against Acanthamoeba castellanii trophozoites and cysts.
- The most probable number (MPN) technique was employed for amoebic enumeration.
Main Results:
- All-in-One, ReNu MultiPlus, and Optifree Express showed significant trophozoite kill within the manufacturer's minimum recommended disinfection time (MMRDT).
- Only All-in-One demonstrated significant cyst kill within the MMRDT.
- After 24 hours, all solutions achieved total kill of trophozoites, except Complete.
- All-in-One and ReNu MultiPlus showed substantial cyst kill after 24 hours.
Conclusions:
- All-in-One solution exhibited the most comprehensive amoebicidal activity against both trophozoites and cysts within recommended disinfection times.
- ReNu MultiPlus and Optifree Express demonstrated effective trophozoite disinfection.
- The MPN technique is a reliable and reproducible method for evaluating the amoebicidal efficacy of contact lens solutions.

